{"meta":{"query_hash":"a0d171d83ce8","filters":{"venue":"Forest Ecology and Management"},"cohort_total":727,"direct_labels_cover":1,"predictions_cover":727,"exported":727,"export_cap":100000,"truncated":false,"label_status":"direct model label, unvalidated","prediction_status":"machine_predicted_unvalidated (Codex and Gemma teacher distillation)","score_status":"score_only:v0-immature-baseline","snapshot":{"source":"OpenAlex, pinned release, all 482 partitions","release":"2026-06-24","frame_built":"2026-07-12"},"permalink":"https://metacan.xera.ac/q/a0d171d83ce8","api":"https://metacan.xera.ac/api/v1/cohort?venue=Forest+Ecology+and+Management"},"results":[{"id":"W1151990998","doi":"10.1016/j.foreco.2015.08.002","title":"Selective logging: Do rates of forest turnover in stems, species composition and functional traits decrease with time since disturbance? – A 45year perspective","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":30,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"National Institute of Allergy and Infectious Diseases; Natural Sciences and Engineering Research Council of Canada; National Institutes of Health; Fogarty International Center; Fonds Québécois de la Recherche sur la Nature et les Technologies; Webster Groves Nature Study Society; Idea Wild","keywords":"Logging; Disturbance (geology); Forest dynamics; Ecological succession; Ecology; Salvage logging; Clearcutting; Old-growth forest; Environmental science; Forest management; Forest ecology; Biology; Ecosystem","score_opus":0.008796176315545554,"score_gpt":0.2095040290555038,"score_spread":0.20070785273995825,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1151990998","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9774147,0.0108984,0.00382012,0.001973001,0.00012893803,0.000011544705,0.00078214234,0.000045262106,0.0049257786],"genre_scores_gemma":[0.9939107,0.0033802658,0.0006927093,0.00035423005,0.00012664282,0.000006408395,0.00035946845,0.000016170581,0.0011534588],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996178,0.000073931755,0.000032877866,0.00014836687,0.000038529284,0.00008852321],"domain_scores_gemma":[0.99716467,0.00049519644,0.0012827929,0.00036495706,0.00027596945,0.00041642893],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0021161453,0.00031888907,0.00048395008,0.0009160413,0.00048406658,0.0017559914,0.00074225984,0.00094644376,0.002685859],"category_scores_gemma":[0.0029244383,0.00032614742,0.00046622168,0.00076208764,0.0011532904,0.002626295,0.0007547749,0.00064612785,0.00046611018],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022124789,0.00011936156,0.9434052,0.000096524316,0.00045760022,0.00013418146,0.00066282484,0.00092834316,0.0030052299,0.0021598218,0.0007038959,0.04810577],"study_design_scores_gemma":[0.0000012572312,0.00008301901,0.99564904,0.000027831102,0.000043504515,0.00014311403,0.0002735838,0.0004856002,0.00013563556,0.0010338617,0.0021097534,0.000013763855],"about_ca_topic_score_codex":0.0070837094,"about_ca_topic_score_gemma":0.012606707,"teacher_disagreement_score":0.0070837094,"about_ca_system_score_codex":0.00044933773,"about_ca_system_score_gemma":0.00044710017,"threshold_uncertainty_score":0.014084935},"labels":[],"label_agreement":null},{"id":"W1454784531","doi":"10.1016/j.foreco.2015.02.005","title":"Global progress toward sustainable forest management","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":233,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada","funders":"Natural Resources Canada","keywords":"Ecosystem services; Sustainability; Environmental resource management; Sustainable forest management; Business; Forest management; Goods and services; Forest ecology; Ecoforestry; Population; Natural resource economics; Intact forest landscape; Geography; Environmental planning; Ecosystem; Ecology; Economics; Forestry","score_opus":0.009792374530431266,"score_gpt":0.23976406219525678,"score_spread":0.2299716876648255,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1454784531","genre_codex":"other","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.017842337,0.06958741,0.016588088,0.06159006,0.0036071911,0.00013665504,0.0033880882,0.00084025133,0.82641995],"genre_scores_gemma":[0.4923312,0.19884737,0.06454322,0.022771142,0.0034474726,0.0004559313,0.011756358,0.00075165345,0.2050956],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.99889696,0.00018964337,0.000045548448,0.00014209417,0.0005268037,0.00019882245],"domain_scores_gemma":[0.9989247,0.00013059631,0.00012808708,0.00013626713,0.0004972233,0.0001829751],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0023658562,0.00063062797,0.00033302247,0.0011008522,0.0011358833,0.0041441275,0.00060810434,0.0011334108,0.026506392],"category_scores_gemma":[0.0026262454,0.00012785972,0.00030121568,0.002284786,0.001297219,0.004993383,0.0034096374,0.0023320331,0.008771564],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00003077856,0.000047364563,0.0056923404,0.0010207474,0.000044888195,0.000107286745,0.0011712501,0.001307328,0.0010851109,0.26550537,0.22723797,0.49674964],"study_design_scores_gemma":[0.0000028095665,0.000020087044,0.0038767708,0.00043736194,0.000009385875,0.00007777681,0.0005627209,0.00017552986,0.0001660736,0.032696076,0.9619648,0.000010572628],"about_ca_topic_score_codex":0.0049887174,"about_ca_topic_score_gemma":0.0052142655,"teacher_disagreement_score":0.026506392,"about_ca_system_score_codex":0.0014308256,"about_ca_system_score_gemma":0.005269536,"threshold_uncertainty_score":0.0886727},"labels":[],"label_agreement":null},{"id":"W1476776918","doi":"10.1016/j.foreco.2015.05.036","title":"Changes in forest production, biomass and carbon: Results from the 2015 UN FAO Global Forest Resource Assessment","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":287,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada","funders":"","keywords":"Carbon stock; Geography; Livelihood; Stock (firearms); Agroforestry; Agriculture; Forest inventory; Forest management; Climate change; Environmental protection; Forestry; Environmental science; Ecology; Biology","score_opus":0.012409862745869285,"score_gpt":0.24074484264870316,"score_spread":0.22833497990283388,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1476776918","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.67298466,0.005346053,0.0013447206,0.000952699,0.0001677649,0.000121994075,0.3025927,0.00020244764,0.016286954],"genre_scores_gemma":[0.7746731,0.0037465186,0.0022557334,0.0003187936,0.00007825438,0.000119045086,0.21623878,0.000059806505,0.0025100303],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99945277,0.000059197766,0.0000622718,0.000060998897,0.00027667158,0.000088039604],"domain_scores_gemma":[0.99860495,0.00016331255,0.0004520737,0.0000510069,0.00060021464,0.00012836885],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012940161,0.0006057685,0.00024426542,0.002906076,0.00019824468,0.00069398433,0.00029764388,0.0002454701,0.0008575664],"category_scores_gemma":[0.001926874,0.000119530625,0.00076412264,0.0058159325,0.00018793267,0.0011058274,0.0007197134,0.00031656123,0.00045851737],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024722487,0.00015620154,0.8331139,0.00082721905,0.0004244,0.00017957763,0.0006401145,0.0071885977,0.00052375055,0.0011532423,0.06625161,0.08929427],"study_design_scores_gemma":[0.000007695804,0.000046196976,0.97079504,0.00014594762,0.00009196211,0.00006865065,0.00073440035,0.0017317988,0.00043714128,0.00024568313,0.025668051,0.000027446948],"about_ca_topic_score_codex":0.10196364,"about_ca_topic_score_gemma":0.094127394,"teacher_disagreement_score":0.10196364,"about_ca_system_score_codex":0.0011865643,"about_ca_system_score_gemma":0.00090975955,"threshold_uncertainty_score":0.20274031},"labels":[],"label_agreement":null},{"id":"W1788803420","doi":"10.1016/j.foreco.2015.09.020","title":"On the relationship between saplings and ingrowth in northern hardwood stands","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts","funders":"Ministère des Forêts, de la Faune et des Parcs","keywords":"Beech; Yellow birch; Hardwood; Maple; Basal area; Aceraceae; Marsh; Biology; Botany; Forestry; Horticulture; Ecology; Geography; Wetland","score_opus":0.022922148765170486,"score_gpt":0.2279642937033132,"score_spread":0.2050421449381427,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1788803420","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996456,0.00006927195,0.000011612828,0.000012283583,0.0000012206085,4.929907e-7,0.000019773744,3.1230874e-7,0.00023948295],"genre_scores_gemma":[0.9996487,0.000041323645,0.000020889105,0.000008714762,0.0000031145503,7.631959e-7,0.000054296066,6.7631794e-7,0.00022149742],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996929,0.000112233196,0.00002240438,0.000056035446,0.000041235515,0.000075202275],"domain_scores_gemma":[0.9936551,0.004406505,0.0007050656,0.00015868721,0.0002719333,0.000802736],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.001501875,0.00014326534,0.00024377635,0.00046524475,0.00051017525,0.000614566,0.000532364,0.00041930782,0.0026809704],"category_scores_gemma":[0.003386478,0.00016149621,0.00019284488,0.00049598794,0.0008836283,0.000426972,0.00041771977,0.0004681908,0.00019047978],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028582083,0.00010279643,0.9959014,0.0000085868705,0.000037941398,0.00014619475,0.0004371351,0.00021203,0.00065870956,0.00013885828,0.00006066234,0.0020099455],"study_design_scores_gemma":[0.0000019781926,0.000048064943,0.9988187,0.000004267174,0.000010835006,0.00005314949,0.0006466033,0.00022098955,0.0000423906,0.00009014232,0.00006069758,0.0000020873183],"about_ca_topic_score_codex":0.028713519,"about_ca_topic_score_gemma":0.10100393,"teacher_disagreement_score":0.028713519,"about_ca_system_score_codex":0.00056320516,"about_ca_system_score_gemma":0.0005550996,"threshold_uncertainty_score":0.057092786},"labels":[],"label_agreement":null},{"id":"W1789546807","doi":"10.1016/j.foreco.2015.09.027","title":"A simple way to incorporate uncertainty and risk into forest harvest scheduling","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Centre of Excellence for Biosecurity Risk Analysis","keywords":"Computer science; Measure (data warehouse); Mathematical optimization; Scheduling (production processes); Forest management; Range (aeronautics); Probability distribution; Robust optimization; Uncertainty analysis; Sensitivity analysis; Function (biology); Sampling (signal processing); Data mining; Statistics; Mathematics; Environmental science; Simulation","score_opus":0.012476674423514097,"score_gpt":0.2376036891623002,"score_spread":0.2251270147387861,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1789546807","genre_codex":"methods","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":"methods","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0067929933,0.00004563047,0.9872044,0.00021985707,0.00018250306,0.00011963982,0.00017427074,0.00058621785,0.00467453],"genre_scores_gemma":[0.29073775,0.00013101417,0.69809896,0.00032580624,0.00016184233,0.00025314913,0.0002092806,0.00035946615,0.009722637],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9991351,0.00024544925,0.00007577387,0.00013401613,0.00031567298,0.00009411127],"domain_scores_gemma":[0.99689806,0.0016612097,0.00022899204,0.00057509606,0.00047657316,0.00016006343],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0022164488,0.0008489245,0.0009033813,0.00065725826,0.0007102997,0.002188516,0.0014170719,0.001156256,0.013686904],"category_scores_gemma":[0.0101420805,0.0007090708,0.0010168701,0.00091140147,0.00041270038,0.0030043144,0.0015542515,0.0025603825,0.001377135],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023108379,0.00032578452,0.0021499225,0.00010493251,0.00020197856,0.00017859394,0.00015589679,0.74266374,0.0052609253,0.056822546,0.006398742,0.18550587],"study_design_scores_gemma":[0.000048635924,0.00006933732,0.0005017951,0.00001832736,0.000053651213,0.000060995902,0.000019182124,0.94636077,0.0015708256,0.045961853,0.005293804,0.000040883126],"about_ca_topic_score_codex":0.0048330966,"about_ca_topic_score_gemma":0.010889347,"teacher_disagreement_score":0.013686904,"about_ca_system_score_codex":0.0008748644,"about_ca_system_score_gemma":0.0018976651,"threshold_uncertainty_score":0.045787215},"labels":[],"label_agreement":null},{"id":"W1876013295","doi":"10.1016/j.foreco.2015.08.029","title":"Variations in carbon concentration, sequestration and partitioning among Betula platyphylla provenances","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":33,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"Fundamental Research Funds for the Central Universities; Central University Basic Research Fund of China","keywords":"Provenance; Betula platyphylla; Biology; Bark (sound); Trait; Ecology; Ecosystem; Botany","score_opus":0.007996556179547837,"score_gpt":0.2060983260234166,"score_spread":0.19810176984386876,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1876013295","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999438,0.00006761534,0.00009064853,0.0000050956182,0.000002126006,0.0000029464018,0.00015019444,0.000003866514,0.0002395584],"genre_scores_gemma":[0.99927896,0.000023874114,0.000083886494,0.000011528044,0.0000018275848,0.000004652281,0.00018957119,0.000007492947,0.00039825874],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9996351,0.000077726785,0.000022708535,0.00016058005,0.000046582176,0.000057264446],"domain_scores_gemma":[0.999106,0.00025006235,0.00015709868,0.00010668421,0.00017618142,0.00020399569],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004724841,0.0002695912,0.00047519684,0.0014219554,0.000783612,0.00070330955,0.00044651667,0.00037421135,0.0012810023],"category_scores_gemma":[0.00066959584,0.00028203003,0.0002682329,0.00078613544,0.00062579266,0.00061162584,0.00067873945,0.0006132924,0.00032324722],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002866752,0.00032140838,0.4252955,0.00006585413,0.0003599193,0.00036063674,0.002171639,0.0004268282,0.56006324,0.0006327241,0.00012209383,0.007313359],"study_design_scores_gemma":[0.000010560154,0.00007420823,0.9974865,0.0000035703813,0.00002585843,0.00012636952,0.00027873064,0.0002100559,0.0014472988,0.000080739934,0.00024902757,0.00000712368],"about_ca_topic_score_codex":0.010691377,"about_ca_topic_score_gemma":0.019593703,"teacher_disagreement_score":0.010691377,"about_ca_system_score_codex":0.00064571697,"about_ca_system_score_gemma":0.00020868224,"threshold_uncertainty_score":0.021258295},"labels":[],"label_agreement":null},{"id":"W1895939043","doi":"10.1016/j.foreco.2015.10.035","title":"Cover density recovery after fire disturbance controls landscape aboveground biomass carbon in the boreal forest of eastern Canada","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":23,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Canadian Forest Service; Université Laval; Natural Resources Canada; Centre de Géomatique du Québec","funders":"Fonds Québécois de la Recherche sur la Nature et les Technologies","keywords":"Environmental science; Taiga; Boreal; Biomass (ecology); Disturbance (geology); Physical geography; Ecology; Scale (ratio); Fire regime; Forest inventory; Forest dynamics; Forestry; Spatial ecology; Atmospheric sciences; Geography; Forest management; Ecosystem; Agroforestry; Biology; Geology; Cartography","score_opus":0.004182457355980214,"score_gpt":0.17491189108329877,"score_spread":0.17072943372731855,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1895939043","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994286,0.000054011092,0.000019584948,0.000028124168,0.0000017563495,0.000001965788,0.000092685616,0.0000021822607,0.00037117035],"genre_scores_gemma":[0.9993155,0.000026790887,0.000024459072,0.000013075652,7.6475686e-7,0.0000012674703,0.000095825904,0.000002461223,0.0005198983],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997887,0.000019025892,0.0000067536484,0.000039292998,0.000033620112,0.00011256114],"domain_scores_gemma":[0.9990613,0.00012359345,0.00016654076,0.00004416528,0.0002172476,0.00038726206],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002676244,0.00015745519,0.00022976485,0.00048603595,0.0011256171,0.0008938092,0.0007001627,0.00036258748,0.0016916872],"category_scores_gemma":[0.0010761197,0.00023097445,0.00021336,0.0005216641,0.0007958778,0.00034349263,0.00042785818,0.00031654284,0.00014667891],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00044644653,0.00010166945,0.98595667,0.000012530894,0.000084595595,0.00013931106,0.00081612356,0.0008390702,0.0052758646,0.00014611066,0.0005877396,0.00559378],"study_design_scores_gemma":[0.0000021849223,0.000006258018,0.9991398,0.0000017378999,0.0000056452377,0.000013704506,0.00037011947,0.00030224363,0.00004810402,0.00001454446,0.00009319144,0.0000024954643],"about_ca_topic_score_codex":0.961811,"about_ca_topic_score_gemma":0.98860174,"teacher_disagreement_score":0.038188994,"about_ca_system_score_codex":0.007324893,"about_ca_system_score_gemma":0.0045014536,"threshold_uncertainty_score":0.076827765},"labels":[],"label_agreement":null},{"id":"W1954596954","doi":"10.1016/j.foreco.2015.03.039","title":"Protective functions and ecosystem services of global forests in the past quarter-century","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Land Use and Ecosystem Services","field":"Environmental Science","cited_by":190,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ecosystem services; Recreation; Forest ecology; Geography; Ecosystem; Forest management; Agroforestry; Environmental protection; Forestry; Ecology; Environmental science","score_opus":0.0058850660531505955,"score_gpt":0.19830130258969844,"score_spread":0.19241623653654785,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1954596954","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.95471877,0.010936335,0.00058097584,0.0014868586,0.000065249485,0.000014511969,0.00263514,0.000019837571,0.029542344],"genre_scores_gemma":[0.99403775,0.003424338,0.00061043847,0.00015277308,0.000024280267,0.0000059900985,0.0006401948,0.0000063724383,0.0010979299],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99973637,0.000041798117,0.000016941261,0.000039496896,0.00006338452,0.00010194366],"domain_scores_gemma":[0.9993765,0.000063822125,0.00022112962,0.000045185294,0.00017067768,0.00012267547],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048239197,0.00021380192,0.00013671606,0.0018384454,0.0006936937,0.001335629,0.00020886597,0.00020368567,0.0016652676],"category_scores_gemma":[0.0012051562,0.00007276615,0.0002265607,0.0034963572,0.0008509921,0.0015136964,0.0008115677,0.00044918634,0.00010281975],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000054567467,0.00002833543,0.86775666,0.00037958258,0.00009833147,0.00042243671,0.010063795,0.0011272479,0.00082514377,0.011135527,0.0050891903,0.10301914],"study_design_scores_gemma":[0.0000011065009,0.000015515936,0.95831233,0.00015867635,0.000024534085,0.00034295704,0.006691485,0.00025123407,0.00016989105,0.00079639204,0.03322511,0.000010752374],"about_ca_topic_score_codex":0.094193526,"about_ca_topic_score_gemma":0.21236135,"teacher_disagreement_score":0.094193526,"about_ca_system_score_codex":0.0017844508,"about_ca_system_score_gemma":0.0014029011,"threshold_uncertainty_score":0.18729049},"labels":[],"label_agreement":null},{"id":"W1963593508","doi":"10.1016/j.foreco.2013.10.025","title":"Does expected future landscape condition support proposed population objectives for boreal birds?","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":30,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Alberta Pacific Forest Industries; University of Alberta","funders":"U.S. Fish and Wildlife Service; American Chemical Society Petroleum Research Fund; University of Alberta; Alberta-Pacific Forest Industries","keywords":"Boreal; Taiga; Geography; Population; Ecology; Environmental resource management; Environmental science; Biology; Forestry; Demography","score_opus":0.0056687335730098804,"score_gpt":0.22225827533571194,"score_spread":0.21658954176270206,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1963593508","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9910425,0.00022564182,0.0010414436,0.0013062542,0.000057559708,0.000008048134,0.00043634733,0.000014849375,0.0058673206],"genre_scores_gemma":[0.9995716,0.000029017756,0.00015765589,0.000036083227,0.000018319868,0.0000013985091,0.00009838023,0.0000016616483,0.00008576712],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9995084,0.00015750992,0.00004402597,0.00012067999,0.0000749678,0.00009453483],"domain_scores_gemma":[0.99005497,0.0035391462,0.0035467315,0.00047083155,0.0015350956,0.00085317175],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0026215517,0.00023166301,0.00028010146,0.0005904774,0.00043235073,0.0015794766,0.00074433925,0.0011654227,0.0051299892],"category_scores_gemma":[0.012485007,0.0001822086,0.0004274179,0.00033941018,0.00062284374,0.001749289,0.00042927376,0.0005417296,0.00035712807],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021693684,0.00012475671,0.98468924,0.000043069598,0.00018459855,0.00013064257,0.000101579724,0.0035725422,0.00042157262,0.0011181567,0.0005624934,0.008834426],"study_design_scores_gemma":[0.000020644049,0.00022439132,0.9817837,0.00001913203,0.000081425314,0.00016200556,0.0005065927,0.014010302,0.00020288408,0.0021773751,0.0007986538,0.000012932251],"about_ca_topic_score_codex":0.0050690346,"about_ca_topic_score_gemma":0.018283226,"teacher_disagreement_score":0.0051299892,"about_ca_system_score_codex":0.000727653,"about_ca_system_score_gemma":0.0004398733,"threshold_uncertainty_score":0.017161548},"labels":[],"label_agreement":null},{"id":"W1964170215","doi":"10.1016/j.foreco.2010.11.023","title":"Do aggregated harvests with structural retention conserve the cavity web of old upland forest in the boreal plains?","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Directorate for Biological Sciences","keywords":"Woodpecker; Taiga; Ecology; Geography; Boreal; Agroforestry; Excavator; Forest management; Key (lock); Biology; Habitat","score_opus":0.006040105289331158,"score_gpt":0.19952864829685138,"score_spread":0.19348854300752022,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1964170215","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994161,0.000041568866,0.00004209775,0.000065693355,0.0000026801365,0.0000017859877,0.000014761854,0.0000016170453,0.00041373115],"genre_scores_gemma":[0.99973863,0.00002063801,0.000058478403,0.000018348825,0.00000725121,0.0000010276746,0.000013473744,7.134547e-7,0.0001413883],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976784,0.00004871289,0.000011829377,0.000043564876,0.00003318308,0.00009495627],"domain_scores_gemma":[0.99839634,0.00020781708,0.0008070102,0.00017182992,0.000081496124,0.00033545302],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008449286,0.000167196,0.00023729634,0.00027245784,0.00045524712,0.0008805341,0.0005779766,0.00049791805,0.0025630607],"category_scores_gemma":[0.0017272917,0.00018291952,0.00019710399,0.00025148827,0.0009115986,0.0009470197,0.00038101486,0.0002514034,0.00019502798],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00035324358,0.0004557619,0.9747795,0.000019776438,0.00016312745,0.00011334704,0.00021872378,0.0009461175,0.0023330445,0.00047904285,0.0003849812,0.019753411],"study_design_scores_gemma":[0.000013718974,0.00009640136,0.9981183,0.0000024991543,0.000020385727,0.00003747772,0.0003134947,0.0008089214,0.00007028018,0.00032245804,0.000193144,0.0000030545204],"about_ca_topic_score_codex":0.014244926,"about_ca_topic_score_gemma":0.08734341,"teacher_disagreement_score":0.014244926,"about_ca_system_score_codex":0.0005542881,"about_ca_system_score_gemma":0.00032246756,"threshold_uncertainty_score":0.028324008},"labels":[],"label_agreement":null},{"id":"W1964610740","doi":"10.1016/j.foreco.2012.09.025","title":"Seedling genetics and life history outweigh mycorrhizal network potential to improve conifer regeneration under drought","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Seedling; Biology; Provenance; Sowing; Agronomy; Botany; Horticulture","score_opus":0.014109670840940487,"score_gpt":0.18309873828414214,"score_spread":0.16898906744320166,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1964610740","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99936336,0.000028907618,0.00023438284,0.000030678762,0.0000030110712,0.0000025746901,0.00001503445,0.000007310615,0.00031470013],"genre_scores_gemma":[0.9989497,0.000023013272,0.00044520866,0.00003033988,0.000003866911,0.0000054846205,0.000028193976,0.0000057643188,0.00050858245],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9999037,0.000024811192,0.000004677547,0.000022776088,0.000017158025,0.000026911574],"domain_scores_gemma":[0.9996012,0.00010007255,0.00007070955,0.000024155695,0.00003295372,0.00017099225],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003964493,0.00017148176,0.00016017977,0.00015705213,0.00029899713,0.00033193745,0.00024446903,0.00016632846,0.002178786],"category_scores_gemma":[0.00040569832,0.00012555618,0.00007536116,0.00012400179,0.00018757857,0.00037423757,0.0002070345,0.000374935,0.00011004077],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0019760055,0.0012457841,0.122814044,0.000096321506,0.00008275629,0.00014975657,0.0002658249,0.0015409485,0.8387807,0.0010406652,0.000335386,0.03167181],"study_design_scores_gemma":[0.0001521369,0.001717717,0.9498602,0.000018586887,0.00015172946,0.00021550198,0.00044611865,0.00684666,0.03761777,0.0009296072,0.0020235078,0.000020417167],"about_ca_topic_score_codex":0.0023149543,"about_ca_topic_score_gemma":0.016080769,"teacher_disagreement_score":0.0023149543,"about_ca_system_score_codex":0.00040409243,"about_ca_system_score_gemma":0.00045012438,"threshold_uncertainty_score":0.007288754},"labels":[],"label_agreement":null},{"id":"W1964960332","doi":"10.1016/j.foreco.2014.07.005","title":"Shelterwood cutting in a boreal mixedwood stand: 10-year effects of the establishment cut on growth and mortality of merchantable residual trees","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Forêts, de la Faune et des Parcs","funders":"","keywords":"Abies balsamea; Balsam; Basal area; Canopy; Diameter at breast height; Clearcutting; Taiga; Hardwood; Forestry; Boreal; Biology; Crown (dentistry); Horticulture; Environmental science; Agronomy; Botany; Ecology; Geography","score_opus":0.00815361619947334,"score_gpt":0.19473143251985497,"score_spread":0.18657781632038165,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1964960332","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99984276,0.000024716113,0.000010841916,0.0000068111426,0.000003870021,0.0000011859335,0.000040055253,0.0000013105333,0.00006852662],"genre_scores_gemma":[0.9995183,0.000017881754,0.000041235508,0.000015437046,0.0000048000024,0.000002899163,0.00015166638,0.0000012278194,0.00024665115],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99972695,0.00007048945,0.000016795533,0.000049306425,0.000024761732,0.00011162696],"domain_scores_gemma":[0.9982638,0.00056124944,0.00024994233,0.00006816616,0.00008533944,0.0007715587],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00090139307,0.00043138594,0.00030813235,0.00031490476,0.0004024935,0.00051916775,0.00058781466,0.0006234299,0.001268678],"category_scores_gemma":[0.00082154165,0.00024165015,0.00048676576,0.00019092801,0.0005671838,0.0004957656,0.00037037086,0.00076872535,0.0001639999],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.017885905,0.004697387,0.93747187,0.000038497983,0.00029367392,0.0011036292,0.00056722126,0.00099664,0.02763563,0.00013320702,0.00055171986,0.008624538],"study_design_scores_gemma":[0.000026645415,0.0009042713,0.9978935,0.000002108038,0.00002679952,0.00006789438,0.00019325894,0.00042038487,0.00037886613,0.000015984866,0.00006330939,0.0000069539155],"about_ca_topic_score_codex":0.021045474,"about_ca_topic_score_gemma":0.08640063,"teacher_disagreement_score":0.021045474,"about_ca_system_score_codex":0.0006820594,"about_ca_system_score_gemma":0.0004433615,"threshold_uncertainty_score":0.041845977},"labels":[],"label_agreement":null},{"id":"W1965452087","doi":"10.1016/j.foreco.2004.03.043","title":"The effect of shelterwood harvesting and site preparation on eastern red-backed salamanders in white pine stands","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":47,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Forestry","funders":"University of Toronto; Sustainable Forestry Initiative; Nipissing University","keywords":"Understory; Abundance (ecology); Salamander; Environmental science; Disturbance (geology); Forest floor; Ecology; Coarse woody debris; Forestry; Habitat; Biology; Geography; Ecosystem; Canopy","score_opus":0.00763446757888434,"score_gpt":0.2020645064810139,"score_spread":0.19443003890212956,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1965452087","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997433,0.000031728603,0.000007707588,0.000011948066,0.0000016981583,0.0000015520425,0.000018868372,6.3356254e-7,0.00018254181],"genre_scores_gemma":[0.9996166,0.000023611643,0.000032770517,0.000023562088,0.000003960288,0.0000026500652,0.000047827147,0.000001204926,0.0002478663],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9994943,0.00016916006,0.0000316605,0.00007999194,0.000042975367,0.00018180169],"domain_scores_gemma":[0.9965274,0.0013428621,0.0008757559,0.00014303482,0.00016632682,0.00094462244],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010391561,0.00022267818,0.00020349739,0.00037910382,0.00070253754,0.0009009766,0.0006368294,0.00049948506,0.0028733544],"category_scores_gemma":[0.002516227,0.00019814527,0.00035511566,0.00027209727,0.00088310434,0.00040294265,0.0005923759,0.00045979195,0.00021580822],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0025133758,0.00080344186,0.9835527,0.000019238729,0.00015588493,0.00029111782,0.0004731076,0.0004453992,0.0055503612,0.00014959187,0.0001740854,0.0058716824],"study_design_scores_gemma":[0.0000069843163,0.00020530642,0.99904865,0.000002366368,0.000014653744,0.00003449216,0.00035601418,0.00008178029,0.00015767336,0.00002412957,0.000065876695,0.0000020692553],"about_ca_topic_score_codex":0.02245784,"about_ca_topic_score_gemma":0.12018639,"teacher_disagreement_score":0.02245784,"about_ca_system_score_codex":0.00080166635,"about_ca_system_score_gemma":0.0009426137,"threshold_uncertainty_score":0.04465425},"labels":[],"label_agreement":null},{"id":"W1966522073","doi":"10.1016/j.foreco.2014.03.051","title":"Branch models for white spruce (Picea glauca (Moench) Voss) in naturally regenerated stands","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval; University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Crown (dentistry); Mathematics; Botany; Basal area; Horticulture; Diameter at breast height; Boreal; Biology; Geometry; Ecology; Composite material; Materials science","score_opus":0.005590138938411053,"score_gpt":0.1991278531663851,"score_spread":0.19353771422797403,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1966522073","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.96873504,0.00089287834,0.023663009,0.00041559522,0.000051317493,0.000034415207,0.0010318337,0.00038046035,0.0047955075],"genre_scores_gemma":[0.98972356,0.00019502391,0.0045575146,0.00004459901,0.000023305927,0.000033667668,0.0007133566,0.00015683124,0.0045520435],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9996717,0.00017081214,0.000014267498,0.000053674765,0.00002304256,0.00006655933],"domain_scores_gemma":[0.99359244,0.0052964077,0.0002233194,0.0001481616,0.00028633457,0.00045346684],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0034072401,0.00075379485,0.0010175718,0.001084151,0.0011136613,0.0015021996,0.002134105,0.002060492,0.004014116],"category_scores_gemma":[0.004152525,0.0007416677,0.0013798526,0.00077106984,0.0007687565,0.0014047065,0.00063185283,0.001431749,0.00065033627],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0000979818,0.000033021854,0.0040141093,0.000017308015,0.000023340821,0.000044434233,0.000036719877,0.99197704,0.00011754811,0.001973508,0.00037089517,0.0012941173],"study_design_scores_gemma":[0.000010752856,0.000007451639,0.00046094248,0.0000032625283,0.0000063678553,0.0000058451114,0.000013722298,0.9987276,0.000025770394,0.0006903711,0.0000441916,0.0000038181174],"about_ca_topic_score_codex":0.05236331,"about_ca_topic_score_gemma":0.056661665,"teacher_disagreement_score":0.05236331,"about_ca_system_score_codex":0.0021045853,"about_ca_system_score_gemma":0.0011535727,"threshold_uncertainty_score":0.104117036},"labels":[],"label_agreement":null},{"id":"W1966732857","doi":"10.1016/j.foreco.2009.09.048","title":"Spatial point-pattern analysis for detecting density-dependent competition in a boreal chronosequence of Alberta","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":94,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Chronosequence; Interspecific competition; Boreal; Ecology; Competition (biology); Taiga; Intraspecific competition; Ecological succession; Deciduous; Biology; Geography","score_opus":0.005908980359622083,"score_gpt":0.22074108392448577,"score_spread":0.21483210356486368,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1966732857","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984333,0.000113594724,0.0007540947,0.000008418919,0.000002969707,0.000012191415,0.0002667467,0.000022053558,0.00038662058],"genre_scores_gemma":[0.99516875,0.000065674896,0.00400363,0.000006562884,0.0000025202903,0.0000138212845,0.00039969667,0.000006476485,0.00033292273],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99975353,0.00004696348,0.000016510543,0.000055443576,0.00008338495,0.00004402442],"domain_scores_gemma":[0.99895155,0.00024930603,0.00012287288,0.000048613456,0.00050177355,0.00012578744],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006731068,0.00029400366,0.00034255738,0.0022193075,0.0008583414,0.0006133573,0.00085545913,0.0003356111,0.00072966394],"category_scores_gemma":[0.0016617673,0.00021034648,0.00020080534,0.0018721991,0.0003259022,0.00026951332,0.00038001637,0.00016410188,0.000117236625],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00044901005,0.00008464615,0.9639213,0.0000392785,0.000118358264,0.0001735955,0.00030397798,0.0028984547,0.00974308,0.00012614319,0.00040356853,0.021738648],"study_design_scores_gemma":[0.00001759323,0.000035376444,0.9885445,0.0000054364073,0.000041453037,0.00015873033,0.00031785617,0.010150122,0.00043074612,0.000053213353,0.00023275467,0.000012285203],"about_ca_topic_score_codex":0.7342163,"about_ca_topic_score_gemma":0.9068681,"teacher_disagreement_score":0.26578373,"about_ca_system_score_codex":0.0015625122,"about_ca_system_score_gemma":0.0019402752,"threshold_uncertainty_score":0.53469795},"labels":[],"label_agreement":null},{"id":"W1966841192","doi":"10.1016/j.foreco.2006.02.023","title":"Post-harvest patterns of carbon dioxide production, methane uptake and nitrous oxide production in a Pinus radiata D. Don plantation","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":73,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Queen's University","funders":"","keywords":"Environmental science; Pinus radiata; Carbon dioxide; Nitrous oxide; Agronomy; Slash Pine; Soil water; Slash (logging); Litter; Carbon sequestration; Andisol; Animal science; Botany; Biology; Ecology; Soil science; Pinus <genus>","score_opus":0.006876932778152335,"score_gpt":0.19331457739954813,"score_spread":0.1864376446213958,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1966841192","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997758,0.000010128276,0.000029979085,0.000004259475,5.344319e-7,0.0000014526256,0.00007947717,0.0000020856576,0.00009637285],"genre_scores_gemma":[0.999108,0.000011614698,0.0000655329,0.000010295255,6.521158e-7,0.0000064544133,0.00022686788,0.0000018049661,0.0005688743],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999373,0.000007596416,0.0000027682047,0.000026217047,0.000008066209,0.000017986282],"domain_scores_gemma":[0.9997825,0.000044259505,0.000047424142,0.000012603761,0.00003167824,0.00008152254],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00011262101,0.00017853054,0.00016950269,0.0003854333,0.00031219734,0.0002661681,0.00031592234,0.00023637639,0.00077165675],"category_scores_gemma":[0.00013190557,0.00018744303,0.00011552913,0.00021828075,0.00038019667,0.00027998586,0.00022037972,0.0003282577,0.0001713536],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0029771137,0.0011335376,0.5287292,0.000057474062,0.000071980976,0.00064432475,0.0009665001,0.00068968517,0.45515278,0.00023290119,0.0003301426,0.009014346],"study_design_scores_gemma":[0.000007991364,0.00022193526,0.9953667,9.714773e-7,0.000007074685,0.000095490774,0.00024587277,0.00041375868,0.0034795022,0.000025532696,0.00012843024,0.0000067761903],"about_ca_topic_score_codex":0.014670262,"about_ca_topic_score_gemma":0.036867205,"teacher_disagreement_score":0.014670262,"about_ca_system_score_codex":0.000604436,"about_ca_system_score_gemma":0.00019271456,"threshold_uncertainty_score":0.029169738},"labels":[],"label_agreement":null},{"id":"W1967168294","doi":"10.1016/s0378-1127(01)00577-1","title":"Post-fire vegetation of the Montane natural subregion of Jasper National Park","year":2002,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":29,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Northern Alberta Institute of Technology","funders":"","keywords":"Understory; Pinus contorta; Shrub; Vegetation (pathology); Environmental science; Geography; National park; Plant community; Ecology; Forestry; Canopy; Ecological succession; Biology","score_opus":0.004094812287130516,"score_gpt":0.17560911405010726,"score_spread":0.17151430176297675,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1967168294","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996996,0.000021039239,0.000009333293,0.000009431376,7.097527e-7,8.6171497e-7,0.00010205509,7.8096264e-7,0.00015624832],"genre_scores_gemma":[0.99919325,0.000042268166,0.00006037245,0.000010351701,0.0000023183816,0.000003361661,0.00031581873,9.986471e-7,0.00037143845],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990284,0.000027131626,0.0000053616945,0.000018893516,0.000015925265,0.000029816369],"domain_scores_gemma":[0.9996259,0.000059394533,0.000094625335,0.000020769208,0.000058984897,0.00014024651],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000156677,0.00011297121,0.00010681318,0.00045600737,0.00057718856,0.0003275181,0.00026991524,0.00016306757,0.0010756534],"category_scores_gemma":[0.00042453862,0.00011687007,0.0000838077,0.0003949461,0.00024214278,0.0003242299,0.00037505475,0.00017648647,0.00014771376],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024294696,0.00008576132,0.99008244,0.000017863977,0.00004733264,0.00031904515,0.0010170477,0.00014739287,0.0029412457,0.0000918645,0.00028642995,0.004720602],"study_design_scores_gemma":[0.0000016335308,0.000013106184,0.99908066,0.0000012125024,0.000004789393,0.000095575895,0.00045773573,0.00010589956,0.0000727778,0.000008710391,0.00015706189,8.744103e-7],"about_ca_topic_score_codex":0.042585675,"about_ca_topic_score_gemma":0.277485,"teacher_disagreement_score":0.9574143,"about_ca_system_score_codex":0.00047680555,"about_ca_system_score_gemma":0.00040250306,"threshold_uncertainty_score":0.08467561},"labels":[],"label_agreement":null},{"id":"W1967191608","doi":"10.1016/s0378-1127(00)00412-6","title":"Nutrient inputs in litterfall and rainwater fluxes in 27-year old red, black and white spruce plantations in Central Ontario, Canada","year":2000,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":47,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia; University of Guelph","funders":"University of Guelph","keywords":"Throughfall; Black spruce; Stemflow; Plant litter; Nutrient; Litter; Nutrient cycle; Forestry; Environmental science; Ecology; Botany; Geography; Biology; Taiga; Canopy","score_opus":0.003067175221576491,"score_gpt":0.1657713546095141,"score_spread":0.1627041793879376,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1967191608","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990798,0.00008628538,0.0000189179,0.000020901083,0.0000013059478,0.0000042330344,0.00044188937,0.0000019768556,0.00034468048],"genre_scores_gemma":[0.9978809,0.00010807603,0.00009075986,0.00001811455,0.000001042465,0.0000054802263,0.00039628084,0.0000025928266,0.0014966963],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983275,0.000010698394,0.0000109690745,0.000036024707,0.00004032902,0.000069263704],"domain_scores_gemma":[0.9994753,0.00006677945,0.00008208656,0.000009572217,0.00019938448,0.00016699203],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020232766,0.00021095989,0.0002987421,0.00052348844,0.0017410027,0.00094729406,0.0006003235,0.00033911955,0.0010723149],"category_scores_gemma":[0.0005600813,0.00032161464,0.00023740315,0.0007390882,0.00054918806,0.00033270734,0.00048084944,0.00026405172,0.00018318379],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00042993776,0.000059152397,0.9849567,0.000044389875,0.000055972218,0.00025094603,0.0029189726,0.00054055767,0.005352872,0.00015205557,0.00065578875,0.0045827804],"study_design_scores_gemma":[0.000003939191,0.000006967214,0.998326,0.0000043503355,0.000007856238,0.000025790756,0.0010028527,0.0002281345,0.0001226728,0.000014934347,0.0002533053,0.0000031844584],"about_ca_topic_score_codex":0.9862558,"about_ca_topic_score_gemma":0.9964631,"teacher_disagreement_score":0.014579071,"about_ca_system_score_codex":0.014579071,"about_ca_system_score_gemma":0.007898633,"threshold_uncertainty_score":0.10577905},"labels":[],"label_agreement":null},{"id":"W1967464385","doi":"10.1016/s0378-1127(00)00594-6","title":"Fire mapping in a northern boreal forest: assessing AVHRR/NDVI methods of change detection","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":48,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute","funders":"Ministry of Natural Resources","keywords":"Normalized Difference Vegetation Index; Advanced very-high-resolution radiometer; Environmental science; Remote sensing; Taiga; Change detection; Vegetation (pathology); Climate change; Physical geography; Satellite; Geography; Ecology; Forestry","score_opus":0.02309969541799476,"score_gpt":0.2749208560997704,"score_spread":0.2518211606817756,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1967464385","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99854714,0.00012504081,0.00081815704,0.000023973354,0.000005247077,0.000026053347,0.00008137236,0.000019642763,0.00035324247],"genre_scores_gemma":[0.9923948,0.00008904927,0.0070469137,0.000019768042,0.000008434887,0.000024282572,0.00015226814,0.000009087477,0.0002553625],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9988575,0.0005206472,0.00007357404,0.00017571064,0.00027390977,0.000098661694],"domain_scores_gemma":[0.99568295,0.0024543167,0.0005048813,0.00019452847,0.0009046859,0.00025863186],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0042542014,0.0006620715,0.0003959334,0.0009389892,0.0007526342,0.00093281944,0.00081902783,0.00074357993,0.00033557834],"category_scores_gemma":[0.006426041,0.0003271218,0.00033132223,0.0006686351,0.00038857607,0.0013141073,0.0004213947,0.00028474728,0.000090069465],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0029081928,0.0010538604,0.8843141,0.000136665,0.00021226662,0.00021608897,0.0009410076,0.01329037,0.011227255,0.00019295255,0.0003875082,0.08511986],"study_design_scores_gemma":[0.00010735997,0.0006509498,0.9105678,0.00001512508,0.00013848173,0.00028966492,0.0007530797,0.08345964,0.0033917415,0.00018203564,0.00040790095,0.000036207373],"about_ca_topic_score_codex":0.070151925,"about_ca_topic_score_gemma":0.15252417,"teacher_disagreement_score":0.070151925,"about_ca_system_score_codex":0.0010102527,"about_ca_system_score_gemma":0.00065003085,"threshold_uncertainty_score":0.1394872},"labels":[],"label_agreement":null},{"id":"W1968189569","doi":"10.1016/j.foreco.2004.10.048","title":"Effects of retention harvests on structure of old-growth Pinus strobus L. stands in Ontario","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":31,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Dalhousie University; Ontario Forest Research Institute; University of Toronto","funders":"","keywords":"Snag; Basal area; Coarse woody debris; Logging; Wildlife; Forestry; Habitat; Litter; Thinning; Silviculture; Ecosystem; Biology; Forest management; Forest ecology; Ecology; Environmental science; Clearcutting; Forest floor; Agroforestry; Geography","score_opus":0.007119596047078465,"score_gpt":0.16891478664260184,"score_spread":0.16179519059552339,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1968189569","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994542,0.00003536787,0.000017647335,0.000021721751,0.0000010841884,0.0000022859083,0.0001001662,0.000001492926,0.0003659646],"genre_scores_gemma":[0.99898523,0.000029743871,0.000029981127,0.000010484595,0.000001005825,0.000002703172,0.00012190869,0.0000013991715,0.0008176742],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977773,0.000024554589,0.000009937977,0.0000440186,0.000052492087,0.00009131458],"domain_scores_gemma":[0.9990163,0.00010805401,0.00021230205,0.000041277108,0.00023028867,0.00039168342],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027836277,0.00012345082,0.00017653948,0.0004020084,0.0010293768,0.0005103165,0.0004531613,0.00017550292,0.0012389654],"category_scores_gemma":[0.00076504034,0.00017190955,0.00014847984,0.00039575755,0.0007611739,0.00029693046,0.0005212392,0.0001912651,0.00015579788],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0008243821,0.000090584275,0.98001784,0.000024545483,0.00007038421,0.00023718204,0.0021185698,0.0004048837,0.007670592,0.0001848612,0.0007375738,0.007618681],"study_design_scores_gemma":[0.000004468648,0.000017992466,0.9991742,0.0000019478564,0.0000048044258,0.000010774646,0.00042933528,0.00008850005,0.00006129699,0.00001251818,0.00019226053,0.0000018583312],"about_ca_topic_score_codex":0.87583965,"about_ca_topic_score_gemma":0.98479307,"teacher_disagreement_score":0.12416035,"about_ca_system_score_codex":0.008257298,"about_ca_system_score_gemma":0.0041141436,"threshold_uncertainty_score":0.24978304},"labels":[],"label_agreement":null},{"id":"W1968998782","doi":"10.1016/j.foreco.2006.08.335","title":"Water table changes following precommercial thinning on post-harvest drained wetlands","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":49,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Thinning; Water table; Evapotranspiration; Environmental science; Wetland; Hydrology (agriculture); Canopy; Ditch; Vegetation (pathology); Soil water; Drainage; Basal area; Forestry; Soil science; Ecology; Geology; Groundwater; Geography; Biology","score_opus":0.00514787931718835,"score_gpt":0.19882214948516608,"score_spread":0.19367427016797772,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1968998782","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997017,0.000007730154,0.000012159846,0.0000043761797,0.0000015682025,0.0000015834001,0.00008774675,0.0000015645843,0.00018163817],"genre_scores_gemma":[0.999419,0.00001130631,0.00002041541,0.0000045892966,0.0000016893853,0.000002544957,0.00017542086,0.0000011483762,0.00036397178],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999341,0.000008015679,0.0000044528365,0.000011787624,0.00001325313,0.00002844142],"domain_scores_gemma":[0.9994234,0.000117282034,0.0001509212,0.000026096961,0.00011289815,0.0001693235],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012515372,0.00010567275,0.00022437423,0.00030601633,0.0003470064,0.00034826098,0.00018191159,0.0002449595,0.0014150882],"category_scores_gemma":[0.0008712765,0.00009903528,0.00015123333,0.0003178989,0.00020320482,0.00027394725,0.00022750384,0.00027898527,0.00015988281],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0067536137,0.0007469782,0.9507933,0.000028897617,0.00009103881,0.00059010845,0.00059215847,0.0005410584,0.029695617,0.000052913754,0.0004711544,0.00964326],"study_design_scores_gemma":[0.0000037171458,0.00007696814,0.9992236,9.1269357e-7,0.000006564297,0.000019270261,0.00007397805,0.00011004914,0.0004328889,0.000008823798,0.000041821404,0.0000015383496],"about_ca_topic_score_codex":0.027698271,"about_ca_topic_score_gemma":0.07323918,"teacher_disagreement_score":0.027698271,"about_ca_system_score_codex":0.00044270544,"about_ca_system_score_gemma":0.00032939127,"threshold_uncertainty_score":0.055074096},"labels":[],"label_agreement":null},{"id":"W1970075016","doi":"10.1016/j.foreco.2007.07.016","title":"Spatiotemporal patterns of mortality in declining balsam fir and spruce stands","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":40,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"U.S. Forest Service","keywords":"Abies balsamea; Spruce budworm; Balsam; Choristoneura fumiferana; Dead tree; Competition (biology); Forestry; Biology; Ecology; Dendrochronology; Geography; Botany; Lepidoptera genitalia; Tortricidae","score_opus":0.015289862022413368,"score_gpt":0.2540261922784959,"score_spread":0.2387363302560825,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1970075016","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99981135,0.000027225144,0.000018821043,0.0000069328803,5.2128826e-7,5.720603e-7,0.000057053585,0.0000010241838,0.000076498676],"genre_scores_gemma":[0.9996996,0.00001932537,0.000024755553,0.000003573658,0.0000011879118,0.0000014638345,0.00012481176,6.7238807e-7,0.00012470064],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998964,0.000021188454,0.000009545112,0.000028112334,0.0000110289675,0.00003361309],"domain_scores_gemma":[0.9989417,0.00024866816,0.00038253848,0.00006790939,0.00016631355,0.00019284505],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005379974,0.00012726529,0.00016146725,0.0006736462,0.0003512899,0.00037301212,0.00029653244,0.00027545347,0.00088576815],"category_scores_gemma":[0.0014018487,0.00012625348,0.00013313648,0.0004374793,0.00031163977,0.00032539674,0.00027835427,0.00023263448,0.00014714118],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025347993,0.000043710465,0.99481684,0.000006507473,0.000025236326,0.000051045914,0.00045797016,0.00015047277,0.0021572881,0.000056729074,0.0000856367,0.00189505],"study_design_scores_gemma":[0.0000014644817,0.000023446459,0.9994236,0.0000012272291,0.0000044792027,0.000042629334,0.0001981251,0.00019288197,0.000055803866,0.000016035045,0.000039042512,0.0000012783612],"about_ca_topic_score_codex":0.024323631,"about_ca_topic_score_gemma":0.07406674,"teacher_disagreement_score":0.024323631,"about_ca_system_score_codex":0.0004503602,"about_ca_system_score_gemma":0.00019951594,"threshold_uncertainty_score":0.048364103},"labels":[],"label_agreement":null},{"id":"W1970285096","doi":"10.1016/j.foreco.2015.03.031","title":"Soil organic layer thickness influences the establishment and growth of trembling aspen (Populus tremuloides) in boreal forests","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"Université du Québec à Montréal","keywords":"Taiga; Environmental science; Black spruce; Diameter at breast height; Germination; Seedling; Agronomy; Abundance (ecology); Botany; Biology; Ecology","score_opus":0.013791332755745674,"score_gpt":0.23115283024953384,"score_spread":0.21736149749378816,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1970285096","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998828,0.000023336319,0.000010296608,0.000002280116,8.6397796e-7,4.1963972e-7,0.000015644911,7.950227e-7,0.000063481464],"genre_scores_gemma":[0.99979645,0.000015943677,0.000020997759,0.000005390891,0.00000160183,8.3750587e-7,0.000042632877,0.0000010712886,0.000115125025],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989736,0.000024685827,0.000007878905,0.000027166016,0.000014734846,0.000028104854],"domain_scores_gemma":[0.99917597,0.00021574603,0.00027096074,0.000036518417,0.00004316258,0.00025762757],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003324987,0.0002558693,0.00011780647,0.00031187397,0.00024745762,0.00044707416,0.00023564775,0.000237886,0.0008318714],"category_scores_gemma":[0.0005435274,0.00021719748,0.00018101791,0.0001618517,0.00037375055,0.00037658203,0.0002503001,0.00024629507,0.00014057847],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011200573,0.00019047974,0.94532394,0.000020892263,0.00010898066,0.00025858247,0.00021235552,0.00026322703,0.04986601,0.000052484585,0.0000798998,0.00250312],"study_design_scores_gemma":[0.0000017692245,0.00003540059,0.9995654,5.673314e-7,0.0000060340735,0.000035445624,0.000049584054,0.00010181528,0.0001734305,0.0000076290644,0.000021682688,0.0000011624123],"about_ca_topic_score_codex":0.007827834,"about_ca_topic_score_gemma":0.025366465,"teacher_disagreement_score":0.007827834,"about_ca_system_score_codex":0.00029274504,"about_ca_system_score_gemma":0.0001975066,"threshold_uncertainty_score":0.015564561},"labels":[],"label_agreement":null},{"id":"W1971137027","doi":"10.1016/j.foreco.2014.07.013","title":"Effects of topography and thickness of organic layer on productivity of black spruce boreal forests of the Canadian Clay Belt region","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":66,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"Natural Sciences and Engineering Research Council of Canada; Fonds Québécois de la Recherche sur la Nature et les Technologies; Université du Québec à Montréal","keywords":"Black spruce; Taiga; Productivity; Environmental science; Boreal; Soil science; Physical geography; Scale (ratio); Spatial ecology; Atmospheric sciences; Ecology; Geology; Geography; Forestry; Cartography; Biology","score_opus":0.0037174194118669767,"score_gpt":0.1819067333829003,"score_spread":0.17818931397103333,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1971137027","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99929357,0.00011782889,0.000017904285,0.000021528498,0.0000019347474,0.0000024634066,0.00017081952,0.0000027070175,0.00037132483],"genre_scores_gemma":[0.9995185,0.000060700502,0.000032010477,0.000011482917,0.0000015200378,0.0000017559264,0.00015733301,0.000001882496,0.00021484825],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99955505,0.00006684997,0.000020806789,0.000074719115,0.000081488826,0.00020095032],"domain_scores_gemma":[0.9987992,0.00018005338,0.0001966509,0.00005044194,0.00030734032,0.00046625794],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004986915,0.00032176462,0.00030249573,0.0012054858,0.0014362248,0.0010420082,0.0007918261,0.00032484037,0.001357013],"category_scores_gemma":[0.0011688932,0.0002470187,0.0004105825,0.0011764198,0.0012533624,0.0003323846,0.0007020717,0.00029310698,0.00011964706],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025176042,0.000033533815,0.9920963,0.000018706594,0.00013977209,0.00014037843,0.0006272692,0.00029002907,0.0030391046,0.00007895548,0.00021187798,0.0030721165],"study_design_scores_gemma":[0.0000016620901,0.0000051952134,0.9994923,0.0000021191092,0.000007918076,0.000016681317,0.00030392237,0.00006492552,0.00002844906,0.0000058549053,0.00006850593,0.000002396845],"about_ca_topic_score_codex":0.9436121,"about_ca_topic_score_gemma":0.98607266,"teacher_disagreement_score":0.0563879,"about_ca_system_score_codex":0.0058424226,"about_ca_system_score_gemma":0.005238151,"threshold_uncertainty_score":0.11343992},"labels":[],"label_agreement":null},{"id":"W1971774065","doi":"10.1016/j.foreco.2008.02.008","title":"Population dynamics of tree species in southern Quebec, Canada: 1970–2005","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":53,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministère des Ressources naturelles et des Forêts","funders":"","keywords":"Disturbance (geology); Forest dynamics; Ecology; Basal area; Forest ecology; Abundance (ecology); Geography; Deciduous; Forest management; Spruce budworm; Abies balsamea; Population; Ecosystem; Environmental change; Environmental science; Biology; Climate change; Balsam","score_opus":0.00419693792534235,"score_gpt":0.1643589056665915,"score_spread":0.16016196774124916,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1971774065","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97670346,0.0035157732,0.00036230765,0.0005701687,0.000039691142,0.000030076844,0.014006642,0.00006104759,0.004710685],"genre_scores_gemma":[0.9846667,0.0011207585,0.0004472676,0.00014721946,0.00001207551,0.00001692466,0.0046025,0.000011396723,0.008975179],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976116,0.000014597597,0.000014748528,0.000048010243,0.00006288712,0.00009857228],"domain_scores_gemma":[0.99879456,0.00006631404,0.00017012746,0.000027806946,0.00066560734,0.0002755328],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037839558,0.0002918858,0.00027347906,0.0016424897,0.0017521824,0.0008934409,0.0010973586,0.0005139334,0.0032726044],"category_scores_gemma":[0.0009874438,0.0002236039,0.00038712888,0.0030302585,0.0005370283,0.00045586374,0.00036564737,0.00059548765,0.0003600058],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021681633,0.000059463848,0.95002687,0.00015424016,0.0002578997,0.00020902033,0.0018044404,0.0022740292,0.0008405648,0.00061843265,0.012229779,0.031308435],"study_design_scores_gemma":[0.000007971572,0.000011463463,0.990655,0.00004394826,0.000035040946,0.000057660633,0.0005764458,0.0013357449,0.000107739455,0.000021673546,0.0071347933,0.0000124166445],"about_ca_topic_score_codex":0.99817705,"about_ca_topic_score_gemma":0.99929404,"teacher_disagreement_score":0.03009065,"about_ca_system_score_codex":0.03009065,"about_ca_system_score_gemma":0.01622728,"threshold_uncertainty_score":0.218324},"labels":[],"label_agreement":null},{"id":"W1972296207","doi":"10.1016/j.foreco.2006.08.332","title":"Net ecosystem CO2 exchange for moss and lichen dominated forest floors of old-growth sub-boreal spruce forests in central British Columbia, Canada","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; Canadian Foundation for Climate and Atmospheric Sciences","keywords":"Forest floor; Moss; Lichen; Taiga; Environmental science; Microclimate; Bryophyte; Snag; Boreal; Subarctic climate; Ecology; Forest ecology; Ecosystem; Litter; Biology","score_opus":0.0026748262212936444,"score_gpt":0.16660990826396796,"score_spread":0.16393508204267432,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1972296207","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99635327,0.00034764034,0.000028717086,0.00004440508,0.0000043024,0.0000069317366,0.0021930977,0.0000071326335,0.0010145371],"genre_scores_gemma":[0.9971942,0.00018296514,0.00005552502,0.000021943331,0.0000014101782,0.0000044579897,0.0008772705,0.0000041845724,0.0016580765],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997975,0.000015356754,0.000014392433,0.000047959362,0.000046969933,0.000077746234],"domain_scores_gemma":[0.9991835,0.000059709782,0.00007683026,0.000020916115,0.00040997582,0.0002490526],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002413676,0.00031751636,0.00039403434,0.001283385,0.0019649682,0.0011984555,0.0008969987,0.00034906334,0.0022588582],"category_scores_gemma":[0.00070590316,0.00030558713,0.00029315782,0.0018291798,0.00053351914,0.0004091359,0.00055533834,0.0003593022,0.0003134909],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003954335,0.000042783377,0.9842539,0.00007443266,0.00014373896,0.0002614389,0.0014648046,0.0007066232,0.0018241137,0.0001637863,0.002083669,0.008585305],"study_design_scores_gemma":[0.000005007347,0.0000034180114,0.99824667,0.000011269647,0.000018203255,0.00003317208,0.000905296,0.00028991362,0.00007126489,0.00001591072,0.00039319842,0.000006618182],"about_ca_topic_score_codex":0.9955909,"about_ca_topic_score_gemma":0.9988701,"teacher_disagreement_score":0.016376643,"about_ca_system_score_codex":0.016376643,"about_ca_system_score_gemma":0.008603627,"threshold_uncertainty_score":0.11882144},"labels":[],"label_agreement":null},{"id":"W1972520990","doi":"10.1016/j.foreco.2007.10.045","title":"Canada warbler (Wilsonia canadensis) breeding ecology in young forest stands compared to a red maple (Acer rubrum) swamp","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Avian ecology and behavior","field":"Environmental Science","cited_by":20,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Swamp; Warbler; Ecology; Aceraceae; Geography; Maple; Biology; Forestry; Habitat","score_opus":0.011518421596553188,"score_gpt":0.20600813445013688,"score_spread":0.19448971285358368,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1972520990","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99980277,0.000018076076,0.0000051044735,0.0000027190179,0.0000010430184,9.839557e-7,0.000025098014,6.4134406e-7,0.00014364667],"genre_scores_gemma":[0.99941874,0.000021082209,0.000023234417,0.00000895168,6.4590785e-7,0.0000016400226,0.00009702358,0.0000011985327,0.0004275404],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99988794,0.000011627102,0.0000035477842,0.000024315632,0.000022520902,0.00005005667],"domain_scores_gemma":[0.99927026,0.0000416325,0.00009418857,0.000015092074,0.00011624226,0.00046257715],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016936586,0.00020282465,0.00021414772,0.0006553415,0.00082494307,0.0004843019,0.00025111614,0.0001455372,0.0010695262],"category_scores_gemma":[0.00037315564,0.00015464108,0.00010555813,0.00038495188,0.000522031,0.0002276996,0.0003040855,0.00020317033,0.00013872804],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014375035,0.00034359357,0.9665082,0.000022744347,0.00007566216,0.00046972674,0.002819172,0.00022248147,0.021641115,0.0001438322,0.0004806924,0.0058352887],"study_design_scores_gemma":[0.0000031974023,0.000045563087,0.9990808,0.000001309988,0.000005488716,0.0000433643,0.00057147525,0.000053131764,0.00011100912,0.0000051265365,0.000077921795,0.0000016686784],"about_ca_topic_score_codex":0.5327224,"about_ca_topic_score_gemma":0.88864076,"teacher_disagreement_score":0.4672776,"about_ca_system_score_codex":0.001965576,"about_ca_system_score_gemma":0.0014731172,"threshold_uncertainty_score":0.94005895},"labels":[],"label_agreement":null},{"id":"W1973102477","doi":"10.1016/j.foreco.2013.10.037","title":"An objective classification of largewood in streams","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Computer science; Feature (linguistics); Class (philosophy); Field (mathematics); Land cover; Data mining; Ecology; Artificial intelligence; Mathematics; Land use","score_opus":0.011343406576369964,"score_gpt":0.20046558604506842,"score_spread":0.18912217946869847,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1973102477","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9450529,0.0005257802,0.03750506,0.00013341037,0.000074998185,0.00030361555,0.0028663878,0.00013678787,0.013401021],"genre_scores_gemma":[0.96568364,0.00022888102,0.026753826,0.00003204052,0.000056000656,0.00014496985,0.0027878336,0.000050489234,0.004262338],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99872786,0.00023384274,0.00019347772,0.00021188562,0.00040476874,0.00022814756],"domain_scores_gemma":[0.9970229,0.00059905945,0.0006417565,0.00018781472,0.001162547,0.0003858304],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0017743913,0.00048520137,0.00048245591,0.0043160543,0.0007855847,0.0030641044,0.0006129727,0.0005209258,0.0033552358],"category_scores_gemma":[0.0029887466,0.00018723101,0.00040174753,0.0018918052,0.0005722032,0.001883896,0.0012546035,0.00043158585,0.000609754],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009735917,0.000333872,0.70797193,0.00038181036,0.000096655844,0.00016362203,0.0012201448,0.0046698656,0.012329739,0.0048442474,0.0035644702,0.26345003],"study_design_scores_gemma":[0.000050351424,0.000609824,0.9273251,0.00017738108,0.00015409062,0.00030331442,0.0060369615,0.04576808,0.0053312723,0.006091544,0.008085121,0.0000668979],"about_ca_topic_score_codex":0.004069823,"about_ca_topic_score_gemma":0.0195616,"teacher_disagreement_score":0.0043160543,"about_ca_system_score_codex":0.00086447236,"about_ca_system_score_gemma":0.0013721165,"threshold_uncertainty_score":0.011224389},"labels":[],"label_agreement":null},{"id":"W1974701086","doi":"10.1016/j.foreco.2013.11.001","title":"Spatial genetic structure in 21 populations of butternut, a temperate forest tree (Juglans cinerea L.), is correlated to spatial arrangement, habitat, and land-use history","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant and Fungal Interactions Research","field":"Biochemistry, Genetics and Molecular Biology","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"National Park Service; U.S. Forest Service; National Institute for Mathematical and Biological Synthesis; Università degli Studi di Ferrara; Arthur J. Schmitt Foundation; Natural Resources Canada; University of Notre Dame","keywords":"Threatened species; Biological dispersal; Ecology; Range (aeronautics); Population; Mantel test; Habitat; Biology; Genetic structure; Geography; Genetic diversity; Demography","score_opus":0.01346612431314278,"score_gpt":0.2370221765093145,"score_spread":0.22355605219617172,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1974701086","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998381,0.00002402196,0.000042307427,0.0000023204864,2.897977e-7,0.0000014416104,0.000029663755,0.0000010392554,0.000060820752],"genre_scores_gemma":[0.99969256,0.000016062473,0.000096602125,0.0000056760678,9.3162106e-7,0.0000033744798,0.00011337174,0.0000014442363,0.00006994062],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995403,0.00015332225,0.000026782403,0.0001642528,0.00006869758,0.000046577006],"domain_scores_gemma":[0.9992131,0.00023614214,0.00023471196,0.00008086025,0.0001033199,0.0001319877],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00045296285,0.00019508843,0.0002263502,0.0009052882,0.00038696392,0.00038611068,0.0003781913,0.00020170741,0.00051756785],"category_scores_gemma":[0.00073708117,0.00015313542,0.00015652349,0.00073306094,0.0007645659,0.00015347457,0.00041740868,0.0001987807,0.00011218221],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003527336,0.00012716491,0.9708265,0.000021034231,0.00022068243,0.00010637324,0.0019416518,0.00027979442,0.020562207,0.0001239972,0.00006341649,0.0053744894],"study_design_scores_gemma":[0.000009235404,0.000055203443,0.99878305,0.0000023707194,0.000019999597,0.000090370646,0.00035397097,0.00033106687,0.00019840412,0.00004684881,0.00010548193,0.0000039470956],"about_ca_topic_score_codex":0.011962405,"about_ca_topic_score_gemma":0.036679044,"teacher_disagreement_score":0.011962405,"about_ca_system_score_codex":0.0005308861,"about_ca_system_score_gemma":0.00017043036,"threshold_uncertainty_score":0.023785591},"labels":[],"label_agreement":null},{"id":"W1975368977","doi":"10.1016/j.foreco.2007.11.032","title":"Screening of Sitka spruce genotypes for resistance to the white pine weevil using artificial infestations","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia; Natural Resources Canada","funders":"Canadian Forest Service","keywords":"Weevil; Resistance (ecology); Biology; White (mutation); Infestation; Botany; Agronomy","score_opus":0.021279350513707815,"score_gpt":0.23875425451113494,"score_spread":0.21747490399742714,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1975368977","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992663,0.000030014227,0.00023514006,0.000008537803,0.0000027848125,0.000018273377,0.00014010866,0.000010204447,0.00028864056],"genre_scores_gemma":[0.9960383,0.00008018518,0.0012606157,0.000026618793,0.000002521194,0.000036220827,0.0011322302,0.00001444014,0.0014089657],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9996152,0.0001003757,0.000048354217,0.00009046526,0.000090193906,0.00005540028],"domain_scores_gemma":[0.9993594,0.00024211204,0.00014417202,0.000052060062,0.0000813067,0.00012103565],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00035627114,0.0005447647,0.00032179404,0.00071137946,0.00024886354,0.00031204915,0.00029645045,0.0003541815,0.0011607043],"category_scores_gemma":[0.00046481876,0.00020233172,0.00043525844,0.000425926,0.00021111482,0.0001516651,0.00022322964,0.00045433323,0.00022546427],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005310052,0.0003463836,0.014546366,0.00003177559,0.000044830133,0.0001294604,0.00012805477,0.00014638464,0.98211783,0.000056241974,0.000039864724,0.0018818851],"study_design_scores_gemma":[0.00018550074,0.00722618,0.63744736,0.000017807806,0.00032707388,0.0012846608,0.00059379736,0.0023856992,0.34834167,0.0001038073,0.0020376914,0.000048736023],"about_ca_topic_score_codex":0.0015453729,"about_ca_topic_score_gemma":0.0046613733,"teacher_disagreement_score":0.0015453729,"about_ca_system_score_codex":0.0002855329,"about_ca_system_score_gemma":0.00022803483,"threshold_uncertainty_score":0.0038829446},"labels":[],"label_agreement":null},{"id":"W1975912917","doi":"10.1016/j.foreco.2010.09.004","title":"Influence of woody and herbaceous vegetation control on leaf gas exchange, water status, and nutrient relations of eastern white pine (Pinus strobus L.) seedlings planted in a central Ontario clearcut","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Forestry; Canadian Forest Service; Ontario Forest Research Institute","funders":"","keywords":"Herbaceous plant; Vegetation (pathology); Seedling; Woody plant; Agronomy; Water-use efficiency; Stomatal conductance; Shading; Environmental science; Botany; Biology; Photosynthesis","score_opus":0.002852301544779072,"score_gpt":0.17021761039810107,"score_spread":0.167365308853322,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1975912917","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99955624,0.00005131308,0.000013982855,0.000009612604,8.875943e-7,0.0000017717747,0.000044440345,0.000001406278,0.00032046277],"genre_scores_gemma":[0.9990584,0.000037368016,0.00004190939,0.000014648341,7.8206733e-7,0.0000027667425,0.00012139576,0.0000023444027,0.0007203211],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984,0.000019436977,0.000007125516,0.000036647387,0.000035944595,0.0000607081],"domain_scores_gemma":[0.99950314,0.00007842391,0.00007681015,0.000014366464,0.000088011555,0.0002391501],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016678487,0.00017112143,0.00020199611,0.00026221134,0.0006631327,0.00052139617,0.00032717138,0.00016555203,0.0008198133],"category_scores_gemma":[0.00031108913,0.00016919879,0.00010258676,0.00021123321,0.00062862464,0.00020305045,0.0003212117,0.00025706182,0.00008319268],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0031820077,0.00028879588,0.7014362,0.000112573594,0.00016297682,0.0007975781,0.0042456845,0.00096543593,0.27539942,0.0005548263,0.00083928456,0.012015244],"study_design_scores_gemma":[0.0000073241736,0.000045951347,0.99859256,0.000002174026,0.000008143844,0.00001982117,0.0004001457,0.00013464055,0.00048588437,0.0000146766,0.00028512868,0.0000035908838],"about_ca_topic_score_codex":0.6884569,"about_ca_topic_score_gemma":0.92302895,"teacher_disagreement_score":0.3115431,"about_ca_system_score_codex":0.0055281636,"about_ca_system_score_gemma":0.002683857,"threshold_uncertainty_score":0.6267557},"labels":[],"label_agreement":null},{"id":"W1975956780","doi":"10.1016/j.foreco.2014.01.013","title":"Bird communities of reference and altered mixed-pine forests: Implications for restoring fire-dependent forest ecosystems","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"","keywords":"Ecology; Disturbance (geology); Ecosystem; Species richness; Geography; Wetland; Wildlife; Forest ecology; Fire regime; Agroforestry; Environmental science; Biology","score_opus":0.01580054729879071,"score_gpt":0.23429793716923625,"score_spread":0.21849738987044554,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1975956780","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99972814,0.000033476153,0.000037790644,0.0000031007053,0.0000012745015,0.0000020450793,0.000026461874,0.0000012283865,0.00016653149],"genre_scores_gemma":[0.9998066,0.000017381006,0.00006571915,0.0000038830117,8.87285e-7,0.0000015934132,0.00003811074,9.834022e-7,0.000065012246],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997583,0.00007056349,0.000015270207,0.000053105665,0.000041122632,0.00006162128],"domain_scores_gemma":[0.9995571,0.00005464973,0.000095650925,0.000042695494,0.00010649414,0.0001434103],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00034089555,0.00015962476,0.0002879084,0.00076237996,0.0006479896,0.0005772507,0.0002971477,0.0002089779,0.0008347005],"category_scores_gemma":[0.00085020636,0.00011439062,0.00017396064,0.00033701851,0.0005201582,0.0005296786,0.0004187901,0.00017698765,0.00007111048],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0042167353,0.00039362212,0.9046341,0.00007205798,0.00025367338,0.000485312,0.0022061476,0.0013312681,0.067272015,0.00041006078,0.00020538844,0.018519672],"study_design_scores_gemma":[0.000006744577,0.00009899776,0.9973361,0.0000023375105,0.00002169139,0.00010728636,0.0009840152,0.0005587373,0.0006538369,0.000048293277,0.00017805363,0.0000037438224],"about_ca_topic_score_codex":0.024468582,"about_ca_topic_score_gemma":0.08224103,"teacher_disagreement_score":0.024468582,"about_ca_system_score_codex":0.00065809034,"about_ca_system_score_gemma":0.00029926264,"threshold_uncertainty_score":0.04865229},"labels":[],"label_agreement":null},{"id":"W1976167267","doi":"10.1016/j.foreco.2015.03.021","title":"Wood ash and N fertilization in the Canadian boreal forest: Soil properties and response of jack pine and black spruce","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Coal and Its By-products","field":"Earth and Planetary Sciences","cited_by":62,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université TÉLUQ; Université du Québec en Abitibi-Témiscamingue","funders":"Natural Sciences and Engineering Research Council of Canada; Sveriges Lantbruksuniversitet","keywords":"Wood ash; Soil water; Forest floor; Taiga; Environmental science; Black spruce; Human fertilization; Amendment; Agronomy; Soil pH; Animal science; Ecology; Soil science; Biology","score_opus":0.02752554216368293,"score_gpt":0.1952193611073777,"score_spread":0.16769381894369478,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1976167267","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992091,0.00012975726,0.000024201434,0.000029160057,0.000002114831,0.000005193697,0.00016924345,0.0000018443684,0.00042935112],"genre_scores_gemma":[0.9981304,0.00008867679,0.000058964033,0.000050048755,0.0000010981871,0.0000048641336,0.0003038894,0.0000023201753,0.0013597562],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977094,0.000013915001,0.0000073289293,0.00005803499,0.000057837682,0.00009200768],"domain_scores_gemma":[0.9994197,0.00005275327,0.00007274739,0.000019470004,0.0002136151,0.00022173768],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000254608,0.00029350683,0.00027388014,0.0002613597,0.0012435622,0.0005827914,0.0005776822,0.00045357685,0.0009154202],"category_scores_gemma":[0.00048211616,0.0002051698,0.00019674501,0.0004875208,0.0005289599,0.00030733846,0.00026923468,0.00031858098,0.0001478362],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0034032194,0.0005008485,0.8940674,0.000082603285,0.00019308685,0.00040738427,0.0018887059,0.0011624938,0.08683296,0.00020347197,0.0011530512,0.010104637],"study_design_scores_gemma":[0.000005156699,0.000031835698,0.9985506,0.0000014483902,0.000010062049,0.000026575606,0.0004130718,0.00017229808,0.00049561425,0.000011397317,0.00027707528,0.000004876918],"about_ca_topic_score_codex":0.9684614,"about_ca_topic_score_gemma":0.9907969,"teacher_disagreement_score":0.031538606,"about_ca_system_score_codex":0.0084326,"about_ca_system_score_gemma":0.0058502792,"threshold_uncertainty_score":0.06344861},"labels":[],"label_agreement":null},{"id":"W1976963348","doi":"10.1016/j.foreco.2008.08.020","title":"Impact of three silvicultural treatments on growth, light-energy processing, and related needle-level adaptive traits of Pinus strobus from two regions","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Basal area; Biology; Botany; Chlorophyll a; Animal science; Horticulture; Chlorophyll; Chlorophyll fluorescence; Light intensity; Productivity; Shade tolerance; Ecology; Canopy; Physics","score_opus":0.018110376569694327,"score_gpt":0.22581571327532157,"score_spread":0.20770533670562724,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1976963348","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99973184,0.000049066686,0.000038470233,0.00001017785,0.0000047813983,0.0000054488964,0.000036363985,0.0000032418159,0.00012057398],"genre_scores_gemma":[0.99897194,0.000055345943,0.00021980869,0.000051406085,0.0000048260304,0.000021483675,0.0001663162,0.000004350083,0.0005045947],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99958485,0.00007755932,0.000036512047,0.00013801413,0.00005344934,0.00010962596],"domain_scores_gemma":[0.9991629,0.00012773881,0.00012827288,0.000032579806,0.00010938256,0.0004391964],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038121958,0.000597069,0.0004843262,0.0005390898,0.00087341765,0.0007020339,0.0005110511,0.00040153367,0.001112981],"category_scores_gemma":[0.0004889563,0.00021100191,0.00039888974,0.00029157405,0.00061523815,0.00034661294,0.0007323714,0.00047282982,0.00014891372],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.017143907,0.0026306154,0.10883174,0.00028941227,0.0005283027,0.00040979998,0.0019134859,0.0011488807,0.8507498,0.00023562957,0.00024038379,0.015878147],"study_design_scores_gemma":[0.00023442337,0.004348622,0.95289314,0.00001336259,0.00035155594,0.00010123121,0.0016848217,0.0009063293,0.038521357,0.0001029875,0.00080489414,0.000037174173],"about_ca_topic_score_codex":0.014559073,"about_ca_topic_score_gemma":0.04455776,"teacher_disagreement_score":0.014559073,"about_ca_system_score_codex":0.0012035817,"about_ca_system_score_gemma":0.0009872579,"threshold_uncertainty_score":0.028948605},"labels":[],"label_agreement":null},{"id":"W1977665170","doi":"10.1016/j.foreco.2006.10.022","title":"Response of bird communities to selection harvesting in a northern tolerant hardwood forest","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Avian ecology and behavior","field":"Environmental Science","cited_by":34,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"University of Pittsburgh","keywords":"Warbler; Ecology; Habitat; Biology","score_opus":0.008436670724582632,"score_gpt":0.21147951426014577,"score_spread":0.20304284353556315,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1977665170","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99990904,0.0000023842608,0.00000534432,0.000005390398,4.7224555e-7,6.046048e-7,0.000007746532,4.0736052e-7,0.00006854979],"genre_scores_gemma":[0.9996582,0.0000040007717,0.000016978447,0.000012457964,0.0000014494063,0.000002815069,0.00003494392,6.649188e-7,0.0002685305],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998584,0.000042058982,0.000006480536,0.000027539902,0.000015341278,0.000050148123],"domain_scores_gemma":[0.9991949,0.00016147259,0.00013024388,0.000030625215,0.000049114144,0.00043373412],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028652282,0.00015159759,0.00024587885,0.00035637236,0.00097312086,0.00051035057,0.00030089967,0.00032967998,0.0021346463],"category_scores_gemma":[0.00069414504,0.00017097627,0.00014552652,0.0001831314,0.0005916553,0.00029140728,0.0004994548,0.0003954717,0.00017059814],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.004767674,0.0011802976,0.9432486,0.000032699205,0.000118166194,0.0008635415,0.0025737926,0.0009217535,0.041291416,0.00015093868,0.0004109286,0.0044400403],"study_design_scores_gemma":[0.000007954031,0.00015645935,0.998147,0.0000011441572,0.0000046877794,0.00007453151,0.0010274388,0.00026493988,0.00022418117,0.000031572145,0.000057499805,0.0000025940153],"about_ca_topic_score_codex":0.019823294,"about_ca_topic_score_gemma":0.0766337,"teacher_disagreement_score":0.019823294,"about_ca_system_score_codex":0.00053211517,"about_ca_system_score_gemma":0.00028057882,"threshold_uncertainty_score":0.039415777},"labels":[],"label_agreement":null},{"id":"W1978209881","doi":"10.1016/j.foreco.2012.11.011","title":"The use of coniferous forests and cutovers by Newfoundland woodland caribou","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Concordia University","funders":"Fonds de recherche du Québec – Nature et technologies","keywords":"Woodland caribou; Habitat; Woodland; Forage; Geography; Ecology; Population; Predation; Environmental science; Biology","score_opus":0.008541717520709858,"score_gpt":0.18784977825269444,"score_spread":0.17930806073198458,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1978209881","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991066,0.00016313704,0.000010636836,0.000048609505,0.0000018466977,9.714028e-7,0.000068941656,5.525878e-7,0.0005985772],"genre_scores_gemma":[0.9986463,0.00027118743,0.000050878178,0.000044092954,0.0000021462022,0.000001942808,0.00009659439,0.0000013614992,0.0008855323],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99972814,0.00006721439,0.000018876348,0.000042121737,0.000040811035,0.00010286199],"domain_scores_gemma":[0.9990497,0.0002422444,0.00030231875,0.00005148231,0.00012004749,0.00023426369],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036759183,0.00013444091,0.00013074026,0.0008450248,0.0011053719,0.00082096213,0.00038976528,0.00029299827,0.0016464674],"category_scores_gemma":[0.0014277317,0.00015385434,0.00019308573,0.0007034832,0.00066512905,0.0005069944,0.0006439246,0.00030707015,0.00010585862],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000090597525,0.000032241038,0.9854569,0.000025230685,0.00006006737,0.00027641768,0.005481917,0.00009317276,0.000730595,0.00013653218,0.00028970867,0.0073266667],"study_design_scores_gemma":[7.431883e-7,0.0000089924715,0.9941273,0.000013154885,0.000011404175,0.00011697615,0.005148205,0.00003783662,0.000050833132,0.000011838229,0.0004700855,0.0000027601527],"about_ca_topic_score_codex":0.78042316,"about_ca_topic_score_gemma":0.96813804,"teacher_disagreement_score":0.21957684,"about_ca_system_score_codex":0.0017687238,"about_ca_system_score_gemma":0.0017897452,"threshold_uncertainty_score":0.44173992},"labels":[],"label_agreement":null},{"id":"W1979104238","doi":"10.1016/j.foreco.2004.06.004","title":"Bark beetle (Coleoptera: Scolytidae) diversity in spaced and unmanaged mature lodgepole pine (Pinaceae) in southeastern British Columbia","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":34,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Bark beetle; Bark (sound); Pinaceae; Biology; Pinus contorta; Dendroctonus; Mountain pine beetle; Species diversity; Woody plant; Ecology; Botany; Pinus <genus>","score_opus":0.00498362456142722,"score_gpt":0.18137764772380735,"score_spread":0.17639402316238012,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1979104238","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993755,0.00007802301,0.000011707276,0.000013813395,0.0000012395898,0.0000026714206,0.00022777422,0.0000012055698,0.00028814594],"genre_scores_gemma":[0.9985794,0.00011863172,0.00004601134,0.000028685012,7.6710836e-7,0.0000043105742,0.00028914114,8.8757116e-7,0.0009323746],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997863,0.000017443239,0.000016838423,0.00004652888,0.00005977675,0.00007306644],"domain_scores_gemma":[0.99917895,0.00005819216,0.00012851825,0.000020750875,0.00032180635,0.0002916943],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017542028,0.00016332028,0.00018565472,0.0009962944,0.0011052823,0.000554156,0.00048610938,0.00021327764,0.0010853993],"category_scores_gemma":[0.0005792348,0.0001914386,0.000105958694,0.0011461851,0.00043760944,0.00024005324,0.00038048017,0.00028241775,0.00018122187],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006232292,0.00004417187,0.9933623,0.000012792829,0.000019387038,0.00015195606,0.0012259064,0.000047454174,0.0010999849,0.000017127826,0.0002473076,0.0037093558],"study_design_scores_gemma":[0.0000011861256,0.000006592651,0.9986687,0.0000038431426,0.000004323616,0.000034137363,0.0010714752,0.000033792687,0.0000381745,0.000003043509,0.00013316602,0.0000015259872],"about_ca_topic_score_codex":0.9377281,"about_ca_topic_score_gemma":0.9908811,"teacher_disagreement_score":0.062271893,"about_ca_system_score_codex":0.0040943394,"about_ca_system_score_gemma":0.002345471,"threshold_uncertainty_score":0.12527722},"labels":[],"label_agreement":null},{"id":"W1980222747","doi":"10.1016/j.foreco.2012.05.023","title":"Growth and mortality of balsam fir- and spruce-tolerant hardwood stands as influenced by stand characteristics and spruce budworm defoliation","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":25,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université de Moncton; University of New Brunswick","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Abies balsamea; Balsam; Spruce budworm; Choristoneura fumiferana; Basal area; Hardwood; Forestry; Biology; Ecology; Botany; PEST analysis; Tortricidae; Geography","score_opus":0.004903334610893094,"score_gpt":0.2146339768335777,"score_spread":0.20973064222268462,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1980222747","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99988854,0.000013432973,0.00000769512,0.0000029009286,9.475323e-7,3.8414808e-7,0.000028047923,7.166832e-7,0.000057328307],"genre_scores_gemma":[0.999634,0.000012895556,0.000018882278,0.000006187556,0.0000018290712,0.0000010995332,0.000117659016,8.672785e-7,0.00020656516],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989176,0.000031279287,0.0000069400467,0.000021664444,0.000012264037,0.000036138877],"domain_scores_gemma":[0.999209,0.00021216081,0.0001721746,0.00003478425,0.000055320077,0.00031674848],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003363767,0.00028305798,0.00017479631,0.00042907512,0.00025798476,0.000316637,0.00020848833,0.00022363353,0.0011099338],"category_scores_gemma":[0.0005910393,0.00017030348,0.00021015223,0.00020757926,0.00030709535,0.00025977768,0.00024091607,0.0002989572,0.00020573908],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0024362113,0.0003057772,0.97036767,0.0000125906145,0.00009456713,0.00025950035,0.0004080682,0.00039890682,0.022307673,0.000061873434,0.0001523747,0.0031947899],"study_design_scores_gemma":[0.0000043473397,0.00009838363,0.9992944,5.621571e-7,0.000008137677,0.00005393225,0.00008177732,0.00019639502,0.00022416121,0.000012227814,0.000024148812,0.0000014213957],"about_ca_topic_score_codex":0.007650879,"about_ca_topic_score_gemma":0.038802702,"teacher_disagreement_score":0.007650879,"about_ca_system_score_codex":0.00028365338,"about_ca_system_score_gemma":0.00018808863,"threshold_uncertainty_score":0.015212715},"labels":[],"label_agreement":null},{"id":"W1982052166","doi":"10.1016/j.foreco.2010.04.012","title":"Ten-year regeneration responses to varying levels of overstory retention in two productive southern British Columbia ecosystems","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta; Government of British Columbia","funders":"","keywords":"Larch; Basal area; Shade tolerance; Stocking; Sowing; Biology; Natural regeneration; Ecosystem; Silviculture; Regeneration (biology); Thinning; Environmental science; Ecology; Agronomy; Forestry; Animal science; Geography; Canopy","score_opus":0.008754742851735884,"score_gpt":0.21361976501438454,"score_spread":0.20486502216264865,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1982052166","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99983466,0.000011784731,0.000005747535,0.000004931618,3.148808e-7,0.0000015093723,0.000028380207,7.074819e-7,0.000111947105],"genre_scores_gemma":[0.9994392,0.000013548463,0.00002013689,0.000010500749,3.6592675e-7,0.000004522889,0.0001060707,8.488148e-7,0.00040485774],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997849,0.000037926668,0.000012504408,0.000040464547,0.000033737022,0.000090449554],"domain_scores_gemma":[0.99903214,0.00016046253,0.00017185477,0.00004947369,0.00019184586,0.00039423537],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004947188,0.00017811754,0.0002605382,0.0004922208,0.0010994714,0.00080185203,0.00053319277,0.00043610943,0.001133651],"category_scores_gemma":[0.0013146983,0.00021419632,0.00016038776,0.00035323077,0.0008504915,0.00031702302,0.0006632418,0.000425977,0.0001410191],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002021399,0.00046687116,0.96457225,0.0000378985,0.00013620169,0.00034372727,0.0033125388,0.0008533358,0.018715817,0.000100498015,0.0003645689,0.009074881],"study_design_scores_gemma":[0.0000037865668,0.00003678822,0.9989573,0.000001858557,0.0000066695175,0.000017438286,0.00059181417,0.0001682256,0.00010834604,0.000012659309,0.00009179823,0.0000032623698],"about_ca_topic_score_codex":0.45663965,"about_ca_topic_score_gemma":0.825069,"teacher_disagreement_score":0.54336035,"about_ca_system_score_codex":0.003423127,"about_ca_system_score_gemma":0.0012916728,"threshold_uncertainty_score":0.9079634},"labels":[],"label_agreement":null},{"id":"W1982649604","doi":"10.1016/j.foreco.2009.08.016","title":"Spatial distribution, architecture, and development of the root system of Pinus banksiana Lamb. in natural and planted stands","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Chicoutimi","funders":"","keywords":"Taproot; Root system; Natural regeneration; Root (linguistics); Woody plant; Jack pine; Spatial distribution; Taiga; Pinus <genus>; Stand development; Biology; Environmental science; Botany; Forestry; Agroforestry; Geography; Ecology","score_opus":0.0037259044177139146,"score_gpt":0.17757495151221636,"score_spread":0.17384904709450244,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1982649604","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998254,0.000023384524,0.000026064095,0.0000015715423,1.6151971e-7,6.848701e-7,0.000034738194,0.0000011419722,0.00008693768],"genre_scores_gemma":[0.999726,0.0000147225455,0.000039214323,0.000001856912,3.2551353e-7,0.0000017727399,0.00006373847,7.4816114e-7,0.00015163873],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998869,0.000020711603,0.0000065752292,0.000047507277,0.000016169826,0.000022145883],"domain_scores_gemma":[0.9995554,0.00012148187,0.00012677893,0.000030754116,0.0000857663,0.00007977178],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001793037,0.00010136329,0.0001031385,0.00078197574,0.00020649453,0.00022892603,0.00021888161,0.00014208067,0.0004828016],"category_scores_gemma":[0.00030733115,0.00015070314,0.00007451202,0.0003249429,0.0003158754,0.00028880022,0.00029732028,0.0001584329,0.00010144151],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004967984,0.00010692216,0.8674601,0.00003527765,0.00004404823,0.00019161963,0.0010507499,0.00039071785,0.12084373,0.00021339358,0.00008398958,0.009082639],"study_design_scores_gemma":[0.0000011091159,0.000023370218,0.9993624,5.8889196e-7,0.0000027518665,0.00005169727,0.00011724167,0.00013603372,0.00025246243,0.000017328774,0.000033711705,0.000001247925],"about_ca_topic_score_codex":0.012522907,"about_ca_topic_score_gemma":0.04319504,"teacher_disagreement_score":0.012522907,"about_ca_system_score_codex":0.00032887916,"about_ca_system_score_gemma":0.00013656374,"threshold_uncertainty_score":0.02490002},"labels":[],"label_agreement":null},{"id":"W1982722692","doi":"10.1016/j.foreco.2005.01.006","title":"Eastern white pine response to release 30 years after partial harvesting in pine mixedwood forests","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":26,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada","funders":"Natural Resources Canada","keywords":"Environmental science; Agroforestry; White (mutation); Forestry; Agronomy; Geography; Biology","score_opus":0.004480464995827804,"score_gpt":0.20515413384012002,"score_spread":0.20067366884429222,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1982722692","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998211,0.00002032451,0.000006163758,0.0000076193005,0.0000026250138,0.0000015946829,0.00002809671,7.605438e-7,0.000111761154],"genre_scores_gemma":[0.9995332,0.000016207405,0.000010216852,0.000018426623,0.0000032700211,0.0000040407645,0.00013436507,6.979289e-7,0.00027977044],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998814,0.000016324822,0.000007544948,0.000024693438,0.000018739272,0.00005140178],"domain_scores_gemma":[0.99891686,0.00027301168,0.0002723953,0.000059407444,0.00009060878,0.0003878251],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003609656,0.00015977613,0.0002469523,0.00022744118,0.0004299956,0.00062037585,0.00020981608,0.0004094736,0.0011072926],"category_scores_gemma":[0.0012832566,0.00012356954,0.0001848785,0.00013328447,0.00028643405,0.00031863837,0.00034358044,0.000416699,0.00017747738],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.010486501,0.0016146738,0.95235157,0.000033026357,0.00014146284,0.00090999185,0.0010994816,0.00034144978,0.024413325,0.0000748191,0.00041052277,0.008123039],"study_design_scores_gemma":[0.000007838605,0.0002549251,0.9989802,0.0000025130764,0.000009341451,0.00006752298,0.00027236014,0.00008306483,0.00023709705,0.0000104338305,0.00007120608,0.0000035099933],"about_ca_topic_score_codex":0.011401122,"about_ca_topic_score_gemma":0.041365497,"teacher_disagreement_score":0.011401122,"about_ca_system_score_codex":0.00034389782,"about_ca_system_score_gemma":0.0002715077,"threshold_uncertainty_score":0.022669494},"labels":[],"label_agreement":null},{"id":"W1983585394","doi":"10.1016/j.foreco.2010.01.007","title":"Carbon budget of Ontario's managed forests and harvested wood products, 2001–2100","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Forestry; Ontario Forest Research Institute","funders":"U.S. Forest Service; Government of Ontario","keywords":"Forest inventory; Forest management; Environmental science; Sustainable forest management; Forestry; Carbon accounting; Carbon stock; Greenhouse gas; Wood production; Disturbance (geology); Agroforestry; Climate change; Geography; Ecology; Biology","score_opus":0.004566625005716349,"score_gpt":0.18793468114839643,"score_spread":0.1833680561426801,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1983585394","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.96956617,0.00071238104,0.00011909703,0.0006272523,0.000014720685,0.000023185561,0.01968614,0.000016253727,0.009234832],"genre_scores_gemma":[0.98194355,0.00049654715,0.00023874186,0.00007599565,0.000008194618,0.000018566381,0.0049269027,0.000009672375,0.012281987],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998288,0.000010478338,0.000010499514,0.000020605357,0.00008951447,0.000040037317],"domain_scores_gemma":[0.9993488,0.000034108267,0.00012458485,0.000015892781,0.0003738603,0.00010270771],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020239364,0.00015702008,0.00015702218,0.0007184596,0.0011661507,0.0007132636,0.0003893154,0.00020648213,0.0013279244],"category_scores_gemma":[0.0006118463,0.00023694501,0.00024306595,0.0017060433,0.0003378876,0.0003016597,0.0003050888,0.0002255993,0.00021285468],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00061597954,0.00006502433,0.9498269,0.00023183381,0.00029576392,0.0003506669,0.0016565857,0.003649187,0.0037859203,0.0011414342,0.018482788,0.01989791],"study_design_scores_gemma":[0.000011621568,0.000007410445,0.99169123,0.000013893141,0.00002318207,0.000032110493,0.00033124752,0.0006683495,0.00017997064,0.000035434874,0.006999839,0.0000056558088],"about_ca_topic_score_codex":0.9910581,"about_ca_topic_score_gemma":0.9980106,"teacher_disagreement_score":0.02311647,"about_ca_system_score_codex":0.02311647,"about_ca_system_score_gemma":0.014151382,"threshold_uncertainty_score":0.16772252},"labels":[],"label_agreement":null},{"id":"W1985322408","doi":"10.1016/j.foreco.2012.03.010","title":"Partitioning of carbon allocation to reserves or growth determines future performance of aspen seedlings","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":56,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of Alberta","funders":"Forest Resource Improvement Association of Alberta","keywords":"Seedling; Shoot; Biology; Sowing; Photosynthesis; Annual growth cycle of grapevines; Nutrient; Afforestation; Root system; Agronomy; Botany; Horticulture; Agroforestry; Ecology","score_opus":0.01131776214349241,"score_gpt":0.22128194862512202,"score_spread":0.2099641864816296,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1985322408","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997484,0.000030029709,0.000044318687,0.0000035900075,5.696806e-7,5.3615895e-7,0.000018948498,7.321006e-7,0.00015276678],"genre_scores_gemma":[0.99936324,0.00003892576,0.0001244113,0.0000073161236,0.0000016368751,0.0000020186587,0.0000916282,0.0000025324484,0.0003683644],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9999243,0.0000150565675,0.000005040895,0.000027576041,0.000011677388,0.0000163447],"domain_scores_gemma":[0.9994604,0.00019379254,0.00010715384,0.000037258127,0.000036755955,0.0001646942],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030998778,0.00021453828,0.00018057556,0.00021488323,0.00029066284,0.0004324373,0.00023626148,0.00024645551,0.0009111922],"category_scores_gemma":[0.00038687358,0.00015531004,0.0001058018,0.00013127142,0.00027447587,0.00050327607,0.00021554212,0.000342053,0.00014507677],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0015613579,0.00023517931,0.47049862,0.000047158184,0.00007560691,0.00024940708,0.00029657423,0.0009228138,0.51357555,0.0003505478,0.000099514014,0.0120876515],"study_design_scores_gemma":[0.0000055593837,0.0002552963,0.9933276,0.0000023402943,0.000012957625,0.00012160524,0.00010209082,0.0007912619,0.005213902,0.00007213356,0.00009076423,0.0000044840176],"about_ca_topic_score_codex":0.0025904814,"about_ca_topic_score_gemma":0.011711721,"teacher_disagreement_score":0.0025904814,"about_ca_system_score_codex":0.00030209485,"about_ca_system_score_gemma":0.00018653712,"threshold_uncertainty_score":0.005150795},"labels":[],"label_agreement":null},{"id":"W1985819510","doi":"10.1016/j.foreco.2007.10.042","title":"Location relative to a retention patch affects the ECM fungal community more than patch size in the first season after timber harvesting on Vancouver Island, British Columbia","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Mycorrhizal Fungi and Plant Interactions","field":"Agricultural and Biological Sciences","cited_by":52,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia; Okanagan University College; University of British Columbia, Okanagan Campus","funders":"","keywords":"Clearcutting; Biology; Biodiversity; Silviculture; Patch dynamics; Logging; Growing season; Ecology; Ecosystem; Horticulture; Botany","score_opus":0.00775633869247645,"score_gpt":0.20076839049543133,"score_spread":0.1930120518029549,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1985819510","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993926,0.000048499955,0.000015065865,0.000034093566,0.0000028249478,0.0000035195624,0.00008901259,0.000002303385,0.00041200142],"genre_scores_gemma":[0.9978351,0.00004671115,0.000041849085,0.0000328607,0.0000020031184,0.000004967615,0.00013404855,0.000003897668,0.0018985233],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997261,0.000032778233,0.000009319106,0.000058778813,0.000049683957,0.00012336117],"domain_scores_gemma":[0.99809057,0.00026094128,0.0003265386,0.00004923023,0.00046310766,0.00080963486],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027845567,0.0002228016,0.00043725106,0.0005260936,0.0020237938,0.001115444,0.00093590823,0.0004897721,0.0031927668],"category_scores_gemma":[0.0011087852,0.0002889426,0.00018837686,0.0005451852,0.00059182424,0.00025231106,0.0005154462,0.0007055952,0.00029601072],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004789438,0.0002836285,0.980496,0.000031534117,0.00007885082,0.00035242364,0.0017623157,0.00020957377,0.0074489606,0.000048435224,0.0012291213,0.0075802044],"study_design_scores_gemma":[0.000002370089,0.000018461906,0.99866796,0.0000062103877,0.0000057699954,0.00001810805,0.0010465655,0.00007156008,0.000055959365,0.000004536296,0.00010012387,0.0000023862326],"about_ca_topic_score_codex":0.8773763,"about_ca_topic_score_gemma":0.9836662,"teacher_disagreement_score":0.12262368,"about_ca_system_score_codex":0.004197976,"about_ca_system_score_gemma":0.0040012053,"threshold_uncertainty_score":0.24669164},"labels":[],"label_agreement":null},{"id":"W1985979917","doi":"10.1016/j.foreco.2013.04.031","title":"Characterizations of anthropogenic disturbance patterns in the mixedwood boreal forest of Alberta, Canada","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Parks Canada; University of British Columbia","funders":"","keywords":"Disturbance (geology); Boreal; Taiga; Forest management; Environmental science; Logging; Environmental resource management; Ecology; Ecosystem; Salvage logging; Geography; Forest ecology; Agroforestry; Forestry; Geology; Biology","score_opus":0.002743626689740883,"score_gpt":0.17432195216768678,"score_spread":0.1715783254779459,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1985979917","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9969441,0.00031212147,0.00017467633,0.000032667296,0.0000027613823,0.000014123714,0.0009971773,0.0000065075214,0.0015159119],"genre_scores_gemma":[0.9974349,0.00020944976,0.00028183096,0.000020687847,0.0000020681482,0.000009031655,0.0010773214,0.000003947802,0.000960769],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997118,0.000019259794,0.000017019369,0.000047311565,0.000096322394,0.0001082862],"domain_scores_gemma":[0.9991635,0.000054290365,0.00016354295,0.000028314673,0.00044217892,0.00014826012],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002938448,0.00028239435,0.00020902434,0.0021683564,0.0013545874,0.0010747295,0.00075147214,0.00019450707,0.0010580261],"category_scores_gemma":[0.0007120333,0.00017852867,0.0001610842,0.0039488096,0.0005446543,0.00022692347,0.00048404923,0.0002002604,0.00013055101],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006792874,0.000027514356,0.98581403,0.00002169775,0.000040922365,0.00009976065,0.000904211,0.00058269646,0.0014350258,0.0001285632,0.0005338655,0.010343846],"study_design_scores_gemma":[8.842215e-7,0.0000022081551,0.99864715,0.0000050707395,0.0000043874516,0.000023705108,0.0006082622,0.00024066393,0.000042665775,0.000010031059,0.0004124419,0.0000024397893],"about_ca_topic_score_codex":0.98675144,"about_ca_topic_score_gemma":0.99740964,"teacher_disagreement_score":0.013248563,"about_ca_system_score_codex":0.0091992775,"about_ca_system_score_gemma":0.006844831,"threshold_uncertainty_score":0.06674576},"labels":[],"label_agreement":null},{"id":"W1986575376","doi":"10.1016/j.foreco.2010.01.010","title":"Using vector analysis to understand temporal changes in understorey-tree competition in agroforestry systems","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Agroforestry and silvopastoral systems","field":"Agricultural and Biological Sciences","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Understory; Competition (biology); Agroforestry; Tree (set theory); Ecology; Environmental science; Biology; Mathematics; Canopy","score_opus":0.029456564498134188,"score_gpt":0.23876916104754375,"score_spread":0.20931259654940956,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1986575376","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9951632,0.00007902355,0.004195973,0.000015428746,0.000003228294,0.000009550753,0.00020832245,0.000017955736,0.00030732324],"genre_scores_gemma":[0.9970427,0.000034718603,0.0024259856,0.000003803024,0.000002566488,0.000012678705,0.0001894517,0.0000052027153,0.00028270466],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99972576,0.00011229631,0.000023678356,0.000051584888,0.00003459545,0.000052080635],"domain_scores_gemma":[0.99846077,0.0009259229,0.00026376068,0.00007283162,0.00016630515,0.00011041647],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00092615583,0.0001502728,0.0002585181,0.0013688522,0.00020431278,0.0005114319,0.0002137536,0.00016431983,0.0012543764],"category_scores_gemma":[0.0023179373,0.000113096685,0.00015592718,0.0011293348,0.00014491045,0.00070019177,0.00025290018,0.00020840783,0.00014106752],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00059531274,0.00021345873,0.9107826,0.00007036182,0.00012836352,0.0000805205,0.00067960593,0.0036509011,0.012686835,0.0010723062,0.0003911295,0.06964878],"study_design_scores_gemma":[0.000012901256,0.00019311463,0.9457274,0.000007403264,0.000046031495,0.00015249565,0.0008667249,0.050151177,0.0011578262,0.0011943814,0.0004697134,0.000020794809],"about_ca_topic_score_codex":0.009526629,"about_ca_topic_score_gemma":0.015933381,"teacher_disagreement_score":0.009526629,"about_ca_system_score_codex":0.00032788364,"about_ca_system_score_gemma":0.00025255463,"threshold_uncertainty_score":0.018942356},"labels":[],"label_agreement":null},{"id":"W1986625212","doi":"10.1016/j.foreco.2010.02.009","title":"Stand development patterns as a consequence of the mortality in Austrocedrus chilensis forests","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":32,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Understory; Ecology; Geography; Stand development; Basal area; Forestry; Tree (set theory); Biology; Canopy; Mathematics","score_opus":0.007293346046432378,"score_gpt":0.23151492289584383,"score_spread":0.22422157684941146,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1986625212","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997439,0.000015241443,0.0000075207217,0.0000034652496,3.9093774e-7,8.484649e-7,0.00007835868,7.247062e-7,0.00014951901],"genre_scores_gemma":[0.9995516,0.000010114113,0.00001551737,0.0000032383239,7.018417e-7,0.0000027857775,0.00013276741,7.752279e-7,0.00028257343],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99993813,0.000011461376,0.0000049259097,0.0000155933,0.000007701492,0.000022145623],"domain_scores_gemma":[0.9996252,0.000078117126,0.00012194852,0.000019918733,0.00004069607,0.000114093935],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014133613,0.000102203514,0.00010531512,0.00054155197,0.0002016409,0.00031932443,0.0001819907,0.00016650443,0.001451368],"category_scores_gemma":[0.00039277237,0.00010563234,0.00013719912,0.00027854755,0.0002433036,0.00014266184,0.00030180608,0.00021504165,0.00015571874],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011294642,0.00017692678,0.96212256,0.00003513581,0.00007272037,0.0006592418,0.00054620235,0.0010024952,0.028109374,0.00010853631,0.00024880888,0.0057886085],"study_design_scores_gemma":[0.0000017206286,0.000010695946,0.9997203,5.5480496e-7,0.0000017233841,0.00003073708,0.000054721084,0.0000900698,0.000064162836,0.0000058758883,0.000018462088,0.0000010065755],"about_ca_topic_score_codex":0.012370565,"about_ca_topic_score_gemma":0.027303165,"teacher_disagreement_score":0.012370565,"about_ca_system_score_codex":0.0005040704,"about_ca_system_score_gemma":0.00016254024,"threshold_uncertainty_score":0.024597108},"labels":[],"label_agreement":null},{"id":"W1987410830","doi":"10.1016/j.foreco.2009.11.022","title":"Snag longevity of Douglas-fir, western hemlock, and western redcedar from permanent sample plots in coastal British Columbia","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":26,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Victoria; Government of British Columbia","funders":"","keywords":"Snag; Tsuga; Western Hemlock; Longevity; Thuja; Douglas fir; Ecology; Coarse woody debris; Geography; Forestry; Habitat; Biology; Environmental science","score_opus":0.010600920274109379,"score_gpt":0.18986856732907897,"score_spread":0.1792676470549696,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1987410830","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99902284,0.000067638,0.000020234414,0.000008549792,0.0000014018676,0.0000033337708,0.00054440723,0.000002402015,0.00032914107],"genre_scores_gemma":[0.99823403,0.00006349543,0.00004200235,0.000017798828,8.7095316e-7,0.000006461184,0.0008456245,0.0000027138947,0.0007870861],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99959725,0.000050866438,0.000034612887,0.00012937894,0.00008507273,0.000102939484],"domain_scores_gemma":[0.9984371,0.00014996476,0.0002235093,0.00011592812,0.0006953896,0.00037809173],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004632425,0.00029352028,0.00037239035,0.0013549661,0.0014532947,0.00082123204,0.0010030823,0.00029680083,0.0010857189],"category_scores_gemma":[0.0012178064,0.00029676914,0.00018306506,0.0023149664,0.00060064485,0.00033052592,0.00071628735,0.00035386105,0.0002825772],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00009942084,0.000021624855,0.99544203,0.000010688798,0.000046040816,0.00007090301,0.0011107378,0.000048502257,0.00055463304,0.000019465238,0.0003215266,0.0022543569],"study_design_scores_gemma":[0.0000014510753,0.000005543184,0.999006,0.0000040339833,0.000010270081,0.000021067755,0.0007369815,0.000040819417,0.000030314344,0.0000032685766,0.00013831844,0.0000020682453],"about_ca_topic_score_codex":0.92462546,"about_ca_topic_score_gemma":0.98130405,"teacher_disagreement_score":0.07537454,"about_ca_system_score_codex":0.0042398977,"about_ca_system_score_gemma":0.002374313,"threshold_uncertainty_score":0.15163684},"labels":[],"label_agreement":null},{"id":"W1988328559","doi":"10.1016/j.foreco.2015.02.036","title":"Ten-year results of seedling growth on calcareous soils in the interior of British Columbia, Canada","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Canadian Forest Service; Natural Resources Canada","funders":"Canadian Forest Service; Natural Resources Canada","keywords":"Seedling; Calcareous; Pinus contorta; Soil compaction; Soil water; Productivity; Agronomy; Environmental science; Organic matter; Forestry; Biology; Ecology; Botany; Geography; Soil science","score_opus":0.009512105727162925,"score_gpt":0.19329313145242769,"score_spread":0.18378102572526475,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1988328559","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.998298,0.0000922991,0.00003513765,0.000017476374,0.000002315167,0.000009487225,0.00076443446,0.000006652123,0.00077430886],"genre_scores_gemma":[0.9965754,0.00010030016,0.00010665478,0.00002028469,0.0000010946562,0.0000076189413,0.0011838462,0.0000029176247,0.0020018178],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995882,0.00003745443,0.000023605975,0.000060169805,0.00012609204,0.00016450835],"domain_scores_gemma":[0.9981895,0.00012243119,0.0001425554,0.000062367646,0.0009844106,0.00049868145],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00057583326,0.00036476148,0.0003512482,0.00095911435,0.0023899327,0.00066260115,0.00080775673,0.00033521108,0.0008613089],"category_scores_gemma":[0.00093682087,0.00015771166,0.00026757413,0.0012048389,0.00069950783,0.00029570778,0.00050580694,0.00045013576,0.0002747678],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00058570795,0.00026656254,0.97988117,0.000046630157,0.00007957675,0.00043194173,0.0015628415,0.00058632245,0.004386327,0.000082316656,0.0010001936,0.011090447],"study_design_scores_gemma":[0.000004483699,0.000050797833,0.99831283,0.000004610866,0.000013518503,0.000029333072,0.0007728213,0.00015143954,0.00024302358,0.000007884039,0.0004022903,0.0000070835367],"about_ca_topic_score_codex":0.9745593,"about_ca_topic_score_gemma":0.9951283,"teacher_disagreement_score":0.025440693,"about_ca_system_score_codex":0.011359963,"about_ca_system_score_gemma":0.0069273286,"threshold_uncertainty_score":0.08242267},"labels":[],"label_agreement":null},{"id":"W1988543994","doi":"10.1016/j.foreco.2008.01.042","title":"Weed cover in hybrid poplar (Populus) plantations on Quebec forest soils under different lime treatments","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bioenergy crop production and management","field":"Agricultural and Biological Sciences","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval; McGill University","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Lime; Environmental science; Agronomy; Soil water; Vegetation (pathology); Agroforestry; Weed; Soil pH; Forestry; Biology; Geography; Soil science","score_opus":0.016992221454958826,"score_gpt":0.20427440232219637,"score_spread":0.18728218086723755,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1988543994","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984646,0.00011642446,0.0000325409,0.000029281962,0.0000023670539,0.000006950407,0.00051838317,0.000005957644,0.00082348223],"genre_scores_gemma":[0.99798703,0.00004482712,0.000057573438,0.000027040802,0.0000010136476,0.0000054786874,0.00035571354,0.000003444353,0.0015178494],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997404,0.000029159375,0.000007916425,0.00006224512,0.000047287886,0.00011295195],"domain_scores_gemma":[0.99916434,0.00012554947,0.00013957439,0.00002473883,0.00031310847,0.00023267712],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029763422,0.0002567674,0.0003678998,0.0010953414,0.0013580298,0.0008512877,0.0006938438,0.00038238923,0.00330809],"category_scores_gemma":[0.000547882,0.00019204119,0.00020685772,0.0011029253,0.00060473935,0.00037145626,0.00039280026,0.00030374824,0.00024756996],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.003348009,0.00029652368,0.9236731,0.000118441894,0.0002491214,0.000480498,0.0024845058,0.001472247,0.045729764,0.00038535733,0.0023799855,0.0193823],"study_design_scores_gemma":[0.0000082544775,0.000020346868,0.99866784,0.0000037061502,0.000010592907,0.0000149105945,0.00037779252,0.0003469078,0.00021840299,0.0000072701223,0.00031856765,0.0000054764105],"about_ca_topic_score_codex":0.9765346,"about_ca_topic_score_gemma":0.99468565,"teacher_disagreement_score":0.023465395,"about_ca_system_score_codex":0.01714703,"about_ca_system_score_gemma":0.0036537033,"threshold_uncertainty_score":0.12441105},"labels":[],"label_agreement":null},{"id":"W1988893018","doi":"10.1016/j.foreco.2015.03.018","title":"Tree-ring response of jack pine and scots pine to budworm defoliation in central Canada","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":20,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Winnipeg","funders":"Canadian Forest Service","keywords":"Scots pine; Spruce budworm; Outbreak; Dendrochronology; Pinus <genus>; Ecology; Biology; Forestry; Disturbance (geology); Tortricidae; Geography; Lepidoptera genitalia; Botany","score_opus":0.013234778826007465,"score_gpt":0.21568822849166458,"score_spread":0.20245344966565712,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1988893018","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991923,0.00006862011,0.000015373194,0.000022310005,0.0000014566344,0.000004306586,0.00026488974,0.0000024555345,0.00042828426],"genre_scores_gemma":[0.99864036,0.00005923025,0.000026392929,0.000022851678,8.224035e-7,0.0000028787683,0.00032321276,0.0000015302546,0.00092264434],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997869,0.000019553332,0.0000070958768,0.00003175345,0.000044705128,0.00010999741],"domain_scores_gemma":[0.99904376,0.000093724804,0.00011436867,0.000022612958,0.0003726082,0.0003529259],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028891835,0.00015305894,0.00023493054,0.00048106883,0.00091854885,0.0005180005,0.0004715617,0.00025437603,0.0013359771],"category_scores_gemma":[0.00073243736,0.00013523434,0.00014933916,0.00061596534,0.0003537066,0.00016494178,0.00032290627,0.0002463444,0.00015386932],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00061658514,0.000093157934,0.9853357,0.00002527302,0.00006789663,0.00016870542,0.0015256612,0.0006219263,0.0061561307,0.00011372508,0.0007726596,0.004502528],"study_design_scores_gemma":[0.0000025893282,0.000010619941,0.9989447,0.0000019615297,0.0000046502814,0.000009636701,0.0005928318,0.00014203388,0.00010428969,0.0000047310236,0.0001798654,0.0000021272394],"about_ca_topic_score_codex":0.9830177,"about_ca_topic_score_gemma":0.9952226,"teacher_disagreement_score":0.016982317,"about_ca_system_score_codex":0.009944133,"about_ca_system_score_gemma":0.0056314934,"threshold_uncertainty_score":0.07214999},"labels":[],"label_agreement":null},{"id":"W1989152469","doi":"10.1016/j.foreco.2012.04.014","title":"Effects of organic matter removal, soil compaction and vegetation control on 10th year biomass and foliar nutrition: LTSP continent-wide comparisons","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":123,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia; Lakehead University; Government of British Columbia; Canadian Forest Service","funders":"","keywords":"Environmental science; Biomass (ecology); Agronomy; Vegetation (pathology); Soil compaction; Taiga; Soil water; Nutrient; Productivity; Mediterranean climate; Boreal; Biology; Ecology; Soil science","score_opus":0.0037683385938636947,"score_gpt":0.19508729852166193,"score_spread":0.19131895992779824,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1989152469","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99934894,0.00006585033,0.0000242707,0.000009551174,0.0000015429093,0.0000016472687,0.00023442371,0.0000024663193,0.00031137743],"genre_scores_gemma":[0.99851924,0.00005510093,0.000071132636,0.00001605377,0.00000207044,0.0000048438787,0.0009031688,0.0000037458374,0.00042471167],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979836,0.00007949639,0.000010902577,0.000034669607,0.000023195147,0.00005343767],"domain_scores_gemma":[0.9993793,0.00025736756,0.00008638172,0.000076829936,0.00009628292,0.00010389976],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00081909646,0.00023970653,0.00035011952,0.0005405459,0.00037886322,0.00048814996,0.0003679463,0.0003433136,0.0015193485],"category_scores_gemma":[0.0008142487,0.000115302864,0.0008736811,0.0005289405,0.0003222377,0.00035488233,0.0005308391,0.00026484695,0.00020585091],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0053460565,0.00028949266,0.9553296,0.00014200917,0.0014726768,0.00065454614,0.0017221875,0.0013011941,0.014092683,0.00023579349,0.0005827964,0.018831024],"study_design_scores_gemma":[0.000005583144,0.00012590145,0.9990287,0.0000021001424,0.00006409937,0.000027757023,0.00026231486,0.000070359776,0.00023817053,0.0000068592617,0.00016603325,0.0000021082312],"about_ca_topic_score_codex":0.032081906,"about_ca_topic_score_gemma":0.04764206,"teacher_disagreement_score":0.032081906,"about_ca_system_score_codex":0.0002821992,"about_ca_system_score_gemma":0.0002451581,"threshold_uncertainty_score":0.06379032},"labels":[],"label_agreement":null},{"id":"W1989404805","doi":"10.1016/j.foreco.2010.03.020","title":"Research in Canada's National Research Forests—Past, present and future","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"U.S. Forest Service","keywords":"Geography; Environmental resource management; Relevance (law); Service (business); Political science; Environmental science; Business","score_opus":0.01459462098739996,"score_gpt":0.2839020479018112,"score_spread":0.2693074269144113,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1989404805","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.4057419,0.30366018,0.001252547,0.19018888,0.002200158,0.00027857505,0.017653555,0.0003314061,0.078692794],"genre_scores_gemma":[0.7856947,0.14951088,0.0066618617,0.017529787,0.00064812263,0.00013467178,0.006431976,0.000060447022,0.03332755],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9956573,0.00041710967,0.00023072251,0.00044055856,0.0014020965,0.0018521429],"domain_scores_gemma":[0.97262233,0.0019743263,0.002242207,0.00051036215,0.014815308,0.0078355],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.005691638,0.00052723463,0.0006919166,0.0070354072,0.008658229,0.0073821913,0.002353589,0.0014968978,0.006171664],"category_scores_gemma":[0.006755016,0.000458122,0.00056668284,0.018753922,0.0037708895,0.003227549,0.0018816484,0.0018349548,0.00048664003],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":true,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00060081476,0.00036843997,0.45985946,0.002791615,0.0003134143,0.00048051248,0.00933155,0.00093534775,0.0018197915,0.013925004,0.07089595,0.43867812],"study_design_scores_gemma":[0.000045160297,0.0001213905,0.76656044,0.0026801962,0.00020600282,0.0002155844,0.02672353,0.0007472653,0.001008865,0.0031657123,0.19841191,0.000114002214],"about_ca_topic_score_codex":0.9948927,"about_ca_topic_score_gemma":0.9985929,"teacher_disagreement_score":0.89841366,"about_ca_system_score_codex":0.10158636,"about_ca_system_score_gemma":0.27844366,"threshold_uncertainty_score":0.73706406},"labels":[],"label_agreement":null},{"id":"W1990312636","doi":"10.1016/j.foreco.2009.12.013","title":"The influence of canopy patch mosaics on understory plant community composition in boreal mixedwood forest","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":104,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Consejo Nacional de Ciencia y Tecnología; Alberta Conservation Association","keywords":"Understory; Canopy; Shrub; Environmental science; Plant community; Taiga; Boreal; Ecology; Evergreen; Biology; Ecological succession","score_opus":0.0059503565599208635,"score_gpt":0.2083743970396242,"score_spread":0.20242404047970336,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1990312636","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998154,0.000038840706,0.000021863654,0.000004439,6.6646015e-7,7.191659e-7,0.000014636753,9.905096e-7,0.00010246796],"genre_scores_gemma":[0.99987936,0.000010155742,0.00004260999,0.000004995588,0.0000015988996,9.015056e-7,0.000022630513,0.0000012595266,0.000036579553],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996731,0.00012981084,0.000020929838,0.000075331074,0.000035118337,0.0000655709],"domain_scores_gemma":[0.9981158,0.0008031948,0.00037815343,0.00010101854,0.000106199914,0.0004956815],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006460703,0.00018513376,0.0002627664,0.0005180817,0.0006214346,0.0007672953,0.00031320052,0.0002779353,0.000952571],"category_scores_gemma":[0.0017343913,0.00025287026,0.00021338524,0.0002450959,0.0007013314,0.00048269352,0.0005105457,0.00022143181,0.00008825696],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006340922,0.00009961495,0.97123545,0.000021210075,0.00012850208,0.0001329878,0.00038155608,0.00041651577,0.022321645,0.000092442526,0.0000706235,0.0044652633],"study_design_scores_gemma":[0.000002788428,0.000027132706,0.9992944,8.7409455e-7,0.000010718648,0.00006023691,0.00011734465,0.0003384367,0.00010095638,0.00001985927,0.000025351652,0.0000018150824],"about_ca_topic_score_codex":0.011953054,"about_ca_topic_score_gemma":0.050575715,"teacher_disagreement_score":0.011953054,"about_ca_system_score_codex":0.00044683405,"about_ca_system_score_gemma":0.00024330615,"threshold_uncertainty_score":0.023766935},"labels":[],"label_agreement":null},{"id":"W1991749070","doi":"10.1016/j.foreco.2010.02.011","title":"Sugar maple and yellow birch regeneration in response to canopy opening, liming and vegetation control in a temperate deciduous forest of Quebec","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":44,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"McGill University; Université du Québec à Montréal","funders":"Natural Sciences and Engineering Research Council of Canada; Fonds Québécois de la Recherche sur la Nature et les Technologies; Université du Québec à Montréal","keywords":"Yellow birch; Understory; Deciduous; Canopy; Maple; Aceraceae; Vegetation (pathology); Biology; Temperate climate; Temperate deciduous forest; Silviculture; Botany; Sugar; Agronomy; Ecology","score_opus":0.004780941681892478,"score_gpt":0.21831753779966748,"score_spread":0.213536596117775,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1991749070","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99935144,0.000056814984,0.000017938992,0.000016795166,0.0000013755633,0.000004531567,0.0001196813,0.0000018030967,0.00042962361],"genre_scores_gemma":[0.99774975,0.000045320274,0.00005981324,0.00003285663,0.0000010460245,0.0000056704694,0.00019305518,0.0000026394284,0.0019097808],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979967,0.000038670554,0.0000055247324,0.00003794217,0.000030238947,0.00008795299],"domain_scores_gemma":[0.9993799,0.00013258179,0.00006511689,0.00002147237,0.0001666517,0.00023423387],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003634426,0.00019944366,0.00028287453,0.00050205836,0.0013702438,0.0006452051,0.0006327342,0.00026467154,0.0017272768],"category_scores_gemma":[0.00052568055,0.00016421505,0.00018903325,0.0006156963,0.0008227438,0.0002637571,0.00028496372,0.00032316588,0.00019217179],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0040419474,0.00066489045,0.9329979,0.000059865913,0.00023113175,0.0008180376,0.0046000574,0.0017339975,0.035451867,0.0004056655,0.0019179365,0.017076777],"study_design_scores_gemma":[0.00001668959,0.000045671623,0.99847585,0.0000021420042,0.000008744108,0.00002359984,0.0005381661,0.00038655376,0.00014422489,0.000010347171,0.0003427135,0.0000054324782],"about_ca_topic_score_codex":0.97322285,"about_ca_topic_score_gemma":0.99336547,"teacher_disagreement_score":0.026777148,"about_ca_system_score_codex":0.011968797,"about_ca_system_score_gemma":0.0034171378,"threshold_uncertainty_score":0.08684009},"labels":[],"label_agreement":null},{"id":"W1992906633","doi":"10.1016/j.foreco.2013.10.011","title":"Influence of harvesting on understory vegetation along a boreal riparian-upland gradient","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":30,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University; Western University","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Riparian zone; Understory; Environmental science; Taiga; Boreal; Vegetation (pathology); Riparian forest; Ecology; Forestry; Agroforestry; Geography; Habitat; Canopy; Biology","score_opus":0.006497786595562683,"score_gpt":0.19912286383589772,"score_spread":0.19262507724033504,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1992906633","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997105,0.000012606039,0.000011479713,0.0000061574415,0.0000010552874,7.0519815e-7,0.0000199943,8.3381593e-7,0.00023670036],"genre_scores_gemma":[0.99979347,0.000010750563,0.000024669165,0.000008290786,0.0000022817044,9.626046e-7,0.00003741977,0.0000010007328,0.00012119601],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998287,0.0000564881,0.000009093376,0.000031170413,0.000017439554,0.000057106838],"domain_scores_gemma":[0.9990157,0.00030534848,0.00020920511,0.00005298384,0.000068490306,0.00034818688],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003672358,0.000127899,0.00017716899,0.00033192892,0.00051207555,0.0006065288,0.00019317263,0.0001667003,0.0011395877],"category_scores_gemma":[0.00080655457,0.00009607868,0.00016031362,0.00029408385,0.00049979053,0.00023221145,0.0003167004,0.00020881242,0.0000792712],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00074747973,0.0001615797,0.9877886,0.000008445501,0.00006447443,0.00016692832,0.00029713384,0.00023169979,0.007060382,0.000101159225,0.00014282983,0.0032293326],"study_design_scores_gemma":[0.0000016391946,0.000022346976,0.99970335,5.4493825e-7,0.0000045527972,0.000017198949,0.00011254563,0.000060878763,0.00003804072,0.000006527194,0.000031476142,9.3757166e-7],"about_ca_topic_score_codex":0.018925529,"about_ca_topic_score_gemma":0.08155691,"teacher_disagreement_score":0.018925529,"about_ca_system_score_codex":0.00033514877,"about_ca_system_score_gemma":0.00032032822,"threshold_uncertainty_score":0.037630737},"labels":[],"label_agreement":null},{"id":"W1993115647","doi":"10.1016/j.foreco.2010.10.004","title":"Variation in leaf nitrogen and phosphorus stoichiometry in Picea abies across Europe: An analysis based on local observations","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":78,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute","funders":"Science and Technology Commission of Shanghai Municipality; National Natural Science Foundation of China","keywords":"Context (archaeology); Temperate climate; Altitude (triangle); Picea abies; Mediterranean climate; Latitude; Boreal; Nitrogen; Physical geography; Geography; Botany; Horticulture; Animal science; Ecology; Biology; Chemistry; Mathematics","score_opus":0.010779274802382147,"score_gpt":0.2265179540490642,"score_spread":0.21573867924668205,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1993115647","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99970883,0.00004834934,0.00008742162,0.0000021827668,6.4557423e-7,0.0000011200317,0.000058906528,0.0000021106546,0.0000905124],"genre_scores_gemma":[0.99954957,0.00003119683,0.00012448801,0.0000051122065,0.0000014118696,0.0000034415243,0.00021530288,0.0000022217482,0.00006719059],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995497,0.00015413661,0.000036039655,0.00016816684,0.000051386003,0.00004062363],"domain_scores_gemma":[0.99878865,0.00052577595,0.00021780266,0.00013685555,0.00019502548,0.00013589572],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000995457,0.00029102303,0.00040312938,0.0013611264,0.00036648614,0.00069752673,0.00038422504,0.00034289455,0.00031100077],"category_scores_gemma":[0.0012872056,0.00024054215,0.00035291773,0.0011566371,0.0004799414,0.0004137034,0.0005723592,0.00015178302,0.000081936356],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019110886,0.00004666329,0.9893819,0.000022079648,0.0003418017,0.00011275111,0.0005905933,0.00067715085,0.0039350083,0.00004740319,0.00006619187,0.0045873565],"study_design_scores_gemma":[0.000001839807,0.000009682199,0.9994479,0.0000015237067,0.000019054065,0.000030542597,0.00009997413,0.00027754335,0.00005558834,0.000007890324,0.00004646795,0.0000019522045],"about_ca_topic_score_codex":0.029763998,"about_ca_topic_score_gemma":0.053678807,"teacher_disagreement_score":0.029763998,"about_ca_system_score_codex":0.00047198375,"about_ca_system_score_gemma":0.00019550182,"threshold_uncertainty_score":0.05918151},"labels":[],"label_agreement":null},{"id":"W1993216390","doi":"10.1016/j.foreco.2012.06.016","title":"Forest protection and forest harvest as strategies for ecological sustainability and climate change mitigation","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":45,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto; Ministry of Natural Resources and Forestry; Ontario Forest Research Institute","funders":"Global Environment Facility; Ministry of Natural Resources","keywords":"Forest management; Sustainability; Environmental science; Temperate rainforest; Sustainable forest management; Agroforestry; Forest ecology; Forest inventory; Forest restoration; Climate change; Disturbance (geology); Taiga; Ecoforestry; Forest farming; Ecology; Forestry; Geography; Ecosystem; Biology","score_opus":0.0161852090112949,"score_gpt":0.2543961521984105,"score_spread":0.2382109431871156,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1993216390","genre_codex":"other","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.15464637,0.025424698,0.019208172,0.09359006,0.0010364719,0.0001068449,0.00027970015,0.00009018565,0.7056175],"genre_scores_gemma":[0.9701212,0.0058986475,0.002279402,0.002292703,0.00038769218,0.000049567836,0.000028119275,0.000010311606,0.018932417],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.9992249,0.00039756138,0.000019907493,0.00007081693,0.00013241239,0.00015438747],"domain_scores_gemma":[0.99892396,0.00047898295,0.00018924342,0.00007453079,0.00011536951,0.00021793856],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0024685664,0.0003407966,0.0003105797,0.0009824,0.0010051075,0.0050070547,0.0006397799,0.0033266512,0.009950365],"category_scores_gemma":[0.003195202,0.00016550673,0.00025459685,0.0013302807,0.0063984473,0.004237209,0.0015728554,0.0017798794,0.00027997812],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":"theoretical_or_conceptual","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010086346,0.00017257045,0.0024234464,0.00010071437,0.000019208352,0.00005550123,0.00046443674,0.005488584,0.0003391488,0.952574,0.0042111217,0.0340503],"study_design_scores_gemma":[0.000033432316,0.0000651842,0.0074875373,0.00013887449,0.000035273362,0.000060863327,0.0016063398,0.0042106984,0.00024013557,0.9443236,0.041776035,0.000021941429],"about_ca_topic_score_codex":0.0056061703,"about_ca_topic_score_gemma":0.020046031,"teacher_disagreement_score":0.009950365,"about_ca_system_score_codex":0.002952665,"about_ca_system_score_gemma":0.0029492513,"threshold_uncertainty_score":0.033287287},"labels":[],"label_agreement":null},{"id":"W1994312391","doi":"10.1016/j.foreco.2010.04.026","title":"Ericaceous shrubs affect black spruce physiology independently from inherent site fertility","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":26,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Wildlife; Université Laval; Centre de Géomatique du Québec","funders":"Ministère des Ressources Naturelles et de la Faune; Université Laval","keywords":"Black spruce; Ericaceae; Vegetation (pathology); Biology; Ecology; Environmental science; Taiga","score_opus":0.005556263579406257,"score_gpt":0.21700059923139056,"score_spread":0.2114443356519843,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1994312391","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99955016,0.00006053951,0.00008288283,0.000003903116,0.0000010411384,0.0000018930282,0.000030495832,0.0000034793122,0.00026544923],"genre_scores_gemma":[0.999097,0.000045463905,0.00016372025,0.000016259675,0.0000022696795,0.0000034622376,0.0001074683,0.000005838469,0.00055855926],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998871,0.000033993394,0.000005834288,0.000030458757,0.000015387333,0.00002717527],"domain_scores_gemma":[0.99930656,0.00023136791,0.00015137027,0.00006978199,0.000051967672,0.00018894183],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029420108,0.0003190004,0.00025062176,0.00025921507,0.00023489159,0.00036056133,0.00021864029,0.000239072,0.00088509795],"category_scores_gemma":[0.00037039223,0.00023718437,0.00016553135,0.000111097754,0.00036036115,0.0003921614,0.00028394777,0.0003059218,0.00013552155],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001293585,0.00028663262,0.30509922,0.00004875685,0.00013518317,0.0002656015,0.00026994883,0.00030432173,0.6857111,0.00019654447,0.000104284176,0.0062848334],"study_design_scores_gemma":[0.000007349471,0.0000925594,0.9953917,0.0000012334034,0.000015545334,0.000090296,0.000047072896,0.00020738084,0.004021498,0.00004482612,0.000077626515,0.0000029003409],"about_ca_topic_score_codex":0.0026622023,"about_ca_topic_score_gemma":0.009417762,"teacher_disagreement_score":0.0026622023,"about_ca_system_score_codex":0.00021252595,"about_ca_system_score_gemma":0.00019038227,"threshold_uncertainty_score":0.0052933693},"labels":[],"label_agreement":null},{"id":"W1994599764","doi":"10.1016/j.foreco.2013.06.024","title":"Comparing fast- and slow-growing provenances of Picea koraiensis in biomass, carbon parameters and their relationships with growth","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada; Government of New Brunswick; University of New Brunswick","funders":"","keywords":"Biomass (ecology); Carbon sequestration; Biomass partitioning; Productivity; Provenance; Carbon stock; Biology; Environmental science; Botany; Agronomy; Horticulture; Ecology; Climate change; Carbon dioxide","score_opus":0.009222158558963892,"score_gpt":0.1730067312217369,"score_spread":0.16378457266277302,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1994599764","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99956256,0.000057853103,0.00008689584,0.0000018161584,0.0000018294359,0.0000027815472,0.000084650805,0.000002353933,0.00019928954],"genre_scores_gemma":[0.9994947,0.00002754556,0.00011708912,0.00000437217,0.0000020131145,0.000006370152,0.00020429723,0.000003869009,0.00013971777],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982905,0.00002740592,0.000018753826,0.00007851347,0.000023142455,0.00002319139],"domain_scores_gemma":[0.9995028,0.00015282801,0.00006966256,0.000047525315,0.00008913224,0.00013800069],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027730217,0.00038532144,0.00038170343,0.001797266,0.00061928836,0.00044841433,0.00027173277,0.00019373506,0.0005358786],"category_scores_gemma":[0.0003853863,0.0002564359,0.00033405208,0.0010026451,0.00041808168,0.00041471602,0.0005139455,0.00029853228,0.00012102688],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0020204943,0.00017543121,0.75214237,0.00010474657,0.0004979601,0.0006147122,0.002665316,0.00039282566,0.23193605,0.00027643825,0.00006819734,0.009105354],"study_design_scores_gemma":[0.0000057161224,0.000047374517,0.99832875,0.0000016558448,0.000037963207,0.00010500187,0.0003536342,0.00013346047,0.0008463684,0.000027691243,0.00010762434,0.000004881329],"about_ca_topic_score_codex":0.006820017,"about_ca_topic_score_gemma":0.01378375,"teacher_disagreement_score":0.006820017,"about_ca_system_score_codex":0.0003344504,"about_ca_system_score_gemma":0.00016495137,"threshold_uncertainty_score":0.013560653},"labels":[],"label_agreement":null},{"id":"W1994853451","doi":"10.1016/j.foreco.2013.06.043","title":"From ground to above canopy—Bat activity in mature forests is driven by vegetation density and height","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bat Biology and Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":119,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Western University","funders":"","keywords":"Guild; Canopy; Foraging; Habitat; Vegetation (pathology); Ecology; Environmental science; Tree canopy; Geography; Biology","score_opus":0.006595538351764633,"score_gpt":0.19398883351750026,"score_spread":0.18739329516573563,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1994853451","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99923325,0.000065487075,0.00024612108,0.0000151631575,0.0000024981505,0.0000011992819,0.000037591395,0.00000424127,0.0003944014],"genre_scores_gemma":[0.999526,0.000031193566,0.000101814774,0.000017840977,0.0000044910657,0.0000011700549,0.00008764335,0.0000039587053,0.00022575307],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99992406,0.00001845441,0.0000034596587,0.000025773228,0.000010583961,0.000017674853],"domain_scores_gemma":[0.99936455,0.00022844132,0.00015705185,0.000035511304,0.00006557505,0.00014902007],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001659291,0.000080952814,0.00017873118,0.00017713217,0.00014853054,0.0005154644,0.000122023,0.00018029084,0.0010205635],"category_scores_gemma":[0.0006656262,0.00022619376,0.00013895695,0.00015311703,0.00026533983,0.00032236733,0.00023654863,0.00029930315,0.0002539338],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00063913636,0.00013040229,0.8597787,0.00004225443,0.00008832249,0.00012277611,0.00032216412,0.0009279704,0.121730864,0.00034308588,0.00035735153,0.015516914],"study_design_scores_gemma":[0.0000017365065,0.00003405417,0.9985863,0.0000023756993,0.0000046422206,0.000061933526,0.00004893275,0.0006307651,0.00047191104,0.00008709091,0.00006787733,0.000002397298],"about_ca_topic_score_codex":0.0016156451,"about_ca_topic_score_gemma":0.0055733067,"teacher_disagreement_score":0.0016156451,"about_ca_system_score_codex":0.00012041104,"about_ca_system_score_gemma":0.0001227421,"threshold_uncertainty_score":0.0034140944},"labels":[],"label_agreement":null},{"id":"W1995046114","doi":"10.1016/s0378-1127(99)00292-3","title":"Northern forest management issues","year":2000,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia","funders":"","keywords":"Species richness; Lepidoptera genitalia; Clearcutting; Ecology; Biology; Chronosequence; Caterpillar; Abundance (ecology); Ecosystem","score_opus":0.0029496712853957436,"score_gpt":0.19017013387927795,"score_spread":0.1872204625938822,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1995046114","genre_codex":"other","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0071055354,0.0054896823,0.0005222989,0.17157581,0.0044227513,0.00001831039,0.00013465686,0.00010796863,0.810623],"genre_scores_gemma":[0.07224325,0.0037271183,0.0010498061,0.093195245,0.00352414,0.000050568142,0.00020397239,0.00009049968,0.8259154],"study_design_codex":"not_applicable","study_design_gemma":"observational","domain_scores_codex":[0.9986889,0.00018188592,0.000036737252,0.00020706715,0.00044391773,0.00044145936],"domain_scores_gemma":[0.99861515,0.00026722002,0.00006331042,0.000116142684,0.00046459775,0.00047346484],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0024563007,0.00023306362,0.0003834672,0.0005213033,0.007026679,0.0076959236,0.0012562171,0.0048359116,0.052678056],"category_scores_gemma":[0.0035759404,0.00022810334,0.00024112196,0.00083120546,0.0024717024,0.0038973116,0.001970492,0.0046623577,0.0070332494],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000025238136,0.00005025045,0.0015957404,0.00007283352,0.0000059121567,0.00028435636,0.0022631723,0.00014682094,0.0004996934,0.19218996,0.7340702,0.06879599],"study_design_scores_gemma":[0.000002796886,0.0000037380241,0.0023274077,0.00008166616,0.0000032617684,0.0001005714,0.0012426487,0.000049511073,0.00006755961,0.01028969,0.9858256,0.0000056814306],"about_ca_topic_score_codex":0.065835394,"about_ca_topic_score_gemma":0.25807595,"teacher_disagreement_score":0.065835394,"about_ca_system_score_codex":0.004699026,"about_ca_system_score_gemma":0.007788344,"threshold_uncertainty_score":0.1762256},"labels":[],"label_agreement":null},{"id":"W1995266699","doi":"10.1016/j.foreco.2014.05.024","title":"The development of a forestry geodatabase for natural forest management plans in Costa Rica","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":11,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"Canada Foundation for Innovation; Natural Sciences and Engineering Research Council of Canada; McGill University","keywords":"Standardization; Spatial database; Forest management; Data quality; Database; Data management; Forest inventory; Environmental resource management; Spatial analysis; Geography; Computer science; Relational database; Forestry; Remote sensing; Environmental science; Operations management; Engineering","score_opus":0.005435909100019487,"score_gpt":0.20921625538188865,"score_spread":0.20378034628186917,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1995266699","genre_codex":"dataset","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.2987542,0.0012288592,0.09287461,0.0047730976,0.00019849127,0.004154359,0.5147827,0.024216924,0.0590168],"genre_scores_gemma":[0.3979175,0.00109678,0.2101776,0.00035281666,0.00004235183,0.0022865953,0.37646526,0.0015662336,0.010094899],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9984987,0.00030693185,0.0003770756,0.0002593168,0.0004639127,0.00009407815],"domain_scores_gemma":[0.99069875,0.001312528,0.0012127191,0.002838043,0.003411937,0.0005260238],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0035335252,0.00037034124,0.0005337803,0.0074820574,0.00110837,0.0025228218,0.0018875054,0.0005151461,0.005160419],"category_scores_gemma":[0.011583246,0.0003934023,0.0003966633,0.007782896,0.0003700818,0.0028043692,0.0022314037,0.0007259457,0.0018776854],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00038734582,0.000737071,0.18532194,0.0016684332,0.00026706606,0.0005511041,0.005068342,0.03389075,0.005817409,0.029009758,0.23811433,0.49916646],"study_design_scores_gemma":[0.00014192332,0.000095694064,0.24301296,0.0011947774,0.00025663187,0.00029844325,0.00736606,0.118684255,0.010439925,0.0048120134,0.61352533,0.00017201374],"about_ca_topic_score_codex":0.24238247,"about_ca_topic_score_gemma":0.20906208,"teacher_disagreement_score":0.24238247,"about_ca_system_score_codex":0.004341941,"about_ca_system_score_gemma":0.008009254,"threshold_uncertainty_score":0.4819433},"labels":[],"label_agreement":null},{"id":"W1995360580","doi":"10.1016/s0378-1127(99)00299-6","title":"Cations in solution from forest soils subjected to forest floor removal and compaction treatments","year":2000,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Management and Crop Yield","field":"Agricultural and Biological Sciences","cited_by":66,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia","funders":"Ministry of Forests, Lands and Natural Resource Operations","keywords":"Forest floor; Soil water; Environmental science; Leaching (pedology); Compaction; Nutrient; Weathering; Soil fertility; Soil horizon; Soil science; Chemistry; Geology; Geotechnical engineering","score_opus":0.012085260762981902,"score_gpt":0.21002964969469937,"score_spread":0.19794438893171745,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1995360580","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9781448,0.0030677398,0.0022185533,0.0009749321,0.00084111915,0.00012408412,0.0049328087,0.0001698133,0.009526172],"genre_scores_gemma":[0.97428006,0.0013649819,0.0029623036,0.0004552628,0.00030139743,0.00007834878,0.0055975886,0.0000983205,0.014861662],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99899405,0.00010620713,0.00010204591,0.00024829517,0.00022840759,0.00032094266],"domain_scores_gemma":[0.9986339,0.0003656555,0.0001847869,0.000079095065,0.0004986968,0.0002378091],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006004408,0.0010089292,0.0012158493,0.00085193606,0.0010237445,0.0016977014,0.0012942594,0.0023671675,0.003762215],"category_scores_gemma":[0.0013823786,0.0004793621,0.00034204373,0.00081232603,0.001205871,0.0014699544,0.0007303411,0.0013936044,0.0009040336],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.030132018,0.0004011499,0.0055598337,0.0010820125,0.00019212905,0.0005965118,0.0007908981,0.00086403143,0.9433474,0.0006779849,0.0010532177,0.015302818],"study_design_scores_gemma":[0.0015038591,0.0023585942,0.025317643,0.0001827927,0.00034271606,0.00071505347,0.0019899313,0.0058720023,0.9420443,0.002290139,0.017140713,0.00024222079],"about_ca_topic_score_codex":0.013831969,"about_ca_topic_score_gemma":0.0086218715,"teacher_disagreement_score":0.013831969,"about_ca_system_score_codex":0.0010560306,"about_ca_system_score_gemma":0.0026825326,"threshold_uncertainty_score":0.027502894},"labels":[],"label_agreement":null},{"id":"W1995764862","doi":"10.1016/s0378-1127(03)00148-8","title":"Aboveground productivity of western hemlock and western redcedar mixed-species stands in southern coastal British Columbia","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":73,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ontario Forest Research Institute; University of British Columbia","funders":"","keywords":"Tsuga; Understory; Western Hemlock; Biomass (ecology); Clearcutting; Productivity; Environmental science; Forestry; Site index; Primary production; Ecology; Biology; Agronomy; Ecosystem; Geography; Canopy","score_opus":0.005793180907195959,"score_gpt":0.18570993361004862,"score_spread":0.17991675270285265,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1995764862","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992933,0.0000640801,0.00001055717,0.000011056309,9.390856e-7,0.0000019746738,0.00018576739,0.0000017254466,0.00043047918],"genre_scores_gemma":[0.99872535,0.00005695771,0.000030123947,0.000015896685,5.8483005e-7,0.000003278684,0.00024526904,0.0000018015221,0.00092072226],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997216,0.000037055255,0.000019459714,0.00006642758,0.000058042588,0.00009745979],"domain_scores_gemma":[0.9990934,0.000105492974,0.000121613695,0.000042189524,0.00035036853,0.00028687096],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00034761644,0.000262503,0.000301666,0.0012486617,0.0013343443,0.0010313429,0.00072925416,0.0002671762,0.0015783288],"category_scores_gemma":[0.0009930255,0.00028529996,0.00015918004,0.0016684049,0.0006423775,0.00033021413,0.0007089556,0.00031704054,0.00028252657],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020539045,0.000050847935,0.98731065,0.0000245093,0.0000772586,0.00033205847,0.002052169,0.00027801283,0.0027226012,0.00008750648,0.000544398,0.006314672],"study_design_scores_gemma":[0.000002806537,0.0000047212734,0.9983664,0.000004974096,0.00000961365,0.000028482265,0.0012116386,0.00011766165,0.00005593372,0.000008691532,0.00018582639,0.000003286708],"about_ca_topic_score_codex":0.95573384,"about_ca_topic_score_gemma":0.99322563,"teacher_disagreement_score":0.044266164,"about_ca_system_score_codex":0.0058283918,"about_ca_system_score_gemma":0.0028716514,"threshold_uncertainty_score":0.08905363},"labels":[],"label_agreement":null},{"id":"W1995819337","doi":"10.1016/j.foreco.2005.05.006","title":"Genetically based resistance of black spruce (Picea mariana) to the yellowheaded spruce sawfly (Pikonema alaskensis)","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of New Brunswick","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Sawfly; Black spruce; Resistance (ecology); Biology; Ecology; Botany; Taiga; Hymenoptera","score_opus":0.005978323788914892,"score_gpt":0.2081012815509216,"score_spread":0.20212295776200673,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1995819337","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99975115,0.000013828473,0.000036726346,0.0000021652609,0.0000011609552,0.0000017374201,0.00003216977,0.000002449877,0.00015865987],"genre_scores_gemma":[0.99952257,0.000017441416,0.000078539946,0.0000072803155,9.898447e-7,0.0000024768135,0.00010317514,0.0000033552408,0.0002642765],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9997402,0.00005447407,0.000018601757,0.000108963985,0.000037935464,0.000039898],"domain_scores_gemma":[0.9994574,0.0001537259,0.00015584963,0.000049652557,0.00004422529,0.00013920147],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021738374,0.00038815435,0.00022638279,0.0011927668,0.00024811653,0.00028910217,0.00029955123,0.00033983076,0.0010164715],"category_scores_gemma":[0.0005059193,0.00015791196,0.00019460464,0.0002851855,0.00040748087,0.00016355715,0.0004063344,0.00043167121,0.0001742997],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0023774386,0.000660685,0.23347057,0.000059545233,0.00038075258,0.00039815917,0.00087516854,0.00077130453,0.75417536,0.00036889868,0.0001026094,0.006359459],"study_design_scores_gemma":[0.000026140651,0.0006206368,0.988612,0.0000075108514,0.00009717303,0.00026570912,0.0002479205,0.0005866569,0.009149633,0.00006981179,0.00030590926,0.000010848022],"about_ca_topic_score_codex":0.0036477158,"about_ca_topic_score_gemma":0.0071451264,"teacher_disagreement_score":0.0036477158,"about_ca_system_score_codex":0.00049590593,"about_ca_system_score_gemma":0.00014924564,"threshold_uncertainty_score":0.007252991},"labels":[],"label_agreement":null},{"id":"W1995954934","doi":"10.1016/j.foreco.2005.04.009","title":"Neighborhood size effects on mortality, growth and crown morphology of paper birch","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Kamloops Art Gallery; University of British Columbia","funders":"Ministry of Forests, Lands and Natural Resource Operations","keywords":"Crown (dentistry); RADIUS; Thinning; Betula pendula; Horticulture; Sprouting; Animal science; Biology; Botany; Mathematics; Environmental science; Ecology; Composite material; Materials science","score_opus":0.004370938629216837,"score_gpt":0.20993689843464897,"score_spread":0.20556595980543213,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1995954934","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99982315,0.000027086393,0.000011306999,0.0000060380817,0.0000013181046,3.0796198e-7,0.000025446236,8.94764e-7,0.00010449027],"genre_scores_gemma":[0.9997168,0.000012043639,0.000018012626,0.0000058491155,0.0000020028788,8.464853e-7,0.000053338663,0.0000013384409,0.00018968285],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99980444,0.00006635545,0.000011088856,0.000046699854,0.000023198163,0.0000481587],"domain_scores_gemma":[0.99830747,0.0006900925,0.00028116192,0.00011695819,0.00009498437,0.0005092897],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004507186,0.00019295598,0.00024115507,0.0002725831,0.00030798756,0.00036145374,0.000280847,0.00030809036,0.0022105174],"category_scores_gemma":[0.0013136563,0.0001568021,0.00024021167,0.00014372947,0.00038740243,0.00031606425,0.0003529157,0.00031018764,0.00017568392],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002945079,0.00048177975,0.97703063,0.000015741922,0.00012136171,0.0002344883,0.00024468743,0.0005071056,0.013833558,0.000116667674,0.00021117408,0.004257737],"study_design_scores_gemma":[0.000004587656,0.00012508164,0.9993181,8.623741e-7,0.000015929272,0.00004424743,0.00007159233,0.00021271686,0.00015096663,0.000023348955,0.000030696043,0.0000019146953],"about_ca_topic_score_codex":0.00955263,"about_ca_topic_score_gemma":0.038803615,"teacher_disagreement_score":0.00955263,"about_ca_system_score_codex":0.00036306743,"about_ca_system_score_gemma":0.00022632234,"threshold_uncertainty_score":0.018994033},"labels":[],"label_agreement":null},{"id":"W1996378308","doi":"10.1016/j.foreco.2013.08.017","title":"Tree community structural development in young boreal forests: A comparison of fire and harvesting disturbance","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Lakehead University","funders":"Networks of Centres of Excellence of Canada; Ontario Ministry of Research and Innovation; Natural Sciences and Engineering Research Council of Canada","keywords":"Disturbance (geology); Taiga; Agroforestry; Environmental science; Ecology; Boreal; Stand development; Tree (set theory); Geography; Forestry; Biology; Mathematics","score_opus":0.00855479655848052,"score_gpt":0.2222486367554542,"score_spread":0.21369384019697368,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1996378308","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997336,0.000046483452,0.000030917767,0.0000024870042,7.2563097e-7,0.0000014253959,0.00003638125,6.9088424e-7,0.00014721921],"genre_scores_gemma":[0.9997117,0.000031204418,0.00006057615,0.0000033457966,0.0000013935403,0.0000018549032,0.00008336771,7.1747064e-7,0.00010583465],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998547,0.000030880783,0.000010068409,0.000033054694,0.000029652083,0.00004163302],"domain_scores_gemma":[0.9992003,0.00014596735,0.000250389,0.000039416125,0.000110731395,0.00025319922],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004638271,0.00012704206,0.00014242044,0.000626045,0.00035520675,0.0004431268,0.00021370531,0.00017317139,0.00066783617],"category_scores_gemma":[0.0010049308,0.00012263645,0.00017803602,0.0003843745,0.00029637726,0.00038049743,0.00029293264,0.00014836238,0.00007741856],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021090891,0.00004456138,0.99008876,0.000009624537,0.00003306645,0.00007567939,0.0003795115,0.0000925306,0.004768649,0.00004114978,0.000028844286,0.0042267796],"study_design_scores_gemma":[6.8136194e-7,0.000022329274,0.9996977,6.3909835e-7,0.0000029072953,0.00004338727,0.000102341335,0.000048597693,0.0000517338,0.0000048523802,0.000024240855,6.6095373e-7],"about_ca_topic_score_codex":0.012252616,"about_ca_topic_score_gemma":0.068263255,"teacher_disagreement_score":0.012252616,"about_ca_system_score_codex":0.0003801403,"about_ca_system_score_gemma":0.00029936136,"threshold_uncertainty_score":0.024362624},"labels":[],"label_agreement":null},{"id":"W1996876670","doi":"10.1016/j.foreco.2005.05.061","title":"Effects of soil compaction and forest floor removal on soil microbial properties and N transformations in a boreal forest long-term soil productivity study","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":125,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia; University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; University of Alberta","keywords":"Forest floor; Environmental science; Nitrification; Soil compaction; Mineralization (soil science); Bulk density; Soil organic matter; Agronomy; Water content; Soil fertility; Soil water; Soil science; Chemistry; Geology; Nitrogen; Biology","score_opus":0.011272568736980825,"score_gpt":0.2039905054345238,"score_spread":0.19271793669754297,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1996876670","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999217,0.000014063381,0.000018864992,0.0000035121052,0.0000012539755,0.0000020757973,0.000013524957,6.7786783e-7,0.000024181745],"genre_scores_gemma":[0.99968636,0.000015483965,0.0000795471,0.000017859402,0.0000037954933,0.000006206627,0.000063831634,9.701837e-7,0.00012601918],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997197,0.000084352694,0.000023508826,0.00006372628,0.000034456687,0.00007435288],"domain_scores_gemma":[0.99913615,0.00020044492,0.00017398986,0.00007427838,0.00007626643,0.00033891582],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00072631694,0.00047471895,0.00048782342,0.00028711595,0.0008101518,0.00038190323,0.00039009962,0.00040412476,0.00029245936],"category_scores_gemma":[0.0006538087,0.00026453554,0.00057801104,0.00024584087,0.0008416493,0.0004941925,0.00032116854,0.00055289664,0.000052743082],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.026465084,0.008355297,0.84180915,0.00004661684,0.000460503,0.0010359178,0.0010292379,0.00086618704,0.10884663,0.00007997985,0.00020481579,0.010800551],"study_design_scores_gemma":[0.00007103245,0.0031416654,0.99386036,0.0000013921345,0.00006402357,0.00020355186,0.00022049036,0.00040509738,0.0019114908,0.000018148523,0.000092875904,0.000009809777],"about_ca_topic_score_codex":0.035224825,"about_ca_topic_score_gemma":0.0756378,"teacher_disagreement_score":0.035224825,"about_ca_system_score_codex":0.00085163943,"about_ca_system_score_gemma":0.00059114693,"threshold_uncertainty_score":0.07003957},"labels":[],"label_agreement":null},{"id":"W1999368812","doi":"10.1016/j.foreco.2003.09.010","title":"Pre-commercial thinning effects on growth, yield and mortality in even-aged paper birch stands in British Columbia","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":78,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"","keywords":"Thinning; Basal area; Mathematics; Animal science; Randomized block design; Horticulture; Biology; Forestry; Botany; Geography; Ecology","score_opus":0.005763207751321012,"score_gpt":0.20912282506689223,"score_spread":0.20335961731557123,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1999368812","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993869,0.00010902369,0.000009942224,0.00001603288,0.000001846175,0.0000022076738,0.0001312338,0.0000021049084,0.0003407369],"genre_scores_gemma":[0.9987941,0.00009299968,0.000028885393,0.000020717142,0.0000010155235,0.0000029927044,0.00021919142,0.0000028905274,0.0008371544],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99960464,0.000073226,0.000024135814,0.000067590576,0.00007754503,0.0001528114],"domain_scores_gemma":[0.9981123,0.000392541,0.00020732312,0.000098495715,0.0005466468,0.0006427767],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007412296,0.0003590379,0.00038341366,0.00076213444,0.0012070598,0.00075125333,0.00088874955,0.00036726956,0.0016645574],"category_scores_gemma":[0.0015893839,0.00027081848,0.00019962383,0.0008456543,0.0007015363,0.0002961462,0.00044406785,0.0004444534,0.00025963236],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00093550386,0.0002945512,0.9822903,0.000025722971,0.00010509951,0.00048444886,0.00074238103,0.00063660805,0.004871561,0.00009856759,0.00083741744,0.008677857],"study_design_scores_gemma":[0.0000049192126,0.000017146405,0.99937326,0.0000034577665,0.000009959492,0.00001957649,0.00026630843,0.00011306143,0.00007692369,0.000009417379,0.0001031247,0.000002848684],"about_ca_topic_score_codex":0.915483,"about_ca_topic_score_gemma":0.9856989,"teacher_disagreement_score":0.084517,"about_ca_system_score_codex":0.007338761,"about_ca_system_score_gemma":0.004612984,"threshold_uncertainty_score":0.1700294},"labels":[],"label_agreement":null},{"id":"W1999455826","doi":"10.1016/j.foreco.2012.07.029","title":"Relationships between forest structure, understorey light and regeneration in complex Douglas-fir dominated stands in south-eastern British Columbia","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":56,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Understory; Regeneration (biology); Douglas fir; Forestry; Geography; Ecology; Forest regeneration; Natural regeneration; Agroforestry; Environmental science; Biology; Canopy","score_opus":0.016394626142141072,"score_gpt":0.20868445249870288,"score_spread":0.1922898263565618,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1999455826","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994649,0.00009198917,0.000011930985,0.000023082412,9.436184e-7,0.0000020617929,0.00010020817,9.969087e-7,0.00030389667],"genre_scores_gemma":[0.9991775,0.000075381664,0.000027754568,0.000017584262,5.7691614e-7,0.0000028048312,0.000111302485,0.0000013390337,0.0005857632],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997744,0.0000346777,0.000016949502,0.000050498027,0.00004275857,0.0000807847],"domain_scores_gemma":[0.9987908,0.00024405034,0.00016927184,0.000050312567,0.00037373634,0.00037185702],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00032236427,0.00017411598,0.00022842955,0.0007495243,0.0012882475,0.00086917105,0.00061945536,0.00029503024,0.0019416265],"category_scores_gemma":[0.0013146244,0.00026491567,0.00012272537,0.0011799004,0.0008480715,0.00020875329,0.00052542007,0.00037333264,0.00018832299],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00011309901,0.000049238217,0.992607,0.000015226445,0.00004716368,0.0001586281,0.0011859436,0.00022292732,0.0009610116,0.00005545783,0.00038020944,0.004204032],"study_design_scores_gemma":[0.0000031260008,0.0000033252823,0.99895203,0.0000052472924,0.0000067760425,0.000022514958,0.0007271363,0.00010387713,0.000025346715,0.0000101475125,0.00013800293,0.0000024470132],"about_ca_topic_score_codex":0.96222055,"about_ca_topic_score_gemma":0.9944606,"teacher_disagreement_score":0.03777945,"about_ca_system_score_codex":0.0057036784,"about_ca_system_score_gemma":0.0039339866,"threshold_uncertainty_score":0.07600385},"labels":[],"label_agreement":null},{"id":"W1999475216","doi":"10.1016/j.foreco.2005.01.005","title":"Effects of strip and single-tree selection cutting on birds and their habitat in a southwestern Quebec northern hardwood forest","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":87,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec à Montréal","funders":"","keywords":"Snag; Clearcutting; Habitat; Silviculture; Understory; Forest management; Ecology; Abundance (ecology); Point pattern analysis; Forestry; Old-growth forest; Geography; Agroforestry; Biology; Spatial ecology; Canopy","score_opus":0.0040943901620475644,"score_gpt":0.1861879044198686,"score_spread":0.18209351425782103,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1999475216","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992902,0.000062821724,0.00001766375,0.000038141767,0.0000021640892,0.0000043077634,0.00014717049,0.0000026601774,0.0004347827],"genre_scores_gemma":[0.99842346,0.00003956781,0.00007543585,0.00003481373,0.0000022272427,0.000008397337,0.00017668966,0.0000029435823,0.0012364843],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995022,0.00012261509,0.000013834869,0.00008273583,0.00008551844,0.00019313955],"domain_scores_gemma":[0.9983663,0.00031968803,0.00023036063,0.000051640964,0.0003979618,0.0006339807],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005024593,0.00026272633,0.0004804909,0.00087458943,0.0025810564,0.0010215397,0.0010155849,0.00047168107,0.0034674942],"category_scores_gemma":[0.0010966982,0.0002349534,0.00026306996,0.0011326596,0.0013277428,0.0003668684,0.00057995325,0.0005292058,0.00022650973],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007838279,0.00023086314,0.9806662,0.000031249892,0.00013867578,0.0004062248,0.0023522004,0.0006934708,0.003321262,0.0001622752,0.0015981521,0.009615498],"study_design_scores_gemma":[0.0000054473276,0.000021605665,0.998777,0.000003524943,0.000006372988,0.000020555271,0.0007706658,0.00019598973,0.000023160404,0.000007750916,0.00016431247,0.000003591588],"about_ca_topic_score_codex":0.9688418,"about_ca_topic_score_gemma":0.9949504,"teacher_disagreement_score":0.031158209,"about_ca_system_score_codex":0.012875675,"about_ca_system_score_gemma":0.0048624286,"threshold_uncertainty_score":0.09342003},"labels":[],"label_agreement":null},{"id":"W1999712031","doi":"10.1016/j.foreco.2009.06.033","title":"Effects of experimental forest harvesting on oribatid mite biodiversity","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Study of Mite Species","field":"Agricultural and Biological Sciences","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"","keywords":"Biodiversity; Ecology; Agroforestry; Mite; Geography; Environmental science; Biology","score_opus":0.009461074089095732,"score_gpt":0.19391809090335574,"score_spread":0.18445701681426,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1999712031","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996007,0.00003370804,0.000040926727,0.000016429412,0.000009738943,0.000013599291,0.00006879706,0.000005048518,0.00021102092],"genre_scores_gemma":[0.99843436,0.000052488795,0.00020181893,0.00005420834,0.000018803117,0.00007017817,0.00017020664,0.000011516564,0.0009863905],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99903667,0.00031130417,0.00009985601,0.00017137715,0.00009114783,0.00028971527],"domain_scores_gemma":[0.99357057,0.0027545576,0.001187425,0.00079786836,0.0002847383,0.0014049275],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007608982,0.00074609474,0.00071569375,0.0005331295,0.00082346884,0.0008560924,0.0007239663,0.00065067166,0.0039318255],"category_scores_gemma":[0.0022225894,0.00046168946,0.00042993124,0.0004449933,0.0020894164,0.0007719664,0.0007308334,0.0010932012,0.0002507623],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.32705706,0.06480982,0.13481961,0.0003905806,0.00057352014,0.0009832914,0.0013649216,0.0034078893,0.43634987,0.0010229343,0.0008641598,0.028356371],"study_design_scores_gemma":[0.0030032506,0.07061369,0.7782404,0.00004712282,0.00043590445,0.00048975524,0.0017300514,0.0052311895,0.13751592,0.00091599073,0.0016574244,0.00011934797],"about_ca_topic_score_codex":0.0042240713,"about_ca_topic_score_gemma":0.009543354,"teacher_disagreement_score":0.0042240713,"about_ca_system_score_codex":0.0010435211,"about_ca_system_score_gemma":0.0010397676,"threshold_uncertainty_score":0.013153255},"labels":[],"label_agreement":null},{"id":"W2000315850","doi":"10.1016/j.foreco.2007.09.025","title":"Early growth and survival of three miombo woodland indigenous fruit tree species under fertilizer, manure and dry-season irrigation in southern Malawi","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"African Botany and Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":34,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Government of Canada; Australian Government; United States Agency for International Development","keywords":"Irrigation; Fertilizer; Biology; Sowing; Agronomy; Manure","score_opus":0.022522711710469105,"score_gpt":0.19752859256882904,"score_spread":0.17500588085835994,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2000315850","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999884,0.000012245313,0.000006706858,0.0000036558429,2.6989562e-7,0.0000010222423,0.000022170227,2.917327e-7,0.0000697877],"genre_scores_gemma":[0.99948645,0.000018900188,0.000023063634,0.000006828705,4.325244e-7,0.0000028242382,0.000047288493,3.6764732e-7,0.00041375967],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99992836,0.000016782584,0.0000031222985,0.000013048618,0.000008106607,0.000030545798],"domain_scores_gemma":[0.9997358,0.000053539654,0.00007573271,0.00001133687,0.000033999826,0.00008964786],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014974328,0.00018565399,0.00014480784,0.00023887672,0.0005131341,0.00039679246,0.00024185091,0.00019879609,0.00073937525],"category_scores_gemma":[0.00033523282,0.0001079017,0.0001445147,0.00022132753,0.00035539002,0.00031466526,0.00033656674,0.00028996036,0.00017162637],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0017168033,0.00048162413,0.911063,0.000051977273,0.000064107815,0.00068571215,0.0061840443,0.00021613065,0.07075203,0.00017885593,0.00014743736,0.008458191],"study_design_scores_gemma":[0.000002751141,0.0002083677,0.9975042,0.000002686273,0.0000075594967,0.0000673716,0.0011835466,0.00008482224,0.0007978913,0.000009639006,0.00012838631,0.000002794361],"about_ca_topic_score_codex":0.023955762,"about_ca_topic_score_gemma":0.08915453,"teacher_disagreement_score":0.023955762,"about_ca_system_score_codex":0.000575771,"about_ca_system_score_gemma":0.00023394058,"threshold_uncertainty_score":0.047632635},"labels":[],"label_agreement":null},{"id":"W2000400617","doi":"10.1016/j.foreco.2009.08.023","title":"Growth and productivity of black spruce in even- and uneven-aged stands at the limit of the closed boreal forest","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":32,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Chicoutimi","funders":"","keywords":"Taiga; Black spruce; Boreal; Productivity; Forest dynamics; Stand development; Ecology; Dendrochronology; Forestry; Forest ecology; Geography; Latitude; Environmental science; Physical geography; Biology; Ecosystem","score_opus":0.0050611157709741705,"score_gpt":0.1939216889337162,"score_spread":0.18886057316274202,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2000400617","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99981743,0.000022834778,0.000012013693,0.0000035391909,0.0000011463748,3.846864e-7,0.000055588644,0.0000010525505,0.000086039014],"genre_scores_gemma":[0.99961096,0.0000132825,0.00002639861,0.0000042155034,0.0000020446992,0.0000010582962,0.00014061967,0.0000013451784,0.00020007827],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99987805,0.000025574336,0.0000067349433,0.000032047195,0.000016567745,0.000040969444],"domain_scores_gemma":[0.99917066,0.00021979287,0.000129304,0.000043885982,0.00007758014,0.00035875908],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038153172,0.00028201632,0.00021217648,0.0004963358,0.00031265637,0.00047690186,0.00030056675,0.00025075776,0.0010009172],"category_scores_gemma":[0.0006639203,0.00017053114,0.0002444427,0.00021440985,0.00044871066,0.0005004644,0.00031509157,0.00030858745,0.00025723],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0028825444,0.0002751864,0.9719872,0.00001993417,0.00009853896,0.00041711133,0.0005103695,0.0010642407,0.017247967,0.00014546583,0.00024659856,0.0051049194],"study_design_scores_gemma":[0.0000076264864,0.00006158258,0.9989637,0.0000012162318,0.000008598568,0.00008421123,0.00015014091,0.00047572446,0.00015460509,0.000036772948,0.000052564872,0.0000031633026],"about_ca_topic_score_codex":0.023218876,"about_ca_topic_score_gemma":0.05185312,"teacher_disagreement_score":0.023218876,"about_ca_system_score_codex":0.0004700681,"about_ca_system_score_gemma":0.0002031649,"threshold_uncertainty_score":0.046167433},"labels":[],"label_agreement":null},{"id":"W2000430416","doi":"10.1016/j.foreco.2006.09.081","title":"Domestication of Allanblackia floribunda: Amenability to vegetative propagation","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"African Botany and Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":55,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"Unilever","keywords":"Cutting; Leafy; Biology; Vegetative reproduction; Auxin; Horticulture; Habit; Botany; Domestication; clone (Java method); Ecology","score_opus":0.0077112670672240015,"score_gpt":0.20594839970845102,"score_spread":0.19823713264122703,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2000430416","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99924207,0.000047246598,0.00003400498,0.000013083784,4.3177002e-7,0.0000016758586,0.000028353841,0.000002210343,0.0006309091],"genre_scores_gemma":[0.998995,0.0000452293,0.00011950338,0.000017029059,9.0038793e-7,0.0000050791814,0.000094140894,0.0000058440114,0.00071716047],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9998983,0.000028471313,0.000005793468,0.00002388276,0.000009454633,0.00003412315],"domain_scores_gemma":[0.99978524,0.00005994407,0.000052393505,0.000029115112,0.000018697076,0.000054596458],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001522611,0.00022299413,0.00021545375,0.000767969,0.0004681627,0.00024507023,0.00038861344,0.00023135729,0.0012617944],"category_scores_gemma":[0.00022668343,0.000118650074,0.00016061564,0.0004705606,0.00033641403,0.00028389445,0.00047681847,0.0003277836,0.00013017225],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000674211,0.0001663046,0.043674458,0.00004968748,0.000028500024,0.0010393899,0.0018904036,0.00010937895,0.9294832,0.00090275815,0.000086287895,0.021895375],"study_design_scores_gemma":[0.000019060264,0.00022621233,0.97874284,0.000008533013,0.000026245632,0.0013448448,0.0014646403,0.00024806993,0.0145567665,0.00017501134,0.0031752102,0.000012686488],"about_ca_topic_score_codex":0.0058859773,"about_ca_topic_score_gemma":0.016872417,"teacher_disagreement_score":0.0058859773,"about_ca_system_score_codex":0.0006785312,"about_ca_system_score_gemma":0.00022493758,"threshold_uncertainty_score":0.011703432},"labels":[],"label_agreement":null},{"id":"W2000551383","doi":"10.1016/j.foreco.2007.01.067","title":"A less restrictive technique for the estimation of understory light under variable weather conditions","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":29,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université de Montréal","funders":"","keywords":"Overcast; Sky; Understory; Environmental science; Replication (statistics); Computer science; Variable (mathematics); Remote sensing; Statistics; Meteorology; Mathematics; Ecology; Geography; Canopy; Biology","score_opus":0.007198755610990948,"score_gpt":0.21506450239355523,"score_spread":0.20786574678256428,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2000551383","genre_codex":"methods","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":"methods","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.027684385,0.00010535335,0.9701286,0.000041749063,0.00006627661,0.000057416295,0.00057171506,0.00052645913,0.0008179072],"genre_scores_gemma":[0.121506095,0.0002059568,0.8732213,0.00016222661,0.000108216474,0.00030873786,0.001587649,0.00027259692,0.0026271353],"study_design_codex":"design_other","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9990183,0.000348184,0.00007943278,0.00032267743,0.00017699198,0.000054443768],"domain_scores_gemma":[0.99717844,0.0013042197,0.00019201949,0.0007901238,0.0004734153,0.00006180966],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0015807706,0.00062398094,0.0010966653,0.0011638347,0.00064907223,0.00074869837,0.0009798952,0.00091480714,0.0040307012],"category_scores_gemma":[0.004664784,0.00042545467,0.0009731826,0.0015783559,0.00035482293,0.0010645321,0.0008702778,0.001473207,0.0019695135],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006431296,0.0004438612,0.027523743,0.00056586124,0.00042418326,0.00015111313,0.0005273909,0.01261859,0.3692419,0.0046079587,0.0043024668,0.5789498],"study_design_scores_gemma":[0.00017729372,0.000781046,0.31776106,0.00020029368,0.00081056653,0.003062137,0.00025889723,0.49743822,0.13976243,0.00782649,0.031443205,0.00047839596],"about_ca_topic_score_codex":0.0060574217,"about_ca_topic_score_gemma":0.013302773,"teacher_disagreement_score":0.0060574217,"about_ca_system_score_codex":0.00020720948,"about_ca_system_score_gemma":0.0007248545,"threshold_uncertainty_score":0.013484061},"labels":[],"label_agreement":null},{"id":"W2001141755","doi":"10.1016/s0378-1127(00)00356-x","title":"Bird responses to partial retention timber harvesting in central interior British Columbia","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":54,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Logging; Guild; Habitat; Understory; Forest management; Ecology; Wildlife; Sustainable forest management; Riparian zone; Transect; Foraging; Generalist and specialist species; Geography; Species diversity; Forest floor; Riparian forest; Environmental science; Biology; Ecosystem; Canopy","score_opus":0.010433514164753598,"score_gpt":0.21040495096368184,"score_spread":0.19997143679892823,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2001141755","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99919945,0.00005121514,0.0000052577248,0.000037958107,0.000001991799,0.000004228143,0.000093379735,0.0000010591356,0.00060546614],"genre_scores_gemma":[0.9980046,0.00007176082,0.000018965808,0.00005817512,0.0000014288024,0.0000074628088,0.00015932755,0.0000013799227,0.0016768909],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998115,0.0000315033,0.000008252392,0.000030454625,0.000035350666,0.0000830064],"domain_scores_gemma":[0.9987942,0.00016840422,0.00015349298,0.00003876309,0.0003660237,0.00047916835],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025827714,0.00014367561,0.00022289148,0.0004415744,0.0014906257,0.0007135859,0.0004427244,0.0004054619,0.0024000485],"category_scores_gemma":[0.0011314809,0.00017044482,0.00011229866,0.00066597236,0.00055855874,0.00017147146,0.00045032997,0.00045539817,0.00025367294],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010863543,0.00024874983,0.9799944,0.000036116908,0.00008289229,0.00033793857,0.002356889,0.00043261296,0.0034011016,0.00004790676,0.0017794014,0.010195606],"study_design_scores_gemma":[0.0000034010973,0.000015335188,0.9984126,0.0000039665256,0.0000045695374,0.000014673493,0.0012546194,0.000054239325,0.000038093007,0.000004817481,0.00019166328,0.000002011472],"about_ca_topic_score_codex":0.92272204,"about_ca_topic_score_gemma":0.98745024,"teacher_disagreement_score":0.07727796,"about_ca_system_score_codex":0.0054479516,"about_ca_system_score_gemma":0.0028957108,"threshold_uncertainty_score":0.15546608},"labels":[],"label_agreement":null},{"id":"W2001586136","doi":"10.1016/j.foreco.2012.05.004","title":"Short-term effects of firebreaks on seedling growth, nutrient concentrations and soil strength in southern Australian wet eucalypt forests","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Seedling; Environmental science; Nutrient; Agronomy; Sowing; Debris; Forestry; Biology; Ecology; Geography","score_opus":0.007788111469524671,"score_gpt":0.2139973976962221,"score_spread":0.20620928622669743,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2001586136","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998809,0.000027658965,0.0000052027726,0.0000040620253,6.778829e-7,9.909941e-7,0.000018527464,4.1015025e-7,0.00006152748],"genre_scores_gemma":[0.99957985,0.000027145139,0.000017474098,0.000007807868,0.0000011519769,0.0000031796792,0.00006804077,5.7323837e-7,0.00029463708],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983144,0.000030307985,0.000013300947,0.000035900706,0.000033917964,0.00005498477],"domain_scores_gemma":[0.99868923,0.00032497925,0.00028127883,0.00006259711,0.00016581941,0.00047607045],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005127027,0.00022665317,0.00031791284,0.00037740686,0.000711329,0.0005137285,0.00035425866,0.00041144138,0.0010818038],"category_scores_gemma":[0.001108179,0.00022661859,0.0002534457,0.0002863535,0.0006928295,0.00046303062,0.000634272,0.0005446029,0.00013306084],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0036921338,0.0007738819,0.93954784,0.000108558925,0.0002610955,0.000585629,0.0022873029,0.0006283455,0.04315353,0.00009825063,0.0001731296,0.00869034],"study_design_scores_gemma":[0.0000018244788,0.00010094687,0.9994691,0.0000015546992,0.0000074453965,0.000014974565,0.00017357692,0.000056179502,0.00012997695,0.00000672674,0.000035784895,0.000001925048],"about_ca_topic_score_codex":0.060985625,"about_ca_topic_score_gemma":0.20346671,"teacher_disagreement_score":0.060985625,"about_ca_system_score_codex":0.0012973326,"about_ca_system_score_gemma":0.00048642856,"threshold_uncertainty_score":0.1212613},"labels":[],"label_agreement":null},{"id":"W2001880519","doi":"10.1016/j.foreco.2005.02.005","title":"Monitoring and information reporting for sustainable forest management: An international multiple case study analysis","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Sustainable forest management; Forest management; Environmental resource management; Adaptive management; Business; Scale (ratio); Sustainable management; Best practice; Certified wood; Sustainability; Forestry; Geography; Environmental science; Ecology; Political science","score_opus":0.010827824296805828,"score_gpt":0.27368955516967236,"score_spread":0.2628617308728665,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2001880519","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.94147485,0.00063070725,0.018754037,0.003536299,0.00004371113,0.0007726274,0.0008515713,0.000059324746,0.0338769],"genre_scores_gemma":[0.98594284,0.00029726134,0.011727356,0.00010989402,0.000017780927,0.00030194884,0.0003229669,0.000018816829,0.0012611428],"study_design_codex":"observational","study_design_gemma":"qualitative","domain_scores_codex":[0.9818127,0.011183278,0.0011343075,0.0008094409,0.0034366432,0.0016234682],"domain_scores_gemma":[0.9523319,0.031150965,0.006223367,0.0034759052,0.0057512126,0.0010666153],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.023613593,0.00041552153,0.00037673305,0.0035636805,0.0027341102,0.0033614857,0.0014807055,0.0015333133,0.0029717148],"category_scores_gemma":[0.030850923,0.0003041351,0.0009179124,0.007319604,0.0014607045,0.004452343,0.0021546285,0.0015158642,0.00018863298],"study_design_candidate":"qualitative","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0036304544,0.0042130896,0.53702587,0.0010164301,0.00081227365,0.012399935,0.021716187,0.03161054,0.0074197813,0.06517188,0.015602441,0.29938117],"study_design_scores_gemma":[0.0006194238,0.0035072106,0.5928483,0.0015071916,0.002543712,0.015756587,0.12077883,0.14024937,0.034208193,0.017852357,0.06957039,0.0005583751],"about_ca_topic_score_codex":0.019848209,"about_ca_topic_score_gemma":0.023754762,"teacher_disagreement_score":0.023613593,"about_ca_system_score_codex":0.0059888624,"about_ca_system_score_gemma":0.004109453,"threshold_uncertainty_score":0.1248821},"labels":[],"label_agreement":null},{"id":"W2001920426","doi":"10.1016/s0378-1127(03)00065-3","title":"Pinus radiata in a sub-humid temperate silvopastoral system: modelling of seasonal root growth","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Elongation; Understory; Pinus radiata; Radiata; Seedling; Biology; Water content; Horticulture; Temperate climate; Root system; Agronomy; Lateral root; Botany; Vigna; Canopy; Materials science","score_opus":0.0065178997975844115,"score_gpt":0.17115925162869844,"score_spread":0.16464135183111403,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2001920426","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99880433,0.000052095194,0.00055224134,0.000028611768,0.0000025043375,0.000005137543,0.00005501158,0.00001579875,0.00048419868],"genre_scores_gemma":[0.999268,0.000035947578,0.0003344446,0.0000068557506,0.0000015379045,0.000006707023,0.00003467277,0.0000058712417,0.0003059238],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999343,0.000018048651,0.0000031093705,0.000021939384,0.0000050199515,0.00001759728],"domain_scores_gemma":[0.9996774,0.00019420209,0.0000356383,0.000012651881,0.000024236571,0.000055958426],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024156216,0.00045559986,0.000433814,0.0002896045,0.00046052446,0.000614443,0.0007429701,0.0008426753,0.0012259971],"category_scores_gemma":[0.0005749894,0.00047162393,0.00046297192,0.0003305171,0.00058971276,0.00063002214,0.00042061793,0.00035904098,0.00009575846],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00027393072,0.00011483828,0.020340126,0.000057720637,0.0000594241,0.00020047968,0.00011779333,0.9695962,0.006502242,0.0005234211,0.00019743723,0.0020164638],"study_design_scores_gemma":[0.000040648058,0.00009532952,0.015437295,0.0000030934723,0.000025749712,0.000033665536,0.00012446233,0.983424,0.00043881848,0.0002310946,0.00013346862,0.000012215929],"about_ca_topic_score_codex":0.07482001,"about_ca_topic_score_gemma":0.07253575,"teacher_disagreement_score":0.07482001,"about_ca_system_score_codex":0.0009543456,"about_ca_system_score_gemma":0.0006415613,"threshold_uncertainty_score":0.14876902},"labels":[],"label_agreement":null},{"id":"W2002194299","doi":"10.1016/j.foreco.2008.10.028","title":"Mangrove community recovery potential after catastrophic disturbances in Bangladesh","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Coastal wetland ecosystem dynamics","field":"Environmental Science","cited_by":54,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"","keywords":"Mangrove; Species richness; Propagule; Soil seed bank; Vegetation (pathology); Ecology; Habitat; Rhizophora; Quadrat; Grassland; Environmental science; Agroforestry; Biology; Germination; Agronomy; Transect","score_opus":0.004376425421114669,"score_gpt":0.17286294049667617,"score_spread":0.1684865150755615,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2002194299","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990926,0.000026573884,0.000019705572,0.000045174053,8.1598694e-7,0.0000049550786,0.00008753778,0.0000011797213,0.00072152657],"genre_scores_gemma":[0.99973196,0.000026265763,0.000009127779,0.000005328103,4.1257658e-7,0.0000030825872,0.000042857424,2.4163185e-7,0.0001807534],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979454,0.000029437633,0.000016530299,0.000025361584,0.000027246218,0.00010686978],"domain_scores_gemma":[0.9994424,0.000070217146,0.00018389848,0.000028459119,0.00012420477,0.00015075864],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028424844,0.00015625135,0.00020198802,0.00045919453,0.00090398244,0.0005167341,0.00028388444,0.00027884383,0.0016006702],"category_scores_gemma":[0.0008938493,0.00012790509,0.0001562512,0.0007013873,0.00053064607,0.00046722672,0.0006742548,0.00025433797,0.000261892],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00057688385,0.00011759358,0.96833885,0.000055928933,0.000048854945,0.0024977305,0.0054915007,0.0010560944,0.005269297,0.0005579274,0.00055734697,0.015432014],"study_design_scores_gemma":[0.000010673413,0.00012670562,0.9899734,0.000013030679,0.00001654282,0.00033211694,0.007828055,0.00052131986,0.00029347523,0.00018347372,0.0006888087,0.0000123206555],"about_ca_topic_score_codex":0.07938506,"about_ca_topic_score_gemma":0.18600246,"teacher_disagreement_score":0.07938506,"about_ca_system_score_codex":0.0022399556,"about_ca_system_score_gemma":0.0012397498,"threshold_uncertainty_score":0.15784591},"labels":[],"label_agreement":null},{"id":"W2003028220","doi":"10.1016/j.foreco.2009.03.018","title":"Emulating natural disturbances as a forest management goal: Lessons from fire regime simulations","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":23,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute","funders":"Natural Resources Canada; Ontario Ministry of Natural Resources and Forestry","keywords":"Environmental science; Fire regime; Disturbance (geology); Taiga; Climate change; Boreal; Terrain; Environmental resource management; Forest management; Natural (archaeology); Physical geography; Ecology; Geography; Ecosystem; Agroforestry; Forestry; Cartography","score_opus":0.005389040299409622,"score_gpt":0.2345488310401939,"score_spread":0.22915979074078427,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2003028220","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.90711325,0.00042432357,0.073652275,0.0021246013,0.00011574702,0.00007430882,0.00047195778,0.00019637884,0.015827185],"genre_scores_gemma":[0.9910362,0.00014846017,0.007746654,0.00010448107,0.000020672274,0.000046479185,0.00011210509,0.000039480434,0.00074544],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9996138,0.0002387593,0.000018464629,0.00005301127,0.00003018812,0.00004580381],"domain_scores_gemma":[0.98881847,0.009844497,0.0003610034,0.00040170288,0.00025858253,0.00031561716],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0021137965,0.00068978016,0.0008115832,0.0004693689,0.00051721995,0.0012766364,0.0015703435,0.002172275,0.0021187924],"category_scores_gemma":[0.015229616,0.0005082948,0.00055237015,0.00062190235,0.00085197017,0.0022119577,0.0006556679,0.0017332935,0.00012529582],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000037875267,0.000052919455,0.0022728413,0.000014104784,0.000025426167,0.00001924853,0.000050946193,0.9902596,0.000060204948,0.0048807696,0.00027564322,0.0020504086],"study_design_scores_gemma":[0.000030544823,0.000012023077,0.00030321247,0.000005544095,0.000009192025,0.000005849463,0.000029867033,0.9906025,0.00005909625,0.008743665,0.00019396233,0.0000046572072],"about_ca_topic_score_codex":0.03579207,"about_ca_topic_score_gemma":0.026808685,"teacher_disagreement_score":0.03579207,"about_ca_system_score_codex":0.0013616002,"about_ca_system_score_gemma":0.0014715666,"threshold_uncertainty_score":0.07116753},"labels":[],"label_agreement":null},{"id":"W2003909494","doi":"10.1016/j.foreco.2006.12.030","title":"Stand structure and development of an insect-mediated boreal forest landscape","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":34,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Abies balsamea; Black spruce; Ecology; Stand development; Taiga; Forestry; Chronosequence; Geography; Balsam; Agroforestry; Biology; Ecological succession; Botany","score_opus":0.011631076718082348,"score_gpt":0.19273399811844394,"score_spread":0.1811029214003616,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2003909494","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99959606,0.000040936455,0.000024912679,0.000005173646,4.835975e-7,0.0000011170573,0.000029294239,8.6720416e-7,0.0003011594],"genre_scores_gemma":[0.9997837,0.000013047863,0.00005676215,0.0000029214066,7.374915e-7,0.0000010803609,0.000043506112,6.208377e-7,0.00009777791],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998776,0.000037408467,0.0000062166655,0.000029316188,0.0000174352,0.000032085773],"domain_scores_gemma":[0.9995426,0.000052535826,0.00017498736,0.000025463487,0.00004942689,0.00015497288],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025491818,0.00012232263,0.00011714365,0.0006189012,0.00043654136,0.00067457225,0.00026168584,0.00018389923,0.0011800774],"category_scores_gemma":[0.00057461474,0.00012104524,0.00011513345,0.00033658362,0.0003855222,0.0002662986,0.00036534958,0.00016919394,0.00009380188],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00040003943,0.00014724777,0.9697252,0.000020255831,0.00008921129,0.00018612284,0.0003938423,0.0005295168,0.021107484,0.0006713371,0.00016892429,0.006560759],"study_design_scores_gemma":[0.0000032062599,0.000036345147,0.9992798,9.146524e-7,0.0000069104594,0.000085483014,0.000103043196,0.000278071,0.0000895522,0.00005384461,0.000061097555,0.0000016816455],"about_ca_topic_score_codex":0.009770848,"about_ca_topic_score_gemma":0.07112631,"teacher_disagreement_score":0.009770848,"about_ca_system_score_codex":0.00047530784,"about_ca_system_score_gemma":0.00027067726,"threshold_uncertainty_score":0.019427955},"labels":[],"label_agreement":null},{"id":"W2004255371","doi":"10.1016/j.foreco.2014.09.001","title":"Long-term dynamics of the characteristics of tree cavities used for nesting by vertebrates","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":49,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Environment and Climate Change Canada; University of British Columbia","funders":"Environment Canada; Natural Sciences and Engineering Research Council of Canada","keywords":"Snag; Ecology; Wildlife; Cavity wall; Nesting (process); Biology; Animal science; Environmental science; Materials science; Habitat; Composite material","score_opus":0.005244392829170192,"score_gpt":0.19170509490173793,"score_spread":0.18646070207256774,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2004255371","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99946076,0.00013009156,0.00004715875,0.00002648385,0.0000024903786,0.0000014833703,0.00014702557,0.0000014540053,0.00018303229],"genre_scores_gemma":[0.99937075,0.00003466972,0.000029678575,0.000007802112,0.0000035521905,0.0000031365942,0.000231041,0.0000015997852,0.0003178887],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997496,0.00004240357,0.000019137773,0.000081172075,0.000030536263,0.0000771042],"domain_scores_gemma":[0.9969067,0.00069754827,0.0012190753,0.00018817844,0.00039364153,0.0005949259],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006549756,0.0001260777,0.00030277215,0.0005974336,0.00049292744,0.0007337344,0.0004960336,0.00075521955,0.0026977705],"category_scores_gemma":[0.0020579149,0.00022347558,0.0003546819,0.00057135243,0.00058885984,0.0007496768,0.00070372125,0.0007220704,0.00054429524],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020482142,0.00009542091,0.99388945,0.000011212242,0.00011103274,0.000047549092,0.00034013044,0.00016944639,0.0023539127,0.000067574954,0.00013323764,0.0025761328],"study_design_scores_gemma":[7.13193e-7,0.000018556766,0.9996045,0.0000019493457,0.0000069687026,0.000024045085,0.00013650415,0.00010475923,0.000033020966,0.000016522572,0.000049942173,0.0000024472715],"about_ca_topic_score_codex":0.0076115364,"about_ca_topic_score_gemma":0.028487068,"teacher_disagreement_score":0.0076115364,"about_ca_system_score_codex":0.0004384527,"about_ca_system_score_gemma":0.00020913799,"threshold_uncertainty_score":0.015134454},"labels":[],"label_agreement":null},{"id":"W2004262867","doi":"10.1016/j.foreco.2011.10.015","title":"Linking fungi, trees, and hole-using birds in a Neotropical tree-cavity network: Pathways of cavity production and implications for conservation","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":135,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Environment and Climate Change Canada; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; Consejo Nacional de Investigaciones Científicas y Técnicas; Killam Trusts; Neotropical Bird Club; Columbus Zoo and Aquarium; Idea Wild","keywords":"Ecology; Biology; Snag; Biodiversity; Nest (protein structural motif); Passerine; Habitat","score_opus":0.03387651469830677,"score_gpt":0.22900994829345717,"score_spread":0.1951334335951504,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2004262867","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99960154,0.00003768592,0.00006598108,0.000030166942,4.354471e-7,0.0000034758893,0.00005243111,0.0000010795277,0.00020716112],"genre_scores_gemma":[0.99957746,0.00003534687,0.00020639063,0.000010507391,7.077439e-7,0.0000036866759,0.000054755918,8.097456e-7,0.0001102064],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977297,0.00006541168,0.000010529892,0.000074173404,0.000019553041,0.000057427667],"domain_scores_gemma":[0.997658,0.0007640005,0.00075493805,0.00011224544,0.0002615855,0.00044918864],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004900367,0.00018448968,0.00021522383,0.0012203616,0.00062718627,0.0010945612,0.0005316969,0.0004113543,0.0025654205],"category_scores_gemma":[0.0020855325,0.00025137223,0.00018631759,0.0011903107,0.0010168421,0.0008227591,0.0012309039,0.0003571378,0.00014866388],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000051164294,0.00003681597,0.99438417,0.000011461864,0.00003606084,0.000069759444,0.0008793859,0.00038650032,0.0010578436,0.00024517745,0.00006149666,0.002780166],"study_design_scores_gemma":[0.0000041050357,0.000015289528,0.99478793,0.000008527102,0.000020182526,0.000062370185,0.0027990858,0.0017660087,0.000056391327,0.00033853098,0.00013715429,0.000004428395],"about_ca_topic_score_codex":0.057763863,"about_ca_topic_score_gemma":0.23260438,"teacher_disagreement_score":0.057763863,"about_ca_system_score_codex":0.0007156136,"about_ca_system_score_gemma":0.000618213,"threshold_uncertainty_score":0.11485529},"labels":[],"label_agreement":null},{"id":"W2005445990","doi":"10.1016/j.foreco.2008.04.007","title":"Quantifying local factors in medium-frequency trends of tree ring records: Case study in Canadian boreal forests","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"Harvard University","keywords":"Taiga; Dendrochronology; Forest dynamics; Black spruce; Environmental science; Boreal; Climate change; Disturbance (geology); Physical geography; Ecology; Climatology; Geography; Forestry; Geology","score_opus":0.0377649839709614,"score_gpt":0.2666566163840612,"score_spread":0.2288916324130998,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2005445990","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99871707,0.00014567458,0.00036984275,0.00004129399,9.865929e-7,0.000014272006,0.0002123895,0.0000054858024,0.0004931368],"genre_scores_gemma":[0.99890137,0.00006444091,0.0006937949,0.000011513625,0.0000015407278,0.0000042803345,0.00012830684,0.000003106351,0.00019155933],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9993205,0.00015711458,0.000046298683,0.0001548303,0.00013722361,0.00018396095],"domain_scores_gemma":[0.9954203,0.0017788971,0.0010055257,0.00025166952,0.0012295216,0.00031409855],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002129533,0.00022765552,0.00020966107,0.0013129626,0.0018744245,0.0011963032,0.00086180517,0.00054170843,0.00056161603],"category_scores_gemma":[0.006199679,0.00018992138,0.00024210999,0.0031716665,0.00086786895,0.00087711256,0.0006024537,0.00046361645,0.000051901065],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000043346336,0.000044741835,0.98970526,0.00002256594,0.000044752676,0.000094745024,0.001244115,0.00058171334,0.0010287354,0.00008610343,0.000089699795,0.007014263],"study_design_scores_gemma":[8.997549e-7,0.00001400451,0.9972127,0.000004400675,0.00001995675,0.000039475945,0.0016060486,0.00072165264,0.00015284911,0.00002188282,0.0001999795,0.0000062547642],"about_ca_topic_score_codex":0.91948694,"about_ca_topic_score_gemma":0.9816316,"teacher_disagreement_score":0.08051306,"about_ca_system_score_codex":0.005451185,"about_ca_system_score_gemma":0.0037412825,"threshold_uncertainty_score":0.16197437},"labels":[],"label_agreement":null},{"id":"W2005634459","doi":"10.1016/j.foreco.2011.12.023","title":"Variable-retention riparian harvesting effects on riparian air and water temperature of sub-boreal headwater streams in British Columbia","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fish Ecology and Management Studies","field":"Environmental Science","cited_by":24,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia; Ministry of Forests","funders":"","keywords":"Riparian zone; Environmental science; STREAMS; Taiga; Riparian forest; Hydrology (agriculture); Air stream; Boreal; Understory; Ecology; Habitat; Canopy; Environmental engineering; Biology; Geology","score_opus":0.0033642783827346344,"score_gpt":0.17201503173401989,"score_spread":0.16865075335128524,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2005634459","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995109,0.000042513202,0.000018959376,0.000014747184,0.0000013330882,0.0000021839462,0.00014524194,0.0000018210037,0.00026231582],"genre_scores_gemma":[0.9993137,0.000041225616,0.000029084149,0.00001690241,7.847659e-7,0.0000031700108,0.00018025232,0.0000020484174,0.00041282683],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99969184,0.000048936967,0.000022331424,0.000072147646,0.000042757074,0.000122050194],"domain_scores_gemma":[0.9991499,0.00012562874,0.0001188709,0.00004116865,0.00024488967,0.0003195392],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030717647,0.00015779094,0.00031180115,0.00056987064,0.0011903339,0.0007985336,0.00060628576,0.00026402506,0.0018124967],"category_scores_gemma":[0.0008024792,0.0002348412,0.00021431132,0.0011093086,0.00063863635,0.00026936614,0.0006055566,0.00034720925,0.00017645348],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021338042,0.000070754606,0.9920691,0.000014505799,0.00007264135,0.00012090721,0.0008725687,0.00023430919,0.0016447088,0.000043998614,0.00032383707,0.00431924],"study_design_scores_gemma":[0.0000018999668,0.000003774505,0.99940467,0.0000024014214,0.0000064838996,0.00000867352,0.00040215088,0.00006844155,0.000029216097,0.0000037972222,0.00006660854,0.0000019205067],"about_ca_topic_score_codex":0.9188526,"about_ca_topic_score_gemma":0.9826434,"teacher_disagreement_score":0.08114737,"about_ca_system_score_codex":0.004453791,"about_ca_system_score_gemma":0.0036714189,"threshold_uncertainty_score":0.1632505},"labels":[],"label_agreement":null},{"id":"W2005955563","doi":"10.1016/j.foreco.2013.08.011","title":"A comparative study of long-term stand growth in eastern Canadian boreal forest: Fire versus clear-cut","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval","funders":"","keywords":"Taiga; Boreal; Environmental science; Term (time); Ecology; Forestry; Geography; Agroforestry; Biology","score_opus":0.01111139249274613,"score_gpt":0.2301051370152537,"score_spread":0.21899374452250758,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2005955563","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99916184,0.00016416883,0.000022343862,0.0000161883,0.0000018741982,0.0000051547113,0.00024954102,9.677826e-7,0.00037786696],"genre_scores_gemma":[0.99863964,0.00013157901,0.00008978387,0.000023155366,0.0000023017437,0.000005511853,0.00048358727,0.000002142664,0.00062233716],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997205,0.000029605835,0.000011696361,0.000050587896,0.00007877583,0.00010885393],"domain_scores_gemma":[0.9984469,0.0002195769,0.00023864782,0.00007600579,0.0005852071,0.0004336341],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007138036,0.00021183769,0.00023242741,0.00083739473,0.0014621927,0.0006713565,0.0007498758,0.00035244483,0.00117459],"category_scores_gemma":[0.0017310097,0.00014443742,0.00023607998,0.0013846258,0.0005833455,0.00048092322,0.00041177525,0.00034818458,0.00012600065],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007710516,0.00024339992,0.98229903,0.00003751176,0.00010641927,0.00020974882,0.0018156802,0.0003102927,0.0024826648,0.00010787258,0.00038506027,0.011231318],"study_design_scores_gemma":[0.0000016857214,0.000017581307,0.9992563,0.000001929906,0.0000058894657,0.000023138773,0.00044303827,0.000053890504,0.00003774728,0.0000041450967,0.00015262957,0.0000021191222],"about_ca_topic_score_codex":0.92597216,"about_ca_topic_score_gemma":0.98830986,"teacher_disagreement_score":0.07402784,"about_ca_system_score_codex":0.007878451,"about_ca_system_score_gemma":0.005119905,"threshold_uncertainty_score":0.14892757},"labels":[],"label_agreement":null},{"id":"W2006063453","doi":"10.1016/j.foreco.2010.08.016","title":"Organic matter inputs into headwater streams of southwestern British Columbia as a function of riparian reserves and time since harvesting","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Hydrology and Sediment Transport Processes","field":"Environmental Science","cited_by":47,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"National Marine Fisheries Service; University of British Columbia","keywords":"Riparian zone; Environmental science; Litter; Ecosystem; Riparian forest; STREAMS; Ecology; Logging; Plant litter; Organic matter; Hydrology (agriculture); Forest ecology; Habitat; Biology; Geology","score_opus":0.0027905520959584543,"score_gpt":0.17479407724764054,"score_spread":0.17200352515168207,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2006063453","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992976,0.000075988544,0.000023462022,0.000020664704,0.0000018849703,0.000003874068,0.00023453691,0.0000032961611,0.00033850025],"genre_scores_gemma":[0.99773765,0.00014523628,0.000084069376,0.000038741953,0.0000024058945,0.0000066739776,0.00039425824,0.0000050826725,0.0015857993],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998398,0.000020154703,0.000012100592,0.00004551372,0.00003613479,0.00004623412],"domain_scores_gemma":[0.9990908,0.0002183043,0.00021138124,0.000027917136,0.00022928811,0.00022237697],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018974202,0.00019840257,0.00021682895,0.0006292447,0.0010949495,0.0012502744,0.00038734317,0.00027039356,0.0013975591],"category_scores_gemma":[0.0010635144,0.00029165353,0.00017390758,0.0009741473,0.0006353796,0.00037467972,0.00055943814,0.0003474155,0.00015163966],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00048170984,0.00008385444,0.98174447,0.000043545115,0.00011132611,0.00023832158,0.0010847944,0.0008352601,0.006219033,0.00009572167,0.0004455071,0.008616431],"study_design_scores_gemma":[0.0000048808038,0.000007916745,0.9990946,0.00000487227,0.000011206119,0.000012918488,0.0003248524,0.00022636799,0.00014067577,0.000015820697,0.00015313932,0.0000026542973],"about_ca_topic_score_codex":0.79441863,"about_ca_topic_score_gemma":0.94817674,"teacher_disagreement_score":0.20558137,"about_ca_system_score_codex":0.0045170384,"about_ca_system_score_gemma":0.0036583568,"threshold_uncertainty_score":0.4135841},"labels":[],"label_agreement":null},{"id":"W2006721995","doi":"10.1016/j.foreco.2014.05.031","title":"Trees increase soil carbon and its stability in three agroforestry systems in central Alberta, Canada","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":76,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Agriculture and Agri-Food Canada","keywords":"Windbreak; Soil carbon; Environmental science; Carbon sequestration; Agroforestry; Greenhouse gas; Soil water; Land use; Agronomy; Agricultural land; Forestry; Soil science; Geography; Carbon dioxide; Ecology; Biology","score_opus":0.006780691001294186,"score_gpt":0.1711331520243526,"score_spread":0.16435246102305842,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2006721995","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990069,0.00015047783,0.000029651053,0.000042994205,0.0000014616571,0.000011529302,0.00009328868,0.0000036807223,0.0006601482],"genre_scores_gemma":[0.99895847,0.00009587905,0.00009697326,0.00002320543,7.8378696e-7,0.000004328155,0.00008680681,0.0000012819161,0.0007322031],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99960834,0.000053783522,0.000012944398,0.000052261134,0.00008481396,0.00018786317],"domain_scores_gemma":[0.99922216,0.00007426578,0.00008425775,0.000022147608,0.0002786573,0.00031855426],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004195563,0.00032452683,0.00034975406,0.00096115243,0.0032796254,0.0015458504,0.0011910491,0.00042593613,0.0013209601],"category_scores_gemma":[0.0007029062,0.00021714302,0.00020336412,0.001569836,0.0012486951,0.00027144924,0.0007619482,0.00034134352,0.00010223549],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0020273174,0.0005393455,0.94832844,0.00013752402,0.00020925562,0.00076735625,0.0053720893,0.0024732936,0.011023695,0.00080790755,0.0013769196,0.026936758],"study_design_scores_gemma":[0.000028675062,0.000059735812,0.99327785,0.000010915447,0.000038575254,0.000053637912,0.004322719,0.0010335769,0.00037670843,0.00009541896,0.00069285335,0.000009365201],"about_ca_topic_score_codex":0.98695976,"about_ca_topic_score_gemma":0.99751675,"teacher_disagreement_score":0.02491205,"about_ca_system_score_codex":0.02491205,"about_ca_system_score_gemma":0.014291771,"threshold_uncertainty_score":0.18075043},"labels":[],"label_agreement":null},{"id":"W2006884822","doi":"10.1016/j.foreco.2009.08.006","title":"Suckering response of aspen to traffic-induced-root wounding and the barrier-effect of log storage","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Botany; Biology; Horticulture; Agronomy; Environmental science; Chemistry","score_opus":0.007624628055993914,"score_gpt":0.2192445877644539,"score_spread":0.21161995970845998,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2006884822","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994134,0.00006861016,0.00007237429,0.0000128720085,0.0000041001617,0.000005240202,0.000066560664,0.0000054822135,0.00035150134],"genre_scores_gemma":[0.99815375,0.000054988122,0.00015724394,0.00006357775,0.0000039468664,0.000009252525,0.00027545582,0.00001242897,0.001269339],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99989355,0.000017606046,0.0000087786975,0.000031038708,0.000016955015,0.00003202667],"domain_scores_gemma":[0.99940395,0.00020568639,0.000064785825,0.000047154317,0.00003862345,0.00023984147],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018625258,0.00033538757,0.000453141,0.00018542736,0.0002536647,0.00047273253,0.00034836237,0.00045901025,0.0019140545],"category_scores_gemma":[0.0005624761,0.00020142662,0.0002489124,0.00011163616,0.00028085825,0.0004543785,0.00035704707,0.0007888487,0.00030706488],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0032771085,0.0000974393,0.004083302,0.000039859096,0.000015356298,0.0001316513,0.000071688235,0.00016196845,0.99035513,0.000047351234,0.000054430395,0.0016647206],"study_design_scores_gemma":[0.00014093347,0.0037366773,0.63945895,0.00001719082,0.00006842867,0.0006827291,0.0009088083,0.0069306702,0.34641027,0.00026715998,0.0013386937,0.000039537965],"about_ca_topic_score_codex":0.0033638107,"about_ca_topic_score_gemma":0.0042963293,"teacher_disagreement_score":0.0033638107,"about_ca_system_score_codex":0.00053466024,"about_ca_system_score_gemma":0.00028178573,"threshold_uncertainty_score":0.0066884756},"labels":[],"label_agreement":null},{"id":"W2008669351","doi":"10.1016/s0378-1127(00)00404-7","title":"Winter activity of mammals in riparian zones and adjacent forests prior to and following clear-cutting at Copper Lake, Newfoundland, Canada","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":30,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Memorial University of Newfoundland","funders":"","keywords":"Marten; Riparian zone; Vulpes; Transect; Ecology; Taiga; Habitat; Weasel; Geography; Ursus; Endangered species; Biology; Predation","score_opus":0.006735574651217144,"score_gpt":0.20627256563318166,"score_spread":0.19953699098196453,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2008669351","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9986313,0.000089980786,0.000015879736,0.00005783664,0.000005906458,0.000007700249,0.0006300228,0.0000024177027,0.000558806],"genre_scores_gemma":[0.99655735,0.0001379293,0.00006884699,0.00007061292,0.0000063236225,0.000011863037,0.0009546374,0.0000030247409,0.0021895028],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999671,0.00003065962,0.000013860528,0.00004861786,0.00005498622,0.00018098074],"domain_scores_gemma":[0.99857414,0.00010442115,0.0002698995,0.000035338613,0.00040078608,0.0006154011],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026762058,0.00020834863,0.00030639,0.0009123233,0.002006356,0.00086136465,0.0010407111,0.0004830592,0.0017879809],"category_scores_gemma":[0.000886875,0.00029381734,0.00024686236,0.0010419794,0.00073020754,0.0003576492,0.00072032126,0.0005422976,0.00028764035],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015158037,0.00007136468,0.995713,0.000011961442,0.00003753062,0.000090828915,0.0008988835,0.00008752802,0.0003172896,0.000021894904,0.000928844,0.0016693254],"study_design_scores_gemma":[0.0000016221763,0.000009560983,0.99910635,0.000004191869,0.0000036068618,0.000011622414,0.0006889633,0.000027610617,0.00001441085,0.0000015716031,0.00012878471,0.0000016146458],"about_ca_topic_score_codex":0.97507155,"about_ca_topic_score_gemma":0.9961157,"teacher_disagreement_score":0.02492845,"about_ca_system_score_codex":0.009141803,"about_ca_system_score_gemma":0.007073702,"threshold_uncertainty_score":0.066328704},"labels":[],"label_agreement":null},{"id":"W2008782613","doi":"10.1016/j.foreco.2007.08.006","title":"Planning timber harvest of residual forest stands without compromising bird and small mammal communities in boreal landscapes","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":38,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Chicoutimi; Université du Québec à Rimouski","funders":"","keywords":"Habitat; Ecology; Taiga; Abundance (ecology); Wildlife; Geography; Logging; Forest management; Warbler; Coarse woody debris; Boreal; Biology","score_opus":0.013672304258383216,"score_gpt":0.2403519475500981,"score_spread":0.22667964329171486,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2008782613","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9945859,0.000069388516,0.0014993339,0.000128467,0.000005351975,0.000056921483,0.000047710368,0.000020787415,0.0035861677],"genre_scores_gemma":[0.99587053,0.000026649968,0.0033696576,0.000027057178,0.0000025295371,0.000031176824,0.000044294342,0.0000040633963,0.00062407757],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999718,0.000099625155,0.000012102003,0.000044214088,0.000021240061,0.00010476583],"domain_scores_gemma":[0.99938667,0.00021015121,0.0000779803,0.00003699391,0.00006152299,0.00022661823],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00079529703,0.0002208389,0.00017936542,0.00036664723,0.0011286975,0.0007892257,0.0007573041,0.00037422992,0.0022094985],"category_scores_gemma":[0.0016020226,0.00025814518,0.00013956527,0.0002465185,0.00045080454,0.0008595679,0.00039399043,0.00040304003,0.00017780768],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0025690908,0.0031907528,0.61315536,0.00031631638,0.000254854,0.0015840575,0.004644473,0.06928651,0.013605972,0.005538292,0.007972765,0.27788162],"study_design_scores_gemma":[0.0003566213,0.0029652452,0.8387719,0.00012057124,0.00037381292,0.0009996685,0.026898796,0.100755416,0.004762084,0.014263132,0.009609401,0.00012339861],"about_ca_topic_score_codex":0.02284937,"about_ca_topic_score_gemma":0.22732607,"teacher_disagreement_score":0.02284937,"about_ca_system_score_codex":0.00061454636,"about_ca_system_score_gemma":0.0013444198,"threshold_uncertainty_score":0.045432746},"labels":[],"label_agreement":null},{"id":"W2008969571","doi":"10.1016/j.foreco.2012.10.022","title":"Global wildland fire season severity in the 21st century","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":811,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; University of Toronto; Natural Resources Canada; University of Alberta","funders":"National Oceanic and Atmospheric Administration","keywords":"Northern Hemisphere; Environmental science; General Circulation Model; Climate change; Climatology; Baseline (sea); Latitude; Growing season; Metric (unit); Geography; Atmospheric sciences; Ecology; Biology; Geology; Economics","score_opus":0.0031141926310665957,"score_gpt":0.18702522836821717,"score_spread":0.18391103573715056,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2008969571","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9822349,0.0038805832,0.00072575244,0.0013791464,0.0001219679,0.000007945163,0.005823793,0.00003615942,0.0057897745],"genre_scores_gemma":[0.9947462,0.0018311201,0.00019373848,0.000173253,0.00009574711,0.0000037763807,0.0019866917,0.000008897846,0.0009606793],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998481,0.000024032443,0.00001740165,0.00003853669,0.000031848867,0.000040030416],"domain_scores_gemma":[0.99934644,0.00006699971,0.0003275468,0.000038519775,0.00012279443,0.0000977468],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004203185,0.00021241006,0.00015567063,0.0008329081,0.00016632258,0.00073812355,0.0001913481,0.00029702758,0.001980167],"category_scores_gemma":[0.0013412245,0.00009353044,0.00028974868,0.0014617988,0.00021394099,0.00071181246,0.0004767471,0.0004862447,0.00015925488],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010506499,0.000022876293,0.96635103,0.000056812085,0.00011401815,0.00007980606,0.0002228808,0.0014564457,0.00029959017,0.00086956937,0.0020290257,0.028392958],"study_design_scores_gemma":[0.0000023682107,0.000019374995,0.995187,0.000014079687,0.000025932344,0.00015694158,0.00020104898,0.00039902417,0.00008201632,0.00028967788,0.003618585,0.000003892778],"about_ca_topic_score_codex":0.015627906,"about_ca_topic_score_gemma":0.047530137,"teacher_disagreement_score":0.015627906,"about_ca_system_score_codex":0.00049849285,"about_ca_system_score_gemma":0.00030552686,"threshold_uncertainty_score":0.031073928},"labels":[],"label_agreement":null},{"id":"W2009243790","doi":"10.1016/j.foreco.2009.03.027","title":"Snag dynamics in post-harvest landscapes of western Newfoundland balsam fir-dominated boreal forests","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Memorial University of Newfoundland","funders":"Natural Resources Canada; Canadian Forest Service; Natural Sciences and Engineering Research Council of Canada","keywords":"Snag; Chronosequence; Balsam; Abies balsamea; Forest management; Forestry; Taiga; Stand development; Basal area; Silviculture; Ecology; Geography; Agroforestry; Environmental science; Ecological succession; Biology; Habitat; Botany","score_opus":0.006720011707493465,"score_gpt":0.19909452252126522,"score_spread":0.19237451081377174,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2009243790","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999592,0.000026907855,0.000008722125,0.000010931809,7.366487e-7,9.942022e-7,0.000113131166,0.0000012333073,0.00024540114],"genre_scores_gemma":[0.99922633,0.000027089076,0.000034662266,0.00001144194,9.610526e-7,0.0000021953592,0.0001871001,8.8301897e-7,0.0005093364],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999864,0.000017939978,0.0000070895917,0.00003363194,0.000014561541,0.000062827945],"domain_scores_gemma":[0.99949217,0.000055968387,0.00016617095,0.000030179755,0.00011516684,0.00014019913],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019216868,0.00010982199,0.00014679784,0.00051742856,0.00059172726,0.0005552359,0.00035653225,0.00016874299,0.0010838707],"category_scores_gemma":[0.00050677796,0.000108904285,0.00009366905,0.0004961956,0.0004888945,0.0003384184,0.00041280128,0.00017338751,0.00014285036],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001346625,0.00004303268,0.9937028,0.000011199354,0.000035150795,0.0001198193,0.00092037104,0.00021889467,0.0008835928,0.000053067466,0.00047820018,0.003398988],"study_design_scores_gemma":[8.7464593e-7,0.0000057662096,0.99935657,0.0000012376987,0.000003473646,0.000013109803,0.00040612876,0.00006907251,0.000018369174,0.0000030348833,0.0001215722,7.75331e-7],"about_ca_topic_score_codex":0.64827234,"about_ca_topic_score_gemma":0.91704667,"teacher_disagreement_score":0.35172766,"about_ca_system_score_codex":0.002567415,"about_ca_system_score_gemma":0.00078254525,"threshold_uncertainty_score":0.7075981},"labels":[],"label_agreement":null},{"id":"W2009537984","doi":"10.1016/j.foreco.2012.02.018","title":"The importance of macrolichen traits and phylogeny in forest community assemblage along a high elevation gradient in southwestern British Columbia","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Guelph","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Lichen; Elevation (ballistics); Ecology; Biodiversity; Species richness; Ordination; Range (aeronautics); Biology; Community structure; Geography; Gradient analysis; Beta diversity; Biogeography","score_opus":0.011428744748397227,"score_gpt":0.20208193119541865,"score_spread":0.19065318644702142,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2009537984","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99924386,0.00010026161,0.00003130816,0.000034015942,0.0000012588125,0.0000027128576,0.00013391802,0.0000017441166,0.00045088414],"genre_scores_gemma":[0.99938107,0.000060901057,0.000051892705,0.000017737455,7.2896734e-7,0.0000027725046,0.000111165384,0.000002045912,0.0003715492],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99952984,0.000077727425,0.00003086039,0.00010126494,0.00007769667,0.00018267175],"domain_scores_gemma":[0.9984345,0.00020102102,0.00024501837,0.00006774073,0.0005570317,0.00049459963],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039798595,0.00018590677,0.00029934623,0.001503351,0.002335927,0.0013101221,0.000717922,0.000306145,0.0017408271],"category_scores_gemma":[0.0014577683,0.00029726414,0.00014629269,0.0022836549,0.0010774025,0.00034267548,0.001003971,0.0004960409,0.00016994613],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00004994496,0.000018249404,0.99312943,0.00001116364,0.000037112794,0.00008047899,0.0015740359,0.00009009971,0.0009304147,0.000057589783,0.00020059811,0.003820939],"study_design_scores_gemma":[9.0317155e-7,0.0000022287763,0.9985966,0.0000053469134,0.0000048227735,0.000014554669,0.0011644879,0.00006446304,0.000020784797,0.000009356245,0.00011435008,0.000001982984],"about_ca_topic_score_codex":0.94632,"about_ca_topic_score_gemma":0.99241626,"teacher_disagreement_score":0.053680003,"about_ca_system_score_codex":0.0050122505,"about_ca_system_score_gemma":0.004179649,"threshold_uncertainty_score":0.10799223},"labels":[],"label_agreement":null},{"id":"W2010477576","doi":"10.1016/j.foreco.2015.03.011","title":"Lengthening the historical records of fire history over large areas of boreal forest in eastern Canada using empirical relationships","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal; Natural Sciences and Engineering Research Council of Canada; Canadian Forest Service; Université Laval; Natural Resources Canada; Centre de Géomatique du Québec","funders":"Fonds Québécois de la Recherche sur la Nature et les Technologies","keywords":"Taiga; Boreal; Context (archaeology); Fire history; Ecological succession; Scale (ratio); Fire regime; Geography; Physical geography; Forest inventory; Disturbance (geology); Historical record; Fire ecology; Ecology; Forest management; Climate change; Environmental science; Forestry; Cartography; History; Archaeology; Ecosystem; Biology","score_opus":0.03513150314684841,"score_gpt":0.23223964565110983,"score_spread":0.19710814250426142,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2010477576","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9955159,0.0009113198,0.00069688674,0.000061236264,0.000009339743,0.000010703975,0.0016259416,0.000011953954,0.0011567705],"genre_scores_gemma":[0.9969453,0.00028458127,0.0006900835,0.00002279845,0.0000057917264,0.000009031191,0.0015924401,0.0000055360097,0.0004443316],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996786,0.000047336755,0.0000344628,0.0000987026,0.00006788939,0.00007303724],"domain_scores_gemma":[0.99581075,0.001208982,0.0009800303,0.00037918828,0.0012674795,0.00035358174],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00083158887,0.00018793123,0.00018997355,0.0023433554,0.0011993953,0.0009981309,0.0007697025,0.00032155518,0.0010888075],"category_scores_gemma":[0.0054401727,0.00017102405,0.00021781694,0.0042292234,0.0005329438,0.00071112736,0.0005971737,0.0005032641,0.0001441151],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00002961663,0.000024997638,0.98316145,0.000038548984,0.00007752216,0.000061110346,0.0007168302,0.00061409647,0.00051431666,0.00014513535,0.00042941837,0.014187014],"study_design_scores_gemma":[0.0000019276115,0.0000070508695,0.99598783,0.000023524539,0.00003732614,0.00006697383,0.00060120213,0.0012444321,0.0001442788,0.000049970906,0.0018296477,0.0000058005894],"about_ca_topic_score_codex":0.890329,"about_ca_topic_score_gemma":0.9717719,"teacher_disagreement_score":0.109671,"about_ca_system_score_codex":0.0040260903,"about_ca_system_score_gemma":0.0037985768,"threshold_uncertainty_score":0.22063369},"labels":[],"label_agreement":null},{"id":"W2010554368","doi":"10.1016/j.foreco.2011.02.032","title":"Effect of boreal forest logging on nectar production of four understory herbs","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant and animal studies","field":"Agricultural and Biological Sciences","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Calgary","funders":"Natural Sciences and Engineering Research Council of Canada; National Science Council","keywords":"Understory; Logging; Taiga; Nectar; Agroforestry; Environmental science; Biology; Ecology; Canopy; Pollen","score_opus":0.033414596099864316,"score_gpt":0.19597704098045532,"score_spread":0.16256244488059102,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2010554368","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99978286,0.000017364773,0.000009305291,0.0000045254155,0.0000013116489,0.0000010240532,0.00002520502,0.0000010878422,0.000157371],"genre_scores_gemma":[0.99960464,0.00001456511,0.000041341256,0.0000132869145,0.000002494193,0.0000026691296,0.00008874503,0.0000015832389,0.00023069893],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982196,0.00006131204,0.000015210019,0.00004071344,0.00001720724,0.00004362794],"domain_scores_gemma":[0.99804,0.0006950567,0.00041374506,0.00009771849,0.0001219813,0.00063151587],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037386996,0.0003141521,0.00026363367,0.00038410345,0.00057612115,0.00056542415,0.00023969759,0.00024133791,0.0012668438],"category_scores_gemma":[0.0010417452,0.00017264909,0.00020248533,0.00019673262,0.0005847299,0.00042757398,0.00035140393,0.0003272344,0.00011269772],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.010293398,0.0010264176,0.89860326,0.000050958268,0.00019584665,0.00046653938,0.0005985276,0.0003643381,0.07853944,0.00007882431,0.00015989279,0.009622565],"study_design_scores_gemma":[0.000008471608,0.00027014082,0.99879056,8.977688e-7,0.000014016132,0.000050115064,0.000106444255,0.00008703482,0.000608912,0.000008409707,0.000052761912,0.000002322115],"about_ca_topic_score_codex":0.009368914,"about_ca_topic_score_gemma":0.03514358,"teacher_disagreement_score":0.009368914,"about_ca_system_score_codex":0.00043111257,"about_ca_system_score_gemma":0.00027561918,"threshold_uncertainty_score":0.018628776},"labels":[],"label_agreement":null},{"id":"W2011433554","doi":"10.1016/j.foreco.2004.11.018","title":"Influence of wildfire and harvest on biomass, carbon pool, and decomposition of large woody debris in forested streams of southern interior British Columbia","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":62,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Okanagan University College","funders":"","keywords":"Riparian zone; Coarse woody debris; Environmental science; STREAMS; Riparian forest; Biogeochemistry; Biomass (ecology); Large woody debris; Ecosystem; Carbon stock; Biogeochemical cycle; Carbon cycle; Debris; Hydrology (agriculture); Forestry; Ecology; Geology; Habitat; Geography; Biology; Oceanography; Climate change","score_opus":0.004657324363985196,"score_gpt":0.18777982683312838,"score_spread":0.1831225024691432,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2011433554","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99953496,0.000058031146,0.0000130774015,0.000019760491,0.0000012039719,0.0000017168153,0.00011701503,0.0000017283724,0.0002525407],"genre_scores_gemma":[0.99915636,0.000060984414,0.00003597202,0.000022413613,0.000001160394,0.000003694504,0.00019762624,0.0000027273018,0.0005190714],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996166,0.00008689002,0.00002973651,0.00006372384,0.000075268144,0.00012765027],"domain_scores_gemma":[0.99811196,0.00047400992,0.0002684257,0.00008238409,0.00045118955,0.00061199104],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00058224256,0.0001997956,0.0003822828,0.00080022577,0.0013228069,0.0013469356,0.00059566303,0.00034716987,0.0019889022],"category_scores_gemma":[0.002229135,0.00030935745,0.00023749507,0.0012226054,0.00092976884,0.00030943475,0.00076101866,0.00047846645,0.00017926865],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017929841,0.00006193357,0.99423945,0.000012249002,0.0000942686,0.00014400906,0.00066140416,0.00036998643,0.0008262149,0.00004294028,0.00028247116,0.0030858575],"study_design_scores_gemma":[0.0000025946401,0.000005205799,0.99909806,0.0000027749065,0.000008746895,0.000017032473,0.00060873653,0.00013712648,0.000021256932,0.000010332274,0.00008549943,0.0000026407479],"about_ca_topic_score_codex":0.88267857,"about_ca_topic_score_gemma":0.9744105,"teacher_disagreement_score":0.11732143,"about_ca_system_score_codex":0.0054256157,"about_ca_system_score_gemma":0.0041960706,"threshold_uncertainty_score":0.23602468},"labels":[],"label_agreement":null},{"id":"W2011586316","doi":"10.1016/s0378-1127(03)00119-1","title":"Predation risk and the functional response of elk–aspen herbivory","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":104,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia; University of Alberta; Parks Canada","funders":"","keywords":"Herbivore; Predation; Ecology; Functional response; Habitat; Disturbance (geology); Foraging; Biology; Predator","score_opus":0.005302417253226848,"score_gpt":0.17943422729518796,"score_spread":0.1741318100419611,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2011586316","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996251,0.000043546323,0.000030994117,0.000018652907,7.404631e-7,4.6927983e-7,0.000016234064,0.0000011503022,0.00026315567],"genre_scores_gemma":[0.99949205,0.000029494475,0.00006275961,0.00001884671,0.0000016581222,0.000001174888,0.000038060836,0.0000016246297,0.00035436498],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986196,0.00005255051,0.00000806854,0.000027591894,0.000019321873,0.000030489058],"domain_scores_gemma":[0.9987392,0.00052825356,0.00034432465,0.000053460073,0.0000603548,0.00027443655],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004822357,0.00022145841,0.00015271183,0.00031118584,0.00018383295,0.0006193819,0.00019963259,0.0005349143,0.002063407],"category_scores_gemma":[0.0021825605,0.00016456067,0.00018324947,0.00013574466,0.00026138264,0.0003324239,0.00030141417,0.0003665431,0.00019572937],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.003596431,0.0005106119,0.92574155,0.00006849202,0.0003908963,0.00042772834,0.00032581776,0.0049725953,0.050194237,0.0005211784,0.00041089125,0.012839636],"study_design_scores_gemma":[0.000007103381,0.000096222146,0.99710304,0.0000018428117,0.000013795317,0.0001606451,0.00009390168,0.0019319577,0.00034630595,0.00017675967,0.00006433668,0.000004107293],"about_ca_topic_score_codex":0.0028450747,"about_ca_topic_score_gemma":0.0048976727,"teacher_disagreement_score":0.0028450747,"about_ca_system_score_codex":0.00037705948,"about_ca_system_score_gemma":0.00013561567,"threshold_uncertainty_score":0.0069027543},"labels":[],"label_agreement":null},{"id":"W2012060604","doi":"10.1016/j.foreco.2009.10.033","title":"Regeneration of Populus nine years after variable retention harvest in boreal mixedwood forests","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":40,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; University of Alberta","funders":"","keywords":"Basal area; Balsam; Boreal; Sucker; Taiga; Abies balsamea; Logging; Thinning; Environmental science; Forestry; Salicaceae; Felling; Agronomy; Biology; Woody plant; Silviculture; Agroforestry; Botany; Ecology; Geography","score_opus":0.008897006973757823,"score_gpt":0.18584489393334355,"score_spread":0.17694788695958574,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2012060604","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998202,0.000029894905,0.000014712086,0.0000030739754,0.0000019379092,0.0000016179259,0.000041665025,0.0000014444786,0.00008558685],"genre_scores_gemma":[0.9996606,0.000010997571,0.000020965774,0.000005688735,0.0000016274643,0.000003285816,0.00011758305,6.097464e-7,0.00017853535],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998209,0.000028421473,0.0000106911275,0.000047000205,0.000023896037,0.00006910105],"domain_scores_gemma":[0.9994363,0.000114666596,0.00014817294,0.0000508151,0.000064049054,0.0001858654],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00047257933,0.00024793632,0.00031422518,0.00060924224,0.0007140705,0.00057831936,0.0005176162,0.0004701376,0.0006545974],"category_scores_gemma":[0.00053499494,0.00013561011,0.00032551715,0.0002351717,0.000545087,0.0004868393,0.00053132325,0.0003772371,0.00020291808],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.013238287,0.0020489611,0.81692195,0.00007526913,0.0002425772,0.0023364925,0.0015171613,0.0006957702,0.1423293,0.0002120903,0.00032173347,0.020060368],"study_design_scores_gemma":[0.000021112988,0.0007240363,0.99593806,0.000003737466,0.000030360256,0.00028194094,0.0003832779,0.00027196168,0.0021464399,0.000037420115,0.00015015354,0.000011400415],"about_ca_topic_score_codex":0.005804342,"about_ca_topic_score_gemma":0.015344816,"teacher_disagreement_score":0.005804342,"about_ca_system_score_codex":0.00052536844,"about_ca_system_score_gemma":0.00024456906,"threshold_uncertainty_score":0.011541069},"labels":[],"label_agreement":null},{"id":"W2012082172","doi":"10.1016/j.foreco.2007.03.025","title":"Genetic variation in growth of Guazuma crinita (Mart.) trees at an early age in the Peruvian Amazon","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":35,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada; Consortium of International Agricultural Research Centers; Department for International Development; Université Laval","keywords":"Watershed; Sowing; Provenance; Amazon rainforest; Agriculture; Biology; Heritability; Agroforestry; Geography; Reforestation; Forestry; Ecology; Agronomy","score_opus":0.006245850790731941,"score_gpt":0.20674799725404325,"score_spread":0.2005021464633113,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2012082172","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99978083,0.00002442078,0.00002209272,0.000009632192,3.98644e-7,0.0000010651046,0.000030293419,0.0000011365196,0.00013012814],"genre_scores_gemma":[0.99980766,0.000019818677,0.000029134484,0.0000039232837,8.5823376e-7,0.0000023123878,0.000038460304,0.0000011098091,0.00009678828],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997708,0.00008404609,0.000007272352,0.00005808587,0.000025915697,0.000053955184],"domain_scores_gemma":[0.9993389,0.00019651077,0.00020814147,0.00003333717,0.000088632645,0.00013443622],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00035344975,0.00022243525,0.00015985232,0.00088073674,0.00045087183,0.00041094626,0.0003289717,0.00033324127,0.0010339721],"category_scores_gemma":[0.0011064922,0.0001670338,0.00015615081,0.00074478233,0.00041722547,0.0001884162,0.00042696056,0.00032257364,0.00013871731],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018320326,0.000061638435,0.98370105,0.000012297791,0.00006046878,0.00029842995,0.0036406762,0.00009835366,0.008797641,0.00013985235,0.00006372077,0.0029427712],"study_design_scores_gemma":[0.0000011541191,0.000020225398,0.9994179,0.0000016702734,0.0000043808204,0.00004725545,0.00035833078,0.00004976973,0.000042335163,0.000009193962,0.000046338977,0.0000013485584],"about_ca_topic_score_codex":0.02185408,"about_ca_topic_score_gemma":0.0573351,"teacher_disagreement_score":0.02185408,"about_ca_system_score_codex":0.00039822483,"about_ca_system_score_gemma":0.00016995017,"threshold_uncertainty_score":0.043453753},"labels":[],"label_agreement":null},{"id":"W2012144633","doi":"10.1016/j.foreco.2007.04.038","title":"Competitive interactions between aspen and white spruce vary with stand age in boreal mixedwoods","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":69,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Killam Trusts; University of Alberta","keywords":"Boreal; Basal area; Crown (dentistry); Taiga; Competition (biology); Black spruce; Stand development; Biology; Ecology; Forestry; Mathematics; Geography","score_opus":0.006526726682017874,"score_gpt":0.22751312644215244,"score_spread":0.22098639976013457,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2012144633","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99984026,0.000025857627,0.000012345122,0.0000036331924,5.208083e-7,3.7703907e-7,0.0000066015436,6.7965937e-7,0.000109741435],"genre_scores_gemma":[0.9997508,0.000013175675,0.000040138595,0.0000119811875,0.0000014102682,9.752092e-7,0.0000308908,9.72219e-7,0.00014967311],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997738,0.000057716083,0.0000143355865,0.000054508848,0.000037448128,0.000062280866],"domain_scores_gemma":[0.9984774,0.0006310197,0.0003481799,0.000052385734,0.00008655451,0.00040446583],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005761459,0.00026788632,0.00030478323,0.0005236701,0.00053376175,0.0008061178,0.0004122735,0.00030292256,0.0011700207],"category_scores_gemma":[0.0013721124,0.00025927465,0.00025251348,0.0002039107,0.0005260893,0.0006491038,0.0004945674,0.00035940876,0.00014649049],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00099673,0.00028506538,0.9431549,0.000025812978,0.00013835118,0.00021745863,0.00061013055,0.00045080998,0.048366543,0.00015370324,0.00014626462,0.005454234],"study_design_scores_gemma":[0.0000056578924,0.00007464506,0.99877197,9.930862e-7,0.000012034826,0.00007267722,0.00026103226,0.0004373382,0.00024375918,0.0000500225,0.00006635208,0.0000036094532],"about_ca_topic_score_codex":0.008279253,"about_ca_topic_score_gemma":0.047237415,"teacher_disagreement_score":0.008279253,"about_ca_system_score_codex":0.00038042088,"about_ca_system_score_gemma":0.00019378548,"threshold_uncertainty_score":0.016462147},"labels":[],"label_agreement":null},{"id":"W2012637238","doi":"10.1016/j.foreco.2009.07.056","title":"Estimating natural forest fire return interval in northeastern Ontario, Canada","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ontario Forest Research Institute","funders":"","keywords":"Natural (archaeology); Geography; Environmental science; Natural forest; Forestry; Ecology; Agroforestry; Biology; Archaeology","score_opus":0.0030909764225577193,"score_gpt":0.18127567274147016,"score_spread":0.17818469631891246,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2012637238","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99539316,0.0002841439,0.0003266757,0.000071269125,0.000005840437,0.000028795082,0.0018263096,0.000019230252,0.002044646],"genre_scores_gemma":[0.9949521,0.00024927646,0.0008207426,0.00002359475,0.000003082674,0.000013837766,0.001727951,0.0000072843027,0.0022022414],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999749,0.000022906386,0.00002044854,0.00004881642,0.00008152447,0.00007720554],"domain_scores_gemma":[0.9985563,0.00017027321,0.00017567174,0.00004514029,0.0008573465,0.00019520933],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004984328,0.00022761406,0.00029785422,0.0011104129,0.0020048574,0.00087972236,0.00079436507,0.00023663255,0.0009927162],"category_scores_gemma":[0.0019093868,0.00022033793,0.00024173058,0.0013992185,0.00033938023,0.0002444434,0.00033952604,0.00028436093,0.00017412943],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015384804,0.00003773979,0.9795233,0.00004004733,0.00008039376,0.00010689069,0.0006715982,0.0038930052,0.00062454067,0.00018186065,0.0018078407,0.012878892],"study_design_scores_gemma":[0.000013065375,0.000010511398,0.9915582,0.000021120832,0.00002853988,0.00003071973,0.0009552718,0.00548111,0.00014208263,0.00003932517,0.001710453,0.0000096226295],"about_ca_topic_score_codex":0.9975501,"about_ca_topic_score_gemma":0.99937797,"teacher_disagreement_score":0.017864017,"about_ca_system_score_codex":0.017864017,"about_ca_system_score_gemma":0.015719017,"threshold_uncertainty_score":0.12961316},"labels":[],"label_agreement":null},{"id":"W2013423176","doi":"10.1016/j.foreco.2008.09.015","title":"Looking deeper: An investigation of soil carbon losses following harvesting from a managed northeastern red spruce (Picea rubens Sarg.) forest chronosequence","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":115,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"St. Francis Xavier University; Dalhousie University","funders":"National Eye Institute; Natural Sciences and Engineering Research Council of Canada; Economic and Social Research Council; Nature Conservancy; Nature Conservancy of Canada; Canadian Foundation for Climate and Atmospheric Sciences","keywords":"Chronosequence; Environmental science; Soil carbon; Ecological succession; Carbon sequestration; Forest management; Carbon fibers; Soil water; Forestry; Clearcutting; Isotopes of carbon; Forest inventory; Agroforestry; Agronomy; Ecology; Total organic carbon; Soil science; Biology; Geography; Carbon dioxide","score_opus":0.015766815836746086,"score_gpt":0.20069374453078329,"score_spread":0.1849269286940372,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2013423176","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99954814,0.000040739647,0.00005003918,0.00001211401,0.0000017210084,0.0000031433742,0.00018975903,0.0000016558512,0.00015279488],"genre_scores_gemma":[0.9982534,0.00007497971,0.00031009925,0.000053069336,0.000005878765,0.000009261977,0.00068217644,0.0000036986146,0.0006075373],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99994135,0.000008655729,0.000004431999,0.000020464062,0.0000122920455,0.000012869269],"domain_scores_gemma":[0.9996598,0.000049225502,0.00011585775,0.000024989129,0.00007253498,0.000077619],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030772577,0.00022676644,0.0002271172,0.000433367,0.00059475563,0.00046829684,0.0002846338,0.000344657,0.00070605363],"category_scores_gemma":[0.00037980304,0.00011945827,0.00018101084,0.0006214337,0.0002921372,0.00038950023,0.00029920813,0.00029552545,0.00014249516],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006517108,0.00019819054,0.9580791,0.000041874813,0.00010012926,0.00051838224,0.001184431,0.00028757736,0.028642425,0.000051529452,0.0002780334,0.009966684],"study_design_scores_gemma":[0.0000015395344,0.000045926274,0.9992249,0.000001363117,0.0000062527643,0.000054207252,0.00015290448,0.00008071036,0.00022659363,0.000007764818,0.00019610308,0.0000016521457],"about_ca_topic_score_codex":0.04731096,"about_ca_topic_score_gemma":0.16688944,"teacher_disagreement_score":0.04731096,"about_ca_system_score_codex":0.00055131246,"about_ca_system_score_gemma":0.0003679968,"threshold_uncertainty_score":0.09407115},"labels":[],"label_agreement":null},{"id":"W2014187864","doi":"10.1016/s0378-1127(00)00467-9","title":"Detecting scales of pattern in boreal forest landscapes","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":29,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"","keywords":"Disturbance (geology); Taiga; Geography; Ecology; Landscape ecology; Thematic map; Habitat; Boreal; Spatial ecology; Forest ecology; Natural (archaeology); Ecosystem; Environmental science; Physical geography; Forestry; Cartography; Geology; Biology","score_opus":0.004239529979939254,"score_gpt":0.19677162568426906,"score_spread":0.1925320957043298,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2014187864","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984471,0.00003603879,0.0008564797,0.00001888336,0.0000026310738,0.000002567783,0.000048910162,0.000014153887,0.00057317124],"genre_scores_gemma":[0.99889934,0.00001180314,0.00089128775,0.000009597569,0.0000037013465,0.0000046181003,0.00007122856,0.0000053151625,0.00010312112],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979764,0.00005592716,0.000010563848,0.00007526878,0.00002864271,0.0000319192],"domain_scores_gemma":[0.9967609,0.0017067501,0.0007054351,0.00021825719,0.00025912063,0.00034946305],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00081201294,0.00015803217,0.00023043551,0.0007499737,0.00034160234,0.0006737582,0.00027456405,0.00029605164,0.00078221125],"category_scores_gemma":[0.0048421295,0.0002625911,0.00012511898,0.00037123906,0.0003902181,0.0009205952,0.0005435841,0.00026333824,0.000080610786],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005222812,0.00007810094,0.9632553,0.00003058608,0.000082189574,0.00005005286,0.0005967925,0.00179564,0.012150504,0.0003998377,0.0005169359,0.02052181],"study_design_scores_gemma":[0.0000143261295,0.000040849663,0.9933947,0.0000031320178,0.000014013616,0.00006733378,0.0002231768,0.0052116737,0.00036078691,0.0005117593,0.0001527156,0.0000054608095],"about_ca_topic_score_codex":0.0083836205,"about_ca_topic_score_gemma":0.033388734,"teacher_disagreement_score":0.0083836205,"about_ca_system_score_codex":0.00022620197,"about_ca_system_score_gemma":0.00013063221,"threshold_uncertainty_score":0.01666969},"labels":[],"label_agreement":null},{"id":"W2014730120","doi":"10.1016/j.foreco.2012.06.002","title":"Four years of simulated N and S depositions did not cause N saturation in a mixedwood boreal forest ecosystem in the oil sands region in northern Alberta, Canada","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":34,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Boreal; Taiga; Environmental science; Oil sands; Ecosystem; Saturation (graph theory); Boreal ecosystem; Physical geography; Ecology; Geology; Forestry; Geography; Archaeology; Biology; Asphalt","score_opus":0.009794204350287296,"score_gpt":0.18832204884856757,"score_spread":0.17852784449828027,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2014730120","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99973553,0.000010608823,0.000024618595,0.0000147911815,0.0000016049069,0.000004026283,0.000057291338,0.000004918749,0.00014666315],"genre_scores_gemma":[0.9995473,0.000009706415,0.00008754556,0.000016680102,6.485996e-7,0.0000049961195,0.00011652804,0.0000020499579,0.00021442844],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997615,0.000031958803,0.00001626731,0.000053905722,0.00003795614,0.00009851244],"domain_scores_gemma":[0.9994205,0.00015181882,0.000049793933,0.000029665194,0.00015178016,0.00019641344],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00058917736,0.00040247428,0.0004047737,0.00036592456,0.0014715252,0.0009948583,0.0013050074,0.0009009166,0.000606527],"category_scores_gemma":[0.0013413625,0.00042580056,0.0004941664,0.0003866588,0.000843164,0.00046431614,0.0004910413,0.00041888814,0.00006840538],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.009389471,0.0018421056,0.7558661,0.000258023,0.0008449251,0.001659181,0.0014698631,0.17009155,0.04226306,0.00064853806,0.002479693,0.013187492],"study_design_scores_gemma":[0.00036053895,0.00085466244,0.8218705,0.000016258195,0.00029031295,0.00011279334,0.002269803,0.16899793,0.0038605942,0.0003824092,0.0008953392,0.00008888775],"about_ca_topic_score_codex":0.8571894,"about_ca_topic_score_gemma":0.9201056,"teacher_disagreement_score":0.14281058,"about_ca_system_score_codex":0.012534233,"about_ca_system_score_gemma":0.0055614426,"threshold_uncertainty_score":0.2873032},"labels":[],"label_agreement":null},{"id":"W2014799245","doi":"10.1016/j.foreco.2014.05.011","title":"Simulating the impacts of error in species and height upon tree volume derived from airborne laser scanning data","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":56,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of British Columbia","funders":"Canadian Forest Service; Natural Resources Canada","keywords":"Forest inventory; Aerial photography; Range (aeronautics); Laser scanning; Allometry; Tree (set theory); Environmental science; Volume (thermodynamics); Tree allometry; Forest management; Remote sensing; Photogrammetry; Ecology; Geography; Physical geography; Biomass (ecology); Mathematics; Agroforestry; Laser; Biology","score_opus":0.017757679955679007,"score_gpt":0.24031043216374515,"score_spread":0.22255275220806614,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2014799245","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99201304,0.000039646373,0.0069130063,0.000054097378,0.000024215959,0.000019253286,0.0002624273,0.00010605661,0.0005682657],"genre_scores_gemma":[0.99549365,0.000017267468,0.0040173116,0.000014255182,0.0000028851964,0.0000137108,0.00016661109,0.00001684371,0.0002574697],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99943453,0.00017343657,0.00004478528,0.00013823203,0.00010303429,0.00010592312],"domain_scores_gemma":[0.9928744,0.005772859,0.00036916533,0.00029773798,0.00053221895,0.00015359499],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0017872365,0.00060106267,0.0005089347,0.00045720302,0.00043594316,0.00083658006,0.0011197019,0.001495216,0.0010104862],"category_scores_gemma":[0.0067146076,0.0006654457,0.00076275674,0.0007654283,0.0006686154,0.00083228445,0.00046277334,0.00087078015,0.00011145736],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006980456,0.000060228802,0.004486055,0.000008855682,0.000013678537,0.000020450974,0.000015104043,0.99360585,0.0005491719,0.00012638152,0.000037843438,0.0010065995],"study_design_scores_gemma":[0.000014653247,0.00004055228,0.0018111093,0.0000017981283,0.000009108401,0.000006567402,0.000011757261,0.9971463,0.00083394925,0.00008702257,0.000031285104,0.000005957125],"about_ca_topic_score_codex":0.058787808,"about_ca_topic_score_gemma":0.043480687,"teacher_disagreement_score":0.058787808,"about_ca_system_score_codex":0.0014579224,"about_ca_system_score_gemma":0.0011356167,"threshold_uncertainty_score":0.116891265},"labels":[],"label_agreement":null},{"id":"W2014853632","doi":"10.1016/j.foreco.2005.10.036","title":"Herbicide-induced changes to ungulate forage habitat in western Alberta, Canada","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Rangeland and Wildlife Management","field":"Environmental Science","cited_by":24,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Calgary","funders":"Alberta Conservation Association","keywords":"Ungulate; Forage; Habitat; Ecology; Geography; Agroforestry; Herbivore; Forestry; Biology","score_opus":0.0054472357965454936,"score_gpt":0.2007554748434167,"score_spread":0.1953082390468712,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2014853632","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99796283,0.00038799734,0.00003380705,0.000078321274,0.000004648946,0.000008370633,0.0003831716,0.000006164165,0.0011346645],"genre_scores_gemma":[0.9954269,0.0005622796,0.00011112966,0.00008963861,0.0000019626243,0.000009266808,0.00048742868,0.0000047608587,0.0033065388],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998462,0.000017517754,0.000006225506,0.00002146924,0.000055926845,0.000052695515],"domain_scores_gemma":[0.99953043,0.00003083958,0.00010046124,0.000013985895,0.00023159107,0.000092711954],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019642485,0.00016205986,0.00017227414,0.00060865347,0.0008545748,0.0004367976,0.00050704007,0.00024800986,0.0010203157],"category_scores_gemma":[0.00048135276,0.000110541696,0.000121748475,0.0008232029,0.0004150747,0.00013570867,0.00020340699,0.0002431524,0.00008807183],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0034895497,0.0006435217,0.901177,0.00012244216,0.00024682673,0.0013123881,0.0016435065,0.0020055594,0.04165768,0.00037283218,0.004275614,0.04305291],"study_design_scores_gemma":[0.0000061181277,0.000050176033,0.99849045,0.000005228263,0.000012126341,0.00004216836,0.0004164735,0.0001238008,0.000338675,0.000013056163,0.0004978259,0.0000039162246],"about_ca_topic_score_codex":0.9707389,"about_ca_topic_score_gemma":0.994555,"teacher_disagreement_score":0.029261112,"about_ca_system_score_codex":0.011634677,"about_ca_system_score_gemma":0.0049505173,"threshold_uncertainty_score":0.08441591},"labels":[],"label_agreement":null},{"id":"W2015134267","doi":"10.1016/j.foreco.2012.10.046","title":"Challenges in modelling the abundance of 105 tree species in eastern North America using climate, edaphic, and topographic variables","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":50,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Rimouski; Ministry of Natural Resources and Wildlife; McGill University","funders":"","keywords":"Edaphic; Abundance (ecology); Relative species abundance; Ecology; Species distribution; Biodiversity; Species richness; Dominance (genetics); Climate change; Environmental science; Biology; Habitat","score_opus":0.04489908992344905,"score_gpt":0.22387634563389208,"score_spread":0.17897725571044304,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2015134267","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9726218,0.00048693476,0.021679979,0.0011414749,0.00003906337,0.00003489474,0.00095897313,0.00012068484,0.002916275],"genre_scores_gemma":[0.99065346,0.00022977081,0.0077518895,0.00007180769,0.000018111159,0.000048262584,0.0003090215,0.000032645603,0.00088503264],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9995553,0.00021689263,0.000038747366,0.00010690404,0.000037081016,0.0000450766],"domain_scores_gemma":[0.99819046,0.0012640716,0.00018605607,0.00007407344,0.0001563598,0.00012892066],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0013630079,0.00055174297,0.00059318356,0.0004133403,0.00076466467,0.0018110169,0.0016329328,0.0017575409,0.0012021282],"category_scores_gemma":[0.0047742776,0.001116037,0.00063888385,0.001116179,0.00079272303,0.0025901587,0.00082458195,0.0010337604,0.00014245072],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00001300208,0.000031947508,0.01502452,0.000015683292,0.000032399865,0.000031553664,0.000052918294,0.98176277,0.000110690766,0.0005584501,0.00014857193,0.002217564],"study_design_scores_gemma":[0.000008104494,0.0000097146585,0.0049721343,0.000007744766,0.000013650814,0.000017765176,0.00013378482,0.9932853,0.000054580298,0.0012015519,0.0002847225,0.000011005085],"about_ca_topic_score_codex":0.17463799,"about_ca_topic_score_gemma":0.22731273,"teacher_disagreement_score":0.17463799,"about_ca_system_score_codex":0.0018819959,"about_ca_system_score_gemma":0.0019497966,"threshold_uncertainty_score":0.34724295},"labels":[],"label_agreement":null},{"id":"W2015834235","doi":"10.1016/j.foreco.2012.03.015","title":"Effects of single-tree selection harvesting on Rose-breasted Grosbeak (Pheucticus leudovicianus) demography in a northern hardwood forest","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Avian ecology and behavior","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Forestry; Trent University; University of Toronto","funders":"Natural Sciences and Engineering Research Council of Canada; University of Pittsburgh","keywords":"Understory; Nest (protein structural motif); Biology; Canopy; Habitat; Population; Basal area; Ecology; Reproductive success; Forestry; Geography; Demography","score_opus":0.006566427268397069,"score_gpt":0.195401318857521,"score_spread":0.18883489158912392,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2015834235","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99988425,0.000010068102,0.0000071799254,0.0000034685265,5.513764e-7,5.715207e-7,0.000020720934,7.173714e-7,0.00007241834],"genre_scores_gemma":[0.99973065,0.000008240056,0.00001680202,0.000005603999,0.0000011508483,0.0000018742711,0.000066325636,0.0000012308357,0.0001680182],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999723,0.00009344017,0.000012057664,0.00006531249,0.000024723362,0.00008155773],"domain_scores_gemma":[0.9990527,0.00024068131,0.00016601618,0.000050259663,0.000062323736,0.0004280395],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040410433,0.00020654868,0.00030300458,0.00056664855,0.0006303747,0.0005024943,0.00042249679,0.00030255574,0.0016812466],"category_scores_gemma":[0.0007512026,0.00018637,0.00026836921,0.00036695422,0.000740451,0.0003523751,0.00050593785,0.00031594615,0.0002554101],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018329974,0.0003608684,0.9838479,0.00001248035,0.00010419984,0.00035953126,0.00059533346,0.0003514309,0.009626398,0.00006551858,0.00013459973,0.0027086975],"study_design_scores_gemma":[0.0000026555604,0.00005866363,0.99950707,6.193727e-7,0.0000049035657,0.000029140034,0.00021660993,0.00009534678,0.00005712708,0.0000062459285,0.000020147345,0.0000014533546],"about_ca_topic_score_codex":0.03326901,"about_ca_topic_score_gemma":0.14896816,"teacher_disagreement_score":0.03326901,"about_ca_system_score_codex":0.0008968941,"about_ca_system_score_gemma":0.00048712548,"threshold_uncertainty_score":0.066150725},"labels":[],"label_agreement":null},{"id":"W2016006498","doi":"10.1016/j.foreco.2010.12.016","title":"Post-logging recovery time is longer than expected in an East African tropical forest","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":124,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"Natural Sciences and Engineering Research Council of Canada; Canada Research Chairs; National Science Foundation","keywords":"Logging; Basal area; Frugivore; Tropical forest; Habitat; Wildlife; Environmental science; Tropics; Recovery rate; Ecology; National park; Forest reserve; Productivity; Old-growth forest; Diameter at breast height; Forest dynamics; Agroforestry; Forestry; Biology; Geography","score_opus":0.011248424465705304,"score_gpt":0.19135797743052863,"score_spread":0.1801095529648233,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2016006498","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99944586,0.00012638864,0.000024714553,0.00003946336,0.0000023963862,0.0000026211096,0.00004161417,0.0000011930355,0.00031569466],"genre_scores_gemma":[0.9996513,0.00006046785,0.000025006226,0.000013811026,0.0000019067279,0.0000035905557,0.000036848167,7.0960886e-7,0.00020637694],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996755,0.00004712208,0.000024345778,0.000046317604,0.00003145414,0.00017524831],"domain_scores_gemma":[0.99735653,0.0008154112,0.0010406988,0.00008114515,0.00022633934,0.00047987583],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004434006,0.00013946362,0.00016427394,0.0005027508,0.0015579179,0.0007849924,0.0003607881,0.0004279473,0.0028750694],"category_scores_gemma":[0.0026521538,0.00010495481,0.0001532552,0.00069884286,0.0005533701,0.0007193756,0.00047997021,0.00051884475,0.00024734464],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009105427,0.00033080028,0.9719819,0.000104833714,0.000050853916,0.0018366055,0.003790299,0.00017473343,0.003032485,0.00025061247,0.00033542115,0.017200822],"study_design_scores_gemma":[0.000004158929,0.00012511056,0.9953818,0.000021599126,0.000015898378,0.0004881325,0.0031188224,0.00012888701,0.00018405449,0.0000703898,0.0004547167,0.0000064278156],"about_ca_topic_score_codex":0.017624266,"about_ca_topic_score_gemma":0.05347452,"teacher_disagreement_score":0.017624266,"about_ca_system_score_codex":0.0007709423,"about_ca_system_score_gemma":0.00083919644,"threshold_uncertainty_score":0.03504336},"labels":[],"label_agreement":null},{"id":"W2016211804","doi":"10.1016/j.foreco.2013.07.008","title":"Competition, size and age affect tree growth response to fuel reduction treatments in mixed-oak forests of Ohio","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Ohio Center for Ecology and Evolutionary Studies, Ohio University; U.S. Forest Service; Academy of Finland; AGE-WELL","keywords":"Competition (biology); Thinning; Basal area; Forest management; Ecology; Biology; Dendrochronology; Range (aeronautics)","score_opus":0.0037297878118944814,"score_gpt":0.19755427609755097,"score_spread":0.1938244882856565,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2016211804","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999114,0.0000070665656,0.000008768337,0.0000038466114,0.0000010501018,8.5113265e-7,0.00001374425,4.8992075e-7,0.000052691164],"genre_scores_gemma":[0.99967575,0.000005867266,0.0000408778,0.000014256717,0.0000018293971,0.0000032299015,0.000046286084,8.677375e-7,0.00021116177],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997992,0.000054981214,0.000016204143,0.000048201684,0.000027467819,0.00005400459],"domain_scores_gemma":[0.99914813,0.00028996734,0.00014331118,0.00003693581,0.00006934029,0.00031229106],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004484592,0.00023203903,0.00028507484,0.00022278841,0.0004972246,0.00042767668,0.00031644598,0.00027782295,0.0012257554],"category_scores_gemma":[0.000600482,0.00017364346,0.00021598236,0.00012617224,0.0003577682,0.0003969826,0.00036428327,0.00032009894,0.00009031776],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.008320719,0.002561978,0.90075105,0.000045394307,0.00023397368,0.00032279655,0.0011217742,0.00067984464,0.07545091,0.00012698966,0.0003391583,0.010045364],"study_design_scores_gemma":[0.000019875915,0.00037336053,0.99781597,0.000001312451,0.000022345153,0.000037465226,0.00039600968,0.00047030568,0.00070452766,0.000033833294,0.00011987111,0.0000051169027],"about_ca_topic_score_codex":0.01066484,"about_ca_topic_score_gemma":0.056265254,"teacher_disagreement_score":0.01066484,"about_ca_system_score_codex":0.000463563,"about_ca_system_score_gemma":0.0002472595,"threshold_uncertainty_score":0.021205544},"labels":[],"label_agreement":null},{"id":"W2016250656","doi":"10.1016/j.foreco.2012.06.042","title":"Seedbanks, germination and early survival of bitter cherry (Prunus emarginata) in coastal British Columbia","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Victoria","funders":"","keywords":"Prunus; Germination; Biology; Botany; Geography; Ecology; Horticulture; Forestry","score_opus":0.005470590626625935,"score_gpt":0.20253100158348172,"score_spread":0.19706041095685578,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2016250656","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99956363,0.000036824666,0.000008875734,0.000013882984,5.417729e-7,0.0000018596851,0.0000966964,0.0000013240713,0.0002763507],"genre_scores_gemma":[0.99872166,0.00005196902,0.000032887572,0.000022326734,3.3988337e-7,0.0000033495899,0.00018140994,0.0000017152416,0.0009842401],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999859,0.00002118287,0.000008248347,0.000032164495,0.000029724182,0.000049707385],"domain_scores_gemma":[0.99906033,0.00014357887,0.00016230023,0.000038538765,0.0002948501,0.00030031073],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022565461,0.00018998732,0.0001768183,0.00061172614,0.0012442768,0.0005363431,0.00054470106,0.00027295,0.0012742748],"category_scores_gemma":[0.0008284896,0.0001882973,0.000094191426,0.00074322853,0.00055314624,0.00026425876,0.00044639938,0.000438103,0.00022121002],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00030617282,0.00015098197,0.98532987,0.000022257102,0.000040448453,0.00035197352,0.001778692,0.00019770265,0.0056912764,0.00007926639,0.00043352335,0.005617726],"study_design_scores_gemma":[0.000002411476,0.000010635012,0.999141,0.0000023918362,0.0000035456612,0.000018345307,0.0005844242,0.000056082914,0.00006702977,0.0000054884495,0.00010606909,0.0000024381527],"about_ca_topic_score_codex":0.9037415,"about_ca_topic_score_gemma":0.98296666,"teacher_disagreement_score":0.09625852,"about_ca_system_score_codex":0.004723164,"about_ca_system_score_gemma":0.001986045,"threshold_uncertainty_score":0.19365078},"labels":[],"label_agreement":null},{"id":"W2017225221","doi":"10.1016/s0378-1127(00)00564-8","title":"Quantitative genetics of spring and fall cold hardiness in seedlings from two Oregon populations of coastal Douglas-fir","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":32,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"U.S. Bureau of Land Management; U.S. Forest Service; U.S. Environmental Protection Agency","keywords":"Hardiness (plants); Population; Biology; Horticulture; Frost (temperature); Botany; Ecology; Geography; Demography; Meteorology; Cultivar","score_opus":0.015463957010570434,"score_gpt":0.24701126584640445,"score_spread":0.23154730883583402,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2017225221","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99974793,0.000008221085,0.00003702501,0.0000038079022,9.033216e-7,0.0000026195223,0.00004752804,0.0000014372976,0.00015054292],"genre_scores_gemma":[0.9989568,0.000019600586,0.00017541884,0.000020394566,0.0000017482896,0.000015276106,0.0002592238,0.000008388324,0.00054303266],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9997222,0.00006082101,0.00002175818,0.0000939736,0.000056391014,0.00004481167],"domain_scores_gemma":[0.9988545,0.0004985345,0.00018780603,0.00007050636,0.00011535358,0.00027328302],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039204047,0.00042079738,0.00028177068,0.0011569208,0.00092237303,0.0006157623,0.0006054187,0.00034136858,0.0011310709],"category_scores_gemma":[0.0006621192,0.0003142851,0.00022965731,0.00049407664,0.0008522101,0.00026587845,0.0005803818,0.00072500267,0.000110643145],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002772881,0.0009059685,0.48827264,0.000055592376,0.00021431525,0.0004468096,0.0048275758,0.00043464408,0.49329925,0.0006246173,0.0001911432,0.007954565],"study_design_scores_gemma":[0.00004799597,0.00013871085,0.9938731,0.000006677573,0.000044721128,0.00020465386,0.0010771719,0.0004687688,0.0037844975,0.00008294202,0.00025268822,0.000018004188],"about_ca_topic_score_codex":0.019119712,"about_ca_topic_score_gemma":0.07063132,"teacher_disagreement_score":0.019119712,"about_ca_system_score_codex":0.00087190967,"about_ca_system_score_gemma":0.00039940784,"threshold_uncertainty_score":0.038016856},"labels":[],"label_agreement":null},{"id":"W2017254012","doi":"10.1016/j.foreco.2007.01.068","title":"Effect of a major ice storm on understory light conditions in an old-growth Acer–Fagus forest: Pattern of recovery over seven years","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université de Montréal; Université du Québec à Montréal","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Understory; Storm; Environmental science; Growing season; Disturbance (geology); Atmospheric sciences; Ecology; Canopy; Biology; Geology; Oceanography; Geomorphology","score_opus":0.0051315790549671956,"score_gpt":0.2215349976818136,"score_spread":0.2164034186268464,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2017254012","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99981195,0.000019356963,0.000010086672,0.000009819235,0.0000013499267,0.0000011152534,0.00005224791,9.427522e-7,0.000093157425],"genre_scores_gemma":[0.99973136,0.000013058159,0.00001454906,0.000010670126,0.000002035594,0.0000014733573,0.00011943019,6.350927e-7,0.00010672513],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999218,0.000011501636,0.000006949309,0.000015008689,0.0000102439335,0.000034552773],"domain_scores_gemma":[0.999488,0.00011889967,0.00013712389,0.000034795023,0.000078499565,0.0001426823],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024310952,0.00014928335,0.00022713258,0.00034599705,0.00042165408,0.00028957246,0.0002294216,0.00030533262,0.0005487687],"category_scores_gemma":[0.0006530048,0.000091564,0.00021350491,0.00021485105,0.00041173113,0.00020454531,0.00030208073,0.00034883214,0.0001115203],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0028062938,0.0006999421,0.96711206,0.000022374288,0.00012153308,0.0005945072,0.0006071837,0.00044977065,0.019597853,0.000042678686,0.0003136815,0.007632091],"study_design_scores_gemma":[0.0000023151886,0.00009551339,0.99929416,7.903882e-7,0.000008188784,0.00005360473,0.00013786864,0.00012312361,0.00023125474,0.0000052057776,0.000046047004,0.0000019558863],"about_ca_topic_score_codex":0.024152191,"about_ca_topic_score_gemma":0.043834936,"teacher_disagreement_score":0.024152191,"about_ca_system_score_codex":0.00043155928,"about_ca_system_score_gemma":0.00022856858,"threshold_uncertainty_score":0.048023224},"labels":[],"label_agreement":null},{"id":"W2018247661","doi":"10.1016/j.foreco.2006.11.007","title":"Forest planning using co-evolutionary cellular automata","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":35,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; Ministry of Natural Resources","keywords":"Time horizon; Computer science; Cellular automaton; Forest management; Interdependence; Spatial planning; Maximization; Operations research; Environmental resource management; Mathematical optimization; Geography; Environmental science; Environmental planning; Artificial intelligence; Mathematics; Forestry","score_opus":0.010434913804703084,"score_gpt":0.232995028203049,"score_spread":0.22256011439834592,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2018247661","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.1398914,0.00044714063,0.84673953,0.00055201864,0.00016856198,0.000067067034,0.00016847486,0.00042742945,0.011538344],"genre_scores_gemma":[0.9596746,0.00016347949,0.037336044,0.000055704757,0.000024092398,0.000104132334,0.00007238257,0.00004181255,0.0025276362],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9996911,0.000109720146,0.000021036674,0.00007448396,0.000052765386,0.00005084769],"domain_scores_gemma":[0.9974119,0.0019547462,0.00013989213,0.00013890784,0.0002296206,0.00012494929],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005920993,0.000598009,0.0011357681,0.0007703791,0.0009686604,0.0014951363,0.0011391394,0.0014275332,0.0028727972],"category_scores_gemma":[0.0039288276,0.0008253736,0.0011059385,0.000994096,0.0011510688,0.0013664353,0.0013483783,0.0010383412,0.00021597146],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00000893513,0.000005661884,0.00028273955,0.0000067471956,0.000013135519,0.00002371568,0.000017346427,0.99167305,0.00011716072,0.0050184173,0.00009373295,0.0027392928],"study_design_scores_gemma":[0.0000020192824,0.0000024304197,0.00002873426,0.000001116748,0.0000027577219,0.0000039153065,0.0000028292131,0.9967855,0.00003789238,0.0030766153,0.00005438377,0.0000019007214],"about_ca_topic_score_codex":0.023608569,"about_ca_topic_score_gemma":0.017713204,"teacher_disagreement_score":0.023608569,"about_ca_system_score_codex":0.001493288,"about_ca_system_score_gemma":0.0010297269,"threshold_uncertainty_score":0.046942294},"labels":[],"label_agreement":null},{"id":"W2018261790","doi":"10.1016/j.foreco.2008.06.043","title":"Modeling prescribed burns to serve as regional firebreaks to allow wildfire activity in protected areas","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":31,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Waterloo","funders":"","keywords":"National park; Wildlife; Wilderness area; Environmental science; Prescribed burn; Firewall (physics); Wildland–urban interface; Environmental resource management; Geography; Protected area; Wildfire suppression; Forestry; Wilderness; Ecology; Firefighting; Cartography; Business","score_opus":0.011402066005361441,"score_gpt":0.21150436773948028,"score_spread":0.20010230173411883,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2018261790","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98268384,0.00010488383,0.010871493,0.00021901629,0.00005381238,0.000031000705,0.00041339218,0.000059704264,0.0055629113],"genre_scores_gemma":[0.99393165,0.000047918027,0.0034025845,0.00004018815,0.000009810144,0.00002630438,0.00021036793,0.000020971,0.00231014],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99985456,0.00004820146,0.0000051062766,0.000041819007,0.000009440532,0.000040851675],"domain_scores_gemma":[0.9993118,0.0004045547,0.000064165484,0.000036673537,0.00008737724,0.00009546316],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005984095,0.0005564439,0.00043513998,0.00036300442,0.00050009415,0.00088692945,0.0012360705,0.0010852143,0.0037772201],"category_scores_gemma":[0.0015120483,0.0004713846,0.0007193643,0.00040635222,0.00038780112,0.0010193309,0.00030265294,0.00078992726,0.00017165746],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000026554448,0.00004550768,0.0030890834,0.000008219157,0.00001581653,0.000018115175,0.000012374453,0.99521244,0.00016028347,0.0005426983,0.00014756304,0.00072124496],"study_design_scores_gemma":[0.000012758619,0.000011834753,0.0007880316,0.000002102216,0.000011379581,0.000005079711,0.000025471325,0.99863714,0.000098852004,0.00029740552,0.00010716907,0.0000027217545],"about_ca_topic_score_codex":0.07115812,"about_ca_topic_score_gemma":0.0928977,"teacher_disagreement_score":0.07115812,"about_ca_system_score_codex":0.0015642025,"about_ca_system_score_gemma":0.0012891239,"threshold_uncertainty_score":0.14148784},"labels":[],"label_agreement":null},{"id":"W2018468460","doi":"10.1016/j.foreco.2013.03.049","title":"Seed abscission schedules and the timing of post-fire salvage of Picea mariana and Pinus banksiana","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":30,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Université du Québec à Montréal; Concordia University","funders":"","keywords":"Abscission; Black spruce; Jack pine; Salvage logging; Environmental science; Pinus <genus>; Prescribed burn; Schedule; Range (aeronautics); Biology; Forestry; Ecology; Botany; Taiga; Geography; Forest ecology; Ecosystem; Engineering","score_opus":0.003261174312233932,"score_gpt":0.17997450222665778,"score_spread":0.17671332791442385,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2018468460","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996718,0.000031728607,0.000029924182,0.0000037406637,6.8704713e-7,0.0000012311024,0.000044154105,0.000002755119,0.00021390631],"genre_scores_gemma":[0.99950016,0.000016295518,0.00003420624,0.0000048365373,8.8201006e-7,0.0000027253175,0.00010935731,0.0000027504013,0.00032880565],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999509,0.000010871263,0.000004086837,0.000016747228,0.000006132238,0.000011415467],"domain_scores_gemma":[0.9992067,0.00022621382,0.00023408857,0.00004751577,0.000065882785,0.00021960428],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021907286,0.0001674706,0.0001626801,0.00061269297,0.00026996725,0.00034675145,0.0003114013,0.0001788333,0.001022059],"category_scores_gemma":[0.0006802635,0.00017830291,0.00013943901,0.00019378327,0.00018195652,0.00032091571,0.0002967949,0.00031739075,0.000150705],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0023603956,0.00041944042,0.684283,0.000079020116,0.00015508184,0.00036355405,0.00080766255,0.0018301859,0.29363814,0.0004769792,0.00023272906,0.015353847],"study_design_scores_gemma":[0.0000027326619,0.00007379395,0.99769455,0.0000015568396,0.000009009777,0.000057577592,0.00009083781,0.00053771096,0.0013781838,0.00003792643,0.00011304302,0.0000031566124],"about_ca_topic_score_codex":0.0044243517,"about_ca_topic_score_gemma":0.01481662,"teacher_disagreement_score":0.0044243517,"about_ca_system_score_codex":0.0004921807,"about_ca_system_score_gemma":0.00014269067,"threshold_uncertainty_score":0.008797228},"labels":[],"label_agreement":null},{"id":"W2018776330","doi":"10.1016/s0378-1127(00)00616-2","title":"Managing genetic resources of lodgepole pine in west-central Alberta: patterns of isozyme variation in natural populations and effects of forest management","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":26,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Biology; Genetic diversity; Genetic variation; Pinus contorta; Population; Forestry; Forest management; Species richness; Genetic distance; Ecology; Geography; Demography","score_opus":0.0035634843481217563,"score_gpt":0.19989425372535832,"score_spread":0.19633076937723656,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2018776330","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99952257,0.00010528987,0.00005493345,0.000023349967,7.316379e-7,0.0000048577253,0.000031136333,0.0000015179058,0.0002557384],"genre_scores_gemma":[0.9989648,0.00009595229,0.00031733772,0.00002573775,8.831196e-7,0.0000032947808,0.00008112127,0.0000014216345,0.0005095976],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996661,0.00007770245,0.000013023033,0.000067191046,0.00008322918,0.00009280265],"domain_scores_gemma":[0.999185,0.00014424339,0.00020448088,0.00003236252,0.00021375832,0.0002200838],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00073880795,0.00020784306,0.00017003072,0.00083603454,0.0011973092,0.0007909716,0.00095489906,0.0002426413,0.00035198143],"category_scores_gemma":[0.0010337067,0.00012713757,0.00007999168,0.0010816591,0.00077323086,0.00026679182,0.0004109837,0.0002562333,0.000047197045],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00057771156,0.00031754433,0.951285,0.000039309718,0.000093618466,0.0003441859,0.004175714,0.0011672426,0.015576146,0.00030518897,0.00033353883,0.025784839],"study_design_scores_gemma":[0.00000703529,0.0000495735,0.9967219,0.000004762577,0.00001772454,0.000047305173,0.0018939644,0.00037588918,0.00039141087,0.00006469847,0.00042159786,0.00000410125],"about_ca_topic_score_codex":0.7154823,"about_ca_topic_score_gemma":0.94477266,"teacher_disagreement_score":0.2845177,"about_ca_system_score_codex":0.005478165,"about_ca_system_score_gemma":0.00355839,"threshold_uncertainty_score":0.57238656},"labels":[],"label_agreement":null},{"id":"W2018877909","doi":"10.1016/j.foreco.2005.03.051","title":"Competitive interactions in sub-boreal birch–spruce forests differ on opposing slope aspects","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":15,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia","funders":"Brandeis University","keywords":"Boreal; Deciduous; Taiga; Competition (biology); Growing season; Range (aeronautics); Ecology; Environmental science; Geography; Biology","score_opus":0.007893106273741766,"score_gpt":0.23242718033639562,"score_spread":0.22453407406265385,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2018877909","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99939895,0.00003629399,0.000027189319,0.0000063305843,6.901769e-7,0.0000011146207,0.000010696445,0.0000011794114,0.00051757245],"genre_scores_gemma":[0.99977535,0.000011041186,0.000033511176,0.000011168513,0.0000013421611,0.0000013038692,0.000036030542,0.0000011436654,0.00012918214],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99963665,0.000096977936,0.000012613729,0.00005820039,0.00006227446,0.00013322532],"domain_scores_gemma":[0.99919003,0.00018911682,0.00013155388,0.00003851544,0.00008267806,0.0003681192],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000499003,0.00027790852,0.0003612772,0.00053021684,0.00069829955,0.0010484827,0.00041728892,0.00043112817,0.002341374],"category_scores_gemma":[0.00085873576,0.00022232393,0.00021949019,0.00026607295,0.0006727804,0.00064999086,0.00066210056,0.00033629444,0.00034634705],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0025407167,0.0005283913,0.7757556,0.0000960224,0.00030903702,0.00031200962,0.002056563,0.0011468541,0.20233054,0.0012912715,0.0005159636,0.013117142],"study_design_scores_gemma":[0.000015468351,0.000121305944,0.9976616,0.0000022847041,0.000021688706,0.00008424466,0.0006344177,0.00058680284,0.00038005286,0.00029571092,0.00018972122,0.0000067926944],"about_ca_topic_score_codex":0.0069862544,"about_ca_topic_score_gemma":0.04092003,"teacher_disagreement_score":0.0069862544,"about_ca_system_score_codex":0.0004660786,"about_ca_system_score_gemma":0.00026468388,"threshold_uncertainty_score":0.01389122},"labels":[],"label_agreement":null},{"id":"W2019511105","doi":"10.1016/j.foreco.2004.11.024","title":"Small mammals as bioindicators of sustainable boreal forest management","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":168,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service","funders":"","keywords":"Habitat; Ecology; Abundance (ecology); Taiga; Vole; Bioindicator; Forest management; Disturbance (geology); Population; Sustainable forest management; Geography; Biology","score_opus":0.004887206241548184,"score_gpt":0.20526906445441667,"score_spread":0.2003818582128685,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2019511105","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99670535,0.0005719498,0.000080901606,0.000091282425,0.000008937522,0.000004412957,0.000014854906,0.00000199514,0.0025203046],"genre_scores_gemma":[0.9992717,0.00018663045,0.00016220458,0.000036380814,0.000006706587,0.0000030365682,0.0000110545725,5.710289e-7,0.00032185126],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99962354,0.0002465412,0.000009933639,0.000042346415,0.00003329148,0.000044397715],"domain_scores_gemma":[0.99886715,0.00030299337,0.00037577032,0.00008051313,0.00008027269,0.00029330014],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0009468898,0.00017245246,0.00018027828,0.00052695454,0.0005708767,0.00052001886,0.0002802027,0.00031289045,0.0017450557],"category_scores_gemma":[0.0018602313,0.00011204857,0.00007071975,0.00024782005,0.00063710404,0.0004957358,0.00045785395,0.00023386275,0.000079069025],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00030770563,0.00011008748,0.9728994,0.00003892452,0.00005459885,0.00023724849,0.0005919546,0.0000909074,0.002711681,0.00062514044,0.00021063237,0.022121767],"study_design_scores_gemma":[0.000009205063,0.00034024622,0.9956956,0.000021440923,0.000049267186,0.00045580062,0.0015331468,0.00028905965,0.0002817495,0.00037782767,0.00094269426,0.000003916796],"about_ca_topic_score_codex":0.0022174476,"about_ca_topic_score_gemma":0.012396463,"teacher_disagreement_score":0.0022174476,"about_ca_system_score_codex":0.00020423507,"about_ca_system_score_gemma":0.0002025201,"threshold_uncertainty_score":0.0058377385},"labels":[],"label_agreement":null},{"id":"W2019886463","doi":"10.1016/j.foreco.2004.04.018","title":"Reclamation of roads and landings with balsam poplar cuttings","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Growth and nutrition in plants","field":"Agricultural and Biological Sciences","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Alberta Pacific Forest Industries; University of Alberta; Université du Québec en Abitibi-Témiscamingue","funders":"","keywords":"Balsam; Cutting; Land reclamation; Environmental science; Woody plant; Silviculture; Agroforestry; Ecology; Biology; Botany","score_opus":0.004678168556337118,"score_gpt":0.16536874200063545,"score_spread":0.16069057344429832,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2019886463","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9968911,0.000049444836,0.00033536533,0.00002124966,0.000008402684,0.000025250916,0.000065601795,0.00005131755,0.0025522609],"genre_scores_gemma":[0.9947785,0.00007759024,0.0013589321,0.000028181352,0.000006957224,0.0000183174,0.00026461424,0.000011498933,0.0034554324],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995943,0.0000585066,0.000022023643,0.00006700411,0.0000838896,0.00017428276],"domain_scores_gemma":[0.99931705,0.000063848165,0.00017543742,0.0001047276,0.00017702361,0.00016194084],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00035356297,0.00027924395,0.00018737835,0.0009963543,0.0011456726,0.00048215518,0.0005455563,0.00024544576,0.0029051243],"category_scores_gemma":[0.00054196693,0.0001028279,0.00032959264,0.00067647174,0.00024635636,0.00029861936,0.0004953331,0.00030541996,0.0006000669],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0021310803,0.002599191,0.50363386,0.00036239816,0.00022609236,0.002930652,0.0025500243,0.004503102,0.11673671,0.00054505805,0.0027767343,0.36100507],"study_design_scores_gemma":[0.000038080954,0.0021216734,0.9617277,0.000031569623,0.00013561652,0.0006896238,0.003934728,0.0020648062,0.017927714,0.0001717977,0.011132035,0.000024879251],"about_ca_topic_score_codex":0.02324964,"about_ca_topic_score_gemma":0.09888624,"teacher_disagreement_score":0.02324964,"about_ca_system_score_codex":0.00063496816,"about_ca_system_score_gemma":0.0011975066,"threshold_uncertainty_score":0.046228588},"labels":[],"label_agreement":null},{"id":"W2020489881","doi":"10.1016/j.foreco.2010.05.037","title":"Impact of wildfire intensity and logging on fungal and nitrogen-cycling bacterial communities in British Columbia forest soils","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia","funders":"","keywords":"Species richness; Species evenness; Biology; Clearcutting; Logging; Rhizosphere; Nitrogen cycle; Ecological succession; Environmental science; Agronomy; Soil water; Ecology; Botany; Nitrogen; Chemistry","score_opus":0.004999406681523111,"score_gpt":0.20220447377274078,"score_spread":0.19720506709121768,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2020489881","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993975,0.00014904913,0.000009288549,0.000020715903,0.000001908434,0.00000291316,0.00013795392,0.0000011195941,0.00027952605],"genre_scores_gemma":[0.99899226,0.00018446929,0.000036443453,0.00003762518,0.0000015735442,0.0000041726694,0.00024358982,0.0000014530493,0.0004984525],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9994042,0.00008958395,0.000030998555,0.000110744695,0.00013291113,0.00023157241],"domain_scores_gemma":[0.99869823,0.00019720077,0.00017765978,0.000040480245,0.00042114517,0.00046528026],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005845697,0.00036124123,0.00033687556,0.0009956766,0.0012645725,0.0011209185,0.00064516946,0.00039563252,0.0013072952],"category_scores_gemma":[0.00087109837,0.00028658565,0.00019055045,0.0010526794,0.000888802,0.0003796011,0.0006400946,0.0004369469,0.00014927312],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014467608,0.00023481736,0.95398676,0.00007920753,0.00016604122,0.0002404932,0.0009445422,0.0005850802,0.029110463,0.00008640343,0.0005149715,0.01260444],"study_design_scores_gemma":[0.0000032783234,0.000017911667,0.9991109,0.000003631716,0.000010019756,0.000011444328,0.0003857238,0.00012702818,0.00021997538,0.0000074401514,0.00009927906,0.0000031715504],"about_ca_topic_score_codex":0.8438255,"about_ca_topic_score_gemma":0.93642884,"teacher_disagreement_score":0.15617448,"about_ca_system_score_codex":0.0070590307,"about_ca_system_score_gemma":0.0041165766,"threshold_uncertainty_score":0.31418842},"labels":[],"label_agreement":null},{"id":"W2020940103","doi":"10.1016/j.foreco.2007.12.023","title":"Estimating nitrogen exports in response to forest vegetation, age and soil types in two coastal-forested watersheds in British Columbia","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil and Water Nutrient Dynamics","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Victoria","funders":"Natural Sciences and Engineering Research Council of Canada; Canada Research Chairs","keywords":"Vegetation (pathology); Podzol; Environmental science; Nitrogen; Wetland; Animal science; Forestry; Agronomy; Hydrology (agriculture); Ecology; Geography; Soil water; Biology; Soil science; Chemistry; Geology","score_opus":0.006006662040131007,"score_gpt":0.2048674663527561,"score_spread":0.1988608043126251,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2020940103","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999542,0.000020850217,0.000042818316,0.0000143626785,5.686528e-7,0.000007206624,0.00012786237,0.0000036751858,0.00024064217],"genre_scores_gemma":[0.9987515,0.000048501024,0.0002689935,0.000017700402,7.613091e-7,0.000012478874,0.00035731544,0.0000035236837,0.00053933373],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99953234,0.00007220634,0.000035724082,0.00013076626,0.0000860555,0.00014295998],"domain_scores_gemma":[0.99892116,0.00023587984,0.00011728975,0.00005344957,0.0004021634,0.00027012517],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048980577,0.000489757,0.00065842754,0.0011521544,0.0023146723,0.0016315007,0.0012332276,0.00066148496,0.0006041071],"category_scores_gemma":[0.0015228571,0.0004633247,0.00031358088,0.002430403,0.0011141914,0.00039970584,0.0010210858,0.00057946815,0.00011124161],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00027980693,0.00014373094,0.9862868,0.000025041136,0.00010137232,0.00034516488,0.0011742658,0.0026434641,0.0029631876,0.00007369551,0.00028657707,0.005676895],"study_design_scores_gemma":[0.000013075286,0.000013913141,0.9935963,0.0000070453525,0.000028994353,0.00003387143,0.0017612055,0.003928619,0.0002981236,0.000027872775,0.00027989087,0.000011061677],"about_ca_topic_score_codex":0.96693176,"about_ca_topic_score_gemma":0.9878385,"teacher_disagreement_score":0.03306824,"about_ca_system_score_codex":0.012290449,"about_ca_system_score_gemma":0.006214807,"threshold_uncertainty_score":0.08917385},"labels":[],"label_agreement":null},{"id":"W2021081813","doi":"10.1016/j.foreco.2005.05.058","title":"Boreal bird community response to jack pine forest succession","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":51,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service","funders":"Canadian Forest Service; Ministry of Natural Resources","keywords":"Ecological succession; Taiga; Ecology; Vegetation (pathology); Boreal; Geography; Age structure; Warbler; Community structure; Biology; Habitat; Demography; Population","score_opus":0.006427260882471471,"score_gpt":0.22832693532602633,"score_spread":0.22189967444355485,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2021081813","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996346,0.000013893825,0.000012612357,0.000008898953,0.0000019961433,0.0000012453197,0.000021465004,0.0000010046509,0.00030421387],"genre_scores_gemma":[0.9996383,0.000011718777,0.000021092392,0.000014395193,0.0000025389356,0.0000019497054,0.000041997144,7.579366e-7,0.00026724624],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998895,0.000033359996,0.0000053966814,0.000021855412,0.000011859895,0.000038074628],"domain_scores_gemma":[0.99947864,0.000075772026,0.00012422942,0.00002912184,0.000072670206,0.0002195589],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003297922,0.0001235302,0.000185342,0.00027969823,0.00038516312,0.0003826297,0.00016346206,0.00023878428,0.0020177471],"category_scores_gemma":[0.0009001919,0.00013038132,0.00014429068,0.00011740947,0.00021761662,0.00024627324,0.0003144185,0.00022790418,0.00015905304],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0022329874,0.0003145957,0.94011855,0.00003395084,0.00011603533,0.0002127149,0.0006595781,0.00061744644,0.048283465,0.00011060253,0.00037925976,0.006920855],"study_design_scores_gemma":[0.0000033987844,0.00004584702,0.99933726,7.438804e-7,0.000004288389,0.000034731205,0.0001805184,0.00014322832,0.00015844768,0.000011977237,0.00007845929,0.0000010555977],"about_ca_topic_score_codex":0.015346834,"about_ca_topic_score_gemma":0.076493904,"teacher_disagreement_score":0.015346834,"about_ca_system_score_codex":0.00039173578,"about_ca_system_score_gemma":0.00015910993,"threshold_uncertainty_score":0.030515015},"labels":[],"label_agreement":null},{"id":"W2021732315","doi":"10.1016/j.foreco.2013.02.024","title":"Elevated CO2 alters N-growth relationship in spruce and causes unequal increases in N, P and K demands","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant responses to elevated CO2","field":"Agricultural and Biological Sciences","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute; Lakehead University","funders":"","keywords":"Ecology; Environmental science; Biology","score_opus":0.011971209876054881,"score_gpt":0.202818284109224,"score_spread":0.19084707423316913,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2021732315","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994062,0.00009927035,0.00017830735,0.000018042201,0.0000033618933,0.0000020450175,0.00004180137,0.000011478354,0.0002395021],"genre_scores_gemma":[0.9992162,0.000042136242,0.00018200069,0.000023694018,0.0000025934378,0.0000041487942,0.00009890442,0.000012354701,0.00041798045],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9998609,0.000020591697,0.000010825055,0.000038933405,0.000026279675,0.000042517226],"domain_scores_gemma":[0.9996507,0.00006503659,0.000058247184,0.000026736336,0.00003470302,0.00016460434],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001643059,0.00030589788,0.00027028966,0.00032286838,0.0004542958,0.0005803475,0.00043622524,0.0004021905,0.00083682203],"category_scores_gemma":[0.00022079742,0.00032013585,0.00018300852,0.00025196729,0.00051148626,0.000467312,0.0003889589,0.00053021987,0.00013410086],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018312469,0.00013294505,0.011081512,0.000020246918,0.000031382166,0.00017754472,0.00008448591,0.00045328334,0.98467827,0.00013258813,0.000059443886,0.0013170255],"study_design_scores_gemma":[0.000104093175,0.00075141323,0.6881912,0.0000063792713,0.000057057397,0.0007207893,0.0005129921,0.0063018855,0.30182737,0.00043257652,0.0010590714,0.00003520525],"about_ca_topic_score_codex":0.014855977,"about_ca_topic_score_gemma":0.028813353,"teacher_disagreement_score":0.014855977,"about_ca_system_score_codex":0.0010442367,"about_ca_system_score_gemma":0.00048112523,"threshold_uncertainty_score":0.029539049},"labels":[],"label_agreement":null},{"id":"W2022044672","doi":"10.1016/j.foreco.2005.01.032","title":"Evaluation of growth response, stand value and financial return for pre-commercially thinned jack pine stands in Northwestern Ontario","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Northern Ontario Academic Medicine Association; Intertek (Canada)","funders":"Industry Canada","keywords":"Hectare; Thinning; Mathematics; Forestry; Diameter at breast height; Forest product; Volume (thermodynamics); Animal science; Geography; Forest management; Biology; Archaeology; Agriculture","score_opus":0.010562980971614382,"score_gpt":0.2421823000741187,"score_spread":0.23161931910250433,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2022044672","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995414,0.0000130487315,0.000014130656,0.000011520441,4.8844885e-7,0.000003597897,0.00007738284,9.799801e-7,0.00033743508],"genre_scores_gemma":[0.998621,0.000021565158,0.00006647924,0.000008596897,8.133027e-7,0.000005310688,0.00017742324,8.1490197e-7,0.0010978922],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99974424,0.00003403184,0.000010848781,0.000037304304,0.00009210591,0.00008141826],"domain_scores_gemma":[0.9987913,0.00015859524,0.00020736664,0.000041522915,0.00046692792,0.0003342908],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00041337562,0.0001706515,0.00014339038,0.00035953333,0.0011157527,0.0005433241,0.0005204163,0.00019566389,0.0009565627],"category_scores_gemma":[0.0011230828,0.00012728943,0.00015436205,0.00045315092,0.00048652617,0.00025298988,0.00030452327,0.00022588471,0.00014633832],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00072435767,0.00016915439,0.9850152,0.000015430121,0.00003326768,0.0002677293,0.0011227147,0.00087909936,0.0035420356,0.00010784116,0.00034004753,0.0077832052],"study_design_scores_gemma":[0.0000067548262,0.00009564469,0.9979024,0.0000022103416,0.000007587162,0.00002661236,0.00095086003,0.00044738658,0.00019195156,0.00002212863,0.00034336554,0.0000031635723],"about_ca_topic_score_codex":0.87220836,"about_ca_topic_score_gemma":0.9797896,"teacher_disagreement_score":0.12779164,"about_ca_system_score_codex":0.0103024645,"about_ca_system_score_gemma":0.004931626,"threshold_uncertainty_score":0.25708842},"labels":[],"label_agreement":null},{"id":"W2022088483","doi":"10.1016/j.foreco.2011.07.005","title":"Stand structure interacts with previous defoliation to influence herbivore fitness","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant and animal studies","field":"Agricultural and Biological Sciences","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université de Moncton; University of New Brunswick","funders":"","keywords":"Herbivore; Biology; Fecundity; Thinning; Agronomy; Nutrient; Abies balsamea; Botany; Ecology; Balsam; Population","score_opus":0.01827265931724565,"score_gpt":0.18896612071040508,"score_spread":0.17069346139315944,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2022088483","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99954283,0.000079827936,0.00008845295,0.000023659037,0.0000023029338,9.802685e-7,0.000020797825,0.0000036704848,0.00023750876],"genre_scores_gemma":[0.99960345,0.000020141371,0.000084977575,0.000023653432,0.0000028442364,0.0000014250472,0.000031588464,0.0000064462315,0.00022549772],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996406,0.00017993493,0.00001615296,0.000058338428,0.00003606652,0.00006883171],"domain_scores_gemma":[0.99704045,0.0016785542,0.00042402322,0.00016901323,0.00010241946,0.00058537035],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008148953,0.00030440922,0.00047250546,0.00043610693,0.0004859769,0.0010722771,0.0003665333,0.0006457179,0.0035728798],"category_scores_gemma":[0.0017690876,0.0003073484,0.00048490823,0.0003033318,0.00070981955,0.00044282657,0.00051175745,0.00066200434,0.00030260158],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001021455,0.0005025448,0.9064241,0.000057253535,0.0006768012,0.0004651074,0.00032501132,0.001703973,0.081860274,0.00034263617,0.0002750118,0.0063458257],"study_design_scores_gemma":[0.000016688116,0.00015605042,0.9968929,0.0000031930515,0.0000673499,0.00013920492,0.00010218851,0.0017123339,0.00061407674,0.0001599274,0.00012841451,0.000007559145],"about_ca_topic_score_codex":0.0030162008,"about_ca_topic_score_gemma":0.014365481,"teacher_disagreement_score":0.0035728798,"about_ca_system_score_codex":0.0005082701,"about_ca_system_score_gemma":0.00038451288,"threshold_uncertainty_score":0.01195246},"labels":[],"label_agreement":null},{"id":"W2022163526","doi":"10.1016/j.foreco.2008.08.005","title":"Cavity and bark nesting bird response to partial cutting in Northern conifer forests","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Avian ecology and behavior","field":"Environmental Science","cited_by":32,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia; Government of British Columbia","funders":"","keywords":"Deciduous; Snag; Abundance (ecology); Nest (protein structural motif); Forage; Foraging; Ecology; Habitat; Bark (sound); Biology; Relative species abundance","score_opus":0.010930499629481403,"score_gpt":0.2265491137718927,"score_spread":0.21561861414241132,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2022163526","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998696,0.0000064694686,0.000004422591,0.0000041391845,7.025298e-7,6.410151e-7,0.000008134738,2.9193723e-7,0.000105633546],"genre_scores_gemma":[0.9996582,0.000008848438,0.000016747485,0.000014474636,0.0000019200984,0.0000032490486,0.00004156177,5.364932e-7,0.0002545792],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991524,0.00002001299,0.0000030118833,0.000016372149,0.000009034724,0.00003626934],"domain_scores_gemma":[0.9994361,0.0001230479,0.000117857824,0.0000269226,0.00004007995,0.0002560369],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023326883,0.00013473083,0.00022982444,0.00016897968,0.00054997305,0.0003603641,0.00017559767,0.00030020106,0.0016657369],"category_scores_gemma":[0.00065347605,0.00013466417,0.000095530806,0.00010694903,0.0003782809,0.00020079078,0.000253851,0.00031001793,0.00012681488],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014599492,0.0004473528,0.9771071,0.000019557221,0.000042729647,0.00021991217,0.0007596943,0.00025444193,0.016052997,0.000043371016,0.0002059196,0.0033869909],"study_design_scores_gemma":[0.0000018040837,0.00004403672,0.9996124,7.105075e-7,0.0000017130737,0.000031986325,0.00017955872,0.000044465312,0.000047068082,0.0000068596964,0.000028745895,6.0889073e-7],"about_ca_topic_score_codex":0.012322049,"about_ca_topic_score_gemma":0.069914535,"teacher_disagreement_score":0.012322049,"about_ca_system_score_codex":0.00029342793,"about_ca_system_score_gemma":0.00023400928,"threshold_uncertainty_score":0.024500608},"labels":[],"label_agreement":null},{"id":"W2022222780","doi":"10.1016/s0378-1127(02)00228-1","title":"Near-surface soil characteristics and understory plants as predictors of Pinus contorta site index in southwestern Alberta, Canada","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":27,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Calgary","funders":"Università degli Studi di Camerino; University of Calgary","keywords":"Pinus contorta; Humus; Understory; Site index; Environmental science; Ecology; Taiga; Soil science; Nutrient; Forestry; Soil water; Geography; Canopy; Biology","score_opus":0.0036907483338207993,"score_gpt":0.17100580328418577,"score_spread":0.16731505495036497,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2022222780","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9976755,0.00047484259,0.000073474424,0.00008647336,0.000007533775,0.0000087796125,0.00071807654,0.000008037701,0.00094743085],"genre_scores_gemma":[0.99651045,0.00041732058,0.00020518772,0.00005250609,0.0000034051648,0.000007351425,0.00069645926,0.000004957813,0.0021022966],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976426,0.000029363115,0.000012418288,0.000044559056,0.00007081516,0.000078583435],"domain_scores_gemma":[0.99873227,0.0001369366,0.00014075598,0.000031089,0.00057180465,0.00038715042],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004943058,0.00034343914,0.00033584607,0.0010884533,0.0016373176,0.00081833353,0.00087524706,0.0003290018,0.0012889721],"category_scores_gemma":[0.00083351857,0.00023378806,0.00023061202,0.0015591104,0.00049426017,0.0002465178,0.00042699496,0.00038759876,0.0001677031],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001811946,0.000054463664,0.9910465,0.000023597446,0.00006468775,0.00017879847,0.00044071357,0.000503046,0.00084042584,0.00012069518,0.0012384115,0.0053075883],"study_design_scores_gemma":[0.0000060886073,0.0000093601,0.9982033,0.000016485901,0.00002073526,0.0000477875,0.00082717964,0.0003934553,0.000062725034,0.00002386509,0.00038386488,0.0000051871875],"about_ca_topic_score_codex":0.9916379,"about_ca_topic_score_gemma":0.99835473,"teacher_disagreement_score":0.008569112,"about_ca_system_score_codex":0.008569112,"about_ca_system_score_gemma":0.010676655,"threshold_uncertainty_score":0.062173486},"labels":[],"label_agreement":null},{"id":"W2022263193","doi":"10.1016/j.foreco.2010.03.022","title":"Litter decomposition can detect effects of high and moderate levels of forest disturbance on stream condition","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Freshwater macroinvertebrate diversity and ecology","field":"Environmental Science","cited_by":81,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Riparian zone; Clearcutting; Litter; Environmental science; Logging; STREAMS; Alder; Ecosystem; Riparian forest; Basal area; Ecology; Plant litter; Forest management; Disturbance (geology); Species richness; Forest ecology; Agroforestry; Biology; Habitat","score_opus":0.003571739645459773,"score_gpt":0.18616759352032294,"score_spread":0.18259585387486318,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2022263193","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.997494,0.00011495227,0.000997227,0.000014433357,0.000008792787,0.000014120162,0.0003286217,0.000024668543,0.0010032571],"genre_scores_gemma":[0.9976412,0.000060490598,0.0013907783,0.000034336288,0.000011575503,0.000016330616,0.00041584158,0.000009455871,0.0004200338],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99955887,0.00012543541,0.000051692492,0.00011315201,0.00008220828,0.00006855775],"domain_scores_gemma":[0.9959734,0.0016076654,0.0013880401,0.00017051423,0.00032135876,0.00053898647],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00094348664,0.00042483478,0.0005107136,0.0014853857,0.00033700597,0.0006757823,0.00021132486,0.0005930066,0.0021923566],"category_scores_gemma":[0.0035273468,0.0003070573,0.00035266732,0.00071743916,0.00021043574,0.0005341743,0.00047031644,0.00033132662,0.00039625398],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004168473,0.00008946958,0.98455805,0.000025719903,0.00010645476,0.000052820138,0.00004787911,0.00015398585,0.0067326957,0.000010825712,0.00009454072,0.0077106203],"study_design_scores_gemma":[0.0000041325306,0.000103301056,0.99825364,0.0000039250017,0.000022094322,0.00014206552,0.000035967292,0.000791001,0.0005430032,0.000036078396,0.00006111047,0.000003653476],"about_ca_topic_score_codex":0.0021568246,"about_ca_topic_score_gemma":0.012544264,"teacher_disagreement_score":0.0021923566,"about_ca_system_score_codex":0.00019113238,"about_ca_system_score_gemma":0.00019637618,"threshold_uncertainty_score":0.007334113},"labels":[],"label_agreement":null},{"id":"W2024069028","doi":"10.1016/j.foreco.2005.12.033","title":"Structure of forests used by small mammals in the industrially damaged landscape of Sudbury, Ontario, Canada","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Animal Ecology and Behavior Studies","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Laurentian University","funders":"","keywords":"Microtus; Peromyscus; Shrub; Ecology; Deer mouse; Basal area; Species richness; Biology; Shrew","score_opus":0.00715786482717229,"score_gpt":0.18752093603554765,"score_spread":0.18036307120837536,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2024069028","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99658257,0.0003716525,0.000046339064,0.00004444776,0.000002365501,0.00001673921,0.0011710838,0.000003652087,0.0017611464],"genre_scores_gemma":[0.9976404,0.0001917164,0.000105433326,0.000013000523,0.0000014991226,0.000007822965,0.00051944377,0.000002286194,0.0015185302],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996519,0.000028895152,0.000020743282,0.000059521055,0.00008911638,0.00014985327],"domain_scores_gemma":[0.9987503,0.00007993011,0.0002969447,0.00003030832,0.0004910603,0.00035147773],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020438175,0.00018622914,0.0002851939,0.0025414713,0.0021772753,0.0010804798,0.0009512927,0.0002258733,0.002744838],"category_scores_gemma":[0.000857794,0.00026347258,0.00021780594,0.002686103,0.0010919679,0.00024501202,0.00074290176,0.0002244932,0.00027110032],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010614774,0.000021151724,0.98921824,0.00004645613,0.0000487309,0.00017042884,0.0024479763,0.00023760134,0.0012366482,0.0002113762,0.00087747537,0.0053778007],"study_design_scores_gemma":[0.0000013721613,0.000005252342,0.99865353,0.000007457043,0.0000042982997,0.00003627664,0.00094012695,0.00006138968,0.000021788634,0.000008656337,0.00025768098,0.0000022075335],"about_ca_topic_score_codex":0.9834282,"about_ca_topic_score_gemma":0.9977691,"teacher_disagreement_score":0.01657182,"about_ca_system_score_codex":0.0115602845,"about_ca_system_score_gemma":0.008493206,"threshold_uncertainty_score":0.08387619},"labels":[],"label_agreement":null},{"id":"W2024368530","doi":"10.1016/j.foreco.2009.11.017","title":"Estimating cumulative defoliation of balsam fir from hemlock looper and balsam fir sawfly using aerial defoliation survey in western Newfoundland, Canada","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of New Brunswick","funders":"U.S. Forest Service; Atlantic Canada Opportunities Agency","keywords":"Balsam; Sawfly; Abies balsamea; Biology; Forestry; Western Hemlock; Ragweed; Botany; Geography; Ecology","score_opus":0.013502531024139558,"score_gpt":0.23656234284062674,"score_spread":0.22305981181648718,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2024368530","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.997306,0.00020213141,0.00014382489,0.000037332615,0.000004792421,0.000011766671,0.001392796,0.00001026738,0.0008910639],"genre_scores_gemma":[0.9959269,0.00022574025,0.0005022189,0.000044151515,0.0000033081822,0.00001185361,0.001939099,0.0000056830654,0.0013410372],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996258,0.00003573856,0.000029397766,0.000080324164,0.00009780518,0.00013087528],"domain_scores_gemma":[0.9984296,0.00016817682,0.00023123785,0.00005089426,0.0008085215,0.00031155886],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005471425,0.00031907216,0.00028932135,0.0014380004,0.0012044746,0.0006751775,0.0007879077,0.00024577454,0.00081285526],"category_scores_gemma":[0.0010718972,0.00028837047,0.00026013236,0.0015765257,0.00036278283,0.00031908462,0.00037166665,0.00032926913,0.00020554122],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00005213282,0.000023854991,0.993654,0.000013128576,0.000054822995,0.00006994549,0.00031351042,0.0004299824,0.00070048025,0.000028117247,0.0005513878,0.0041085593],"study_design_scores_gemma":[0.0000018846602,0.000005082409,0.99899226,0.0000064543983,0.000011151477,0.000021308018,0.00031844605,0.00030109234,0.000081248,0.0000028572442,0.0002554263,0.000002705071],"about_ca_topic_score_codex":0.992021,"about_ca_topic_score_gemma":0.99785054,"teacher_disagreement_score":0.010977434,"about_ca_system_score_codex":0.010977434,"about_ca_system_score_gemma":0.0072693713,"threshold_uncertainty_score":0.07964724},"labels":[],"label_agreement":null},{"id":"W2025115127","doi":"10.1016/j.foreco.2014.02.017","title":"Effects of two types of Ca fertilizer on sugar maple nutrition, vigor and growth after 7years","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":15,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Wildlife","funders":"","keywords":"Lime; Fertilizer; Antagonism; Phosphorus; Nutrient; Potassium; Sugar; Basal area; Calcium; Chemistry; Animal science; Botany; Biology; Horticulture; Agronomy; Ecology","score_opus":0.002679262883917834,"score_gpt":0.18718791564804557,"score_spread":0.18450865276412773,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2025115127","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984843,0.00044798356,0.00015143653,0.00007689213,0.00007117446,0.000035206405,0.00023758014,0.000013254225,0.0004822006],"genre_scores_gemma":[0.99109626,0.00029272682,0.0006683952,0.00017335406,0.000041526644,0.00011358206,0.00046700702,0.000014360382,0.0071328813],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99946004,0.0000568629,0.000047412057,0.00019557429,0.000089936155,0.00015010926],"domain_scores_gemma":[0.99838126,0.00042850146,0.00021620322,0.00009616713,0.00020200074,0.00067582034],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003458257,0.00058325875,0.00091310684,0.00040804644,0.00065646356,0.00079673604,0.0007736418,0.0008781022,0.0024550776],"category_scores_gemma":[0.0009931513,0.00032265484,0.0003930947,0.0003580852,0.00066544797,0.000859694,0.0005643968,0.0011949298,0.00018907308],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.21654189,0.0120499255,0.04206186,0.00062582607,0.00049344887,0.00073905423,0.0009125823,0.00082753814,0.6959515,0.0003954058,0.0007400692,0.02866082],"study_design_scores_gemma":[0.003523378,0.08319117,0.5835321,0.000092305854,0.0012065797,0.000370548,0.0030512786,0.0031687834,0.3092173,0.000897002,0.011468215,0.00028133002],"about_ca_topic_score_codex":0.011471451,"about_ca_topic_score_gemma":0.029381592,"teacher_disagreement_score":0.011471451,"about_ca_system_score_codex":0.0013997143,"about_ca_system_score_gemma":0.0014074544,"threshold_uncertainty_score":0.022809386},"labels":[],"label_agreement":null},{"id":"W2025518103","doi":"10.1016/j.foreco.2007.09.034","title":"White-tailed deer activity reconstructed from tree-rings in eastern boreal Canada","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval; Center for Northern Studies","funders":"","keywords":"Balsam; Abies balsamea; Trampling; Spruce budworm; Snow; Taiga; Boreal; Ecology; Geography; Biology; Grazing; Forestry; Horticulture; Tortricidae","score_opus":0.0034195035360103637,"score_gpt":0.17897843648698677,"score_spread":0.1755589329509764,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2025518103","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991554,0.000093579154,0.000056283312,0.00001928921,0.0000015690729,0.0000021125886,0.00043969727,0.0000038942335,0.00022821038],"genre_scores_gemma":[0.99868304,0.000078666395,0.00017352859,0.000009627619,9.790481e-7,0.0000020724906,0.0007765446,0.00000369755,0.0002719355],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998216,0.00002526137,0.000010780599,0.0000487618,0.000030361669,0.00006333525],"domain_scores_gemma":[0.9992391,0.00010337226,0.000100970334,0.00003317186,0.00034181122,0.00018155984],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039065824,0.00024426472,0.0002360703,0.0010046164,0.0010010946,0.0009252618,0.0006013239,0.00030021567,0.0008637597],"category_scores_gemma":[0.0011607152,0.00022729785,0.0002811406,0.001545668,0.00043631278,0.00031627616,0.00043403637,0.0002900248,0.00013775968],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010830299,0.000027789001,0.9920697,0.000011122827,0.000083972205,0.00009993051,0.0003851862,0.0019269892,0.0009760888,0.00009221205,0.00031056223,0.0039081885],"study_design_scores_gemma":[0.0000053386416,0.000005971074,0.99619055,0.000009322351,0.000026352775,0.000039009443,0.00068211486,0.0025279936,0.00008519267,0.000026433927,0.00039253692,0.000009243489],"about_ca_topic_score_codex":0.98046035,"about_ca_topic_score_gemma":0.99356186,"teacher_disagreement_score":0.019539654,"about_ca_system_score_codex":0.0059969323,"about_ca_system_score_gemma":0.0049514635,"threshold_uncertainty_score":0.043510973},"labels":[],"label_agreement":null},{"id":"W2025966008","doi":"10.1016/j.foreco.2006.09.031","title":"Plant assemblages in British beech woodlands within and beyond native range: Implications of future climate change for their conservation","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Wilfrid Laurier University","funders":"","keywords":"Beech; Woodland; Climate change; Range (aeronautics); Ecology; Geography; Environmental science; Agroforestry; Biology","score_opus":0.014368244921823467,"score_gpt":0.23043661022201786,"score_spread":0.2160683653001944,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2025966008","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9988412,0.00048133853,0.00007232838,0.000027585551,0.0000025717993,0.0000029421249,0.00012317278,0.0000020203925,0.00044672488],"genre_scores_gemma":[0.9992167,0.00018160841,0.00011491954,0.000015479704,0.0000023440475,0.0000037955992,0.00012131812,0.0000019875865,0.00034191506],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996082,0.000100168356,0.000031258758,0.00010827013,0.000068329085,0.00008387662],"domain_scores_gemma":[0.99888104,0.00023873769,0.0002884294,0.000091215275,0.00026654155,0.00023406827],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004573443,0.00012210401,0.00027088047,0.0019822603,0.0012065805,0.00097626017,0.00032154506,0.00034020192,0.00204875],"category_scores_gemma":[0.0013418398,0.00030260158,0.00018531478,0.0015389059,0.0011671782,0.00082412356,0.0006927978,0.00037099494,0.0002456349],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003739327,0.000039695922,0.9710633,0.00010146951,0.00010563019,0.00012896495,0.0068353657,0.00012658675,0.009670316,0.00028780347,0.00031280663,0.010954036],"study_design_scores_gemma":[0.0000013520402,0.0000067598016,0.99894124,0.0000028321024,0.000005409352,0.00003434564,0.00074361614,0.000035716097,0.000031998366,0.000024400204,0.00017067397,0.0000017160247],"about_ca_topic_score_codex":0.14224064,"about_ca_topic_score_gemma":0.5760601,"teacher_disagreement_score":0.14224064,"about_ca_system_score_codex":0.0011870367,"about_ca_system_score_gemma":0.00040010537,"threshold_uncertainty_score":0.2828254},"labels":[],"label_agreement":null},{"id":"W2026337641","doi":"10.1016/j.foreco.2005.09.021","title":"Surveying mountain pine beetle damage of forests: A review of remote sensing opportunities","year":2005,"lang":"en","type":"review","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":376,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada","funders":"Natural Resources Canada","keywords":"Mountain pine beetle; Remote sensing; Environmental resource management; Geography; Range (aeronautics); Bark beetle; Environmental science; Ecology; Forestry","score_opus":0.038003154950805154,"score_gpt":0.2870223403617327,"score_spread":0.24901918541092755,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2026337641","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0003650636,0.9987589,0.00023354024,0.00019916784,0.00007702251,0.000007021072,0.000057015113,0.0000066517555,0.00029558426],"genre_scores_gemma":[0.00092096796,0.99808913,0.0005414897,0.00013271559,0.00009768231,0.000006547447,0.00006557392,0.0000014087772,0.00014451165],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.99944156,0.00008867285,0.000103386905,0.00014294358,0.0001956479,0.000027732634],"domain_scores_gemma":[0.9967417,0.0018491476,0.00045426906,0.00006448754,0.00077385164,0.000116575124],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0022926878,0.0008822154,0.0025123525,0.004641101,0.00021792205,0.0009798341,0.0014711315,0.0009429667,0.0016032417],"category_scores_gemma":[0.0032616262,0.00044481055,0.0007265581,0.0058234734,0.0004540542,0.0018654783,0.00050795067,0.00073021837,0.0006452313],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00004169732,0.000038407805,0.0017190808,0.014705789,0.00018340281,0.000086049964,0.00008324521,0.00020029244,0.0007309668,0.00025878227,0.009049952,0.9729023],"study_design_scores_gemma":[0.00006715176,0.00048189628,0.044695605,0.03360268,0.0019315287,0.004266113,0.00084411935,0.00040084636,0.0016011575,0.0019325309,0.9100256,0.00015077568],"about_ca_topic_score_codex":0.005719379,"about_ca_topic_score_gemma":0.015907183,"teacher_disagreement_score":0.005719379,"about_ca_system_score_codex":0.00059335376,"about_ca_system_score_gemma":0.0016219598,"threshold_uncertainty_score":0.012125075},"labels":[],"label_agreement":null},{"id":"W2027431773","doi":"10.1016/s0378-1127(09)00194-7","title":"Special section: Disturbances in Mountain Forests: Implications for Management","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Section (typography); Disturbance (geology); Forest management; Geography; Special section; Ecology; Agroforestry; Environmental science; Environmental resource management; Physical geography; Geology; Biology; Business; Geomorphology; Engineering","score_opus":0.005076409121542595,"score_gpt":0.221723619570592,"score_spread":0.21664721044904942,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2027431773","genre_codex":"editorial","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0012730933,0.01801742,0.00057798985,0.050009195,0.9203865,0.00013583527,0.00033179266,0.00014141886,0.009126692],"genre_scores_gemma":[0.0050317287,0.013738753,0.00027003372,0.016349168,0.9394248,0.000097484066,0.00022247877,0.00004665513,0.024818853],"study_design_codex":"not_applicable","study_design_gemma":"observational","domain_scores_codex":[0.99908483,0.00014635107,0.00019338027,0.00022517833,0.00020063487,0.0001495593],"domain_scores_gemma":[0.992833,0.0023427547,0.0006954566,0.00030658056,0.0023936138,0.0014285807],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0022180616,0.002415297,0.0032915007,0.0019336666,0.0018026824,0.0037090553,0.0025213845,0.010674026,0.02737032],"category_scores_gemma":[0.0047561657,0.00069012673,0.0017890986,0.0014947918,0.001507381,0.0016163051,0.0011972317,0.0041193063,0.008411342],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000116433075,0.000103245715,0.000685202,0.00059002906,0.000037228303,0.00051932735,0.000028381823,0.00014235738,0.00043765167,0.0006017777,0.9764153,0.020323038],"study_design_scores_gemma":[0.00010010732,0.00030973484,0.012375677,0.0006753534,0.00013728862,0.0024048027,0.00027861632,0.0005721341,0.0004796041,0.0025509906,0.9800505,0.00006512288],"about_ca_topic_score_codex":0.0018091945,"about_ca_topic_score_gemma":0.004791937,"teacher_disagreement_score":0.02737032,"about_ca_system_score_codex":0.0011634784,"about_ca_system_score_gemma":0.0009799816,"threshold_uncertainty_score":0.09156287},"labels":[],"label_agreement":null},{"id":"W2028353655","doi":"10.1016/s0378-1127(00)00630-7","title":"Early detection of the effects of warm storage on conifer seedlings using physiological tests","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute","funders":"","keywords":"Environmental science; Biology; Botany","score_opus":0.009447872261281376,"score_gpt":0.20997097303714296,"score_spread":0.20052310077586158,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2028353655","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9980762,0.00017832787,0.00079154066,0.000024801606,0.000017535358,0.000023084614,0.00013719124,0.000024508894,0.0007269053],"genre_scores_gemma":[0.9979001,0.000091833586,0.0005397231,0.00006305144,0.000014944742,0.000046320918,0.00022873504,0.000015115341,0.0011001771],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99988365,0.000024801775,0.000010023691,0.000026291478,0.000023193985,0.000031980755],"domain_scores_gemma":[0.9987355,0.00057176745,0.00019489275,0.00008963984,0.00010776866,0.0003004359],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002867275,0.00047468816,0.00038965937,0.00022810658,0.00036288853,0.00033731456,0.00024098819,0.0003626995,0.0021472783],"category_scores_gemma":[0.0008919104,0.00022460539,0.00021916375,0.00015928494,0.00030756238,0.0005220805,0.00032227515,0.0013722446,0.00016705162],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.003623687,0.0003420819,0.041435357,0.00008609962,0.000032350636,0.00014681027,0.00016253594,0.000120808116,0.94881284,0.00009651468,0.00011278653,0.005028056],"study_design_scores_gemma":[0.00004118134,0.0046749297,0.8047998,0.000013221477,0.00004840599,0.00014546768,0.00025018642,0.00047200077,0.18894218,0.000103611856,0.0004834714,0.000025582809],"about_ca_topic_score_codex":0.0015426574,"about_ca_topic_score_gemma":0.005614792,"teacher_disagreement_score":0.0021472783,"about_ca_system_score_codex":0.0002501276,"about_ca_system_score_gemma":0.00030815057,"threshold_uncertainty_score":0.007183373},"labels":[],"label_agreement":null},{"id":"W2029448665","doi":"10.1016/j.foreco.2009.07.035","title":"Species differences in total and vertical distribution of branch- and tree-level leaf area for the five primary conifer species in Maine, USA","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":53,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"","keywords":"Abies balsamea; Balsam; Tsuga; Western Hemlock; Crown (dentistry); Botany; Weibull distribution; Biology; Forestry; Ecology; Geography; Mathematics; Statistics","score_opus":0.014129737975079716,"score_gpt":0.20159679175458403,"score_spread":0.18746705377950432,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2029448665","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99951637,0.00002580558,0.00002010743,0.000008871802,7.253142e-7,8.9511406e-7,0.0001493771,0.0000021331653,0.00027584948],"genre_scores_gemma":[0.999353,0.000018749566,0.000033662072,0.000008467992,9.559182e-7,0.0000019519277,0.00032313296,9.1441933e-7,0.00025905494],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999294,0.000015399479,0.000003905819,0.000021687523,0.00001158959,0.000018022523],"domain_scores_gemma":[0.99963224,0.00011341972,0.00006635453,0.00001582734,0.000078283534,0.00009378931],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021746168,0.00012712326,0.00012830857,0.0005807572,0.00025040653,0.00024617603,0.00021477138,0.00015127067,0.0013375876],"category_scores_gemma":[0.0004278031,0.00010353384,0.00012360184,0.00035109586,0.00021161765,0.00025373147,0.0002950007,0.00013726535,0.00014316796],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001129123,0.000023108487,0.994072,0.000006712644,0.000047472815,0.00003944386,0.00032379868,0.000104238454,0.0025517414,0.00005737198,0.00024420314,0.0024169127],"study_design_scores_gemma":[9.866837e-7,0.000005733442,0.9997067,9.0663207e-7,0.0000035177486,0.000011359137,0.00009461331,0.0000767143,0.000042010513,0.0000073240844,0.00004971612,4.7516198e-7],"about_ca_topic_score_codex":0.0460546,"about_ca_topic_score_gemma":0.24330248,"teacher_disagreement_score":0.0460546,"about_ca_system_score_codex":0.00035474144,"about_ca_system_score_gemma":0.00018637658,"threshold_uncertainty_score":0.09157306},"labels":[],"label_agreement":null},{"id":"W2029574106","doi":"10.1016/j.foreco.2006.10.023","title":"Micro-variations in yellow birch (Betula alleghaniensis) growth conditions after patch scarification","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Centre Intégré de Santé et de Services Sociaux des Laurentides; Université Laval","funders":"","keywords":"Microsite; Scarification; Seedling; Yellow birch; Environmental science; Nutrient; Betula pubescens; Competition (biology); Humidity; Agronomy; Vegetation (pathology); Growing season; Biology; Ecology; Hardwood; Geography; Germination","score_opus":0.0028882550108287807,"score_gpt":0.1857874915789668,"score_spread":0.182899236568138,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2029574106","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99959916,0.000033618257,0.000020909018,0.0000061574074,0.0000026647047,0.0000028280388,0.00008781819,0.000001559672,0.00024530393],"genre_scores_gemma":[0.9994721,0.000017783144,0.000017244072,0.000011778527,0.0000032889552,0.000006267668,0.0001424769,0.000001419554,0.00032747927],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99993145,0.00000837768,0.0000026584569,0.00001706384,0.000010263335,0.00003022762],"domain_scores_gemma":[0.9995609,0.00007449813,0.00011452699,0.000019285519,0.00006252741,0.00016826947],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013824618,0.00013820623,0.00017732245,0.0003756389,0.00022839624,0.00029500382,0.00013436479,0.00027023687,0.001253344],"category_scores_gemma":[0.00044480164,0.00011797363,0.00017433909,0.00021689865,0.00023328506,0.0002108111,0.00022011598,0.00039928386,0.000262514],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0073117744,0.00085586234,0.7040929,0.000042830517,0.000096459145,0.00096379424,0.00077058224,0.0003569181,0.27393135,0.00007867437,0.00046933454,0.01102942],"study_design_scores_gemma":[0.000002887962,0.00007907034,0.99909794,5.1661846e-7,0.000004042373,0.00003957242,0.00007866674,0.000052450094,0.00060319307,0.000006588218,0.00003342772,0.000001572368],"about_ca_topic_score_codex":0.007153415,"about_ca_topic_score_gemma":0.017505039,"teacher_disagreement_score":0.007153415,"about_ca_system_score_codex":0.0003099207,"about_ca_system_score_gemma":0.0001184055,"threshold_uncertainty_score":0.014223576},"labels":[],"label_agreement":null},{"id":"W2029732842","doi":"10.1016/j.foreco.2012.02.030","title":"Can landscape-level ecological restoration influence fire risk? A spatially-explicit assessment of a northern temperate-southern boreal forest landscape","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":20,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"U.S. Forest Service; Northern Research Station; Ministry of Natural Resources","keywords":"Taiga; Boreal; Ecology; Temperate climate; Temperate rainforest; Geography; Fire ecology; Temperate forest; Environmental science; Disturbance (geology); Fire regime; Ecosystem; Biology","score_opus":0.00764263163596427,"score_gpt":0.2192144026355132,"score_spread":0.21157177099954894,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2029732842","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996389,0.000030548115,0.00012330819,0.000027667413,9.193676e-7,0.0000019543158,0.000035199784,0.0000028818836,0.00013862536],"genre_scores_gemma":[0.99971694,0.000012414385,0.00018908415,0.000004218424,0.0000010403888,0.0000014557601,0.000031564887,7.565345e-7,0.000042498494],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977595,0.000102817176,0.000013725675,0.00004559766,0.000021742713,0.000040292554],"domain_scores_gemma":[0.9993849,0.00020662144,0.00019055982,0.00006443252,0.000058879577,0.00009457239],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000780034,0.00025830473,0.00029206398,0.00045416478,0.00039947234,0.00075440964,0.00047163566,0.0004534757,0.0006105222],"category_scores_gemma":[0.0018856163,0.00018537557,0.00040371198,0.00051043305,0.0004565855,0.0008245808,0.0004464728,0.00020942932,0.000038732105],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006802186,0.00043105,0.92392784,0.000040450883,0.0003206498,0.0002884127,0.00047301437,0.057122417,0.0031986425,0.0006039339,0.00023880786,0.012674437],"study_design_scores_gemma":[0.000023534403,0.00012646464,0.9296737,0.000008206244,0.000118353026,0.00009716551,0.0005966021,0.06856152,0.00015940152,0.000360587,0.00026039765,0.000014017831],"about_ca_topic_score_codex":0.052610494,"about_ca_topic_score_gemma":0.19462372,"teacher_disagreement_score":0.052610494,"about_ca_system_score_codex":0.0007699784,"about_ca_system_score_gemma":0.00049064896,"threshold_uncertainty_score":0.104608536},"labels":[],"label_agreement":null},{"id":"W2030483996","doi":"10.1016/j.foreco.2005.03.071","title":"Characteristics of diurnal roosts used by female Myotis bats in sub-boreal forests","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bat Biology and Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":37,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Regina","funders":"","keywords":"Pinus contorta; Myotis lucifugus; Snag; Ecology; Temperate rainforest; Habitat; Deciduous; Taiga; Biology; Geography; Forestry; Ecosystem","score_opus":0.01006546512928082,"score_gpt":0.2071394360701708,"score_spread":0.19707397094088996,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2030483996","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997656,0.000030624444,0.000010221889,0.0000018129431,5.4266684e-7,0.0000010710164,0.00004662079,8.8935127e-7,0.00014251235],"genre_scores_gemma":[0.9997453,0.000019215326,0.000031353844,0.0000034767872,0.0000014754181,0.0000025061183,0.000072938674,9.130421e-7,0.00012285834],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998834,0.000021245014,0.000016392876,0.000029036886,0.000017464576,0.00003232488],"domain_scores_gemma":[0.9993304,0.00013920262,0.0002703353,0.000023114175,0.00006834861,0.00016866569],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020157399,0.00016766362,0.00016881428,0.0007383395,0.00037923525,0.00031966498,0.00016132336,0.00019685495,0.0009444363],"category_scores_gemma":[0.00062509254,0.00013138712,0.00014615034,0.00032732828,0.00026229408,0.00034389683,0.00020150596,0.00011087159,0.0001476497],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003515044,0.00005676481,0.98776567,0.000017605993,0.00002427943,0.00016717806,0.00061539514,0.000073214615,0.007451347,0.000017390608,0.00005599593,0.0034036352],"study_design_scores_gemma":[8.649093e-7,0.000039878687,0.99948967,6.809318e-7,0.0000025376696,0.00017534745,0.00017493022,0.00002750576,0.00005672246,0.0000031496118,0.000027491677,0.0000011721679],"about_ca_topic_score_codex":0.0059739044,"about_ca_topic_score_gemma":0.022543797,"teacher_disagreement_score":0.0059739044,"about_ca_system_score_codex":0.0002136002,"about_ca_system_score_gemma":0.00009593028,"threshold_uncertainty_score":0.011878252},"labels":[],"label_agreement":null},{"id":"W2030503026","doi":"10.1016/s0378-1127(00)00629-0","title":"Cone enhancement in Abies amabilis using GA4/7, fertilizer, girdling and tenting","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Victoria","funders":"Forest Genetics Council of British Columbia","keywords":"Girdling; Seed orchard; Horticulture; Orchard; Fertilizer; Biology; Botany; Agronomy","score_opus":0.010030805608073217,"score_gpt":0.2235700050057878,"score_spread":0.2135391993977146,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2030503026","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992217,0.00008941873,0.00013555809,0.00002141752,0.000006178843,0.000010758318,0.00003522911,0.000020959485,0.000458745],"genre_scores_gemma":[0.994528,0.00010411634,0.00087234675,0.000059812934,0.0000042751694,0.000023261156,0.00012848403,0.00001663031,0.0042631226],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9998487,0.000019668141,0.000010455987,0.000037452075,0.00003450109,0.000049181166],"domain_scores_gemma":[0.9996475,0.00006587861,0.00003339288,0.000021087617,0.00004916803,0.00018296525],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022884528,0.00031631536,0.0004407403,0.00041740428,0.0005898041,0.0004131101,0.0007001748,0.00039257173,0.0011102521],"category_scores_gemma":[0.0003110197,0.00018696679,0.0003266895,0.00017895884,0.0003529576,0.0003578842,0.00048383127,0.0006050348,0.00020391555],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002843788,0.0010134134,0.004781934,0.00009870102,0.000024754685,0.00037294018,0.00018599562,0.0005982299,0.97764415,0.00021626362,0.00022666373,0.01199317],"study_design_scores_gemma":[0.001104686,0.01475136,0.26498362,0.000055826782,0.00028533593,0.0011250459,0.0015275072,0.016589802,0.6906402,0.001079868,0.00775172,0.00010493629],"about_ca_topic_score_codex":0.039590936,"about_ca_topic_score_gemma":0.0539871,"teacher_disagreement_score":0.039590936,"about_ca_system_score_codex":0.001064777,"about_ca_system_score_gemma":0.0009951873,"threshold_uncertainty_score":0.07872099},"labels":[],"label_agreement":null},{"id":"W2030601589","doi":"10.1016/s0378-1127(02)00476-0","title":"The early impact of adjacent clearcutting and forest fire on riparian zone vegetation in northwestern Ontario","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":25,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Forestry; Lakehead University","funders":"Ministry of Natural Resources; Northwestern University","keywords":"Riparian zone; Ecotone; Riparian forest; Environmental science; Vegetation (pathology); Ecology; Clearcutting; Abundance (ecology); Disturbance (geology); Geography; Forestry; Habitat; Geology; Biology; Geomorphology","score_opus":0.005013548291537626,"score_gpt":0.20204812457941912,"score_spread":0.19703457628788149,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2030601589","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99842924,0.00010590472,0.000019527786,0.0000777828,0.0000025472787,0.0000041980343,0.00017374544,0.0000012950237,0.0011858143],"genre_scores_gemma":[0.9977374,0.00013741842,0.000046700607,0.00002962227,0.0000022745337,0.0000045309707,0.00012637708,0.0000020461482,0.001913593],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999777,0.000023578032,0.000008387001,0.00003053454,0.000046328758,0.0001142185],"domain_scores_gemma":[0.998946,0.000141636,0.00019891397,0.000024793811,0.00026609583,0.00042254585],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022557288,0.000112190224,0.00016958741,0.00056169205,0.0022751766,0.00094132,0.0004427567,0.00031660893,0.0019127013],"category_scores_gemma":[0.0011009271,0.00022132498,0.00015338327,0.00071434554,0.00083172036,0.0003746379,0.00082900404,0.0003711338,0.00015370113],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000315058,0.000047585294,0.9838563,0.000038395796,0.000038501617,0.00039927443,0.0062442645,0.00025127144,0.0017468514,0.00027705362,0.0006928256,0.0060925586],"study_design_scores_gemma":[0.0000024858266,0.0000071908516,0.996837,0.000006366575,0.0000043585405,0.000024656787,0.002493301,0.000049492584,0.000040040395,0.000019808847,0.0005125341,0.0000025889954],"about_ca_topic_score_codex":0.9653046,"about_ca_topic_score_gemma":0.9969181,"teacher_disagreement_score":0.034695387,"about_ca_system_score_codex":0.011856764,"about_ca_system_score_gemma":0.008461579,"threshold_uncertainty_score":0.086027265},"labels":[],"label_agreement":null},{"id":"W2031324084","doi":"10.1016/j.foreco.2008.07.019","title":"The impact of landscape disturbance on grizzly bear habitat use in the Foothills Model Forest, Alberta, Canada","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":60,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Foothills Medical Centre; University of Victoria","funders":"","keywords":"Grizzly Bears; Habitat; Foraging; Geography; Disturbance (geology); Ecology; Population; Carnivore; Ursus; Threatened species; Predation; Biology","score_opus":0.008893190632482137,"score_gpt":0.1971687894277977,"score_spread":0.18827559879531555,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2031324084","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9973568,0.0003044437,0.00003234952,0.00016275818,0.0000066272314,0.0000073694036,0.00043352024,0.000003515469,0.0016926724],"genre_scores_gemma":[0.9978629,0.00023108147,0.00006214973,0.000039196788,0.0000026905238,0.000003335077,0.00029510705,0.0000028082611,0.0015007583],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995814,0.000059814054,0.00001393475,0.000041922885,0.00012705092,0.00017595993],"domain_scores_gemma":[0.9991084,0.000095419426,0.000117747404,0.000030094257,0.00030002114,0.00034830623],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038450462,0.00021217202,0.00024801883,0.0008975797,0.0018598824,0.0011914547,0.00094118953,0.00031262208,0.0021208378],"category_scores_gemma":[0.0010805165,0.00017852562,0.00028549237,0.0013610985,0.0011171615,0.00032223985,0.0006623385,0.0004476155,0.00014442943],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002453308,0.00008328981,0.988467,0.000022570443,0.00009575909,0.00024435384,0.0009067624,0.0010665824,0.00046953332,0.00029231494,0.0017667322,0.0063398853],"study_design_scores_gemma":[0.0000043046884,0.000010566075,0.99782866,0.000007767831,0.000013348339,0.000033607328,0.0014332681,0.00022302591,0.000026811942,0.00002546998,0.00038912642,0.0000040336545],"about_ca_topic_score_codex":0.9932208,"about_ca_topic_score_gemma":0.9987772,"teacher_disagreement_score":0.016960869,"about_ca_system_score_codex":0.016960869,"about_ca_system_score_gemma":0.0122258095,"threshold_uncertainty_score":0.123060286},"labels":[],"label_agreement":null},{"id":"W2031340303","doi":"10.1016/j.foreco.2007.01.072","title":"Changes in soil properties, tree growth, and nutrition over a period of 10 years after stump removal and scarification on moderately coarse soils in interior British Columbia","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":91,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia","funders":"","keywords":"Pinus contorta; Scarification; Forest floor; Soil water; Productivity; Environmental science; Nutrient; Bulk density; Agronomy; Ecology; Biology; Soil science","score_opus":0.009387435745438957,"score_gpt":0.19676923687999837,"score_spread":0.1873818011345594,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2031340303","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99970454,0.000041269002,0.0000068946974,0.000009739452,9.678394e-7,0.0000023378295,0.000097912656,8.9525014e-7,0.0001354522],"genre_scores_gemma":[0.99909365,0.00005258179,0.00002195701,0.0000141972105,0.0000010082285,0.0000034377376,0.00025747958,7.2648305e-7,0.000555035],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997757,0.000023488587,0.000013610678,0.000034770474,0.000054628956,0.000097863056],"domain_scores_gemma":[0.998743,0.00014020097,0.0002675322,0.00004230585,0.00042548194,0.0003815345],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031889608,0.00021188738,0.00028176315,0.00060377526,0.0010443834,0.0005572044,0.00047340035,0.00040709839,0.0006946116],"category_scores_gemma":[0.0010529497,0.00015401993,0.00016754854,0.00085478654,0.00054413674,0.00023224973,0.00045846956,0.000506022,0.00014800264],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00075667136,0.00026020381,0.98743033,0.000022086168,0.000055578075,0.00040742257,0.0012358984,0.00013848595,0.0036974272,0.000019691468,0.0002496361,0.0057266247],"study_design_scores_gemma":[0.0000014023657,0.000024790126,0.9994836,0.0000016614194,0.0000047843473,0.000016303706,0.00030748022,0.000022538132,0.000069528214,0.0000018880938,0.00006430487,0.0000016580498],"about_ca_topic_score_codex":0.79293746,"about_ca_topic_score_gemma":0.944722,"teacher_disagreement_score":0.20706254,"about_ca_system_score_codex":0.004019312,"about_ca_system_score_gemma":0.002247552,"threshold_uncertainty_score":0.41656393},"labels":[],"label_agreement":null},{"id":"W2031694319","doi":"10.1016/j.foreco.2007.09.043","title":"Eleven-year responses of a boreal mixedwood stand to partial harvesting: Light, vegetation, and regeneration dynamics","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":66,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Forestry; Ontario Forest Research Institute","funders":"Ministry of Natural Resources","keywords":"Understory; Shrub; Clearcutting; Hardwood; Regeneration (biology); Basal area; Canopy; Vegetation (pathology); Environmental science; Chronosequence; Boreal; Deciduous; Biology; Ecology; Forestry; Ecological succession; Geography","score_opus":0.005071939131110688,"score_gpt":0.21424123929345218,"score_spread":0.2091693001623415,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2031694319","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99977404,0.000007263385,0.000023102195,0.000009259822,0.0000016586248,0.000002359383,0.000075339034,0.0000013876752,0.00010556968],"genre_scores_gemma":[0.9994305,0.000007940824,0.000048695845,0.000013460756,0.0000023046698,0.000005706909,0.00024266465,8.887768e-7,0.0002478537],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986553,0.000026323918,0.000011998263,0.000031548512,0.000016790895,0.000047676553],"domain_scores_gemma":[0.9990049,0.00034963025,0.00012595429,0.00005552784,0.000109075176,0.00035488658],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00059733225,0.0002548895,0.00030551723,0.0002468779,0.00087841775,0.0005262844,0.00041399334,0.00052247377,0.0011890987],"category_scores_gemma":[0.00097614474,0.0001952345,0.00028370938,0.00020493848,0.00049690483,0.0004472547,0.0005262488,0.0005657384,0.0001763904],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.005207815,0.001523579,0.95165783,0.00003504026,0.00014128821,0.00082915253,0.000677939,0.0018038763,0.030136487,0.00012728917,0.00047704836,0.007382556],"study_design_scores_gemma":[0.000015720676,0.00044245704,0.99653256,0.0000013255285,0.000020077312,0.00013806076,0.00037074322,0.0011358876,0.0010970458,0.000051063536,0.00018519853,0.000009813291],"about_ca_topic_score_codex":0.009320429,"about_ca_topic_score_gemma":0.027644562,"teacher_disagreement_score":0.009320429,"about_ca_system_score_codex":0.00052382937,"about_ca_system_score_gemma":0.00025507744,"threshold_uncertainty_score":0.018532395},"labels":[],"label_agreement":null},{"id":"W2031789909","doi":"10.1016/j.foreco.2007.01.032","title":"Long-term effects of intensive silvicultural practices on productivity, composition, and structure of northern temperate and boreal plantations in Ontario, Canada","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ontario Forest Research Institute; Lakehead University","funders":"Natural Sciences and Engineering Research Council of Canada; Ministry of Education of the People's Republic of China","keywords":"Canopy; Black spruce; Crop; Standing crop; Temperate climate; Environmental science; Taiga; Stand development; Boreal; Thinning; Hardwood; Agronomy; Forestry; Agroforestry; Silviculture; Productivity; Biology; Botany; Ecology; Geography; Biomass (ecology)","score_opus":0.00381019233987406,"score_gpt":0.2050583237454784,"score_spread":0.20124813140560432,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2031789909","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991073,0.00016938557,0.000021145439,0.000050057002,0.0000034089696,0.000005949904,0.0002370433,0.000001843653,0.0004038142],"genre_scores_gemma":[0.99816656,0.00016449214,0.000058786827,0.000034680324,0.0000023961393,0.000008096841,0.00027761346,0.000002152768,0.0012852151],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9994916,0.000057639503,0.000021984448,0.00008569967,0.00013012646,0.00021288589],"domain_scores_gemma":[0.99764234,0.00017454682,0.00038997576,0.000071778835,0.00083657075,0.0008848517],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005288472,0.0002652035,0.00036474667,0.00062295026,0.002538369,0.000983225,0.0008530558,0.00030111344,0.0008493602],"category_scores_gemma":[0.0011889571,0.00026555292,0.0002898277,0.00104975,0.0012025245,0.00033863029,0.0006992009,0.00044257965,0.00015196839],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003999103,0.00011401497,0.98684454,0.000024624236,0.00009453777,0.00014456245,0.003283454,0.00024859072,0.0021968423,0.00007999372,0.0006534426,0.0059153885],"study_design_scores_gemma":[0.000003038346,0.000012910071,0.9987017,0.0000040141454,0.000007661703,0.000011178799,0.0009110863,0.000043754502,0.000039900635,0.000005999522,0.0002561483,0.0000025575362],"about_ca_topic_score_codex":0.9883845,"about_ca_topic_score_gemma":0.99830973,"teacher_disagreement_score":0.025661495,"about_ca_system_score_codex":0.025661495,"about_ca_system_score_gemma":0.017210834,"threshold_uncertainty_score":0.1861881},"labels":[],"label_agreement":null},{"id":"W2031808609","doi":"10.1016/j.foreco.2014.05.003","title":"Trembling aspen (Populus tremuloides Michx.) volume growth in the boreal mixedwood: Effect of partial harvesting, tree social status, and neighborhood competition","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue","funders":"National Cancer Institute; Natural Sciences and Engineering Research Council of Canada","keywords":"Competition (biology); Boreal; Environmental science; Taiga; Agronomy; Ecology; Biology","score_opus":0.005744296085122968,"score_gpt":0.2176024448848401,"score_spread":0.21185814879971712,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2031808609","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998091,0.000022609918,0.000010564795,0.000008270549,6.1806094e-7,4.0079078e-7,0.00004236369,0.0000011741595,0.00010494627],"genre_scores_gemma":[0.9995553,0.000013743995,0.000024406705,0.000012158946,0.00000167344,0.0000017143617,0.000112982205,0.0000017337679,0.0002763078],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990606,0.00002693544,0.0000048769984,0.000030133973,0.000011344684,0.00002062116],"domain_scores_gemma":[0.9994785,0.00014174421,0.000117010764,0.00003436369,0.000031164844,0.00019718723],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030023855,0.00018456904,0.00012239159,0.00023397646,0.00018431473,0.00039748108,0.00026544585,0.00020075536,0.0011557114],"category_scores_gemma":[0.00048341273,0.0001369551,0.00018388659,0.0001403386,0.00030745333,0.00037034368,0.0002695565,0.00024797724,0.00018555099],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0021795284,0.00030273016,0.97657156,0.000011793857,0.000104828774,0.00018750445,0.00026071374,0.00054470904,0.015371826,0.00015600432,0.0003078604,0.004001036],"study_design_scores_gemma":[0.000004516472,0.00008012865,0.9991603,6.267497e-7,0.0000072121074,0.000041546296,0.000087231194,0.00031697148,0.00023327787,0.000016369746,0.000050159684,0.0000016884503],"about_ca_topic_score_codex":0.011777676,"about_ca_topic_score_gemma":0.036421277,"teacher_disagreement_score":0.011777676,"about_ca_system_score_codex":0.00033010458,"about_ca_system_score_gemma":0.0001649693,"threshold_uncertainty_score":0.023418248},"labels":[],"label_agreement":null},{"id":"W2032203945","doi":"10.1016/j.foreco.2008.02.050","title":"Kalmia removal increases nutrient supply and growth of black spruce seedlings: An effect fertilizer cannot emulate","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":39,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Wildlife; Université de Sherbrooke","funders":"","keywords":"Black spruce; Biology; Nutrient; Nutrient cycle; Forest floor; Agronomy; Ecology; Ecosystem; Taiga","score_opus":0.007451018212442796,"score_gpt":0.2074123061361967,"score_spread":0.19996128792375392,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2032203945","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984907,0.00028505502,0.0002237845,0.00016936823,0.000032379347,0.00000987021,0.00008170858,0.000026255926,0.00068088114],"genre_scores_gemma":[0.9959394,0.0001484776,0.0008922566,0.00019165089,0.00001818699,0.000020697309,0.0001551647,0.00003989766,0.002594386],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99963176,0.000060398143,0.00003382366,0.00012582414,0.0000668159,0.000081340804],"domain_scores_gemma":[0.99874145,0.00037853283,0.00022327271,0.00016113295,0.00007827511,0.0004174722],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026318312,0.00040084773,0.000847861,0.00018563699,0.0005654551,0.00071830733,0.00071340735,0.0008947853,0.002635513],"category_scores_gemma":[0.000549148,0.00038486987,0.00036234077,0.00012719746,0.0007408585,0.0011440723,0.00061142974,0.0017204259,0.00029761434],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.005719014,0.00041746098,0.0030665158,0.00010344893,0.000043562617,0.00008815892,0.000094447045,0.00012419722,0.98800117,0.0001692084,0.00010926895,0.0020635172],"study_design_scores_gemma":[0.00081389357,0.0080073,0.14869396,0.00003397717,0.00028912752,0.00051206554,0.00059789413,0.0035160484,0.83178586,0.0007510062,0.0049118623,0.00008697674],"about_ca_topic_score_codex":0.006232245,"about_ca_topic_score_gemma":0.017689755,"teacher_disagreement_score":0.006232245,"about_ca_system_score_codex":0.0008873652,"about_ca_system_score_gemma":0.0012145691,"threshold_uncertainty_score":0.012391925},"labels":[],"label_agreement":null},{"id":"W2032581491","doi":"10.1016/j.foreco.2005.10.051","title":"Response of forest vegetation and foliar δ13C and δ15N to soil compaction and forest floor removal in a boreal aspen forest","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Biomass Utilization and Management","field":"Engineering","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia; University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; University of Alberta","keywords":"Forest floor; Understory; Environmental science; Soil compaction; Agronomy; Taiga; Forestry; Soil water; Canopy; Ecology; Soil science; Biology; Geography","score_opus":0.00687328616942162,"score_gpt":0.21894774142246506,"score_spread":0.21207445525304344,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2032581491","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99979144,0.000017873595,0.000025030635,0.00000873717,0.0000014395222,0.0000015462978,0.000047611637,0.0000023797759,0.00010401966],"genre_scores_gemma":[0.9996191,0.000010668866,0.00007300588,0.000017650716,0.0000020628172,0.0000037984898,0.00011682048,0.0000016814979,0.00015514948],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985373,0.000029201474,0.000013681627,0.00004709934,0.00001878739,0.000037431342],"domain_scores_gemma":[0.9995372,0.00014345931,0.00008049011,0.000027284625,0.00005605515,0.00015551093],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003482168,0.00033076043,0.00040963502,0.00029463784,0.0007397686,0.00054424256,0.0006354407,0.0005243049,0.0010039523],"category_scores_gemma":[0.00045935082,0.00035821067,0.00030935658,0.0002112149,0.00078254304,0.00044324002,0.00039224702,0.00044777233,0.00013145592],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.008993928,0.0008983847,0.7604542,0.000100193436,0.00035652932,0.00066730555,0.00066016265,0.003859443,0.21660869,0.00019081782,0.00040728186,0.0068030604],"study_design_scores_gemma":[0.000024561064,0.00018784242,0.9962262,0.0000010104869,0.000018902765,0.00011010634,0.00017019728,0.0015662705,0.001563558,0.00003917891,0.00008451603,0.000007580879],"about_ca_topic_score_codex":0.036849033,"about_ca_topic_score_gemma":0.050682843,"teacher_disagreement_score":0.036849033,"about_ca_system_score_codex":0.0007620868,"about_ca_system_score_gemma":0.00038316738,"threshold_uncertainty_score":0.07326907},"labels":[],"label_agreement":null},{"id":"W2032782106","doi":"10.1016/j.foreco.2004.04.009","title":"Variation in coppice-shoot growth among provenances of Calycophyllum spruceanum Benth. in the Peruvian Amazon Basin","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Cocoa and Sweet Potato Agronomy","field":"Agricultural and Biological Sciences","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"","keywords":"Coppicing; Shoot; Biology; High forest; Agronomy; Agroforestry; Botany; Ecology; Woody plant","score_opus":0.005488168684133683,"score_gpt":0.17720818129676455,"score_spread":0.17172001261263087,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2032782106","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997048,0.00003690025,0.000029671115,0.0000075333487,3.9066828e-7,0.0000016899812,0.000062631065,0.0000024525357,0.00015381908],"genre_scores_gemma":[0.9996978,0.00002156843,0.00004659248,0.000005011576,6.744111e-7,0.0000028382508,0.00012303857,0.0000018446335,0.000100703786],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998017,0.00007683281,0.000007717998,0.000062516956,0.000021292686,0.000029930208],"domain_scores_gemma":[0.9994272,0.00016594525,0.00014205805,0.000047680012,0.00010447767,0.000112673566],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028441325,0.00019342478,0.0001531607,0.0008125334,0.000381545,0.00034165004,0.00023276136,0.00017061312,0.00085384544],"category_scores_gemma":[0.0007081753,0.0001308071,0.00010888767,0.00052906753,0.00035578068,0.00017301741,0.00037051726,0.00016923493,0.00011590442],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002696435,0.00007316711,0.9388629,0.000043311236,0.00012535414,0.00040305036,0.0028031832,0.00015719784,0.050050788,0.00013028455,0.00012237408,0.0069587016],"study_design_scores_gemma":[0.0000016200332,0.000011837816,0.9995378,0.000001034145,0.0000032579494,0.000053481854,0.00017571615,0.00004311402,0.000093957344,0.0000071893646,0.00006993819,0.0000010814424],"about_ca_topic_score_codex":0.025794765,"about_ca_topic_score_gemma":0.078883514,"teacher_disagreement_score":0.025794765,"about_ca_system_score_codex":0.00047457573,"about_ca_system_score_gemma":0.00019631717,"threshold_uncertainty_score":0.05128926},"labels":[],"label_agreement":null},{"id":"W2032994186","doi":"10.1016/j.foreco.2013.05.016","title":"The effects of clear-cutting on soil CO2, CH4, and N2O flux, storage and concentration in two Atlantic temperate forests in Nova Scotia, Canada","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":46,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"St. Francis Xavier University","funders":"Natural Sciences and Engineering Research Council of Canada; Canadian Foundation for Climate and Atmospheric Sciences; St. Francis Xavier University","keywords":"Greenhouse gas; Environmental science; Temperate climate; Methane; Nitrous oxide; Carbon dioxide; Flux (metallurgy); Temperate forest; Soil gas; Soil carbon; Atmosphere (unit); Nova scotia; Atmospheric sciences; Soil water; Soil science; Ecology; Chemistry; Geography; Oceanography; Geology","score_opus":0.003777167515451751,"score_gpt":0.1884421550881882,"score_spread":0.18466498757273644,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2032994186","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99942917,0.00008204435,0.000015617066,0.000018757055,0.0000022885206,0.000005272638,0.00015591286,0.0000013090036,0.0002896752],"genre_scores_gemma":[0.99895006,0.00006457023,0.000054772347,0.000027659635,0.0000012939655,0.0000043734235,0.00023716134,0.0000017671628,0.00065847056],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997069,0.000026723996,0.000016709197,0.000054922635,0.000063112915,0.00013150275],"domain_scores_gemma":[0.9987972,0.00017584905,0.0001347284,0.000035901627,0.000377849,0.00047847885],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003316281,0.00028336607,0.00036238256,0.0005935571,0.0015867279,0.0009360344,0.00064935745,0.0003719635,0.0006825384],"category_scores_gemma":[0.000731927,0.0002904653,0.00027313564,0.000564083,0.0011481226,0.00027421428,0.00057305134,0.0004024526,0.000086416374],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0028504224,0.00022847296,0.9578387,0.00007393348,0.00021090794,0.0006532212,0.001889851,0.001009943,0.027226403,0.00020393045,0.00068029866,0.0071338722],"study_design_scores_gemma":[0.000011092072,0.000022828714,0.99885154,0.0000031731352,0.0000125064535,0.000020318419,0.00047014857,0.00019079207,0.00023594731,0.000008902741,0.00016830084,0.000004548081],"about_ca_topic_score_codex":0.9650164,"about_ca_topic_score_gemma":0.99073833,"teacher_disagreement_score":0.034983575,"about_ca_system_score_codex":0.0129245715,"about_ca_system_score_gemma":0.0075163445,"threshold_uncertainty_score":0.093774796},"labels":[],"label_agreement":null},{"id":"W2033759604","doi":"10.1016/j.foreco.2008.09.005","title":"An empirical model of crown shyness for lodgepole pine (Pinus contorta var. latifolia [Engl.] Critch.) in British Columbia","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":26,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia","funders":"Ministry of Forests, Lands and Natural Resource Operations","keywords":"Pinus contorta; Crown (dentistry); Forestry; Environmental science; Pinus <genus>; Biology; Botany; Geography","score_opus":0.014075964003468491,"score_gpt":0.24066751067609132,"score_spread":0.22659154667262282,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2033759604","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.994896,0.00027052942,0.0008940598,0.0008292257,0.0000061087253,0.000018449411,0.00096861896,0.00002880316,0.002088261],"genre_scores_gemma":[0.99568534,0.00014766499,0.00023436714,0.000056209126,0.0000045996912,0.000015642285,0.000658784,0.000010990073,0.0031864115],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99953806,0.00012186036,0.00001920156,0.00009662498,0.000033814686,0.00019049473],"domain_scores_gemma":[0.9959709,0.0020879868,0.000473703,0.00021806468,0.00064343755,0.0006059236],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0014757807,0.00043482464,0.00064160867,0.0010337525,0.0016600144,0.0020068227,0.0023254314,0.0013359147,0.009125792],"category_scores_gemma":[0.006046863,0.00058122876,0.0004598027,0.0013485954,0.0013017853,0.0009459102,0.00071451266,0.0016168838,0.0007877951],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004845425,0.00039075754,0.86612505,0.00012431895,0.00031136442,0.0008778464,0.0025965588,0.09301591,0.0014973348,0.011755597,0.009524667,0.013296099],"study_design_scores_gemma":[0.00012244734,0.00012259363,0.601498,0.000097414275,0.00021564824,0.0003308622,0.004563193,0.3829142,0.00021580799,0.0064120693,0.0034114392,0.000096295706],"about_ca_topic_score_codex":0.87563026,"about_ca_topic_score_gemma":0.9143173,"teacher_disagreement_score":0.12436974,"about_ca_system_score_codex":0.009807372,"about_ca_system_score_gemma":0.004333263,"threshold_uncertainty_score":0.25020432},"labels":[],"label_agreement":null},{"id":"W2034218244","doi":"10.1016/s0378-1127(03)00093-8","title":"Harvestmen abundance and diversity within lodgepole and Scots pine plantations of Scotland and their impact on pine beauty moth populations","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Entomological Studies and Ecology","field":"Agricultural and Biological Sciences","cited_by":11,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"College of the North Atlantic","funders":"","keywords":"Scots pine; Abundance (ecology); Ecology; Biology; Predation; Pinus contorta; Botany; Pinus <genus>","score_opus":0.021836521034587213,"score_gpt":0.22874656405106236,"score_spread":0.20691004301647514,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2034218244","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998055,0.000029813154,0.000008807071,0.000009720188,6.926459e-7,7.2157366e-7,0.000037487334,6.414994e-7,0.000106662425],"genre_scores_gemma":[0.99971265,0.000017194418,0.000016942007,0.000008742258,0.0000013043073,0.0000015664767,0.00007070105,6.9005125e-7,0.00017018968],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995809,0.00012282793,0.000020647274,0.00006529952,0.00006617678,0.00014422214],"domain_scores_gemma":[0.99882525,0.00032880087,0.00031830385,0.00003642631,0.00013399449,0.00035724434],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037156692,0.00015600615,0.00021949584,0.0011459613,0.0007759202,0.00070087076,0.00035844007,0.00023123909,0.001730892],"category_scores_gemma":[0.0012306888,0.00022291185,0.0002670901,0.0006744398,0.0007588273,0.00043777778,0.00065874954,0.0002832159,0.00014855633],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006312743,0.00007481793,0.9877006,0.0000198845,0.00007456862,0.00040447465,0.002446254,0.0001427693,0.003876864,0.00010434941,0.00015618281,0.0043681515],"study_design_scores_gemma":[0.000001868697,0.0000290335,0.99935216,0.0000010466887,0.000003217679,0.000038501636,0.00046725225,0.000027349646,0.000022916716,0.0000064639444,0.000048712838,0.000001482833],"about_ca_topic_score_codex":0.093422875,"about_ca_topic_score_gemma":0.30842254,"teacher_disagreement_score":0.093422875,"about_ca_system_score_codex":0.0012276319,"about_ca_system_score_gemma":0.0004709855,"threshold_uncertainty_score":0.18575823},"labels":[],"label_agreement":null},{"id":"W2035220573","doi":"10.1016/j.foreco.2007.01.003","title":"Post-harvest soil nitrate dynamics in aspen- and spruce-dominated boreal forests","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Taiga; Environmental science; Boreal; Ecology; Nitrate; Black spruce; Agroforestry; Biology","score_opus":0.0037430108198547836,"score_gpt":0.20622531052180354,"score_spread":0.20248229970194875,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2035220573","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99985623,0.000012034903,0.000009844951,0.000003351918,9.982848e-7,6.4860586e-7,0.00002937349,7.5601173e-7,0.000086774686],"genre_scores_gemma":[0.99958056,0.000014259262,0.000031256735,0.0000062051827,0.0000015145871,0.0000020410132,0.00011939726,7.7101225e-7,0.0002439991],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999231,0.000008743264,0.000005106427,0.00002042232,0.000013222006,0.000029359548],"domain_scores_gemma":[0.99961346,0.00006266586,0.00008515942,0.000014497638,0.0000727726,0.00015134456],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002758645,0.00019163656,0.0002279407,0.00026909893,0.0004360396,0.00048230003,0.00024903988,0.00027266677,0.0005458741],"category_scores_gemma":[0.00040066533,0.0001363943,0.00016022526,0.00018929443,0.00028366072,0.0005958226,0.0002183449,0.00023949589,0.000097597134],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0066416003,0.00086049194,0.926802,0.0000363939,0.00007468028,0.00042210962,0.00076629786,0.00056009117,0.057315525,0.00011824528,0.00027853405,0.006124031],"study_design_scores_gemma":[0.000008234442,0.000118536445,0.9985656,9.551995e-7,0.000008768008,0.00004107432,0.00016871447,0.00036505546,0.00063987955,0.000023744533,0.00005698946,0.0000025069742],"about_ca_topic_score_codex":0.027521668,"about_ca_topic_score_gemma":0.0736701,"teacher_disagreement_score":0.027521668,"about_ca_system_score_codex":0.00053625874,"about_ca_system_score_gemma":0.00034887242,"threshold_uncertainty_score":0.054722965},"labels":[],"label_agreement":null},{"id":"W2035455019","doi":"10.1016/j.foreco.2007.12.032","title":"The effects of partial harvest on the understory vegetation of southern Ontario woodlands","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":48,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Ministry of Natural Resources and Forestry","funders":"","keywords":"Understory; Species richness; Vegetation (pathology); Ecology; Ordination; Basal area; Woodland; Geography; Species diversity; Microclimate; Agroforestry; Forest management; Habitat; Environmental science; Canopy; Biology","score_opus":0.006945554369397975,"score_gpt":0.18156805609578794,"score_spread":0.17462250172638996,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2035455019","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999183,0.000046395067,0.000009244487,0.000018852763,7.197742e-7,0.0000013120101,0.00008410834,6.7290387e-7,0.0006557274],"genre_scores_gemma":[0.99894327,0.000052782816,0.0000247897,0.00001119516,0.0000011119184,0.0000020225307,0.000107871296,0.0000012494197,0.0008557016],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986565,0.000022414126,0.0000057865973,0.00001934361,0.00003560482,0.000051079427],"domain_scores_gemma":[0.9991228,0.00019979641,0.0001375393,0.000048249763,0.00017264804,0.00031889917],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021476032,0.00011671639,0.00017147358,0.00025510782,0.001110021,0.0006013649,0.00022790092,0.00015643724,0.0022243243],"category_scores_gemma":[0.0012665741,0.00014693887,0.00013195047,0.00039319327,0.0006576185,0.00029601355,0.00045654736,0.00019061804,0.000117812204],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011965495,0.000076308985,0.97687304,0.00004855766,0.00009173073,0.00023549293,0.003051262,0.0006711084,0.0058835885,0.00031679004,0.00072831707,0.010827263],"study_design_scores_gemma":[0.0000019212841,0.000014859813,0.9990734,0.0000018753572,0.000004682327,0.000013399027,0.0005564492,0.00006336998,0.000047610574,0.000019316692,0.00020201897,0.0000011512703],"about_ca_topic_score_codex":0.6887993,"about_ca_topic_score_gemma":0.9571523,"teacher_disagreement_score":0.31120068,"about_ca_system_score_codex":0.003488886,"about_ca_system_score_gemma":0.0023865916,"threshold_uncertainty_score":0.6260668},"labels":[],"label_agreement":null},{"id":"W2035814865","doi":"10.1016/j.foreco.2008.10.035","title":"Deforestation and forest restoration in Guanacaste, Costa Rica: Putting conservation policies in context","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Conservation, Biodiversity, and Resource Management","field":"Environmental Science","cited_by":170,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Deforestation (computer science); Geography; Context (archaeology); Socioeconomic status; Land cover; Forest restoration; Agroforestry; Land use; Environmental resource management; Forest cover; Ecology; Forest ecology; Environmental science; Population; Ecosystem","score_opus":0.014935656302666925,"score_gpt":0.20272110345234504,"score_spread":0.1877854471496781,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2035814865","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9537343,0.0056856726,0.0002546521,0.026026458,0.00007704726,0.000027707374,0.00022945338,0.000017510189,0.013947172],"genre_scores_gemma":[0.99669135,0.0014731215,0.00015562997,0.00069314206,0.000030917894,0.000010191176,0.000051025032,0.0000026320563,0.00089207786],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9993356,0.00031662371,0.00002392844,0.0000335473,0.00005853326,0.00023179912],"domain_scores_gemma":[0.9990395,0.00021564827,0.0002783132,0.000051971776,0.00015216396,0.00026234318],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0013130872,0.00014504054,0.00017135654,0.00039594262,0.0011640742,0.0012562673,0.00057339715,0.0009727048,0.00096158666],"category_scores_gemma":[0.0029446238,0.00011211228,0.00016671412,0.0006229447,0.0019761946,0.00074968935,0.0014033875,0.0008525017,0.000035082787],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00044627985,0.00036552845,0.83669233,0.0006368962,0.00034276512,0.0014469993,0.012476929,0.008997271,0.0020687091,0.045059755,0.015211548,0.0762549],"study_design_scores_gemma":[0.000036402307,0.000055200606,0.9565129,0.00020392764,0.00012904199,0.00025494507,0.012440836,0.002355811,0.00054438505,0.0043008896,0.023147693,0.000017949304],"about_ca_topic_score_codex":0.26342487,"about_ca_topic_score_gemma":0.53152,"teacher_disagreement_score":0.26342487,"about_ca_system_score_codex":0.0037575783,"about_ca_system_score_gemma":0.006796215,"threshold_uncertainty_score":0.52378315},"labels":[],"label_agreement":null},{"id":"W2035948583","doi":"10.1016/j.foreco.2005.03.014","title":"Pinus contorta understory vegetation dynamics following clearcutting in west-central Alberta, Canada","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Calgary","funders":"University of Calgary","keywords":"Seral community; Understory; Clearcutting; Pinus contorta; Basal area; Abundance (ecology); Vegetation (pathology); Chronosequence; Forestry; Ecology; Environmental science; Geography; Ecological succession; Biology; Canopy","score_opus":0.004044527715266349,"score_gpt":0.19237968723670487,"score_spread":0.18833515952143853,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2035948583","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9986632,0.00022273973,0.00003592219,0.00003708875,0.000004544094,0.000008546918,0.0003450053,0.0000028922882,0.0006800402],"genre_scores_gemma":[0.9970951,0.00023115044,0.000102731865,0.00004030626,0.0000017424271,0.0000071549007,0.00043910646,0.0000022276865,0.002080365],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998375,0.000012943984,0.0000049297373,0.000028234754,0.000043172542,0.0000732272],"domain_scores_gemma":[0.99942267,0.000037353882,0.00008420501,0.000012712218,0.00028942534,0.00015361769],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022155451,0.00022209233,0.000260416,0.00075321354,0.0016347669,0.00065436383,0.000627165,0.0002920723,0.0010001517],"category_scores_gemma":[0.00044434672,0.00017193085,0.00013311605,0.0009775623,0.00041557834,0.00026691548,0.00038035252,0.0002818803,0.00013218509],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007183087,0.00016520462,0.97117877,0.0000589058,0.0000906942,0.0005401282,0.0035717173,0.00054872193,0.0056435624,0.000187701,0.0020023943,0.015293951],"study_design_scores_gemma":[0.0000024550232,0.0000090491,0.9982956,0.0000075035846,0.000007000957,0.000022761893,0.0011117695,0.00009481454,0.00007728455,0.000008044346,0.00036064314,0.0000031403276],"about_ca_topic_score_codex":0.9884759,"about_ca_topic_score_gemma":0.99840134,"teacher_disagreement_score":0.011524081,"about_ca_system_score_codex":0.010587689,"about_ca_system_score_gemma":0.006252001,"threshold_uncertainty_score":0.07681942},"labels":[],"label_agreement":null},{"id":"W2036623615","doi":"10.1016/j.foreco.2007.08.005","title":"Influence of variable retention harvests on forest ecosystems: Plant and mammal responses up to 8 years post-harvest","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":56,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Pinus contorta; Species richness; Understory; Ecology; Abundance (ecology); Biology; Snag; Species diversity; Clearcutting; Habitat; Temperate rainforest; Shrub; Temperate forest; Basal area; Temperate climate; Ecosystem; Canopy","score_opus":0.0067549590180855336,"score_gpt":0.21755124767823097,"score_spread":0.21079628866014544,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2036623615","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99970704,0.00004628047,0.000014793073,0.000012192716,0.000002342071,0.0000014209443,0.00007696478,0.0000011185757,0.00013776404],"genre_scores_gemma":[0.99963903,0.000017951788,0.00001283692,0.0000098991995,0.0000027855376,0.0000029497166,0.00010741499,9.631096e-7,0.00020615173],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998,0.00003582359,0.000008788782,0.000044263994,0.000015602569,0.00009544907],"domain_scores_gemma":[0.9983518,0.0005915746,0.00034815734,0.00010344983,0.00012654238,0.0004785867],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00054844865,0.00018576201,0.00030360924,0.00024503795,0.0003908713,0.00051505776,0.0002814713,0.00047503674,0.0020241365],"category_scores_gemma":[0.0016748753,0.00012146797,0.0003257742,0.00022962138,0.00038699232,0.0004951266,0.0005471144,0.0004307788,0.00021543817],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.010921573,0.0011301182,0.95627123,0.000028157812,0.00017129544,0.00061242416,0.0005152102,0.00043452796,0.021016534,0.00008120226,0.00021285901,0.008604852],"study_design_scores_gemma":[0.0000073959873,0.00059883797,0.9985862,0.0000021747917,0.00002657937,0.000051943938,0.0001700824,0.00010834618,0.00035138126,0.000016961467,0.00007694194,0.0000032798469],"about_ca_topic_score_codex":0.0041768635,"about_ca_topic_score_gemma":0.012394526,"teacher_disagreement_score":0.0041768635,"about_ca_system_score_codex":0.00033676237,"about_ca_system_score_gemma":0.0002475388,"threshold_uncertainty_score":0.008305073},"labels":[],"label_agreement":null},{"id":"W2037402108","doi":"10.1016/j.foreco.2004.04.005","title":"Effect of seed source and nursery culture on paper birch (Betula papyrifera) uprooting resistance and field performance","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"University of Northern British Columbia","keywords":"Resistance (ecology); Sowing; Biology; Horticulture; Biomass (ecology); Botany; Agronomy","score_opus":0.002605837331455643,"score_gpt":0.1930264989839991,"score_spread":0.19042066165254345,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2037402108","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99892336,0.00024838134,0.00015113023,0.0000499548,0.000029474628,0.000016029326,0.00010324405,0.000012550883,0.00046585518],"genre_scores_gemma":[0.99610835,0.00017354633,0.0006042442,0.00015475947,0.000036392867,0.000039729526,0.00023669832,0.000033581175,0.002612762],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9993741,0.00021424882,0.00005844788,0.0001623351,0.000071259834,0.00011963426],"domain_scores_gemma":[0.9941707,0.0030264517,0.0004928539,0.00020179326,0.00042097736,0.001687101],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00059170555,0.0005922768,0.0007458239,0.0003265958,0.00064148183,0.00087109924,0.00073989725,0.0007347188,0.0027432223],"category_scores_gemma":[0.0026461869,0.00040184922,0.00030232477,0.00023486694,0.0006162282,0.00077686727,0.0006437003,0.0015363481,0.0003409193],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.026838247,0.0045317602,0.016802859,0.00015922014,0.000098132354,0.00058634824,0.0005633585,0.00031049945,0.9415525,0.00008729487,0.0002945643,0.008175174],"study_design_scores_gemma":[0.0007332219,0.03001225,0.2748339,0.00005414372,0.0004110649,0.0006349308,0.0011306296,0.0025083588,0.6878409,0.00018011693,0.0015619718,0.00009858221],"about_ca_topic_score_codex":0.0042606373,"about_ca_topic_score_gemma":0.014921137,"teacher_disagreement_score":0.0042606373,"about_ca_system_score_codex":0.0010040356,"about_ca_system_score_gemma":0.001037434,"threshold_uncertainty_score":0.0091769695},"labels":[],"label_agreement":null},{"id":"W2037940139","doi":"10.1016/j.foreco.2010.08.052","title":"An approach to GIS-based multiple criteria decision analysis that integrates exploration and evaluation phases: Case study in a forest-dominated landscape","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":59,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Memorial University of Newfoundland","funders":"Natural Sciences and Engineering Research Council of Canada; Memorial University of Newfoundland; Natural Resources Canada; Conservation, Food and Health Foundation","keywords":"Multiple-criteria decision analysis; Geographic information system; Plan (archaeology); Computer science; Environmental resource management; Forest management; Decision support system; Decision analysis; Gap analysis (conservation); Management by objectives; Variety (cybernetics); Land-use planning; Land use; Management science; Operations research; Business; Ecology; Geography; Engineering; Data mining; Environmental science; Artificial intelligence; Forestry; Cartography; Biodiversity","score_opus":0.02726938462103748,"score_gpt":0.31927602466069055,"score_spread":0.29200664003965304,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2037940139","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.019267999,0.00013900516,0.96532494,0.00052973605,0.000041499337,0.00060731266,0.00021598497,0.00043616764,0.013437382],"genre_scores_gemma":[0.109486945,0.00010393717,0.8887015,0.00006049099,0.000010642363,0.00051687297,0.00008181745,0.000046513465,0.0009913854],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9953785,0.003094717,0.00015620243,0.0002275918,0.0010177696,0.00012529176],"domain_scores_gemma":[0.99447685,0.004244096,0.00019491195,0.0002673703,0.0006809954,0.00013584952],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0044031763,0.0012646538,0.0011849417,0.0030808232,0.0013804553,0.0038637563,0.0022543126,0.001848192,0.0055276314],"category_scores_gemma":[0.007920912,0.0009186871,0.0010924756,0.0035878192,0.001730568,0.002098099,0.0022361416,0.0014448217,0.00060494686],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00032297397,0.0011443766,0.0046243244,0.0008641974,0.00041387763,0.0011676388,0.002285983,0.52462065,0.009897302,0.10816488,0.005200517,0.34129325],"study_design_scores_gemma":[0.00011380097,0.00022023097,0.0012157317,0.00010199895,0.000091102265,0.00040717717,0.0011839293,0.9401175,0.0028355154,0.045292757,0.008334445,0.00008583817],"about_ca_topic_score_codex":0.011407934,"about_ca_topic_score_gemma":0.021710629,"teacher_disagreement_score":0.011407934,"about_ca_system_score_codex":0.002647155,"about_ca_system_score_gemma":0.0039857724,"threshold_uncertainty_score":0.023286462},"labels":[],"label_agreement":null},{"id":"W2038242578","doi":"10.1016/s0378-1127(01)00799-x","title":"Below ground CO2 efflux from cut blocks of varying ages in sub-boreal British Columbia","year":2002,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Environmental science; Boreal; Taiga; Flux (metallurgy); Hydrology (agriculture); Vegetation (pathology); Growing season; Moisture; Water content; Atmospheric sciences; Biomass (ecology); Soil science; Ecology; Geography; Forestry; Geology; Chemistry; Biology; Meteorology","score_opus":0.008916440897625461,"score_gpt":0.18022233612929264,"score_spread":0.17130589523166717,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2038242578","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993795,0.000039509123,0.000015717667,0.000007156502,5.4121773e-7,0.0000027742515,0.0002691719,0.0000017026233,0.00028391604],"genre_scores_gemma":[0.9985714,0.000049057104,0.00004145312,0.000012905641,4.0153802e-7,0.0000043352543,0.00034431426,0.0000023695047,0.0009737482],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985003,0.000015147419,0.000007498788,0.000042857253,0.00003278473,0.000051643092],"domain_scores_gemma":[0.9994592,0.00006402146,0.000067393456,0.000025583842,0.00025913958,0.00012461026],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017238029,0.0002119298,0.0003321081,0.0005733504,0.0013198886,0.0007946278,0.00058745337,0.00027402327,0.0010937507],"category_scores_gemma":[0.0006338273,0.00020791242,0.00010265517,0.0009867221,0.0004739399,0.00025535192,0.0004962095,0.0003035334,0.00018126023],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011632396,0.00012919007,0.96446776,0.00004760911,0.00009383131,0.00043922357,0.002371303,0.0007436073,0.017743949,0.000103746854,0.0007838909,0.011912652],"study_design_scores_gemma":[0.0000033184801,0.000009115534,0.99855846,0.0000028920788,0.0000115147,0.000027735334,0.0005329366,0.00021702916,0.00039159972,0.0000082099805,0.00023345617,0.0000038059407],"about_ca_topic_score_codex":0.952991,"about_ca_topic_score_gemma":0.98584867,"teacher_disagreement_score":0.04700899,"about_ca_system_score_codex":0.005408139,"about_ca_system_score_gemma":0.0025623876,"threshold_uncertainty_score":0.09457159},"labels":[],"label_agreement":null},{"id":"W2038693202","doi":"10.1016/j.foreco.2009.12.028","title":"Tree biomass estimation in regenerating areas of tropical dry vegetation in northeast Brazil","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":51,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Rio Tinto; Conselho Nacional de Desenvolvimento Científico e Tecnológico; United Nations Development Programme","keywords":"Tree allometry; Diameter at breast height; Biomass (ecology); Vegetation (pathology); Crown (dentistry); Allometry; Arid; Forestry; Ecology; Dry season; Environmental science; Agroforestry; Biology; Geography","score_opus":0.004049493599222998,"score_gpt":0.21335422664871578,"score_spread":0.2093047330494928,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2038693202","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992399,0.00006809507,0.00013839346,0.0000064286583,6.017764e-7,0.0000047299673,0.00010461172,0.0000028657364,0.00043438433],"genre_scores_gemma":[0.99955887,0.000040618306,0.00019016942,0.0000018840448,5.330232e-7,0.0000023978598,0.0000886628,0.0000010856368,0.000115839204],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985087,0.00003010195,0.000017767978,0.000038969716,0.000026410637,0.000035771398],"domain_scores_gemma":[0.9996264,0.00008573494,0.000105904466,0.00003526281,0.000079230325,0.00006734677],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030672373,0.00021688973,0.0002479843,0.001211977,0.0003974849,0.00033887103,0.00030839688,0.0001499772,0.00039011156],"category_scores_gemma":[0.00088335434,0.0001432499,0.00025676176,0.00085861416,0.00030265786,0.00024977635,0.00033810866,0.00009259809,0.00008252344],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000052338743,0.00002524572,0.98379266,0.000033573164,0.00003846562,0.0001532508,0.0012640707,0.00058211974,0.0047185957,0.00017545359,0.000058722246,0.009105542],"study_design_scores_gemma":[0.000001709334,0.00001929824,0.99708587,0.000007306291,0.000018836567,0.00008111229,0.0010522234,0.0011315158,0.0002844968,0.000047237405,0.00026702438,0.0000034529594],"about_ca_topic_score_codex":0.08436369,"about_ca_topic_score_gemma":0.24002668,"teacher_disagreement_score":0.08436369,"about_ca_system_score_codex":0.00071151607,"about_ca_system_score_gemma":0.00042022855,"threshold_uncertainty_score":0.16774529},"labels":[],"label_agreement":null},{"id":"W2038710887","doi":"10.1016/j.foreco.2005.05.052","title":"Rate of transgene spread via long-distance seed dispersal in Pinus taeda","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Genetically Modified Organisms Research","field":"Agricultural and Biological Sciences","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Biology; Biological dispersal; Transgene; Gene flow; Seed dispersal; Population; Fecundity; Perennial plant; Ecology; Genetics; Genetic variation; Gene; Demography","score_opus":0.010794277133541105,"score_gpt":0.22077502272827598,"score_spread":0.20998074559473487,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2038710887","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99943274,0.000076767836,0.0002044637,0.0000055565743,6.8070733e-7,0.000001922846,0.000058845686,0.0000073862852,0.00021154899],"genre_scores_gemma":[0.99951315,0.000023504712,0.00011965216,0.0000033081096,5.5045103e-7,0.0000024824276,0.000060897895,0.000004333541,0.00027211691],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99988675,0.000024777502,0.0000060842303,0.00005253077,0.000017285645,0.0000126239265],"domain_scores_gemma":[0.9990445,0.00049476867,0.00022888642,0.00007086656,0.00008764049,0.00007325214],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037527113,0.00014252437,0.00011643293,0.0008762443,0.00017630887,0.00031253745,0.000243984,0.0002390884,0.00090137724],"category_scores_gemma":[0.0009413913,0.00013957138,0.000109781686,0.00020405522,0.00016490468,0.0004049016,0.00023806593,0.00027863972,0.00013419078],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00097335665,0.00025138797,0.5107165,0.00012553879,0.00020377859,0.00023115652,0.0009233682,0.003567877,0.44934133,0.0012405309,0.0002900135,0.03213527],"study_design_scores_gemma":[0.000009672554,0.00011608743,0.9795599,0.0000075175494,0.000050027676,0.00032982923,0.00015793732,0.009690999,0.0096591525,0.00019768995,0.00019605033,0.000025066885],"about_ca_topic_score_codex":0.0044767046,"about_ca_topic_score_gemma":0.0058946186,"teacher_disagreement_score":0.0044767046,"about_ca_system_score_codex":0.00046865738,"about_ca_system_score_gemma":0.00007820546,"threshold_uncertainty_score":0.008901298},"labels":[],"label_agreement":null},{"id":"W2039003102","doi":"10.1016/j.foreco.2006.04.021","title":"Aspen canopy removal and root trenching effects on understory vegetation","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Agroforestry and silvopastoral systems","field":"Agricultural and Biological Sciences","cited_by":43,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; University of Alberta; Alberta Conservation Association","keywords":"Understory; Canopy; Graminoid; Forb; Environmental science; Taiga; Boreal; Vegetation (pathology); Temperate rainforest; Shrub; Primary production; Agronomy; Ecology; Ecosystem; Grassland; Biology","score_opus":0.006505615666416859,"score_gpt":0.18317311569764777,"score_spread":0.1766675000312309,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2039003102","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99939334,0.000043547312,0.000020300262,0.000005289871,0.0000024436179,0.0000018693997,0.000036629408,0.0000017266465,0.00049476285],"genre_scores_gemma":[0.9972671,0.0000464865,0.00009378297,0.000036358386,0.0000041419016,0.000004559126,0.00014201082,0.000007790999,0.0023977107],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9996973,0.00007042192,0.000014678412,0.000054526874,0.000028548073,0.00013443404],"domain_scores_gemma":[0.99822325,0.000994377,0.0001582309,0.00007602269,0.000066384724,0.00048164622],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00044063208,0.00035110756,0.00044263093,0.00025275938,0.00030492974,0.00045444848,0.0002943029,0.00041455374,0.0036862905],"category_scores_gemma":[0.0011072557,0.0002123149,0.00025522217,0.00017807235,0.0004761327,0.00058248185,0.00039331583,0.00047055812,0.00022509611],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.10202105,0.0043475996,0.1607093,0.0002944342,0.0005080729,0.001013424,0.00097199855,0.0030899835,0.69444454,0.0008095675,0.00059744256,0.031192616],"study_design_scores_gemma":[0.00020260578,0.0032140398,0.9745918,0.000012339976,0.00019270304,0.00020241806,0.00037090553,0.0020198082,0.018137697,0.00018621927,0.0008464734,0.00002304235],"about_ca_topic_score_codex":0.008103348,"about_ca_topic_score_gemma":0.032273687,"teacher_disagreement_score":0.008103348,"about_ca_system_score_codex":0.00048773343,"about_ca_system_score_gemma":0.000587948,"threshold_uncertainty_score":0.016112328},"labels":[],"label_agreement":null},{"id":"W2039109944","doi":"10.1016/j.foreco.2007.03.042","title":"Carbon storage by ecological service forests in Zhejiang Province, subtropical China","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":137,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"European Social Fund","keywords":"Evergreen; Pinus massoniana; Cunninghamia; Environmental science; Carbon sequestration; Forestry; Evergreen forest; Biomass (ecology); Agroforestry; Forest ecology; Subtropics; Tropical and subtropical moist broadleaf forests; Ecological succession; Deciduous; Ecology; Ecosystem; Geography; Biology; Carbon dioxide; Botany","score_opus":0.004286390423434354,"score_gpt":0.2088014433260692,"score_spread":0.20451505290263486,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2039109944","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996898,0.000035901103,0.000012648805,0.000011431515,4.93513e-7,7.850029e-7,0.00011966772,0.0000014389819,0.00012791883],"genre_scores_gemma":[0.9997291,0.000019080251,0.000010191983,0.0000028635268,8.4145154e-7,8.6223525e-7,0.00012554103,3.853537e-7,0.000111018235],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998369,0.000017737899,0.00001834615,0.000028648477,0.000034320587,0.00006400718],"domain_scores_gemma":[0.99963856,0.000050630228,0.00009716623,0.000023078564,0.000092278606,0.000098421355],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025745132,0.00029999967,0.00029082803,0.001491709,0.00071906036,0.00075719005,0.0003913066,0.00019300677,0.0006498728],"category_scores_gemma":[0.00045471799,0.00018886695,0.00028627814,0.0022013949,0.00044379046,0.0004437139,0.00049531896,0.00011301313,0.00005435106],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023474514,0.000020926018,0.99176556,0.000023096858,0.00007850367,0.00023319304,0.000688815,0.0014078242,0.002041491,0.00032554512,0.0001424873,0.0030378494],"study_design_scores_gemma":[0.0000057695884,0.000010172132,0.99823004,0.0000019995682,0.00001605048,0.000028218756,0.00034182917,0.0010462896,0.00013419129,0.00007853292,0.00010349533,0.0000033288864],"about_ca_topic_score_codex":0.22977355,"about_ca_topic_score_gemma":0.41350043,"teacher_disagreement_score":0.22977355,"about_ca_system_score_codex":0.0026845785,"about_ca_system_score_gemma":0.0019138405,"threshold_uncertainty_score":0.45687222},"labels":[],"label_agreement":null},{"id":"W2039295128","doi":"10.1016/j.foreco.2013.10.030","title":"Modeling wood fiber attributes using forest inventory and environmental data for Newfoundland’s boreal forest","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":23,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Natural Resources Canada; Université de Sherbrooke","funders":"Natural Resources Canada; Natural Sciences and Engineering Research Council of Canada; University of British Columbia; FPInnovations","keywords":"Taiga; Forest inventory; Environmental science; Boreal; Ecology; Geography; Forestry; Agroforestry; Forest management; Biology","score_opus":0.024168569004053467,"score_gpt":0.2292867459065758,"score_spread":0.20511817690252232,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2039295128","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99824405,0.000054554683,0.00060546346,0.00005551302,0.000003440929,0.0000053564513,0.00067432376,0.0000385677,0.00031862932],"genre_scores_gemma":[0.9966748,0.000044540047,0.0015954117,0.000015215041,0.0000032596126,0.000008828628,0.0010748336,0.00001327092,0.0005698976],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997358,0.00005640464,0.000014268428,0.00009394916,0.000017920544,0.00008163309],"domain_scores_gemma":[0.99898237,0.0005862076,0.00012327352,0.00006695557,0.00013205543,0.00010917418],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00083612656,0.00072353904,0.00042823356,0.00060051517,0.00076446676,0.0009951404,0.001005962,0.0006741812,0.00092982466],"category_scores_gemma":[0.0015392079,0.0007059813,0.0008948709,0.0007253831,0.00045526403,0.0007271774,0.0003816823,0.000567703,0.0001308812],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013948392,0.00017154752,0.13646598,0.000018691291,0.00015280556,0.000113991206,0.000075267024,0.8569999,0.0005436147,0.00028262642,0.00072882185,0.004307285],"study_design_scores_gemma":[0.000019331206,0.000023939336,0.06841438,0.0000058196783,0.000053410713,0.000023290928,0.000103266706,0.9307954,0.00020722879,0.0001267922,0.0002092592,0.000017913122],"about_ca_topic_score_codex":0.82522315,"about_ca_topic_score_gemma":0.8631654,"teacher_disagreement_score":0.17477685,"about_ca_system_score_codex":0.005411887,"about_ca_system_score_gemma":0.0023629304,"threshold_uncertainty_score":0.35161227},"labels":[],"label_agreement":null},{"id":"W2039542205","doi":"10.1016/s0378-1127(99)00115-2","title":"Budburst phenology of sitka spruce and its relationship to white pine weevil attack","year":2000,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":35,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Victoria; Government of British Columbia; Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Phenology; Weevil; Biology; Resistance (ecology); Curculionidae; Botany; Heritability; Growing season; Annual growth cycle of grapevines; Horticulture; Ecology; Shoot","score_opus":0.011812603192968485,"score_gpt":0.22657546116188226,"score_spread":0.21476285796891378,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2039542205","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996364,0.000038197504,0.00001267907,0.000005544213,0.0000016916669,0.0000013639711,0.00009574303,0.0000015368041,0.00020690516],"genre_scores_gemma":[0.9995023,0.000034439014,0.000018758054,0.000007214322,0.0000025626887,0.0000017994948,0.00020513692,0.0000010698137,0.00022657789],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999286,0.000016094897,0.000006852711,0.00001693998,0.000011655787,0.000019914029],"domain_scores_gemma":[0.9990081,0.00030640565,0.0002664974,0.000036070316,0.000059563725,0.00032334906],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022550963,0.00015040483,0.0001279368,0.0005052699,0.00024671058,0.00042005835,0.0001446305,0.00021426211,0.0012410076],"category_scores_gemma":[0.00072692387,0.00013867514,0.00016781475,0.00028271842,0.00018217908,0.0001992479,0.000204909,0.00034888985,0.00022321324],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000455421,0.000113023314,0.99257857,0.000008400233,0.000042072046,0.00012785387,0.00014416197,0.000086244676,0.00529015,0.000025084108,0.000059706224,0.0010693237],"study_design_scores_gemma":[0.000001515064,0.000054352102,0.99964166,5.1819137e-7,0.0000043482073,0.000066661836,0.000059185295,0.000047573594,0.000086893604,0.0000052438286,0.000031281816,7.489746e-7],"about_ca_topic_score_codex":0.0072695883,"about_ca_topic_score_gemma":0.02435784,"teacher_disagreement_score":0.0072695883,"about_ca_system_score_codex":0.00022941592,"about_ca_system_score_gemma":0.00014965505,"threshold_uncertainty_score":0.014454544},"labels":[],"label_agreement":null},{"id":"W2039960261","doi":"10.1016/j.foreco.2007.06.033","title":"Accuracy of forest inventory mapping: Some implications for boreal forest management","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":103,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Guelph; Ontario Forest Research Institute; Canadian Forest Service","funders":"","keywords":"Black spruce; Taiga; Forest inventory; Forest management; Deciduous; Environmental science; Habitat; Forestry; Boreal; Wildlife; Ecology; Geography; Biology","score_opus":0.015411102087954624,"score_gpt":0.2572858960397402,"score_spread":0.2418747939517856,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2039960261","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.65602255,0.04655232,0.13518398,0.09398711,0.0020370197,0.0001718796,0.007173784,0.00075991475,0.058111433],"genre_scores_gemma":[0.9710599,0.0028063157,0.021074703,0.0014341953,0.00074537745,0.000034573815,0.0005375458,0.000087491826,0.002219789],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9879362,0.006403404,0.0007551205,0.0013802297,0.003203924,0.00032098388],"domain_scores_gemma":[0.80888784,0.1500141,0.00783028,0.009101354,0.023337893,0.0008284957],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.030073842,0.0004932774,0.0011094407,0.0015245744,0.001104324,0.0037207308,0.00241102,0.002281433,0.0026675176],"category_scores_gemma":[0.14262606,0.00034582953,0.00049191265,0.0027764656,0.0025964775,0.0041179135,0.0011977672,0.0013067772,0.0006000103],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012780054,0.000125792,0.65517336,0.00074101787,0.00062559923,0.00045789877,0.0019463166,0.027387239,0.0019755417,0.022855638,0.01103855,0.27639508],"study_design_scores_gemma":[0.00014457136,0.0006396982,0.76512444,0.0008054106,0.0010476932,0.0018107167,0.004584946,0.11663533,0.006123899,0.07734637,0.025471183,0.0002657399],"about_ca_topic_score_codex":0.029738683,"about_ca_topic_score_gemma":0.026887752,"teacher_disagreement_score":0.030073842,"about_ca_system_score_codex":0.0020983566,"about_ca_system_score_gemma":0.0010830568,"threshold_uncertainty_score":0.15904754},"labels":[],"label_agreement":null},{"id":"W2040824191","doi":"10.1016/s0378-1127(01)00613-2","title":"Similarity of small mammal abundance in post-fire and clearcut forests","year":2002,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"College of the North Atlantic; University of New Brunswick; Natural Resources Canada","funders":"","keywords":"Abundance (ecology); Disturbance (geology); Ecology; Coarse woody debris; Vegetation (pathology); Logging; Mammal; Snag; Relative species abundance; Debris; Environmental science; Biology; Geography; Habitat","score_opus":0.006955078563191799,"score_gpt":0.18741607128314938,"score_spread":0.18046099271995758,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2040824191","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999746,0.0000431367,0.000015337448,0.000003947922,9.963506e-7,9.438028e-7,0.000044569166,7.72921e-7,0.00014434352],"genre_scores_gemma":[0.9996383,0.00002509252,0.000016859083,0.0000066087323,0.0000028136872,0.0000017010676,0.00015629285,9.621148e-7,0.0001513091],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982005,0.000036628837,0.000015583653,0.000046360583,0.000028538374,0.00005283322],"domain_scores_gemma":[0.99885297,0.00032280097,0.0002987352,0.00006966323,0.00015437609,0.00030152014],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002904847,0.00010252329,0.00022850494,0.0010854097,0.0003536727,0.00042149515,0.00026140208,0.0002654276,0.0022785985],"category_scores_gemma":[0.0018183455,0.00014604614,0.00014309972,0.00039030795,0.00035191182,0.00045445518,0.00041749483,0.00019690301,0.0002392818],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00066337537,0.00004389689,0.9918514,0.000010665061,0.000055698278,0.00007451462,0.00034386278,0.0000450244,0.004753527,0.00005641172,0.00006778974,0.0020338215],"study_design_scores_gemma":[0.0000014347776,0.000016995893,0.9997087,5.2018896e-7,0.0000024681299,0.000065110056,0.00010078722,0.000031931097,0.000036424957,0.000012530063,0.000022452345,6.5493924e-7],"about_ca_topic_score_codex":0.006532955,"about_ca_topic_score_gemma":0.025223056,"teacher_disagreement_score":0.006532955,"about_ca_system_score_codex":0.00025064708,"about_ca_system_score_gemma":0.00016306245,"threshold_uncertainty_score":0.012989879},"labels":[],"label_agreement":null},{"id":"W2041434896","doi":"10.1016/s0378-1127(99)00229-7","title":"Growth and yield models for uneven-aged stands: past, present and future","year":2000,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":258,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute","funders":"","keywords":"Variety (cybernetics); Yield (engineering); Process (computing); Computer science; Empirical modelling; Tree (set theory); Process modeling; Mathematical model; Operations research; Ecology; Geography; Mathematics; Engineering; Simulation; Artificial intelligence; Statistics; Work in process; Biology","score_opus":0.006675578782418946,"score_gpt":0.19395532026284587,"score_spread":0.18727974148042692,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2041434896","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.85614455,0.0027348627,0.13099599,0.0016063728,0.00014067833,0.00003470089,0.0024754407,0.0003750399,0.005492372],"genre_scores_gemma":[0.9828419,0.00092606555,0.009024888,0.00009239356,0.000086140964,0.000035692196,0.0012056628,0.00012260299,0.0056646005],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9996536,0.0001265674,0.000018476814,0.00007910783,0.000043219057,0.00007903031],"domain_scores_gemma":[0.9977785,0.0015294672,0.00023090444,0.00010169746,0.00018839598,0.00017104071],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0027732356,0.0008039055,0.000871425,0.0005517932,0.0004072096,0.001266322,0.0019356736,0.0010285004,0.0028478492],"category_scores_gemma":[0.005964393,0.00046519688,0.00093528954,0.0010542278,0.0007064665,0.0025187393,0.00057636254,0.001038167,0.00042460038],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000054870972,0.000028727516,0.00463335,0.000013778803,0.000021560714,0.00002962942,0.000031739837,0.9849368,0.00011724119,0.0052098623,0.00054202264,0.0043804464],"study_design_scores_gemma":[0.000005923717,0.000007539918,0.001127869,0.000003741593,0.000009017407,0.000012206976,0.000014320917,0.9933601,0.00002867328,0.0052411677,0.00018319189,0.000006166074],"about_ca_topic_score_codex":0.03579134,"about_ca_topic_score_gemma":0.03876081,"teacher_disagreement_score":0.03579134,"about_ca_system_score_codex":0.0018897868,"about_ca_system_score_gemma":0.00087611104,"threshold_uncertainty_score":0.07116604},"labels":[],"label_agreement":null},{"id":"W2041714204","doi":"10.1016/j.foreco.2012.12.006","title":"Regeneration dynamics of non-native northern red oak (Quercus rubra L.) populations as influenced by environmental factors: A case study in managed hardwood forests of southwestern Germany","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":91,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Laurentian University; Nipissing University","funders":"","keywords":"Canopy; Biology; Hardwood; Biological dispersal; Range (aeronautics); Fagaceae; Botany; Regeneration (biology); Tree canopy; Shade tolerance; Abundance (ecology); Ecology; Population","score_opus":0.0070127982104839955,"score_gpt":0.2285958821086357,"score_spread":0.2215830838981517,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2041714204","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998996,0.00001785449,0.000010758659,9.878243e-7,1.603988e-7,8.114493e-7,0.000013777722,3.8185667e-7,0.000055724213],"genre_scores_gemma":[0.99984765,0.00001769946,0.00003164214,0.0000010825031,3.72185e-7,0.0000011902924,0.00002509045,2.9620813e-7,0.000075006974],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983835,0.000045283672,0.000009873715,0.000038021735,0.000019889758,0.000048459613],"domain_scores_gemma":[0.9997408,0.00006567197,0.00009099235,0.000022003565,0.00002785116,0.000052733398],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031414762,0.0001650881,0.00017160918,0.00061381055,0.00032910594,0.0004166603,0.00024961136,0.00013899842,0.0003777553],"category_scores_gemma":[0.00032909872,0.00008395792,0.00015986802,0.00048687015,0.00045134957,0.0002100743,0.0002871433,0.000087854496,0.000061604995],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025549432,0.00016361898,0.98229617,0.000020429807,0.00007921708,0.0009322325,0.0021922584,0.0010905135,0.0046358425,0.00011299474,0.000077610464,0.008143527],"study_design_scores_gemma":[0.000002488066,0.000055451063,0.99856216,0.000001738322,0.000012394441,0.000117026735,0.0005659319,0.00041574842,0.0001622942,0.000016975284,0.00008484745,0.0000030410752],"about_ca_topic_score_codex":0.036836587,"about_ca_topic_score_gemma":0.10059933,"teacher_disagreement_score":0.036836587,"about_ca_system_score_codex":0.00086753,"about_ca_system_score_gemma":0.0002303626,"threshold_uncertainty_score":0.07324433},"labels":[],"label_agreement":null},{"id":"W2041743279","doi":"10.1016/j.foreco.2012.10.006","title":"Forest structural attributes after windthrow and consequences of salvage logging","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":61,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada; Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada; Canada Research Chairs; Fonds de recherche du Québec – Nature et technologies; Université Laval","keywords":"Salvage logging; Windthrow; Snag; Logging; Coarse woody debris; Environmental science; Disturbance (geology); Forest ecology; Forest management; Ecosystem; Forester; Ecology; Agroforestry; Forestry; Geology; Geography; Biology; Habitat; Geomorphology","score_opus":0.01499267810224778,"score_gpt":0.20265895710588805,"score_spread":0.18766627900364027,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2041743279","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995951,0.00006659836,0.000009912065,0.000021960763,0.000004418633,0.0000024882677,0.00007945015,9.222972e-7,0.00021915436],"genre_scores_gemma":[0.9995968,0.00003809228,0.000007486557,0.00000760631,0.0000060753355,0.0000010338667,0.00013832978,7.315122e-7,0.00020382922],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99962556,0.00006291531,0.000035400528,0.000049389335,0.00004239734,0.00018430903],"domain_scores_gemma":[0.9977209,0.00042503598,0.00084337656,0.00012222836,0.0002110437,0.0006774411],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00065800414,0.0002544425,0.00030791858,0.0009462901,0.0006885179,0.00070465374,0.0004534841,0.00061694335,0.0031308017],"category_scores_gemma":[0.002759686,0.00013552493,0.0005735338,0.0008355583,0.00071993354,0.0008004035,0.0004625224,0.0006173736,0.00033199033],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0017637216,0.00051454705,0.99017954,0.0000123772,0.00007426094,0.0009989515,0.00022161532,0.00038016014,0.0010137251,0.0000888848,0.00012907773,0.004623095],"study_design_scores_gemma":[0.0000047284716,0.00020983086,0.9989849,0.0000020768966,0.000012323062,0.0002484625,0.00027173324,0.0000768932,0.000070557195,0.000056262328,0.00005828871,0.000003902613],"about_ca_topic_score_codex":0.00945068,"about_ca_topic_score_gemma":0.037071303,"teacher_disagreement_score":0.00945068,"about_ca_system_score_codex":0.0005178546,"about_ca_system_score_gemma":0.00039185458,"threshold_uncertainty_score":0.018791318},"labels":[],"label_agreement":null},{"id":"W2041945951","doi":"10.1016/j.foreco.2010.10.006","title":"Woodpeckers increase in abundance but maintain fecundity in response to an outbreak of mountain pine bark beetles","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":80,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Environment and Climate Change Canada; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; Society of Canadian Ornithologists","keywords":"Woodpecker; Fecundity; Biology; Ecology; Mountain pine beetle; Population; Abundance (ecology); Demography; Habitat","score_opus":0.004291404258955558,"score_gpt":0.2220181166857279,"score_spread":0.21772671242677236,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2041945951","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99951816,0.000045580597,0.000040194176,0.000018832792,0.0000032264863,0.0000034329526,0.000039745944,0.0000067139185,0.00032405573],"genre_scores_gemma":[0.99929774,0.000026860866,0.00008084012,0.000040954063,0.000007593904,0.000006558477,0.00011105122,0.0000021299038,0.00042628727],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99993503,0.000011619746,0.000003468984,0.00001743988,0.000011977968,0.00002048502],"domain_scores_gemma":[0.9995547,0.00008604758,0.000193702,0.000029782943,0.000034966506,0.000100809564],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013989756,0.00016708445,0.00018052875,0.00024158796,0.00027453553,0.00029036065,0.00014915259,0.00029230383,0.0014320421],"category_scores_gemma":[0.00046904804,0.0001702957,0.00016262503,0.000082266044,0.00016301114,0.00016775925,0.00018378491,0.00031656696,0.00015252193],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0021220422,0.0006169217,0.44224948,0.00011186056,0.00019331487,0.000995842,0.00042405908,0.0007020757,0.5353164,0.00011124948,0.0010105245,0.016146133],"study_design_scores_gemma":[0.000005564201,0.00014526649,0.99737823,0.0000020235648,0.000008094861,0.000100040925,0.000081896826,0.00029815422,0.0018017434,0.000021858543,0.00015421168,0.0000028784198],"about_ca_topic_score_codex":0.0016328597,"about_ca_topic_score_gemma":0.0068898993,"teacher_disagreement_score":0.0016328597,"about_ca_system_score_codex":0.00019320619,"about_ca_system_score_gemma":0.000074489355,"threshold_uncertainty_score":0.004790604},"labels":[],"label_agreement":null},{"id":"W2043610133","doi":"10.1016/j.foreco.2011.12.029","title":"Soil and plant legacies associated with harvest trails in boreal black spruce forests","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":13,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université de Sherbrooke; Université Laval","funders":"","keywords":"Environmental science; Understory; Scarification; Black spruce; Shrub; Vaccinium; Biomass (ecology); Clearcutting; Bog; Boreal; Vegetation (pathology); Silviculture; Logging; Taiga; Agronomy; Peat; Forestry; Ecology; Agroforestry; Biology; Geography; Canopy","score_opus":0.011664763315164426,"score_gpt":0.1954228925694082,"score_spread":0.18375812925424378,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2043610133","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997009,0.000042123003,0.000015721374,0.000002715481,5.020989e-7,0.000003515528,0.00011568254,0.000001469193,0.00011735858],"genre_scores_gemma":[0.9994091,0.00003241673,0.00007546941,0.000006565904,7.96568e-7,0.0000043518835,0.0002897321,8.2135074e-7,0.00018075792],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998586,0.000013940344,0.000010111423,0.000044118744,0.000029206074,0.000043932032],"domain_scores_gemma":[0.9992867,0.00006334037,0.0002802298,0.000029733643,0.00014039868,0.00019966136],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029243538,0.00019806896,0.00019392671,0.0007680627,0.0006975407,0.0005715452,0.00027781448,0.00024783515,0.0005206396],"category_scores_gemma":[0.00044048196,0.00015205897,0.00018066115,0.00054154196,0.00042552117,0.00020492832,0.00025524214,0.0001945451,0.00008123205],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024410713,0.00007426049,0.9815352,0.00002005671,0.000031320742,0.00015531093,0.00038558914,0.00017652118,0.014063582,0.000012350854,0.00004641035,0.0032552835],"study_design_scores_gemma":[6.0994574e-7,0.000020653246,0.9997614,9.981426e-7,0.0000017673569,0.000010569672,0.00007765763,0.000033269374,0.00006576935,0.0000013310414,0.000025036923,8.9014776e-7],"about_ca_topic_score_codex":0.40200186,"about_ca_topic_score_gemma":0.75167626,"teacher_disagreement_score":0.40200186,"about_ca_system_score_codex":0.0023245865,"about_ca_system_score_gemma":0.00091370865,"threshold_uncertainty_score":0.7993239},"labels":[],"label_agreement":null},{"id":"W2043648653","doi":"10.1016/j.foreco.2004.07.072","title":"Modelling the vulnerability of balsam fir forests to wind damage","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":119,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts (Québec); Université Laval","funders":"National Science Council","keywords":"Windthrow; Abies balsamea; Balsam; Canopy; Environmental science; Forestry; Abies alba; Storm; Atmospheric sciences; Geography; Ecology; Picea abies; Biology; Meteorology; Botany; Geology","score_opus":0.013027104121492267,"score_gpt":0.2200198073346149,"score_spread":0.20699270321312263,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2043648653","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9941299,0.00008277116,0.0039821337,0.00009075882,0.0000076135784,0.000006221985,0.000044776898,0.000014045215,0.001641822],"genre_scores_gemma":[0.9986211,0.000041654406,0.0005089228,0.000008547781,0.0000034515476,0.0000043431055,0.000019416819,0.0000043228906,0.00078820833],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.999887,0.00003212876,0.0000050461854,0.000020987909,0.000010058514,0.000044831155],"domain_scores_gemma":[0.9990484,0.0006894031,0.00009231142,0.000028141958,0.000053073218,0.00008865548],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00053337804,0.0005050159,0.00034758993,0.000428187,0.00049992494,0.0007591383,0.0007786519,0.0014975744,0.0014493791],"category_scores_gemma":[0.0018806045,0.00049517356,0.00046609974,0.00035604942,0.0007306147,0.000901552,0.00049502065,0.0006912493,0.00009594547],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000028534081,0.00003168956,0.0056638666,0.0000086115315,0.000017769196,0.000042719483,0.000031597694,0.9919166,0.0005206862,0.00071543484,0.000052801097,0.0009696912],"study_design_scores_gemma":[0.000006177729,0.000024113295,0.002757132,0.0000028280683,0.000011252096,0.000015133295,0.000053815198,0.9959651,0.00017145106,0.0009227541,0.00006512018,0.000004960784],"about_ca_topic_score_codex":0.055289175,"about_ca_topic_score_gemma":0.051533062,"teacher_disagreement_score":0.055289175,"about_ca_system_score_codex":0.0013867373,"about_ca_system_score_gemma":0.0006549628,"threshold_uncertainty_score":0.10993475},"labels":[],"label_agreement":null},{"id":"W2045110431","doi":"10.1016/j.foreco.2007.02.010","title":"Ten-year response of northern hardwood stands to commercial selection cutting in southern Quebec, Canada","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Beech; Basal area; Yellow birch; Hardwood; Deciduous; Maple; Silviculture; Range (aeronautics); Forestry; Biology; Ecology; Botany; Geography; Horticulture","score_opus":0.004045706057407633,"score_gpt":0.19813704186003941,"score_spread":0.19409133580263177,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2045110431","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982993,0.000116063,0.000031098465,0.00008857895,0.000006095055,0.000011839508,0.0006243435,0.000004328534,0.0008183554],"genre_scores_gemma":[0.99647397,0.000055078966,0.000041722236,0.00006431209,0.00000250126,0.000011111587,0.0006246112,0.0000022182644,0.0027245418],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999731,0.00003173557,0.000009166554,0.00004406211,0.0000548861,0.00012901955],"domain_scores_gemma":[0.9984168,0.00014082952,0.00016326479,0.000030935313,0.0006560214,0.0005920841],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004809684,0.00024502698,0.00034017354,0.00045991904,0.0018750716,0.0007446628,0.00093727896,0.00055223436,0.0025048412],"category_scores_gemma":[0.0009331711,0.00014382186,0.00023863064,0.0006236504,0.0005017546,0.00023828483,0.00039515042,0.00051986944,0.00031641396],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009277122,0.00028733988,0.9828675,0.000029852972,0.00010305647,0.00026828932,0.0019012594,0.00055833784,0.0030690301,0.000078052086,0.0025906258,0.007318895],"study_design_scores_gemma":[0.000004971915,0.00003482902,0.99843425,0.0000046667556,0.000006495841,0.000010659676,0.0009183009,0.00015965615,0.000055459725,0.0000059104536,0.00036030455,0.000004538449],"about_ca_topic_score_codex":0.98881173,"about_ca_topic_score_gemma":0.99745136,"teacher_disagreement_score":0.016177876,"about_ca_system_score_codex":0.016177876,"about_ca_system_score_gemma":0.008374817,"threshold_uncertainty_score":0.11737925},"labels":[],"label_agreement":null},{"id":"W2045230795","doi":"10.1016/j.foreco.2014.10.026","title":"Competitors and natural enemies may cumulatively mediate Dendroctonus ponderosae colonization of burned Pinus forests","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":11,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; Australian Government; University of Alberta; Parks Canada","keywords":"Dendroctonus; Mountain pine beetle; Colonization; Ecology; Competitor analysis; Pinus contorta; Natural (archaeology); Biology; Bark beetle; Bark (sound)","score_opus":0.00478851508463711,"score_gpt":0.20981366199786747,"score_spread":0.20502514691323037,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2045230795","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99919957,0.00008522521,0.000043682896,0.000014759726,0.0000019230042,0.000002284258,0.000012881288,0.000001946075,0.0006377926],"genre_scores_gemma":[0.99947983,0.0000450125,0.00005525349,0.000012025292,0.000002061936,0.00000239663,0.000024942969,0.0000014910221,0.0003770578],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997812,0.000050287108,0.000012915696,0.00004390581,0.00002729519,0.00008446656],"domain_scores_gemma":[0.99910647,0.00027858015,0.00018492441,0.000045811394,0.00006521018,0.00031889763],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00043177142,0.00030052697,0.00027335132,0.0005104277,0.00073397945,0.00094431406,0.00043335298,0.00038280102,0.0026498465],"category_scores_gemma":[0.0012583626,0.00031285165,0.00017985883,0.0001199547,0.0004305661,0.0007450937,0.0012060404,0.00037438283,0.00016785509],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00095713726,0.0003107149,0.8863234,0.0001376566,0.00020252493,0.0005999105,0.00075433915,0.00055671704,0.09742049,0.0008956978,0.00016391164,0.011677592],"study_design_scores_gemma":[0.000010486753,0.000101954734,0.9962071,0.000011910778,0.000057669284,0.00021660856,0.0006094975,0.0008424681,0.001334285,0.00023762109,0.00035962244,0.00001084226],"about_ca_topic_score_codex":0.007832376,"about_ca_topic_score_gemma":0.053548902,"teacher_disagreement_score":0.007832376,"about_ca_system_score_codex":0.00045103903,"about_ca_system_score_gemma":0.0004265625,"threshold_uncertainty_score":0.015573561},"labels":[],"label_agreement":null},{"id":"W2046739702","doi":"10.1016/j.foreco.2013.08.035","title":"Radial growth of residual overstory trees and understory saplings after mountain pine beetle attack in central British Columbia","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia","funders":"","keywords":"Understory; Mountain pine beetle; Forestry; Biology; Thinning; Residual; Dendrochronology; Basal area; Ecology; Environmental science; Geography; Mathematics; Canopy","score_opus":0.004518782064293912,"score_gpt":0.1781009338614878,"score_spread":0.17358215179719388,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2046739702","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99936396,0.00008471272,0.0000074894974,0.000011311511,0.00000140326,0.0000016786785,0.00022527776,0.0000019987226,0.0003020861],"genre_scores_gemma":[0.9981255,0.00008389385,0.000019121304,0.000016247923,7.88791e-7,0.0000021900312,0.00039862236,0.0000019020753,0.001351692],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998647,0.000012848711,0.0000071556415,0.00003314581,0.000026496398,0.000055695065],"domain_scores_gemma":[0.9991278,0.00010449739,0.000110835346,0.000039161638,0.0002447759,0.00037294693],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019314299,0.00018007144,0.0001812369,0.0005140444,0.0007115788,0.00053150055,0.0005062811,0.00032618846,0.0016347364],"category_scores_gemma":[0.00069260964,0.00017041249,0.00013179166,0.0004902558,0.00032568973,0.00015723644,0.0003022461,0.00037620764,0.00028168366],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003697919,0.00008961279,0.98828995,0.000014876727,0.000037738595,0.00022420073,0.0007427277,0.00025306514,0.0021514979,0.000023308507,0.00060125126,0.007202074],"study_design_scores_gemma":[0.0000016321459,0.000009566598,0.9995234,0.0000030660694,0.00000443125,0.000018044642,0.00024918013,0.000054708482,0.00004386933,0.0000023722503,0.00008768693,0.0000020462992],"about_ca_topic_score_codex":0.9191279,"about_ca_topic_score_gemma":0.98191327,"teacher_disagreement_score":0.08087212,"about_ca_system_score_codex":0.0031435548,"about_ca_system_score_gemma":0.0020966907,"threshold_uncertainty_score":0.16269672},"labels":[],"label_agreement":null},{"id":"W2047589555","doi":"10.1016/j.foreco.2014.03.013","title":"Site factors contribute to aspen decline and stand vulnerability following a forest tent caterpillar outbreak in the Canadian Clay Belt","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Outaouais; Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal; Natural Sciences and Engineering Research Council of Canada","funders":"Natural Sciences and Engineering Research Council of Canada; Mitacs; Université du Québec en Outaouais; Université du Québec à Montréal","keywords":"Sucker; Biology; Basal area; Ecology; Humus; Crown (dentistry); Thinning","score_opus":0.005768381992812973,"score_gpt":0.21533957305974902,"score_spread":0.20957119106693606,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2047589555","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994961,0.00002824237,0.000010014418,0.00004010993,0.000001351552,0.0000027037834,0.000052443782,9.0171375e-7,0.0003681991],"genre_scores_gemma":[0.9996909,0.000022556358,0.000014409205,0.000015868305,0.0000013364267,0.0000014496791,0.00006248011,7.447663e-7,0.0001903671],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996799,0.00001914564,0.000011217207,0.000035923007,0.000049762886,0.0002039568],"domain_scores_gemma":[0.998779,0.000118203214,0.00034286937,0.00003560189,0.00023014574,0.0004941012],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033448933,0.00013383145,0.00015563826,0.00080401613,0.0017748415,0.00087391504,0.0007694143,0.00047893001,0.0018682239],"category_scores_gemma":[0.0014139256,0.00015958611,0.0001943317,0.0007701141,0.0008302638,0.00031472827,0.00076237705,0.0005571117,0.00009069457],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00009798965,0.000049527353,0.9958747,0.000005578813,0.00002110122,0.00014265285,0.000545361,0.00018216975,0.000540234,0.000043590928,0.00024314063,0.0022539715],"study_design_scores_gemma":[9.723129e-7,0.000005134528,0.99859995,0.0000024521394,0.0000033419071,0.000022228032,0.0011477694,0.000103705825,0.000017813845,0.000010980422,0.0000840789,0.0000016022676],"about_ca_topic_score_codex":0.9004791,"about_ca_topic_score_gemma":0.98390067,"teacher_disagreement_score":0.09952092,"about_ca_system_score_codex":0.005585982,"about_ca_system_score_gemma":0.004876512,"threshold_uncertainty_score":0.20021397},"labels":[],"label_agreement":null},{"id":"W2047912726","doi":"10.1016/j.foreco.2013.05.046","title":"Modeling tree spatial distributions after partial harvesting in uneven-aged boreal forests using inhomogeneous point processes","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":14,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval; Ministère des Forêts, de la Faune et des Parcs","funders":"Natural Sciences and Engineering Research Council of Canada; Fonds de recherche du Québec – Nature et technologies; Université Laval","keywords":"Taiga; Boreal; Logging; Tree (set theory); Point pattern analysis; Forest management; Biodiversity; Ecology; Clearcutting; Spatial ecology; Environmental science; Geography; Mathematics; Agroforestry; Forestry; Biology","score_opus":0.01073052126731094,"score_gpt":0.22391763175796287,"score_spread":0.21318711049065192,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2047912726","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98745173,0.000060513175,0.011866885,0.000066859946,0.000008212405,0.000008334336,0.00009339263,0.000038325885,0.00040581316],"genre_scores_gemma":[0.9980159,0.000032779128,0.001297952,0.000007212385,0.0000052375976,0.0000058057694,0.000083168925,0.000009058987,0.0005428785],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997876,0.000051992545,0.000011215657,0.00005854606,0.000020873267,0.00006984442],"domain_scores_gemma":[0.99773824,0.0015142825,0.0002710274,0.0001568528,0.00012460895,0.00019490511],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0016712673,0.00035922718,0.0004825971,0.0004087778,0.0005246096,0.0008673803,0.0013883461,0.00083660876,0.001094969],"category_scores_gemma":[0.004270004,0.0005147598,0.0007655873,0.00062052405,0.00092999387,0.0012248246,0.00056814274,0.00065539085,0.00009423266],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015946207,0.000060452978,0.02821177,0.000010220419,0.000037864436,0.000098109056,0.0000885207,0.9648309,0.00059571624,0.003324943,0.00011901213,0.0024630732],"study_design_scores_gemma":[0.000010477544,0.000021355647,0.0065021697,0.000001464305,0.000011879521,0.00001616871,0.00003328861,0.9921422,0.00009985303,0.0011101676,0.000044169527,0.0000068723893],"about_ca_topic_score_codex":0.04471022,"about_ca_topic_score_gemma":0.04229989,"teacher_disagreement_score":0.04471022,"about_ca_system_score_codex":0.0011025345,"about_ca_system_score_gemma":0.0005379264,"threshold_uncertainty_score":0.08889997},"labels":[],"label_agreement":null},{"id":"W2048700313","doi":"10.1016/s0378-1127(00)00370-4","title":"Germination ecology in mountain hemlock (Tsuga mertensiana (Bong.) Carr.)","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seed Germination and Physiology","field":"Agricultural and Biological Sciences","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Germination; Tsuga; Natural regeneration; Stratification (seeds); Stocking; Carr; Biology; Forest regeneration; Seedling; Horticulture; Regeneration (biology); Ecology; Environmental science; Botany; Animal science; Seed dormancy; Dormancy","score_opus":0.009930591944495096,"score_gpt":0.22014240229272014,"score_spread":0.21021181034822506,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2048700313","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99947065,0.00012627889,0.000043686454,0.000011492425,0.0000015435418,0.0000021987667,0.000025672807,0.000005799114,0.00031276268],"genre_scores_gemma":[0.99893254,0.00006131378,0.00014316116,0.00004470468,0.0000027942317,0.0000072454254,0.00013084318,0.000005937086,0.0006714546],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9999418,0.000010677666,0.000002682255,0.000021821443,0.000008119113,0.000014879427],"domain_scores_gemma":[0.99983096,0.000021773292,0.000048570022,0.0000047118324,0.000023540882,0.00007025891],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001150144,0.00025508326,0.0002298847,0.0006973665,0.0006841077,0.00027306977,0.00023895373,0.00028249208,0.00079961447],"category_scores_gemma":[0.00015876211,0.000150128,0.00009065895,0.00020612568,0.0004102229,0.0002434057,0.00031890642,0.0003366895,0.00018224648],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012129837,0.0005623048,0.21253893,0.00016653218,0.00007381945,0.0014777152,0.0038370367,0.00058545324,0.76150256,0.0004512766,0.00072754564,0.016863829],"study_design_scores_gemma":[0.000014842086,0.0004141611,0.9951558,0.000009520355,0.000015284335,0.0004102203,0.0008864694,0.00034797323,0.002246429,0.0000953017,0.00039479655,0.0000092659275],"about_ca_topic_score_codex":0.026832731,"about_ca_topic_score_gemma":0.10998289,"teacher_disagreement_score":0.026832731,"about_ca_system_score_codex":0.0005742068,"about_ca_system_score_gemma":0.0001428328,"threshold_uncertainty_score":0.05335307},"labels":[],"label_agreement":null},{"id":"W2049674697","doi":"10.1016/j.foreco.2008.08.018","title":"Temporal dynamics of forage succession for elk at two scales: Implications of forest management","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":42,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Forb; Forage; Ecological succession; Pinus contorta; Deciduous; Basal area; Biomass (ecology); Felling; Chronosequence; Environmental science; Ecology; Grassland; Geography; Agroforestry; Biology","score_opus":0.009094687780851587,"score_gpt":0.23270073593619814,"score_spread":0.22360604815534654,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2049674697","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992112,0.000114938965,0.00009797724,0.000042148367,0.000001560063,0.000002334591,0.00009387506,0.0000018381053,0.00043403023],"genre_scores_gemma":[0.99952495,0.000033275242,0.00009084223,0.000013926563,0.000002321499,0.0000033454144,0.00007147758,0.0000014162594,0.00025854443],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998759,0.000020642989,0.000008203544,0.000037802358,0.000011853174,0.000045560533],"domain_scores_gemma":[0.99921584,0.00025224077,0.00020934043,0.000043605978,0.00012339395,0.00015562944],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00052897807,0.00008139101,0.00018219177,0.00063833396,0.00040378553,0.00074622844,0.00024987137,0.0003635057,0.0021671546],"category_scores_gemma":[0.0019008224,0.0001375927,0.00017547666,0.00037087704,0.00032290223,0.00079168804,0.00061471184,0.00023391224,0.0002013742],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009286909,0.0001774319,0.97307885,0.000044857785,0.000070381604,0.00016116255,0.00078897056,0.0009216804,0.013618599,0.0005471921,0.0003174507,0.009344866],"study_design_scores_gemma":[0.000003774595,0.000020312033,0.99871194,0.0000025020436,0.0000064492833,0.000029927513,0.00032816557,0.00060093106,0.000095859956,0.00011505982,0.00008280172,0.0000024368503],"about_ca_topic_score_codex":0.009955816,"about_ca_topic_score_gemma":0.029354936,"teacher_disagreement_score":0.009955816,"about_ca_system_score_codex":0.00058695447,"about_ca_system_score_gemma":0.0003045494,"threshold_uncertainty_score":0.019795775},"labels":[],"label_agreement":null},{"id":"W2050361240","doi":"10.1016/j.foreco.2006.05.024","title":"Response of herbaceous plant diversity to reduced structural diversity in maple-dominated (Acer saccharum Marsh.) forests managed for sap extraction","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":44,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"","keywords":"Understory; Species richness; Ecology; Alpha diversity; Species diversity; Environmental science; Biology; Canopy","score_opus":0.00867826920922637,"score_gpt":0.2270398789556277,"score_spread":0.21836160974640131,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2050361240","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99993825,0.0000051812044,0.000005653226,0.0000042234274,3.1833483e-7,3.0164327e-7,0.000009572467,4.703428e-7,0.000036017515],"genre_scores_gemma":[0.99986756,0.0000043385016,0.000010752396,0.0000076748765,7.7471896e-7,0.0000010428603,0.000027180002,3.2723364e-7,0.00008043659],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998888,0.000030525196,0.0000045939673,0.000022114287,0.000011764674,0.00004210754],"domain_scores_gemma":[0.9994374,0.00010219192,0.00014018436,0.000022732314,0.000044083594,0.00025340356],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015547393,0.00009497818,0.0001173205,0.00026779438,0.00024695112,0.0003218361,0.00019488299,0.00022898235,0.0012160282],"category_scores_gemma":[0.0005448275,0.00008543575,0.00010570378,0.0001791738,0.00032158644,0.00015778898,0.0002828597,0.00022920668,0.00010817966],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0017242063,0.00050398475,0.9619136,0.000023283566,0.00012237144,0.00025850357,0.0006522647,0.0007222508,0.029159354,0.000099242796,0.00020883411,0.0046121827],"study_design_scores_gemma":[0.000006426011,0.00008258818,0.9992982,7.3334564e-7,0.0000042231645,0.00002279849,0.0001570161,0.00020570189,0.0001603541,0.000022638575,0.00003785897,0.0000014421529],"about_ca_topic_score_codex":0.00757519,"about_ca_topic_score_gemma":0.026732262,"teacher_disagreement_score":0.00757519,"about_ca_system_score_codex":0.00036895595,"about_ca_system_score_gemma":0.00015389587,"threshold_uncertainty_score":0.015062213},"labels":[],"label_agreement":null},{"id":"W2050896274","doi":"10.1016/j.foreco.2004.02.027","title":"Incidence of tomentosus root disease relative to spruce density and slope position in south-central Alaska","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Pathogens and Fungal Diseases","field":"Biochemistry, Genetics and Molecular Biology","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia","funders":"","keywords":"Basal area; Transect; Water content; Boreal; Taiga; Site index; Incidence (geometry); Environmental science; Agronomy; Forestry; Biology; Ecology; Geography; Geology; Mathematics","score_opus":0.00415836583563996,"score_gpt":0.2068799939230869,"score_spread":0.20272162808744693,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2050896274","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99974614,0.000018626315,0.000013439594,0.0000027445506,5.939646e-7,4.2556678e-7,0.000036582915,0.0000010372371,0.00018035613],"genre_scores_gemma":[0.9997955,0.000017905642,0.000015683983,0.0000022490224,5.863631e-7,5.373729e-7,0.000040674215,3.422777e-7,0.00012661361],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999033,0.000024760717,0.000010851562,0.00002712103,0.000013266078,0.000020654583],"domain_scores_gemma":[0.999526,0.00012073243,0.00014384526,0.000023886323,0.0000601344,0.00012534758],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025455363,0.0001250863,0.00012362753,0.0006557517,0.0004312768,0.00036938637,0.0001612128,0.00017790825,0.00087994745],"category_scores_gemma":[0.0004971412,0.00012811847,0.00012780353,0.00032924875,0.00026048775,0.0002254931,0.00029148426,0.00016373926,0.000115338604],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015401757,0.00002515383,0.9970095,0.0000042131305,0.000014378274,0.00008962671,0.00026812308,0.00014547713,0.0014118077,0.000020790885,0.000027146414,0.0008298327],"study_design_scores_gemma":[0.0000010548083,0.00003245417,0.999089,0.0000018655771,0.0000073470574,0.00009198842,0.0004943679,0.00011718299,0.00010979658,0.000013398252,0.000040120976,0.0000014506921],"about_ca_topic_score_codex":0.050436627,"about_ca_topic_score_gemma":0.13158317,"teacher_disagreement_score":0.050436627,"about_ca_system_score_codex":0.00036222313,"about_ca_system_score_gemma":0.00023775404,"threshold_uncertainty_score":0.10028607},"labels":[],"label_agreement":null},{"id":"W2051536979","doi":"10.1016/s0378-1127(99)00223-6","title":"Spatial and temporal patterns of use by moose of pre-commercially thinned, naturally-regenerating stands of balsam fir in central Newfoundland","year":2000,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":27,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of Newfoundland and Labrador","funders":"","keywords":"Balsam; Thinning; Douglas fir; Geography; Environmental science; Ecology; Biology; Forestry; Botany","score_opus":0.005709754547221364,"score_gpt":0.21306275973876307,"score_spread":0.2073530051915417,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2051536979","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997092,0.00003009447,0.000007408515,0.000007957255,4.116216e-7,6.067567e-7,0.00013995769,6.9676076e-7,0.000103689315],"genre_scores_gemma":[0.99902284,0.000048899972,0.00004380837,0.000011436097,0.0000010976062,0.000003042835,0.0002923251,9.153717e-7,0.00057566236],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999014,0.000011420476,0.000005553648,0.000023896548,0.000009004648,0.000048565988],"domain_scores_gemma":[0.9991966,0.00015887308,0.0002963784,0.000034856508,0.000119775454,0.00019355395],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014632786,0.00009425099,0.00013554379,0.00044498508,0.00034580895,0.00038696136,0.00030435986,0.0002150716,0.0008881781],"category_scores_gemma":[0.00054758025,0.00011873802,0.000111348476,0.00035826873,0.0003814655,0.000241841,0.00030438192,0.00023256971,0.00012180885],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002960474,0.000050024508,0.9929738,0.000016003713,0.000041045525,0.00009364695,0.0009937269,0.00014596726,0.0024355168,0.000030225585,0.00021274744,0.0027112768],"study_design_scores_gemma":[6.208132e-7,0.00001074695,0.99953556,0.0000017993455,0.0000031883287,0.000019306028,0.00030258895,0.00003584172,0.00003201545,0.0000019352526,0.000055584424,9.5059227e-7],"about_ca_topic_score_codex":0.45780048,"about_ca_topic_score_gemma":0.8280797,"teacher_disagreement_score":0.5421995,"about_ca_system_score_codex":0.001212783,"about_ca_system_score_gemma":0.00059956784,"threshold_uncertainty_score":0.9102716},"labels":[],"label_agreement":null},{"id":"W2052198764","doi":"10.1016/j.foreco.2013.10.008","title":"Converting native shrub forests to Chinese chestnut plantations and subsequent intensive management affected soil C and N pools","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":79,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Agronomy; Soil water; Chemistry; Soil carbon; Litter; Biomass (ecology); Understory; Total organic carbon; Soil organic matter; Shrub; Environmental science; Environmental chemistry; Botany; Biology; Soil science; Canopy","score_opus":0.00802351734668824,"score_gpt":0.21507999904614025,"score_spread":0.207056481699452,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2052198764","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994524,0.00003262115,0.000035510533,0.000007991336,0.0000020887403,0.00000417327,0.000018454677,0.0000030021117,0.00044364427],"genre_scores_gemma":[0.99931324,0.00004184774,0.00006714562,0.000029591572,0.0000018917584,0.00000520766,0.000042346557,0.0000021737533,0.0004965586],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99975103,0.000039473412,0.000015240723,0.0000677382,0.000026269196,0.000100240584],"domain_scores_gemma":[0.99968433,0.00004320889,0.00006763517,0.000023469423,0.000047279365,0.00013396145],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020969946,0.00047460763,0.0003276605,0.00034778815,0.00068948074,0.0005515681,0.00041238632,0.00029910918,0.001835776],"category_scores_gemma":[0.0003524463,0.0002002306,0.00030602913,0.0004463894,0.0006390452,0.00041775164,0.0005792969,0.00029878708,0.00012279337],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0019824016,0.000807617,0.5141633,0.00018076604,0.00038258205,0.002061816,0.0016550431,0.0017272346,0.45723447,0.00096067763,0.0004069459,0.018437177],"study_design_scores_gemma":[0.000015596239,0.000101573176,0.9951526,0.000002725549,0.00004024293,0.000102520375,0.00049921934,0.0007769077,0.0027967438,0.0001158514,0.00038850293,0.000007538835],"about_ca_topic_score_codex":0.03734584,"about_ca_topic_score_gemma":0.13482182,"teacher_disagreement_score":0.03734584,"about_ca_system_score_codex":0.0013145681,"about_ca_system_score_gemma":0.0014707288,"threshold_uncertainty_score":0.0742569},"labels":[],"label_agreement":null},{"id":"W2052408717","doi":"10.1016/j.foreco.2007.03.038","title":"A stand and landscape comparison of the effects of a spruce budworm (Choristoneura fumiferana (Clem.)) outbreak to the combined effects of harvesting and thinning on forest structure","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":41,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"","keywords":"Spruce budworm; Choristoneura fumiferana; Balsam; Clearcutting; Abies balsamea; Black spruce; Canopy; Forestry; Ecology; Yellow birch; Stand development; Taiga; Thinning; Geography; Tortricidae; Environmental science; Biology; Hardwood; Lepidoptera genitalia; Botany","score_opus":0.0033642491427932934,"score_gpt":0.2127917709865034,"score_spread":0.2094275218437101,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2052408717","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994369,0.000032549204,0.000041033076,0.000008446539,0.0000031153847,0.0000047438753,0.00010908156,0.0000030626422,0.00036105132],"genre_scores_gemma":[0.99919754,0.000023199564,0.00011803281,0.000018201144,0.0000029942503,0.0000052200985,0.00031759634,0.0000014577649,0.0003157999],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998857,0.000038361577,0.000005714531,0.000019705518,0.000018830808,0.000031728676],"domain_scores_gemma":[0.99949837,0.00014293575,0.00007876848,0.000023369475,0.00009422722,0.00016234553],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026677226,0.00018220062,0.00019235548,0.0003005135,0.0002369676,0.0003037885,0.00018722707,0.0002904033,0.0018145985],"category_scores_gemma":[0.0004112551,0.00007550726,0.00029668826,0.00024074315,0.00018858426,0.00016551983,0.00017151496,0.00024848845,0.000115118964],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.019227229,0.0070863734,0.66311616,0.00028086963,0.0014277926,0.0016671172,0.0003900659,0.014334297,0.24479094,0.0005532606,0.0017695781,0.04535641],"study_design_scores_gemma":[0.000099710116,0.0025474317,0.9907175,0.0000037276734,0.000111728616,0.0001388794,0.0001951816,0.002800062,0.0029204597,0.00009076008,0.00036340885,0.000011239189],"about_ca_topic_score_codex":0.013288779,"about_ca_topic_score_gemma":0.049232323,"teacher_disagreement_score":0.013288779,"about_ca_system_score_codex":0.00053937396,"about_ca_system_score_gemma":0.00020217242,"threshold_uncertainty_score":0.026422858},"labels":[],"label_agreement":null},{"id":"W2053116612","doi":"10.1016/j.foreco.2011.09.039","title":"The effects of triclopyr and glyphosate on lichens","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute; University of Guelph","funders":"Natural Sciences and Engineering Research Council of Canada; Ministry of Natural Resources","keywords":"Lichen; Triclopyr; Glyphosate; Abundance (ecology); Biology; Ecology; Botany; Agronomy","score_opus":0.008176220781868866,"score_gpt":0.17224713595192784,"score_spread":0.16407091517005898,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2053116612","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990381,0.00029756667,0.000022230512,0.000039228205,0.0000070259557,0.0000038048574,0.00007908385,0.000005224624,0.0005077558],"genre_scores_gemma":[0.99758816,0.00031687075,0.000090280606,0.000045200075,0.0000071790378,0.000005030096,0.00011664508,0.0000030287301,0.0018277597],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99982053,0.000047744972,0.0000144405,0.000023035442,0.000017615794,0.00007670817],"domain_scores_gemma":[0.999398,0.00016723487,0.0000879835,0.00002984591,0.00006726098,0.00024957498],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017995214,0.00033983012,0.0002959763,0.00016789639,0.00037365526,0.0003984286,0.00031562342,0.00038084236,0.0019769818],"category_scores_gemma":[0.00056557346,0.00017499126,0.0002512414,0.00020933349,0.0003637773,0.00039307127,0.00024609955,0.0003962655,0.00019835302],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.1241874,0.0032713893,0.030242579,0.0007649612,0.0004109725,0.0007511713,0.0013082139,0.004093201,0.77991456,0.0005056374,0.000991922,0.053558037],"study_design_scores_gemma":[0.0013924907,0.050240487,0.44576648,0.000119430486,0.0007411822,0.0006358422,0.0029507633,0.006574616,0.48518932,0.0005322623,0.0057461313,0.00011097949],"about_ca_topic_score_codex":0.015180891,"about_ca_topic_score_gemma":0.034333948,"teacher_disagreement_score":0.015180891,"about_ca_system_score_codex":0.0006281674,"about_ca_system_score_gemma":0.00050590775,"threshold_uncertainty_score":0.030185044},"labels":[],"label_agreement":null},{"id":"W2053678458","doi":"10.1016/j.foreco.2004.11.008","title":"Structural development following fire in black spruce boreal forest","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":122,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"","keywords":"Chronosequence; Basal area; Black spruce; Snag; Taiga; Stand development; Abundance (ecology); Ecology; Environmental science; Boreal; Fire regime; Forestry; Physical geography; Ecosystem; Geography; Biology; Habitat","score_opus":0.012720748867693464,"score_gpt":0.1974367165954625,"score_spread":0.18471596772776902,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2053678458","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996018,0.00003924712,0.0000140624215,0.000013256297,0.0000016582346,0.0000020641867,0.000061675055,0.0000010436156,0.0002651621],"genre_scores_gemma":[0.99952674,0.00002391992,0.000025609765,0.0000063364187,0.0000025418817,0.0000027330213,0.00011208705,6.667108e-7,0.00029946316],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983156,0.00002842728,0.000007896801,0.000026455024,0.000026473901,0.00007925755],"domain_scores_gemma":[0.9987281,0.00018366019,0.000420127,0.00004927239,0.00017050352,0.00044826692],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038104464,0.00014194078,0.00017228845,0.00072757946,0.0006085209,0.0006187577,0.0005363032,0.0005441391,0.0022142595],"category_scores_gemma":[0.0014903842,0.00015962096,0.00023448345,0.00037366984,0.00050582865,0.00040686756,0.000563951,0.0004844562,0.0002471379],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0015244789,0.0003743516,0.97714955,0.000027775204,0.00006724328,0.00036168136,0.0008777423,0.0005687762,0.008833868,0.00016056752,0.00023169183,0.009822395],"study_design_scores_gemma":[0.0000027434799,0.000063147534,0.99935323,0.0000013801083,0.0000031835275,0.000061541235,0.00023266608,0.00009841429,0.00010122204,0.000018334302,0.00006232203,0.0000019085767],"about_ca_topic_score_codex":0.034592003,"about_ca_topic_score_gemma":0.09738427,"teacher_disagreement_score":0.034592003,"about_ca_system_score_codex":0.0008078176,"about_ca_system_score_gemma":0.00043242882,"threshold_uncertainty_score":0.06878132},"labels":[],"label_agreement":null},{"id":"W2054056751","doi":"10.1016/j.foreco.2004.06.015","title":"Variation in stand mortality related to successional composition","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"","keywords":"Basal area; Ecology; Ecological succession; Biology; Biomass (ecology); Habitat","score_opus":0.0062179052874863664,"score_gpt":0.24489307917946898,"score_spread":0.23867517389198262,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2054056751","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995865,0.000040079525,0.00008084836,0.00001244408,0.000002656856,0.0000014132607,0.00007826227,0.0000038972476,0.00019397917],"genre_scores_gemma":[0.9995209,0.000012236325,0.0000480992,0.00000920485,0.0000037793136,0.0000014131141,0.00013726839,0.0000032471496,0.00026379255],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996619,0.00011159458,0.000022483586,0.00009585346,0.000032324468,0.00007582842],"domain_scores_gemma":[0.9967949,0.0013979713,0.00072220655,0.00024621782,0.0002945594,0.00054411445],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000844347,0.0001841101,0.00023790868,0.0009838116,0.00035355167,0.00039156072,0.00032713148,0.00047088496,0.0030511778],"category_scores_gemma":[0.0030839867,0.00019655112,0.00030242075,0.0005279122,0.0004390144,0.0002691818,0.00035133577,0.00054797967,0.00037078018],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00080342166,0.000091864866,0.981724,0.000011837349,0.0001062558,0.0001353477,0.00020927329,0.00024636934,0.013511171,0.00012705686,0.00010854325,0.0029249233],"study_design_scores_gemma":[0.000003009674,0.000040276827,0.99933136,8.025204e-7,0.0000070373007,0.00011451314,0.000043677865,0.0002087924,0.0001656367,0.000052329633,0.000030459978,0.000002019646],"about_ca_topic_score_codex":0.002345723,"about_ca_topic_score_gemma":0.007860209,"teacher_disagreement_score":0.0030511778,"about_ca_system_score_codex":0.00020155804,"about_ca_system_score_gemma":0.00017231012,"threshold_uncertainty_score":0.010207236},"labels":[],"label_agreement":null},{"id":"W2054119396","doi":"10.1016/j.foreco.2006.06.029","title":"The roles of nitrogen and phosphorus in increasing productivity of western hemlock and western redcedar plantations on northern Vancouver Island","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":43,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Western Forest Products; University of British Columbia","funders":"","keywords":"Tsuga; Western Hemlock; Human fertilization; Thuja; Biology; Productivity; Nutrient; Agronomy; Phosphorus; Botany; Ecology; Animal science; Chemistry","score_opus":0.0031576322766265538,"score_gpt":0.18654137729221315,"score_spread":0.1833837450155866,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2054119396","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99942255,0.000048728303,0.000012683215,0.000024823792,5.3313704e-7,0.0000012368329,0.000019045117,7.134672e-7,0.00046978027],"genre_scores_gemma":[0.9993292,0.000047058158,0.000045689914,0.000019202695,6.9144363e-7,0.0000018354215,0.000029191586,0.0000011007022,0.00052599027],"study_design_codex":"observational","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99979323,0.000048758837,0.000010406226,0.00003697654,0.00003996955,0.00007074681],"domain_scores_gemma":[0.99906963,0.00022288862,0.00012859308,0.00002021083,0.00021513856,0.0003435646],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00046011838,0.00017724335,0.00019525684,0.0006199075,0.0014960477,0.0012081267,0.0005807323,0.00043222954,0.00087443605],"category_scores_gemma":[0.0009310982,0.00027476126,0.00010849383,0.00053885987,0.0011134386,0.0003207744,0.00070453924,0.00039233806,0.00009597512],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00057210994,0.000096791,0.97566164,0.00004317596,0.00009057276,0.00056017825,0.002596364,0.00050088944,0.011592843,0.00039056354,0.00021937984,0.007675581],"study_design_scores_gemma":[0.00000775315,0.000018594497,0.9969586,0.0000057822167,0.000012291547,0.00006196575,0.0021146892,0.00028847647,0.00020104361,0.000058261758,0.00026939603,0.000003188226],"about_ca_topic_score_codex":0.7193777,"about_ca_topic_score_gemma":0.9586656,"teacher_disagreement_score":0.2806223,"about_ca_system_score_codex":0.0037172735,"about_ca_system_score_gemma":0.0025629655,"threshold_uncertainty_score":0.56454986},"labels":[],"label_agreement":null},{"id":"W2054876258","doi":"10.1016/j.foreco.2014.05.039","title":"Quantifying safe seed transfer distance and impacts of tree breeding on adaptation","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":64,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Forests","funders":"","keywords":"Adaptation (eye); Selection (genetic algorithm); Douglas fir; Tree (set theory); Biology; Ecology; Statistics; Environmental science; Agronomy; Mathematics; Botany; Computer science","score_opus":0.013227848677916479,"score_gpt":0.2177669333919824,"score_spread":0.2045390847140659,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2054876258","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9985886,0.000023598364,0.0009605786,0.000012855892,0.0000012897958,0.0000029546084,0.00004770857,0.00000952632,0.00035279154],"genre_scores_gemma":[0.9994155,0.000008588881,0.00040406498,0.0000062053655,8.9041276e-7,0.000002175643,0.00006198827,0.0000035709463,0.000097098986],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9988431,0.00050338503,0.000049818726,0.00025578594,0.00017739552,0.0001705116],"domain_scores_gemma":[0.9929933,0.0049448805,0.0008828272,0.0005284087,0.00027957858,0.00037093714],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0018870967,0.00034247607,0.00034362104,0.00057454733,0.00030327364,0.0007412798,0.0004910774,0.0006784827,0.0012940617],"category_scores_gemma":[0.007611552,0.00022119316,0.00049540255,0.00054807815,0.00048525084,0.0010426015,0.000687099,0.00048433564,0.0001665376],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00086490274,0.00044745315,0.9005351,0.000043785807,0.00039299778,0.00014393692,0.00017922056,0.057080876,0.016498463,0.0012386673,0.00015057382,0.022424037],"study_design_scores_gemma":[0.000017637461,0.00063143607,0.9274312,0.000007680014,0.0001558477,0.0001036809,0.00023723448,0.065293714,0.00438674,0.0014763105,0.00024006203,0.000018427176],"about_ca_topic_score_codex":0.004269473,"about_ca_topic_score_gemma":0.011144817,"teacher_disagreement_score":0.004269473,"about_ca_system_score_codex":0.0006092199,"about_ca_system_score_gemma":0.0004376061,"threshold_uncertainty_score":0.009980023},"labels":[],"label_agreement":null},{"id":"W2055293856","doi":"10.1016/j.foreco.2008.01.071","title":"Influence of fire intensity on structure and composition of jack pine stands in the boreal forest of Quebec: Live trees, understory vegetation and dead wood dynamics","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":80,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue","funders":"","keywords":"Understory; Black spruce; Ecological succession; Basal area; Coarse woody debris; Canopy; Taiga; Ecology; Stand development; Vegetation (pathology); Shade tolerance; Biology; Disturbance (geology); Biomass (ecology); Forestry; Geography; Habitat","score_opus":0.009575931492047931,"score_gpt":0.1847455612007327,"score_spread":0.17516962970868477,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2055293856","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99859005,0.00019983924,0.000050793336,0.000061740095,0.0000033082204,0.0000048825787,0.0005174851,0.000003881884,0.0005679271],"genre_scores_gemma":[0.99876046,0.00006425938,0.000054584307,0.000023134327,0.0000019077922,0.0000036528775,0.00031627918,0.0000026764044,0.0007730366],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997613,0.000056574972,0.000010824948,0.00004476285,0.000042426393,0.0000841449],"domain_scores_gemma":[0.99886644,0.00019084259,0.00018602109,0.000037162514,0.0003965374,0.00032309484],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004181622,0.00019125416,0.00022446067,0.00072699244,0.0008359234,0.00061599974,0.0006928157,0.00031450542,0.0025601718],"category_scores_gemma":[0.00097423774,0.00018264887,0.00023821238,0.0008576588,0.00055371306,0.000260492,0.00030732027,0.0003322503,0.00019006379],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00011977316,0.000031103536,0.99343103,0.000008986389,0.000067556735,0.00008500012,0.00037135926,0.00027243365,0.0010769905,0.000043202388,0.0004668266,0.0040257154],"study_design_scores_gemma":[0.0000016352462,0.0000035355054,0.99955577,0.0000023090379,0.000005531307,0.000011931819,0.00015402133,0.00015018664,0.000014739579,0.0000023609,0.00009621859,0.0000017778384],"about_ca_topic_score_codex":0.9811849,"about_ca_topic_score_gemma":0.9943929,"teacher_disagreement_score":0.0188151,"about_ca_system_score_codex":0.0074647903,"about_ca_system_score_gemma":0.0037417891,"threshold_uncertainty_score":0.05416113},"labels":[],"label_agreement":null},{"id":"W2055523817","doi":"10.1016/j.foreco.2013.10.039","title":"Forest recovery patterns in response to divergent disturbance regimes in the Border Lakes region of Minnesota (USA) and Ontario (Canada)","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":23,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Toronto; Université de Montréal","funders":"Minnesota Department of Natural Resources; U.S. Department of Agriculture","keywords":"Disturbance (geology); Ecoregion; Ecological succession; Forest dynamics; Ecology; Environmental science; Geography; Wilderness; Fire regime; Range (aeronautics); Forest management; Physical geography; Ecosystem; Agroforestry; Geology; Biology","score_opus":0.004705374693809906,"score_gpt":0.18476002389618912,"score_spread":0.1800546492023792,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2055523817","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99925846,0.0000606227,0.00001748573,0.000047242193,0.0000016560344,0.0000061943397,0.00030879283,0.0000012393381,0.00029827535],"genre_scores_gemma":[0.9987418,0.00006338104,0.000061467515,0.000030641495,0.0000015056089,0.0000074994678,0.0004783178,0.0000016401594,0.00061369996],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997557,0.000031292453,0.000015151898,0.000059262253,0.00004044442,0.00009824092],"domain_scores_gemma":[0.9990103,0.000080534264,0.00026581212,0.00003721316,0.00027270362,0.00033331855],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028943171,0.00013137874,0.0001924085,0.00066244864,0.0012886242,0.00077069295,0.00058693235,0.00030330895,0.00086186215],"category_scores_gemma":[0.0009974759,0.00020911923,0.00021081853,0.0010036387,0.0008423526,0.00025625844,0.0007369347,0.00030412927,0.00010386104],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017983065,0.000029321656,0.9931478,0.000015088285,0.000052399122,0.00009733107,0.0027430798,0.0001237175,0.0010018591,0.00007600956,0.0004544258,0.0020791532],"study_design_scores_gemma":[0.000001991833,0.0000043656128,0.9987764,0.0000034320444,0.0000044639946,0.000015478341,0.0009781672,0.00004195081,0.0000205663,0.000004043138,0.00014752807,0.0000015654456],"about_ca_topic_score_codex":0.96303433,"about_ca_topic_score_gemma":0.9947088,"teacher_disagreement_score":0.03696567,"about_ca_system_score_codex":0.006929917,"about_ca_system_score_gemma":0.0049601807,"threshold_uncertainty_score":0.07436669},"labels":[],"label_agreement":null},{"id":"W2055690468","doi":"10.1016/j.foreco.2011.12.004","title":"Geographic and temporal patterns in white spruce climate–growth relationships in Yukon, Canada","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":34,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia","funders":"","keywords":"Taiga; Climate change; Dendrochronology; Ecology; Dendroclimatology; Boreal; Geography; Physical geography; Snow; Elevation (ballistics); Environmental science; Biology","score_opus":0.012124984236248148,"score_gpt":0.19839828820135028,"score_spread":0.18627330396510214,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2055690468","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99862504,0.0001673328,0.000039235998,0.00007219489,0.0000034980606,0.0000036437298,0.00068216457,0.000004080951,0.0004028444],"genre_scores_gemma":[0.9985997,0.00012751762,0.00005650967,0.000025103962,0.0000014488979,0.0000037122395,0.00058412843,0.0000032515686,0.00059852836],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99971014,0.000025835458,0.000027075712,0.00006599882,0.000041143994,0.00012984015],"domain_scores_gemma":[0.998654,0.00015692372,0.00024880766,0.000047988553,0.000501096,0.0003911603],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036613186,0.00020104594,0.000245095,0.0010457628,0.0014206762,0.00081691827,0.0006266437,0.00030578676,0.0014207495],"category_scores_gemma":[0.00090176973,0.00019776456,0.00030279148,0.0025037548,0.0006524032,0.00032796274,0.0006060312,0.0003154312,0.00012813826],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008769537,0.000021169542,0.9944366,0.0000144845435,0.000058563186,0.00010069917,0.0011273235,0.00015488788,0.00063433324,0.00008127081,0.0003813026,0.0029016286],"study_design_scores_gemma":[0.0000021383903,0.000004147391,0.99838483,0.000004666533,0.000010439781,0.000024984263,0.0011685102,0.00009667193,0.000038305094,0.000008886606,0.00025233504,0.0000040993377],"about_ca_topic_score_codex":0.9820795,"about_ca_topic_score_gemma":0.99556583,"teacher_disagreement_score":0.017920494,"about_ca_system_score_codex":0.007554144,"about_ca_system_score_gemma":0.009171412,"threshold_uncertainty_score":0.05480939},"labels":[],"label_agreement":null},{"id":"W2056019141","doi":"10.1016/j.foreco.2011.10.045","title":"Responses of ground-dwelling spiders (Araneae) to variable retention harvesting practices in the boreal forest","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":47,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; University of Alberta","funders":"Northwestern University","keywords":"Deciduous; Biodiversity; Spider; Clearcutting; Habitat; Ecology; Environmental science; Taiga; Sustainable forest management; Boreal; Forest management; Species richness; Logging; Agroforestry; Biology","score_opus":0.06817531545279114,"score_gpt":0.23925637545968223,"score_spread":0.1710810600068911,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2056019141","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999033,0.000011061002,0.0000054991,0.0000033905703,7.797887e-7,8.7068076e-7,0.000014298145,4.4454333e-7,0.00006034522],"genre_scores_gemma":[0.9998179,0.000013190667,0.000024998779,0.000013499509,0.00000165596,0.0000025736708,0.000050071587,4.965592e-7,0.00007550684],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99980897,0.000058366903,0.000011317022,0.000050611725,0.000023474453,0.000047274396],"domain_scores_gemma":[0.99929476,0.00012983535,0.00024311256,0.000041252126,0.000052832518,0.00023812447],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031825036,0.00021040405,0.00020192891,0.00035186435,0.0003615299,0.0004541176,0.00021899663,0.00034092154,0.0009042805],"category_scores_gemma":[0.000732228,0.00016756245,0.00019346277,0.00020522163,0.00049463176,0.00027786085,0.00027314006,0.00035481818,0.0001250571],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007258773,0.0003537534,0.98186815,0.000017820743,0.000090967595,0.00010247191,0.0006647774,0.00011312478,0.012688002,0.000024559507,0.00008055932,0.0032698733],"study_design_scores_gemma":[0.0000028047643,0.00009018949,0.9995901,5.846776e-7,0.0000033193746,0.000027349373,0.0001712152,0.000041456926,0.00004490127,0.0000055052524,0.000021472031,0.0000011452596],"about_ca_topic_score_codex":0.010924739,"about_ca_topic_score_gemma":0.035807405,"teacher_disagreement_score":0.010924739,"about_ca_system_score_codex":0.00034366595,"about_ca_system_score_gemma":0.00014775997,"threshold_uncertainty_score":0.021722257},"labels":[],"label_agreement":null},{"id":"W2056740247","doi":"10.1016/j.foreco.2007.11.002","title":"Edge effects on epiphytic lichens in remnant stands of managed landscapes in the eastern boreal forest of Canada","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":43,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Sciences and Engineering Research Council; Université du Québec à Montréal","funders":"","keywords":"Lichen; Epiphyte; Taiga; Transect; Biomass (ecology); Riparian zone; Riparian forest; Ecology; Environmental science; Forestry; Geography; Habitat; Biology","score_opus":0.008386091950818988,"score_gpt":0.18351039260655172,"score_spread":0.17512430065573273,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2056740247","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99975294,0.00004334368,0.000005373211,0.000004006684,4.1588902e-7,6.166156e-7,0.00002427051,5.953831e-7,0.00016853564],"genre_scores_gemma":[0.99966645,0.000034018318,0.000020287984,0.000005148582,5.284974e-7,9.3437814e-7,0.000056576293,9.502354e-7,0.00021516425],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976677,0.000036911548,0.000008701938,0.0000309892,0.00004569323,0.00011098538],"domain_scores_gemma":[0.9990748,0.00014510826,0.00015980277,0.00003342143,0.00019511074,0.00039174015],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026151226,0.0001656801,0.00027889007,0.00046000764,0.0011104848,0.00071255025,0.00048113093,0.00022312069,0.001035879],"category_scores_gemma":[0.0007982487,0.00012217867,0.00014822805,0.0005394336,0.0006447048,0.0002835355,0.0005330564,0.00023065292,0.00007197321],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00070819265,0.00011229551,0.9880725,0.000024222369,0.000076989534,0.00019260505,0.0007676157,0.00046000554,0.0037646352,0.00009569458,0.00017451002,0.0055507408],"study_design_scores_gemma":[0.000002723447,0.000019708428,0.999263,0.00000291371,0.000008468442,0.000022587721,0.00047610802,0.00007942874,0.000047075057,0.000010638674,0.000065763714,0.0000015527608],"about_ca_topic_score_codex":0.6951268,"about_ca_topic_score_gemma":0.9554786,"teacher_disagreement_score":0.30487323,"about_ca_system_score_codex":0.0029539145,"about_ca_system_score_gemma":0.002175644,"threshold_uncertainty_score":0.6133374},"labels":[],"label_agreement":null},{"id":"W2056785404","doi":"10.1016/j.foreco.2013.03.022","title":"Tree species and diversity effects on soil water seepage in a tropical plantation","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"Deutsche Forschungsgemeinschaft","keywords":"Ecology; Tropical forest; Agroforestry; Diversity (politics); Species diversity; Environmental science; Tree (set theory); Geography; Tropics; Forestry; Biology; Mathematics","score_opus":0.00457004187452175,"score_gpt":0.16714880042075766,"score_spread":0.1625787585462359,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2056785404","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999001,0.000005627573,0.000007445894,0.0000038301173,2.3472718e-7,3.3894423e-7,0.0000145682625,4.868194e-7,0.00006728854],"genre_scores_gemma":[0.99986064,0.000009442553,0.000016729053,0.000003313466,7.187363e-7,8.4202867e-7,0.000024643476,8.379232e-7,0.00008286518],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998399,0.000054929045,0.000008299288,0.000027297365,0.000018027149,0.00005147043],"domain_scores_gemma":[0.9988643,0.00041846832,0.00018717132,0.000034070246,0.000052773354,0.00044323673],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036010979,0.00016433268,0.00020410036,0.0004851579,0.0005524273,0.0004363132,0.0002960872,0.00018411643,0.001984112],"category_scores_gemma":[0.00072478777,0.00016905929,0.00025816093,0.0004659515,0.0008074594,0.00037402287,0.00053255784,0.00025591956,0.00013381652],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00073982676,0.00026977377,0.97690874,0.000018121005,0.000116909265,0.00041243216,0.0009398064,0.0013969014,0.016069898,0.00025196714,0.00013048977,0.0027451054],"study_design_scores_gemma":[0.000006770108,0.00007154721,0.9978363,0.0000012701673,0.000017026834,0.00010810573,0.00055728806,0.00097190135,0.00032448006,0.000055162527,0.000045665445,0.0000045023994],"about_ca_topic_score_codex":0.02383155,"about_ca_topic_score_gemma":0.08510267,"teacher_disagreement_score":0.02383155,"about_ca_system_score_codex":0.0007729469,"about_ca_system_score_gemma":0.00043591097,"threshold_uncertainty_score":0.047385633},"labels":[],"label_agreement":null},{"id":"W2056794718","doi":"10.1016/j.foreco.2013.02.003","title":"Time matters: Temporally changing effects of planting schemes and insecticide treatment on native timber tree performance on former pasture","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":15,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"Smithsonian Tropical Research Institute","keywords":"Pasture; Sowing; Agroforestry; Tree (set theory); Agronomy; Biology; Ecology; Environmental science; Mathematics","score_opus":0.003498021311741854,"score_gpt":0.18269737701220432,"score_spread":0.17919935570046247,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2056794718","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984213,0.00021566801,0.00011927403,0.00020771055,0.000020709806,0.0000072782395,0.0002135096,0.0000063401953,0.0007881037],"genre_scores_gemma":[0.99797446,0.00008657521,0.00010108923,0.00016219265,0.00001677116,0.000008268998,0.00018120473,0.00001378657,0.001455737],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9990977,0.0003114936,0.000059220994,0.00025208978,0.00006186262,0.00021775416],"domain_scores_gemma":[0.9920551,0.0049001044,0.0013047649,0.00031839442,0.0003063605,0.0011151033],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0017823863,0.00028661106,0.00056074496,0.0004941176,0.0005122452,0.00141158,0.0008647079,0.0013547577,0.008191632],"category_scores_gemma":[0.005772828,0.0003392355,0.0006052508,0.0004568075,0.00072162604,0.001479037,0.00094417366,0.00087230396,0.000463748],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.026564572,0.0034160304,0.85641253,0.00018791985,0.00078913296,0.0006638831,0.0016876485,0.0019310719,0.077957936,0.0011256018,0.0015791821,0.027684499],"study_design_scores_gemma":[0.000037357335,0.0006980927,0.9962775,0.000016472259,0.00013861718,0.00005207259,0.0007444979,0.00064882037,0.00085058477,0.00014623422,0.0003763768,0.000013236338],"about_ca_topic_score_codex":0.010808421,"about_ca_topic_score_gemma":0.04487506,"teacher_disagreement_score":0.010808421,"about_ca_system_score_codex":0.0008146569,"about_ca_system_score_gemma":0.0007699567,"threshold_uncertainty_score":0.027403772},"labels":[],"label_agreement":null},{"id":"W2057352540","doi":"10.1016/j.foreco.2004.05.052","title":"Succession and resilience in boreal mixedwood plant communities 15–16 years after silvicultural site preparation","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":58,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia","funders":"","keywords":"Understory; Ecological succession; Species richness; Plant community; Boreal; Ecology; Vegetation (pathology); Biology; Forestry; Environmental science; Geography; Canopy","score_opus":0.004116005032975861,"score_gpt":0.2135646871602219,"score_spread":0.20944868212724604,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2057352540","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99985003,0.000016591424,0.000007994059,0.0000044594995,0.0000015785973,0.0000010273923,0.000031146,5.488363e-7,0.000086684],"genre_scores_gemma":[0.9997569,0.0000065433683,0.000011522431,0.0000036115928,0.000001230396,0.0000015484695,0.00007177707,3.1173556e-7,0.00014658867],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998745,0.000017184873,0.000007646153,0.000029240568,0.00000946927,0.00006207141],"domain_scores_gemma":[0.99926215,0.000079492944,0.00020635189,0.000047710164,0.00007825545,0.0003260258],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00044764686,0.00015254023,0.00016453055,0.00043551723,0.00049996446,0.00040614154,0.00021539441,0.00025092636,0.0013038601],"category_scores_gemma":[0.0010009087,0.000095779185,0.0002600406,0.0001782883,0.00032970577,0.00048358509,0.00048408713,0.0003105131,0.00019506128],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0024296266,0.0003486977,0.97805107,0.000012304924,0.00004944826,0.00031916896,0.00083804654,0.00020795774,0.011965367,0.000085408705,0.0001444275,0.005548383],"study_design_scores_gemma":[0.0000026313028,0.00014297102,0.9992836,0.0000013591938,0.0000049352266,0.000040397037,0.00018684783,0.000061366874,0.00020234342,0.000011022513,0.000061030816,0.0000015544775],"about_ca_topic_score_codex":0.011410509,"about_ca_topic_score_gemma":0.03171947,"teacher_disagreement_score":0.011410509,"about_ca_system_score_codex":0.0003757938,"about_ca_system_score_gemma":0.00027108303,"threshold_uncertainty_score":0.02268815},"labels":[],"label_agreement":null},{"id":"W2057651406","doi":"10.1016/j.foreco.2003.12.004","title":"Productivity of black spruce and Jack pine stands in Quebec as related to climate, site biological features and soil properties","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":56,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; McGill University; Université du Québec à Montréal","funders":"","keywords":"Black spruce; Environmental science; Taiga; Site index; Boreal; Productivity; Ecology; Forestry; Physical geography; Geography; Biology","score_opus":0.006547931516264773,"score_gpt":0.20382429444180203,"score_spread":0.19727636292553727,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2057651406","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9978594,0.00021622625,0.000053532618,0.00006987271,0.0000037440263,0.0000058650066,0.0010753749,0.0000062386066,0.0007097542],"genre_scores_gemma":[0.99713564,0.00010634564,0.00007917028,0.000038960337,0.000002570144,0.0000066260272,0.0007531939,0.000003766564,0.0018736649],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976295,0.00004424159,0.0000109566,0.000046810324,0.000046300807,0.00008875604],"domain_scores_gemma":[0.99876595,0.00022611319,0.00025071256,0.0000368372,0.00040200734,0.00031842125],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00042117783,0.00022337164,0.00023199167,0.0009441723,0.001290539,0.00081677706,0.0006617687,0.000350726,0.0026831885],"category_scores_gemma":[0.0011092415,0.00019961946,0.0002913181,0.0012730082,0.0006041215,0.00033683574,0.00035970783,0.00034256376,0.00026566128],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022244376,0.000043177995,0.9908214,0.00001725532,0.00009958012,0.00013198853,0.00072150695,0.00050156954,0.0010811072,0.0001342591,0.0011281963,0.005097444],"study_design_scores_gemma":[0.000005300132,0.00000913013,0.9989447,0.0000044852445,0.00000940375,0.00002368747,0.00027711646,0.00036233914,0.00003126928,0.000011003201,0.00031750233,0.0000041404146],"about_ca_topic_score_codex":0.9894348,"about_ca_topic_score_gemma":0.9967244,"teacher_disagreement_score":0.0122277215,"about_ca_system_score_codex":0.0122277215,"about_ca_system_score_gemma":0.004376978,"threshold_uncertainty_score":0.08871877},"labels":[],"label_agreement":null},{"id":"W2057742537","doi":"10.1016/j.foreco.2011.11.006","title":"Once burned, twice shy: Repeat fires reduce seed availability and alter substrate constraints on Picea mariana regeneration","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":194,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan","funders":"Natural Sciences and Engineering Research Council of Canada; Arctic Institute of North America","keywords":"Black spruce; Environmental science; Disturbance (geology); Ecosystem; Fire regime; Taiga; Climate change; Ecology; Regeneration (biology); Boreal; Vegetation (pathology); Forest restoration; Forest ecology; Biology","score_opus":0.012859833526356012,"score_gpt":0.20647206590807105,"score_spread":0.19361223238171504,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2057742537","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996408,0.000028306678,0.00006100118,0.0000143212865,0.000002606419,0.0000013588395,0.00001549335,0.000010981161,0.00022506506],"genre_scores_gemma":[0.9992748,0.000025036412,0.00016148044,0.000036522448,0.0000032239109,0.000008717187,0.00003786754,0.000020195943,0.0004323085],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998989,0.000015475624,0.000005388894,0.000043198095,0.000010245945,0.000026757183],"domain_scores_gemma":[0.9997079,0.000053870346,0.00006413719,0.000045380904,0.000013480784,0.00011522509],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017911076,0.0002768037,0.00031780952,0.0002683705,0.0004033925,0.00072000694,0.0005450589,0.00047055294,0.0024742868],"category_scores_gemma":[0.00041315125,0.00030632922,0.0002176386,0.00014233614,0.00043824565,0.00039433816,0.0006655107,0.00050653814,0.00025824562],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0032932346,0.0006518217,0.0858989,0.00016461658,0.0003261308,0.00026531372,0.00065430265,0.0016431849,0.8852598,0.00045658567,0.00037923013,0.021006998],"study_design_scores_gemma":[0.00011289828,0.00076575077,0.9675684,0.000017794138,0.00015552052,0.00023865898,0.00068604806,0.0032968218,0.025501646,0.00048859883,0.001138206,0.000029579485],"about_ca_topic_score_codex":0.003375464,"about_ca_topic_score_gemma":0.0136175,"teacher_disagreement_score":0.003375464,"about_ca_system_score_codex":0.0005508418,"about_ca_system_score_gemma":0.00026968247,"threshold_uncertainty_score":0.008277297},"labels":[],"label_agreement":null},{"id":"W2057846334","doi":"10.1016/j.foreco.2006.01.023","title":"Asymptotic size–density relationships within self-thinning black spruce and jack pine stand-types: Parameter estimation and model reformulations","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada","funders":"Ministry of Natural Resources","keywords":"Black spruce; Mathematics; Thinning; Statistics; Jackknife resampling; Type (biology); Taiga; Ecology; Biology; Estimator","score_opus":0.008392986156517698,"score_gpt":0.20601975785398843,"score_spread":0.19762677169747073,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2057846334","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.45933187,0.00030560506,0.5357783,0.00070067967,0.000017119044,0.00009445928,0.0005966783,0.00027571016,0.00289959],"genre_scores_gemma":[0.96053725,0.00023931457,0.03526196,0.00008738944,0.000038357066,0.00016458394,0.0008014765,0.000090148606,0.0027794633],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.99745625,0.0015392231,0.00012190055,0.00045334935,0.00021643449,0.00021292602],"domain_scores_gemma":[0.9244388,0.06880634,0.0019047874,0.0031588194,0.0013415779,0.00034958823],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.015757272,0.0005186497,0.0014942118,0.0015946582,0.00057870586,0.0016276583,0.0039899447,0.0016933518,0.00398784],"category_scores_gemma":[0.079057746,0.001123581,0.00221711,0.0013023695,0.0020622509,0.004859222,0.0015317431,0.0023422586,0.00040294765],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000265158,0.00015286422,0.03478024,0.00012899148,0.00018471786,0.0003314403,0.000707989,0.773152,0.0016426867,0.14916605,0.0016605735,0.03782726],"study_design_scores_gemma":[0.00002548753,0.000028871185,0.005641831,0.000018310597,0.00005324372,0.00013266038,0.00010295846,0.9275074,0.00037173813,0.06582277,0.00026157388,0.000033224416],"about_ca_topic_score_codex":0.008284011,"about_ca_topic_score_gemma":0.008383252,"teacher_disagreement_score":0.015757272,"about_ca_system_score_codex":0.0016248681,"about_ca_system_score_gemma":0.0010074467,"threshold_uncertainty_score":0.08333343},"labels":[],"label_agreement":null},{"id":"W2058069498","doi":"10.1016/s0378-1127(00)00615-0","title":"Short-term boron deficiency in a black spruce (Picea mariana [Mill.] B.S.P.) plantation","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Micronutrient Interactions and Effects","field":"Agricultural and Biological Sciences","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"Northwestern University","keywords":"Black spruce; Term (time); Boron; Environmental science; Forestry; Ecology; Botany; Biology; Chemistry; Geography; Taiga; Physics","score_opus":0.010946027548221,"score_gpt":0.21624391026325632,"score_spread":0.20529788271503532,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2058069498","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997888,0.00005036202,0.00003743826,0.000016258276,0.0000020598645,0.0000027990257,0.000056006786,0.000005042558,0.000041250485],"genre_scores_gemma":[0.9984718,0.00006239302,0.00020111346,0.000054553962,0.0000023178966,0.00001223651,0.00022905647,0.0000078919,0.00095859624],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998499,0.000026355132,0.000010221689,0.000048004433,0.000018741594,0.000046716097],"domain_scores_gemma":[0.99945503,0.00007168016,0.00008949431,0.000030277743,0.00004729919,0.00030617695],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019855036,0.00037515754,0.0005132777,0.0003190095,0.00059673213,0.00043495648,0.0006027521,0.000641021,0.0004980963],"category_scores_gemma":[0.00027344856,0.00026620337,0.00028012978,0.00020438175,0.00047993957,0.00038434027,0.00040488367,0.00090480875,0.00016478913],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0063715996,0.0017239179,0.017191077,0.00007365568,0.00007263376,0.00043930608,0.00033776113,0.0003271718,0.96967536,0.000060951108,0.00021216122,0.0035145911],"study_design_scores_gemma":[0.00058871834,0.02114314,0.6394045,0.000029589382,0.00040415837,0.0013096918,0.0024899845,0.008047171,0.3243561,0.00042714938,0.0016627148,0.00013708805],"about_ca_topic_score_codex":0.023459636,"about_ca_topic_score_gemma":0.040979527,"teacher_disagreement_score":0.023459636,"about_ca_system_score_codex":0.0010266027,"about_ca_system_score_gemma":0.0006231358,"threshold_uncertainty_score":0.046646178},"labels":[],"label_agreement":null},{"id":"W2059130396","doi":"10.1016/j.foreco.2011.03.013","title":"Modeling nitrogen uptake for hybrid poplar with and without weed competition","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant nutrient uptake and metabolism","field":"Agricultural and Biological Sciences","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan","funders":"Agriculture and Agri-Food Canada; Natural Sciences and Engineering Research Council of Canada","keywords":"Weed; Competition (biology); Nitrogen; Agronomy; Agroforestry; Environmental science; Weed control; Ecology; Biology; Botany; Chemistry","score_opus":0.023241025878234674,"score_gpt":0.19368894561879912,"score_spread":0.17044791974056445,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2059130396","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.994456,0.00015460489,0.0031561558,0.00017361573,0.000012580639,0.000009085255,0.00016539755,0.00004729256,0.0018253376],"genre_scores_gemma":[0.997375,0.000057143476,0.0011704317,0.000029402992,0.00000657139,0.000013475364,0.00008793118,0.000016227146,0.0012437218],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998234,0.000044536115,0.000007262753,0.000055434284,0.000017314065,0.00005210013],"domain_scores_gemma":[0.99906844,0.00068018836,0.00006509387,0.000022730208,0.00007955276,0.00008394845],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00064375985,0.00078755565,0.0009768198,0.0004482677,0.00058812683,0.0010473193,0.0014567156,0.0021381716,0.0015869046],"category_scores_gemma":[0.001341298,0.00056233164,0.0013763352,0.0006100903,0.0007068433,0.001083838,0.00044145528,0.00067535386,0.0001547424],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000120999,0.00007847617,0.0032673625,0.000028268913,0.000042639418,0.00007491292,0.000023832956,0.99269825,0.0022098322,0.00059091154,0.000095309275,0.000769123],"study_design_scores_gemma":[0.000018820718,0.000030635863,0.00092330907,9.233204e-7,0.000016373693,0.00001055233,0.000019708616,0.998381,0.00039165505,0.00015762285,0.000043466745,0.000005935964],"about_ca_topic_score_codex":0.10958292,"about_ca_topic_score_gemma":0.054621436,"teacher_disagreement_score":0.10958292,"about_ca_system_score_codex":0.002328879,"about_ca_system_score_gemma":0.0014999841,"threshold_uncertainty_score":0.2178902},"labels":[],"label_agreement":null},{"id":"W2059466119","doi":"10.1016/j.foreco.2004.07.037","title":"Selecting a small tree height growth model for mixed-species stands in the southern interior of British Columbia, Canada","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"","keywords":"Basal area; Tree (set theory); Competition (biology); Forestry; Site index; Vegetation (pathology); Geography; Ecology; Environmental science; Mathematics; Biology","score_opus":0.006439446528828617,"score_gpt":0.16888730365278956,"score_spread":0.16244785712396095,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2059466119","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9938408,0.00016431714,0.0038145704,0.00025726983,0.000015938082,0.000041295676,0.0005764426,0.000093126146,0.0011961034],"genre_scores_gemma":[0.9950545,0.00006741773,0.0025719407,0.00005134817,0.0000060435655,0.000023114322,0.0006222955,0.000034188033,0.001569245],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99950254,0.00018078726,0.000018874502,0.0001021749,0.00003669173,0.00015898705],"domain_scores_gemma":[0.9979929,0.0011302895,0.000100001525,0.00006364449,0.00038366215,0.00032946467],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002410934,0.00087085186,0.0010418766,0.0009998531,0.002048319,0.0021123367,0.0026119645,0.0010342218,0.002389959],"category_scores_gemma":[0.0037653726,0.00088890916,0.0007576603,0.00088301266,0.0007828388,0.000555941,0.00045937643,0.0010342224,0.0002317074],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00041215544,0.0002018136,0.059579138,0.00004476352,0.00016845955,0.00017186158,0.000113128925,0.9268305,0.00065189303,0.0012347917,0.0025920672,0.007999414],"study_design_scores_gemma":[0.00005974616,0.000018217082,0.01459192,0.000010525558,0.00004584402,0.000010111225,0.00013380942,0.9845388,0.000083355495,0.00029084913,0.00019996174,0.000016855714],"about_ca_topic_score_codex":0.95905024,"about_ca_topic_score_gemma":0.9749409,"teacher_disagreement_score":0.040949762,"about_ca_system_score_codex":0.013901248,"about_ca_system_score_gemma":0.013295622,"threshold_uncertainty_score":0.10086107},"labels":[],"label_agreement":null},{"id":"W2059661639","doi":"10.1016/j.foreco.2007.04.016","title":"Predicting the impacts of forest management on woodland caribou habitat suitability in black spruce boreal forest","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Laurentian University; Parks Canada; University of Guelph","funders":"Ministry of Natural Resources","keywords":"Woodland caribou; Habitat; Forest management; Taiga; Geography; Sustainable forest management; Logging; Boreal; Woodland; Ecology; Range (aeronautics); Environmental science; Forestry; Biology","score_opus":0.006930012307405657,"score_gpt":0.2198182077167911,"score_spread":0.21288819540938542,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2059661639","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99977595,0.000014923055,0.00006175579,0.000015646177,0.0000012647356,0.0000013483341,0.000025702258,0.0000036174117,0.000099735116],"genre_scores_gemma":[0.9996419,0.000019494195,0.0001294721,0.000007805614,0.0000016734031,0.0000022926781,0.0000895276,0.00000122336,0.00010648958],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9996804,0.0001500709,0.000017648297,0.000047089423,0.000034279856,0.000070540635],"domain_scores_gemma":[0.9990038,0.00055784517,0.00013847931,0.000039945226,0.000089112385,0.0001708692],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010721153,0.0004260462,0.00029596925,0.00041185357,0.0004355469,0.00081640895,0.00034218235,0.0004565783,0.00063338643],"category_scores_gemma":[0.0018100612,0.00021211882,0.00045729414,0.00030887767,0.00039051674,0.0004496301,0.00042626637,0.00033561926,0.0001006752],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000273806,0.0001470753,0.9744606,0.000010303534,0.000109515255,0.00010457815,0.00010475892,0.020379461,0.0011123389,0.000067580244,0.00016457269,0.0030653607],"study_design_scores_gemma":[0.000024957933,0.00024452704,0.92453784,0.0000061731816,0.000087757806,0.00007997118,0.0007609763,0.0731595,0.00068112026,0.00018035503,0.00022511272,0.0000116133815],"about_ca_topic_score_codex":0.089591414,"about_ca_topic_score_gemma":0.24606217,"teacher_disagreement_score":0.089591414,"about_ca_system_score_codex":0.0007263,"about_ca_system_score_gemma":0.00069674704,"threshold_uncertainty_score":0.17813987},"labels":[],"label_agreement":null},{"id":"W2059745596","doi":"10.1016/j.foreco.2014.02.041","title":"Comparative genetic responses to climate in the varieties of Pinus ponderosa and Pseudotsuga menziesii: Clines in growth potential","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":83,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Forests","funders":"","keywords":"Cline (biology); Provenance; Ecology; Climate change; Pinus <genus>; Variation (astronomy); Biology; Botany","score_opus":0.008675826034216556,"score_gpt":0.23263679084024577,"score_spread":0.22396096480602923,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2059745596","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99973565,0.000012400643,0.00002506435,0.0000040350783,5.456746e-7,0.0000019157876,0.000038293834,0.0000010297966,0.00018087908],"genre_scores_gemma":[0.99966335,0.000012199697,0.000042421874,0.0000059470467,8.950101e-7,0.0000051309644,0.00010362131,0.0000027128115,0.00016365349],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997764,0.00006409322,0.000013328176,0.00008820916,0.00002973403,0.000028291408],"domain_scores_gemma":[0.99937385,0.00020986891,0.00014324597,0.000035189547,0.000069717906,0.00016819002],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028282247,0.00027921278,0.00022498476,0.0015102121,0.0005243564,0.00040256945,0.00038858788,0.00029000294,0.0012515105],"category_scores_gemma":[0.00065074797,0.0002970936,0.0001994878,0.0007283943,0.0006980644,0.0002844141,0.0007859295,0.0004431023,0.0001373646],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002696739,0.00042744237,0.62737733,0.00009156621,0.00039395792,0.00043068454,0.0058396095,0.00082297355,0.3524578,0.0009021584,0.00014725779,0.008412562],"study_design_scores_gemma":[0.0000100164425,0.00006083231,0.9986386,0.0000022380887,0.000014080069,0.00007519937,0.00034546974,0.00021821026,0.000492365,0.000055140317,0.00008278459,0.0000051508127],"about_ca_topic_score_codex":0.005745099,"about_ca_topic_score_gemma":0.019096533,"teacher_disagreement_score":0.005745099,"about_ca_system_score_codex":0.0005975654,"about_ca_system_score_gemma":0.00018216153,"threshold_uncertainty_score":0.011423349},"labels":[],"label_agreement":null},{"id":"W2060361222","doi":"10.1016/j.foreco.2010.01.052","title":"Modelling primary branch frequency and size for five conifer species in Maine, USA","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":25,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"","keywords":"Abies balsamea; Balsam; Tsuga; Crown (dentistry); Range (aeronautics); Western Hemlock; Biology; Botany; Red pine; Thuja; Ecology; Pinus <genus>; Forestry; Geography","score_opus":0.006353149085335132,"score_gpt":0.19518683057302716,"score_spread":0.18883368148769203,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2060361222","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99886584,0.00003097896,0.0002918104,0.000059754304,0.0000023097537,0.0000036639603,0.0003071677,0.000023746734,0.000414893],"genre_scores_gemma":[0.99837685,0.000025468498,0.0005570965,0.000017180664,0.000002054115,0.000008779152,0.0004689512,0.000010731604,0.00053298066],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99981314,0.000062000276,0.000005507106,0.000061505,0.000013242458,0.00004470877],"domain_scores_gemma":[0.9982521,0.0013067009,0.00008762536,0.000063717926,0.00014933023,0.00014057565],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00079418946,0.0005382267,0.00053696154,0.0005221196,0.0007790312,0.00089466164,0.0014321854,0.0014611662,0.001870498],"category_scores_gemma":[0.001779345,0.0006623694,0.00090454717,0.00061475456,0.00050351146,0.0007953838,0.00039139352,0.000622007,0.00017735001],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025345417,0.00020996787,0.19059502,0.000035678113,0.00019703993,0.00023336115,0.00022756783,0.8013717,0.001157671,0.00048721177,0.0015954003,0.003635915],"study_design_scores_gemma":[0.000043259723,0.00006844724,0.08628253,0.000008470024,0.00005555733,0.000038571958,0.00019919673,0.9124417,0.00027132744,0.00024819153,0.0003250351,0.000017726852],"about_ca_topic_score_codex":0.29433686,"about_ca_topic_score_gemma":0.44223863,"teacher_disagreement_score":0.29433686,"about_ca_system_score_codex":0.0025399693,"about_ca_system_score_gemma":0.0009793373,"threshold_uncertainty_score":0.5852473},"labels":[],"label_agreement":null},{"id":"W2060626627","doi":"10.1016/s0378-1127(02)00184-6","title":"Potential productivity of three interior subalpine forest tree species in British Columbia","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Forestry; University of British Columbia","funders":"U.S. Forest Service","keywords":"Picea engelmannii; Pinus contorta; Site index; Abies lasiocarpa; Subalpine forest; Environmental science; Forestry; Productivity; Edaphic; Ecology; Geography; Biology; Montane ecology; Soil water","score_opus":0.004910802612795061,"score_gpt":0.17645835969722895,"score_spread":0.1715475570844339,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2060626627","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99879754,0.000060069942,0.000017046894,0.000011185076,4.0852677e-7,0.0000036867937,0.00017529471,0.0000017868937,0.0009331619],"genre_scores_gemma":[0.9987257,0.00006757444,0.000060898165,0.00000945563,2.4643714e-7,0.000004290116,0.00021374464,0.0000013972748,0.0009166228],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997769,0.00002877468,0.0000112793805,0.000036729813,0.00004997737,0.00009632674],"domain_scores_gemma":[0.9992441,0.00010095937,0.00008386662,0.000027410162,0.00024211529,0.00030157145],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025715987,0.00025004652,0.0002972939,0.00144658,0.002073055,0.0013029254,0.0006851798,0.00028148928,0.0017795269],"category_scores_gemma":[0.00085174164,0.00021251358,0.00014436817,0.0017733164,0.0007291207,0.00027601208,0.000803518,0.00031256487,0.0002309729],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002770201,0.00006010581,0.9769787,0.000040488205,0.000052856198,0.00048618892,0.002934997,0.0005259904,0.0041663614,0.00026156372,0.00052075763,0.013694893],"study_design_scores_gemma":[0.0000042686506,0.000010791137,0.99640477,0.0000074162504,0.000012792057,0.00007008677,0.0024240506,0.00037822445,0.00017086421,0.00004218197,0.00046827688,0.0000063839343],"about_ca_topic_score_codex":0.9333455,"about_ca_topic_score_gemma":0.9911964,"teacher_disagreement_score":0.0666545,"about_ca_system_score_codex":0.0072432724,"about_ca_system_score_gemma":0.0030446823,"threshold_uncertainty_score":0.13409406},"labels":[],"label_agreement":null},{"id":"W2060773447","doi":"10.1016/j.foreco.2010.11.012","title":"Using a spatiotemporal climate model to assess population-level Douglas-fir growth sensitivity to climate change across large climatic gradients in British Columbia, Canada","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":35,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia; University of Northern British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; National Oceanic and Atmospheric Administration; U.S. Department of Commerce","keywords":"Climate change; Precipitation; Douglas fir; Climate sensitivity; Environmental science; Range (aeronautics); Population; Productivity; Physical geography; Dendrochronology; Ecology; Geography; Provenance; Climatology; Climate model; Biology; Forestry; Meteorology; Geology","score_opus":0.04450798875478095,"score_gpt":0.272055648672773,"score_spread":0.22754765991799203,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2060773447","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99819046,0.000057273646,0.00031389072,0.000103073304,0.000005150516,0.000009325338,0.0007141692,0.0000227509,0.0005838918],"genre_scores_gemma":[0.99836963,0.000058600897,0.00044195002,0.000021714779,0.0000014540866,0.00000760177,0.0005535405,0.0000074609834,0.00053820154],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99975854,0.00005151687,0.000017130915,0.000073111376,0.000026033784,0.000073662464],"domain_scores_gemma":[0.9991008,0.00029117372,0.00008488213,0.000052999323,0.000328848,0.00014133044],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007398221,0.00037392054,0.00036917973,0.00056972617,0.0016150606,0.0013597038,0.0011408139,0.00053700246,0.0012798388],"category_scores_gemma":[0.0026914428,0.00042796685,0.00042832093,0.0011505932,0.0005003981,0.00045047185,0.00045135492,0.00054371654,0.00013987035],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00033129248,0.00021600058,0.5920243,0.00004178835,0.00034627694,0.00018222017,0.00033755324,0.39344567,0.0012574061,0.0008434225,0.0020090218,0.008965005],"study_design_scores_gemma":[0.00009255116,0.000033306984,0.3148547,0.000021690761,0.00015482577,0.00003837268,0.00078315363,0.68213755,0.00036520144,0.00037289163,0.0010913954,0.000054455628],"about_ca_topic_score_codex":0.9952272,"about_ca_topic_score_gemma":0.9961125,"teacher_disagreement_score":0.021246364,"about_ca_system_score_codex":0.021246364,"about_ca_system_score_gemma":0.012911949,"threshold_uncertainty_score":0.15415388},"labels":[],"label_agreement":null},{"id":"W2061020557","doi":"10.1016/j.foreco.2010.11.015","title":"An ecosystem approach to biodiversity effects: Carbon pools in a tropical tree plantation","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":71,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"","keywords":"Topsoil; Monoculture; Biomass (ecology); Litter; Biodiversity; Environmental science; Ecosystem; Soil respiration; Agronomy; Soil carbon; Plant litter; Species diversity; Ecology; Biology; Soil water","score_opus":0.007856305031337104,"score_gpt":0.18389623056821067,"score_spread":0.17603992553687356,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2061020557","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9642751,0.0013322459,0.0152838705,0.001974789,0.000043120683,0.00005077637,0.0002539596,0.00002565882,0.016760536],"genre_scores_gemma":[0.995404,0.000413862,0.002770813,0.000075386146,0.000023614135,0.000019391606,0.000019684903,0.000008403186,0.0012649306],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9997968,0.000112533824,0.000009080859,0.000027699982,0.000021631648,0.00003237184],"domain_scores_gemma":[0.99961287,0.00020140533,0.000035663637,0.000018967352,0.000048176018,0.00008303884],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005816921,0.00037634323,0.00035036023,0.0009910006,0.0007997288,0.0016917395,0.0010181755,0.0005661894,0.0042513395],"category_scores_gemma":[0.0011418533,0.00027272475,0.00060769415,0.001126362,0.0013108316,0.0016256014,0.001277174,0.0005173386,0.00008012467],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005706016,0.0007321679,0.23796108,0.00073188165,0.00086551753,0.002920891,0.0025602677,0.3813366,0.021770267,0.27285105,0.0028797311,0.07481991],"study_design_scores_gemma":[0.000110999725,0.0005872991,0.30217865,0.0001079574,0.00060216786,0.001647422,0.0063938554,0.48941463,0.00344161,0.18836156,0.007046595,0.00010728442],"about_ca_topic_score_codex":0.024945728,"about_ca_topic_score_gemma":0.06123249,"teacher_disagreement_score":0.024945728,"about_ca_system_score_codex":0.001926686,"about_ca_system_score_gemma":0.0016350782,"threshold_uncertainty_score":0.049601078},"labels":[],"label_agreement":null},{"id":"W2061167619","doi":"10.1016/j.foreco.2008.06.028","title":"Stem form variations in the natural stands of major commercial softwoods in eastern Canada","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":24,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"FPInnovations","funders":"FPInnovations","keywords":"Balsam; Abies balsamea; Diameter at breast height; Basal area; Softwood; Botany; Horticulture; Black spruce; Jack pine; Pinus <genus>; Forestry; Choristoneura fumiferana; Biology; Taiga; Spruce budworm; Geography; PEST analysis","score_opus":0.00733039691050935,"score_gpt":0.19623889054516427,"score_spread":0.18890849363465492,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2061167619","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99914,0.00006302271,0.000026688906,0.000009418504,7.810504e-7,0.0000027624017,0.00021820223,0.0000021132653,0.0005369551],"genre_scores_gemma":[0.9988889,0.00003980401,0.00005696253,0.00000790022,4.930124e-7,0.000002291786,0.00025537406,0.0000023402547,0.0007459068],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999754,0.000019094652,0.000009637521,0.00005059263,0.000070716516,0.00009596877],"domain_scores_gemma":[0.9992119,0.00008334964,0.00008102203,0.000020998334,0.00039042247,0.00021229907],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021985044,0.00016966439,0.00022762794,0.001137287,0.0014932213,0.0008826349,0.00054446544,0.00020267365,0.0015257202],"category_scores_gemma":[0.0006544658,0.00017635661,0.00015546741,0.0016644447,0.00084383506,0.00022786573,0.0004693696,0.00021843234,0.00018066219],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017127143,0.000040741135,0.9814679,0.000018918943,0.000042804182,0.00016945422,0.0023076176,0.0002390166,0.004185044,0.00021023434,0.000501071,0.010646012],"study_design_scores_gemma":[0.0000013112242,0.000005033852,0.99876547,0.0000025217398,0.0000033811095,0.000031353986,0.00078781275,0.00011419677,0.00007041158,0.000012645489,0.00020348595,0.0000023275998],"about_ca_topic_score_codex":0.9639078,"about_ca_topic_score_gemma":0.9959615,"teacher_disagreement_score":0.03609222,"about_ca_system_score_codex":0.008290085,"about_ca_system_score_gemma":0.0047857733,"threshold_uncertainty_score":0.072609484},"labels":[],"label_agreement":null},{"id":"W2061516707","doi":"10.1016/j.foreco.2014.12.004","title":"Long-term trends in radial growth associated with Nothofagus pumilio forest decline in Patagonia: Integrating local- into regional-scale patterns","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":46,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Western University","funders":"Consejo Nacional de Investigaciones Científicas y Técnicas; Inter-American Institute for Global Change Research; National Science Foundation","keywords":"Dendrochronology; Basal area; Old-growth forest; Nothofagus; Ecology; Fagaceae; Geography; Biology","score_opus":0.009318750346009744,"score_gpt":0.2211164897576309,"score_spread":0.21179773941162117,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2061516707","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994041,0.00003513729,0.000030584484,0.000025486097,0.0000015190756,0.0000017654233,0.00023839479,0.0000030793083,0.00025985186],"genre_scores_gemma":[0.9995523,0.00002326078,0.00003007285,0.000009717624,0.0000021143753,0.0000038469902,0.00023887488,0.0000013847409,0.0001383264],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999049,0.00001514331,0.0000051216425,0.000032007523,0.000009775391,0.000033051496],"domain_scores_gemma":[0.9995453,0.00006127924,0.00020261154,0.000031667005,0.00008203565,0.000077266115],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020197763,0.00010388591,0.00014602023,0.00048173833,0.00020986688,0.0003518882,0.00029083304,0.00022987528,0.00068816985],"category_scores_gemma":[0.0006214997,0.00010913819,0.00012430534,0.00052991166,0.00026079416,0.0002571611,0.00033719977,0.00021840069,0.00011902494],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019955187,0.000031890562,0.99342006,0.00001322877,0.000046450084,0.000069653135,0.00044232656,0.0002764918,0.0021293138,0.000030494304,0.00024771097,0.0030927411],"study_design_scores_gemma":[9.216722e-7,0.0000074537893,0.9997173,8.603942e-7,0.000002891627,0.000008290329,0.00010968755,0.000072593066,0.000022353617,0.0000040286177,0.000053044318,5.607385e-7],"about_ca_topic_score_codex":0.06441018,"about_ca_topic_score_gemma":0.12659726,"teacher_disagreement_score":0.06441018,"about_ca_system_score_codex":0.00061551324,"about_ca_system_score_gemma":0.00021427395,"threshold_uncertainty_score":0.12807053},"labels":[],"label_agreement":null},{"id":"W2061750676","doi":"10.1016/j.foreco.2005.10.041","title":"Behavior of major insect pollinators of teak (Tectona grandis L. f.): A comparison of clonal seed orchard versus wild trees","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant and animal studies","field":"Agricultural and Biological Sciences","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Victoria","funders":"","keywords":"Pollinator; Biology; Pollination; Inflorescence; Foraging; Pollen; Orchard; Botany; Stingless bee; Horticulture; Ecology; Apidae; Hymenoptera","score_opus":0.035187056835079986,"score_gpt":0.24187032770538416,"score_spread":0.2066832708703042,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2061750676","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998698,0.00001882577,0.000007295774,0.0000027343215,3.9848868e-7,0.0000011894258,0.00001971169,8.0728483e-7,0.000079179285],"genre_scores_gemma":[0.99923337,0.000029111001,0.000071081624,0.000020535212,0.0000010150578,0.000003461921,0.000106559004,0.000001617183,0.0005332502],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99994636,0.000013170738,0.0000026554433,0.000018269253,0.000007769914,0.000011813213],"domain_scores_gemma":[0.9997936,0.000041447416,0.0000491067,0.000011096183,0.000022162134,0.000082620376],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013381077,0.00011290315,0.0001267519,0.00024067798,0.00023831803,0.0002025029,0.00011938858,0.0001866467,0.0010123372],"category_scores_gemma":[0.00022143454,0.000072643576,0.000088817134,0.00008210342,0.0001826454,0.00017909713,0.00015799736,0.0001680048,0.00013055251],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0015032383,0.0007405813,0.6013209,0.00007803317,0.00007840773,0.00035384702,0.0016974584,0.00011190087,0.38359421,0.00009131437,0.00027099025,0.010159059],"study_design_scores_gemma":[0.000004584621,0.00023290611,0.9983741,0.0000011190249,0.00000845539,0.00008186424,0.00019064432,0.00007754143,0.000955287,0.000004666563,0.00006626129,0.0000025201316],"about_ca_topic_score_codex":0.006063149,"about_ca_topic_score_gemma":0.02844455,"teacher_disagreement_score":0.006063149,"about_ca_system_score_codex":0.00029190027,"about_ca_system_score_gemma":0.00010701005,"threshold_uncertainty_score":0.012055755},"labels":[],"label_agreement":null},{"id":"W2062153053","doi":"10.1016/s0378-1127(00)00468-0","title":"The impact of vine maple on site fertility of coastal temperate forests","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Simon Fraser University","funders":"","keywords":"Vine; Temperate climate; Maple; Temperate forest; Temperate rainforest; Ecology; Geography; Environmental science; Agroforestry; Forestry; Biology; Ecosystem","score_opus":0.006017391764489443,"score_gpt":0.23174011451031348,"score_spread":0.22572272274582403,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2062153053","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993043,0.00006410512,0.000010767163,0.000024480732,9.648157e-7,9.648461e-7,0.000067165194,8.824001e-7,0.00052643835],"genre_scores_gemma":[0.9996043,0.000051354906,0.000016846472,0.000007895564,0.0000016722425,0.0000011140484,0.00005611898,0.0000013101009,0.00025941408],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99970067,0.00011469265,0.000016001324,0.000034973047,0.00003806911,0.00009570373],"domain_scores_gemma":[0.99786806,0.0007575471,0.00050023175,0.00014380127,0.00026812323,0.00046222596],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006226277,0.00014700965,0.00019721773,0.00045393797,0.00052488194,0.0008401229,0.0004959494,0.0003142773,0.0028506117],"category_scores_gemma":[0.002438763,0.00013592599,0.00022894502,0.00052121084,0.0005767868,0.00042133627,0.0006835896,0.00023590021,0.00019964422],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000451341,0.00007918294,0.9899597,0.00003299017,0.00009009928,0.00028214394,0.00036155139,0.00065162533,0.0027084644,0.0002630044,0.00018421508,0.0049355766],"study_design_scores_gemma":[0.0000025986046,0.000032675423,0.99924374,0.000002344131,0.000007925964,0.00003813003,0.00030462435,0.00013923594,0.00007672587,0.000033000928,0.00011764964,0.0000014099105],"about_ca_topic_score_codex":0.040456384,"about_ca_topic_score_gemma":0.14822745,"teacher_disagreement_score":0.040456384,"about_ca_system_score_codex":0.0009971918,"about_ca_system_score_gemma":0.0005692705,"threshold_uncertainty_score":0.08044183},"labels":[],"label_agreement":null},{"id":"W2063670617","doi":"10.1016/j.foreco.2011.12.019","title":"Temperatures experienced by wood-boring beetles in the under-bark microclimate","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":51,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Western University; Natural Resources Canada; University of Waterloo","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Microclimate; Deciduous; Bark (sound); Overwintering; Environmental science; Fraxinus; Air temperature; Ecology; Biology; Geography; Botany; Meteorology","score_opus":0.006409337291136799,"score_gpt":0.22107876777006,"score_spread":0.2146694304789232,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2063670617","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997507,0.000020915975,0.0000147498085,0.0000057917287,0.0000016990263,9.834334e-7,0.000030175961,8.6130547e-7,0.000174062],"genre_scores_gemma":[0.99969876,0.00001847284,0.00002629672,0.0000104661995,0.0000039088823,0.0000023128416,0.00006423614,0.0000017990728,0.00017379389],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999354,0.0000132498635,0.000002941022,0.00001726846,0.0000055144906,0.000025655441],"domain_scores_gemma":[0.9997392,0.000047996695,0.00006141031,0.000011008288,0.000026767202,0.00011361775],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000120373494,0.00015339453,0.00025743438,0.00030238298,0.00030560145,0.00053122506,0.00009996072,0.0002645671,0.0012199653],"category_scores_gemma":[0.00038990035,0.00014243768,0.0001157435,0.00016368071,0.0002910996,0.00035202104,0.00025859525,0.00032384097,0.00021966833],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0040423456,0.00032743922,0.8784647,0.000038741324,0.00007265633,0.00018531145,0.0019020345,0.0004048165,0.10739839,0.000102329046,0.00043105194,0.0066302205],"study_design_scores_gemma":[0.000002743788,0.000099075056,0.9988299,0.0000014503394,0.0000075448525,0.00003822617,0.0002830137,0.00014247312,0.0005081995,0.000010450843,0.00007429896,0.000002656506],"about_ca_topic_score_codex":0.0047392133,"about_ca_topic_score_gemma":0.013236592,"teacher_disagreement_score":0.0047392133,"about_ca_system_score_codex":0.0002478321,"about_ca_system_score_gemma":0.00010583409,"threshold_uncertainty_score":0.009423256},"labels":[],"label_agreement":null},{"id":"W2063790838","doi":"10.1016/j.foreco.2009.08.035","title":"Ponderosa pine mortality during a severe bark beetle (Coleoptera: Curculionidae, Scolytinae) outbreak in southern British Columbia and implications for wildlife habitat management","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia","funders":"","keywords":"Snag; Bark beetle; Curculionidae; Habitat; Ecology; Mountain pine beetle; Dendroctonus; Wildlife; Geography; Basal area; Bark (sound); Salvage logging; Range (aeronautics); Biology; Forestry; Forest management","score_opus":0.006467179737074697,"score_gpt":0.21528660464706315,"score_spread":0.20881942490998845,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2063790838","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991296,0.00007613686,0.000010984791,0.00009398501,0.000005344581,0.0000075284615,0.00019035423,0.0000026390942,0.0004833963],"genre_scores_gemma":[0.99892056,0.00012628091,0.000019258578,0.00006948263,0.0000045381353,0.000007969401,0.00022868917,0.000001037217,0.0006222522],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977905,0.000023933626,0.000011715175,0.000030556155,0.00004400569,0.00011075919],"domain_scores_gemma":[0.9991155,0.00006665719,0.00018891544,0.000015558167,0.0002625131,0.00035083102],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025657847,0.00029685802,0.00020882713,0.00061557983,0.001874412,0.0007671356,0.00045759045,0.0006128755,0.0012229531],"category_scores_gemma":[0.0009263376,0.00029721254,0.0001451104,0.0007602126,0.0007673776,0.0003623741,0.00059488346,0.000932151,0.00016734976],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00036748324,0.0001447415,0.99024767,0.000025829464,0.000052397856,0.0006156802,0.0020344404,0.00019793987,0.0010704948,0.00002149889,0.001130929,0.0040910244],"study_design_scores_gemma":[0.0000030742917,0.00001750482,0.9983175,0.000005471952,0.000006174853,0.000037018777,0.0014147757,0.00004812075,0.000026381676,0.00000427188,0.00011673671,0.0000030417193],"about_ca_topic_score_codex":0.9187418,"about_ca_topic_score_gemma":0.98017395,"teacher_disagreement_score":0.08125818,"about_ca_system_score_codex":0.006949535,"about_ca_system_score_gemma":0.0040928754,"threshold_uncertainty_score":0.16347343},"labels":[],"label_agreement":null},{"id":"W2064384541","doi":"10.1016/j.foreco.2010.08.032","title":"Response of aspen stands to forest tent caterpillar defoliation and subsequent overstory mortality in northeastern Ontario, Canada","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":50,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ontario Forest Research Institute","funders":"Canadian Forest Service","keywords":"Understory; Canopy; Dominance (genetics); Biology; Stand development; Thinning; Basal area; Woody plant; Hardwood; Forestry; Ecology; Agronomy; Geography","score_opus":0.005167799427516376,"score_gpt":0.1943527100635187,"score_spread":0.18918491063600232,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2064384541","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9983448,0.00011150708,0.000018302531,0.00007708166,0.000004849401,0.000005855851,0.00046629718,0.0000018674277,0.00096939754],"genre_scores_gemma":[0.99759007,0.00012410755,0.00003991419,0.000046117508,0.000002217803,0.000004311333,0.00036530502,0.0000017758081,0.0018262187],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997799,0.000018847391,0.000010679175,0.000033065935,0.000053788855,0.00010373265],"domain_scores_gemma":[0.99869615,0.00009745039,0.00021671427,0.000025865975,0.00049486937,0.00046895936],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027077226,0.00014306125,0.00020786625,0.00049557374,0.0016536808,0.00070627773,0.00054110674,0.00026836383,0.0017058126],"category_scores_gemma":[0.00090999977,0.00017661054,0.00021305915,0.0007165884,0.00047937993,0.00020733754,0.0003784351,0.00034318972,0.000178407],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023542716,0.000048424296,0.99330854,0.000015083907,0.000040251878,0.00014174203,0.0012539123,0.0002108529,0.00083166786,0.000059435457,0.0009823587,0.0028723709],"study_design_scores_gemma":[0.0000029980858,0.000008167857,0.99873954,0.0000044159165,0.000004437679,0.000017794804,0.0007897285,0.00007875335,0.000030520514,0.000007648181,0.00031383705,0.0000021904655],"about_ca_topic_score_codex":0.9906219,"about_ca_topic_score_gemma":0.9983872,"teacher_disagreement_score":0.013319921,"about_ca_system_score_codex":0.013319921,"about_ca_system_score_gemma":0.009598354,"threshold_uncertainty_score":0.09664327},"labels":[],"label_agreement":null},{"id":"W2064971647","doi":"10.1016/j.foreco.2011.06.016","title":"Determinism versus chance in canopy gap herbaceous species assemblages in temperate Abies–Betula forests","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"McGill University; Northwestern University","keywords":"Herbaceous plant; Canopy; Temperate forest; Temperate climate; Temperate rainforest; Ecology; Geography; Environmental science; Forestry; Biology; Ecosystem","score_opus":0.02460055967205188,"score_gpt":0.23620737122195495,"score_spread":0.21160681154990307,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2064971647","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99979156,0.000030455178,0.000044481723,0.0000065519753,7.9838196e-7,5.6592864e-7,0.000008099533,7.0361614e-7,0.000116787945],"genre_scores_gemma":[0.9999336,0.0000047548633,0.000019328585,0.0000019183171,0.0000013122772,4.7477425e-7,0.000009979961,4.2813036e-7,0.00002816211],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99943393,0.00019173879,0.000038354377,0.00017488627,0.00007121206,0.00008977733],"domain_scores_gemma":[0.9969331,0.0015507753,0.00072353764,0.00020686243,0.00009409238,0.00049162353],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011309044,0.00010874075,0.00030947663,0.000808134,0.00077757007,0.0008727026,0.00029679944,0.0003272681,0.0013454466],"category_scores_gemma":[0.003799836,0.00027203996,0.00017684493,0.0003002148,0.0010682706,0.0004907673,0.00078835787,0.00037138312,0.00008843151],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00046275923,0.000056282435,0.98873866,0.000012097484,0.00006690241,0.0000927729,0.0006318823,0.0002858075,0.006413931,0.0005550678,0.000027271046,0.0026567045],"study_design_scores_gemma":[0.000005346995,0.000043524833,0.99807477,0.0000018869902,0.000009770824,0.00013494243,0.00034839514,0.00055358105,0.0001614558,0.00061149657,0.000049846578,0.000004960759],"about_ca_topic_score_codex":0.0025350873,"about_ca_topic_score_gemma":0.0130555825,"teacher_disagreement_score":0.0025350873,"about_ca_system_score_codex":0.00035481076,"about_ca_system_score_gemma":0.00023908363,"threshold_uncertainty_score":0.005980909},"labels":[],"label_agreement":null},{"id":"W2065305550","doi":"10.1016/j.foreco.2014.02.035","title":"Comparative genetic responses to climate for the varieties of Pinus ponderosa and Pseudotsuga menziesii: Realized climate niches","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":93,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Forests","funders":"","keywords":"Ecological niche; Pinus <genus>; Precipitation; Environmental science; Climate change; Niche; Ecology; Confusion; Global warming; Geography; Atmospheric sciences; Biology; Botany; Meteorology; Habitat; Geology","score_opus":0.026429814978902174,"score_gpt":0.27062100868828654,"score_spread":0.24419119370938436,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2065305550","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998135,0.000010017636,0.000024508676,0.0000027148315,3.4278267e-7,0.0000012402325,0.00003020014,6.4064244e-7,0.000116764335],"genre_scores_gemma":[0.9997038,0.000010843171,0.000051270563,0.0000040857335,8.073533e-7,0.0000038438548,0.000106249965,0.0000021780688,0.00011680532],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997775,0.00005374663,0.0000134908805,0.00009893007,0.000025708945,0.000030648684],"domain_scores_gemma":[0.99930334,0.00023104348,0.00016002814,0.00003943802,0.00007538367,0.00019072008],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030166918,0.000301143,0.00025282422,0.0013945929,0.0005920372,0.0004980488,0.00041803365,0.0003165347,0.0015012136],"category_scores_gemma":[0.00064167165,0.00029149785,0.00024496298,0.0007940045,0.0007047951,0.00037389967,0.00081319996,0.00044533002,0.00013626418],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0034543541,0.0003935975,0.5979788,0.00010131452,0.00045083824,0.00035469412,0.006366063,0.00088395237,0.38008574,0.0011882993,0.000089998495,0.008652434],"study_design_scores_gemma":[0.000012100567,0.00008880653,0.99818194,0.0000026601301,0.000020734164,0.00008754728,0.00044660486,0.0002769627,0.0007105851,0.0000825067,0.000083023784,0.00000654898],"about_ca_topic_score_codex":0.004295454,"about_ca_topic_score_gemma":0.01532542,"teacher_disagreement_score":0.004295454,"about_ca_system_score_codex":0.0006068193,"about_ca_system_score_gemma":0.0001925902,"threshold_uncertainty_score":0.008540928},"labels":[],"label_agreement":null},{"id":"W2066371318","doi":"10.1016/j.foreco.2014.06.020","title":"Cumulative effects of chronic deer browsing and clear-cutting on regeneration processes in second-growth white spruce stands","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":34,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; Natural Resources Canada; Université Laval; Canadian Forest Service; Natural Sciences and Engineering Research Council of Canada","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Odocoileus; Abies balsamea; Regeneration (biology); Understory; Biology; Ecological succession; Balsam; Taiga; Seedling; Cutting; Black spruce; Natural regeneration; Ecology; Agronomy; Botany; Canopy","score_opus":0.007357525195047863,"score_gpt":0.19119997365043828,"score_spread":0.1838424484553904,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2066371318","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99982685,0.00007383482,0.000013834533,0.0000028061588,0.0000011708916,7.8756347e-7,0.000016925273,8.290039e-7,0.000062894374],"genre_scores_gemma":[0.99969745,0.000027965994,0.000022858596,0.0000049015775,0.000002886186,0.0000021339079,0.00005609772,0.0000010472611,0.0001847552],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99963546,0.00009215335,0.000030422094,0.00008272154,0.00004044492,0.00011891097],"domain_scores_gemma":[0.9964036,0.0016540985,0.00044724488,0.00020623798,0.00018096626,0.0011079223],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.001064604,0.00038810069,0.0005052162,0.0005029251,0.00048495538,0.0010651966,0.00042654094,0.000592719,0.0018496054],"category_scores_gemma":[0.0020986462,0.00031938107,0.00045959937,0.0002279244,0.00058988394,0.00060928025,0.0010518252,0.000486516,0.0001791014],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0055958237,0.0007494294,0.96757466,0.000046744775,0.00039282668,0.0002444472,0.00037443926,0.0012666766,0.017482521,0.00014151057,0.00007003938,0.0060609174],"study_design_scores_gemma":[0.000010131219,0.00032968572,0.9984225,0.0000034243103,0.000043533855,0.0000733477,0.00018078506,0.0005825109,0.00026113735,0.000048430695,0.000038308295,0.000006123402],"about_ca_topic_score_codex":0.00813389,"about_ca_topic_score_gemma":0.031650186,"teacher_disagreement_score":0.00813389,"about_ca_system_score_codex":0.0005527965,"about_ca_system_score_gemma":0.00050726626,"threshold_uncertainty_score":0.016173065},"labels":[],"label_agreement":null},{"id":"W2067290550","doi":"10.1016/j.foreco.2014.10.002","title":"Multicentury reconstruction of western spruce budworm outbreaks in central British Columbia, Canada","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":37,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Canadian Forest Service; University of British Columbia; University of Victoria; Ministry of Forests","funders":"Natural Sciences and Engineering Research Council of Canada; Pacific Institute for Climate Solutions; University of Victoria","keywords":"Spruce budworm; Outbreak; Geography; Forestry; Choristoneura fumiferana; Range (aeronautics); Ecology; Lepidoptera genitalia; Tortricidae; Biology","score_opus":0.001999134711280733,"score_gpt":0.1573825787872303,"score_spread":0.15538344407594956,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2067290550","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99140114,0.0005599101,0.0007179918,0.00007809266,0.0000097700995,0.000025077205,0.005673002,0.00006882109,0.0014661168],"genre_scores_gemma":[0.9939612,0.00022157055,0.0008519846,0.000024255833,0.0000022310396,0.000013795906,0.0042637708,0.0000140577595,0.00064709684],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99963224,0.000040855597,0.000026994607,0.0001158318,0.00006776891,0.00011616333],"domain_scores_gemma":[0.99884665,0.0001716309,0.00015922767,0.0000618636,0.0006134908,0.00014715579],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00068340177,0.00048854377,0.00034916602,0.003610513,0.0012467562,0.0014349684,0.00085998164,0.00047150595,0.0017216154],"category_scores_gemma":[0.0019141419,0.0003429565,0.0005889003,0.0037690592,0.0004310754,0.00022388036,0.00060637214,0.00037000864,0.00022169757],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017553385,0.000041198087,0.9369041,0.000080239115,0.00029736178,0.0005188689,0.0004793648,0.042993657,0.001685034,0.00031155258,0.00181738,0.014695721],"study_design_scores_gemma":[0.000012033871,0.000018915296,0.9497773,0.0000766413,0.00009001155,0.00011739395,0.0014700472,0.044661835,0.00028343807,0.00009107284,0.0033580647,0.000043134216],"about_ca_topic_score_codex":0.9825251,"about_ca_topic_score_gemma":0.98983383,"teacher_disagreement_score":0.01747489,"about_ca_system_score_codex":0.012864832,"about_ca_system_score_gemma":0.007788938,"threshold_uncertainty_score":0.09334129},"labels":[],"label_agreement":null},{"id":"W2068001713","doi":"10.1016/j.foreco.2011.02.021","title":"Recent infestation of forest stands by spruce beetles does not predict habitat use by little brown bats (Myotis lucifugus) in southwestern Yukon, Canada","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bat Biology and Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":27,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Yukon Department of Environment; University of Calgary","funders":"Association of Canadian Universities for Northern Studies; Natural Sciences and Engineering Research Council of Canada; Arctic Institute of North America","keywords":"Myotis lucifugus; Ecology; Habitat; Biology; Insectivore; Predation; Infestation; Canopy; Foraging; Taiga; Botany","score_opus":0.014499836305010935,"score_gpt":0.18603203822415798,"score_spread":0.17153220191914703,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2068001713","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99956316,0.00006075192,0.000019681245,0.000033189386,0.0000021609796,0.0000017421551,0.0001299639,0.0000016571936,0.00018769334],"genre_scores_gemma":[0.99942845,0.000057575,0.000035436708,0.000018282059,0.0000011969909,0.0000018890343,0.0001801694,0.0000017738897,0.000275239],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997583,0.000029024446,0.000022177966,0.00005936751,0.000046709414,0.00008438742],"domain_scores_gemma":[0.9983386,0.00018980145,0.00034391685,0.00006140117,0.00048910885,0.0005770629],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039974964,0.0002353305,0.00027415078,0.0007206821,0.0013387965,0.0008132093,0.00078364223,0.00038791593,0.0012689589],"category_scores_gemma":[0.0010013164,0.00028671956,0.00032636916,0.0010398969,0.0007220594,0.00043389882,0.0004574696,0.00037332144,0.00015979593],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000039661525,0.000013692337,0.99841344,0.0000044642156,0.000036529404,0.000035375677,0.00024646477,0.00007752955,0.00033080613,0.000015567146,0.00011518207,0.0006712052],"study_design_scores_gemma":[0.0000019124761,0.0000060713023,0.9989561,0.000004423015,0.0000126838495,0.00002277074,0.00068269885,0.00019684597,0.000021195981,0.000006907924,0.00008575756,0.000002579285],"about_ca_topic_score_codex":0.9439004,"about_ca_topic_score_gemma":0.988342,"teacher_disagreement_score":0.056099594,"about_ca_system_score_codex":0.004948448,"about_ca_system_score_gemma":0.0054848297,"threshold_uncertainty_score":0.112859905},"labels":[],"label_agreement":null},{"id":"W2069750551","doi":"10.1016/j.foreco.2005.12.051","title":"Insect community composition and trophic guild structure in decaying logs from eastern Canadian pine-dominated forests","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":114,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Toronto","funders":"Natural Resources Canada; Natural Sciences and Engineering Research Council of Canada; Ministry of Natural Resources","keywords":"Guild; Trophic level; Ecology; Abundance (ecology); Community structure; Coarse woody debris; Biology; Predation; Species richness; Habitat","score_opus":0.01177623510028876,"score_gpt":0.1809084131040792,"score_spread":0.16913217800379043,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2069750551","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994442,0.0000777138,0.000014084523,0.0000074924633,8.0651347e-7,0.00000357095,0.00018498798,7.6511503e-7,0.00026623462],"genre_scores_gemma":[0.99891305,0.000113190894,0.00006775678,0.000021825952,9.190479e-7,0.0000036321953,0.00038362003,0.0000011765904,0.00049476774],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99975234,0.000013783658,0.000011586908,0.00004327047,0.000062155574,0.00011684062],"domain_scores_gemma":[0.9994252,0.000038176466,0.00008533425,0.000018715347,0.000256924,0.0001757545],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029187664,0.00022998448,0.00027510466,0.001420897,0.002176753,0.00079211744,0.0004987234,0.00022147973,0.0009614977],"category_scores_gemma":[0.0006464626,0.00022810201,0.00020157649,0.0015123802,0.00073802687,0.0002628521,0.00040987664,0.0002248891,0.00013183603],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018850801,0.00004117478,0.9884857,0.000026069303,0.000045622855,0.00013803305,0.0024502915,0.00008904004,0.0027758675,0.00004507805,0.00022777171,0.0054868385],"study_design_scores_gemma":[8.49461e-7,0.0000049697055,0.9990627,0.0000028131722,0.000005710672,0.000030058034,0.00071252615,0.000042987667,0.000039496113,0.0000045406905,0.00009159541,0.0000017330326],"about_ca_topic_score_codex":0.9582905,"about_ca_topic_score_gemma":0.99193233,"teacher_disagreement_score":0.041709483,"about_ca_system_score_codex":0.0052752374,"about_ca_system_score_gemma":0.0038561344,"threshold_uncertainty_score":0.08391017},"labels":[],"label_agreement":null},{"id":"W2069853660","doi":"10.1016/j.foreco.2012.06.017","title":"Potential distribution of emerald ash borer: What can we learn from ecological niche models using Maxent and GARP?","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":125,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada; University of Waterloo","funders":"","keywords":"Emerald ash borer; Agrilus; Fraxinus; Range (aeronautics); Environmental niche modelling; Ecological niche; Niche; Ecology; Species distribution; Invasive species; Habitat; Introduced species; Biology","score_opus":0.025661618223901145,"score_gpt":0.23457934017004523,"score_spread":0.20891772194614408,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2069853660","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9000067,0.0014264474,0.082085095,0.0059999493,0.000091080656,0.0000130365215,0.0017461939,0.0005732857,0.008058322],"genre_scores_gemma":[0.984948,0.00039048615,0.013153244,0.00025408278,0.00005683038,0.00001693043,0.00049045595,0.00015212326,0.00053789583],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9995989,0.00025682824,0.000014286747,0.00006623858,0.000023730234,0.00003996578],"domain_scores_gemma":[0.996145,0.0029129726,0.00023117587,0.00026996492,0.00016046471,0.00028039643],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0029690247,0.00062124385,0.00085486186,0.00065569725,0.00054272707,0.0012919066,0.0023641214,0.0011110281,0.0036063862],"category_scores_gemma":[0.010662249,0.00050012727,0.0008977494,0.000597271,0.00085865223,0.0051458566,0.00075625733,0.0009952191,0.0006092727],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015102734,0.00009594189,0.0711183,0.0001854457,0.00028372393,0.00019494575,0.0003137638,0.8704491,0.00054780726,0.0241434,0.004544291,0.027972186],"study_design_scores_gemma":[0.000018018345,0.000013806425,0.005897096,0.00002215802,0.000029958137,0.000075537224,0.00017325388,0.9502871,0.00011533056,0.042246476,0.0010961643,0.000025062944],"about_ca_topic_score_codex":0.013683858,"about_ca_topic_score_gemma":0.019819334,"teacher_disagreement_score":0.013683858,"about_ca_system_score_codex":0.0008077869,"about_ca_system_score_gemma":0.00059935934,"threshold_uncertainty_score":0.027208388},"labels":[],"label_agreement":null},{"id":"W2071112323","doi":"10.1016/j.foreco.2011.12.042","title":"Nest-site selection by old boreal forest cavity excavators as a basis for structural retention guidelines in spatially-aggregated harvests","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":24,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Directorate for Biological Sciences","keywords":"Woodpecker; Snag; Taiga; Habitat; Ecology; Nest (protein structural motif); Biology; Felling; Clearcutting; Excavator; Abies balsamea; Foraging; Silviculture; Boreal; Forestry; Geography; Balsam; Botany","score_opus":0.010711934234934892,"score_gpt":0.24276247413564817,"score_spread":0.23205053990071328,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2071112323","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9985954,0.000024513625,0.0008745806,0.000008770186,0.0000017159116,0.000007660552,0.000033853816,0.0000075022526,0.00044600823],"genre_scores_gemma":[0.9985399,0.000005284834,0.001323187,0.000004275881,0.0000013890466,0.000005828584,0.000040164145,0.000002788872,0.00007713571],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9994481,0.00024680325,0.00005203604,0.00011844755,0.00007913978,0.00005548608],"domain_scores_gemma":[0.995576,0.0018874169,0.0012791514,0.0005267156,0.0004264688,0.00030426032],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0019649074,0.00017539569,0.00031791377,0.00056539424,0.0004814721,0.00084864907,0.00060200226,0.0003181166,0.00089061534],"category_scores_gemma":[0.0061560073,0.00020584797,0.00018227185,0.00032628642,0.00048060427,0.00048134493,0.00053764187,0.00028542132,0.00013966937],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031925025,0.0001687043,0.96968406,0.000033134733,0.000096887314,0.00007135791,0.0008305192,0.0033676438,0.0046588145,0.00025984657,0.00029945513,0.020210136],"study_design_scores_gemma":[0.000010552759,0.00018261785,0.9890695,0.000010228133,0.000032735923,0.000072999814,0.0006226247,0.009055159,0.00044952467,0.0002673652,0.00021733777,0.000009297336],"about_ca_topic_score_codex":0.0056319176,"about_ca_topic_score_gemma":0.05220549,"teacher_disagreement_score":0.0056319176,"about_ca_system_score_codex":0.0002928388,"about_ca_system_score_gemma":0.00029228933,"threshold_uncertainty_score":0.011198282},"labels":[],"label_agreement":null},{"id":"W2071247382","doi":"10.1016/j.foreco.2005.11.009","title":"Biomass equations and carbon content of aboveground leafless biomass of hybrid poplar in Coastal British Columbia","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bioenergy crop production and management","field":"Agricultural and Biological Sciences","cited_by":87,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"BIOCAP Canada","keywords":"Biomass (ecology); Environmental science; Populus trichocarpa; Agronomy; Carbon fibers; Carbon sink; Salicaceae; Carbon sequestration; Hybrid; Tree allometry; Botany; Biology; Ecology; Woody plant; Biomass partitioning; Carbon dioxide; Ecosystem; Mathematics","score_opus":0.013434232085932096,"score_gpt":0.18429280121895364,"score_spread":0.17085856913302155,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2071247382","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984126,0.000041375642,0.00010277033,0.000015853653,6.3129323e-7,0.000002893521,0.0007303204,0.000009210292,0.00068418815],"genre_scores_gemma":[0.99819916,0.000027770262,0.00014398499,0.00000602505,3.179546e-7,0.000003397116,0.00061908195,0.000004830532,0.0009953728],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990165,0.00001541539,0.000007089494,0.00003123453,0.000024550605,0.00002005739],"domain_scores_gemma":[0.9993759,0.0001748958,0.00006339552,0.000037599733,0.00028311013,0.000065219116],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003131847,0.00019902176,0.00015617286,0.00072506897,0.00060322136,0.0007490348,0.0005598224,0.00021707843,0.0018053253],"category_scores_gemma":[0.0011623374,0.00019601642,0.00014272552,0.00080336025,0.00032773675,0.00030015127,0.00023024557,0.00026181163,0.00028936027],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017140138,0.000038379894,0.9775989,0.00002420061,0.000067848996,0.00012500363,0.00038635623,0.0074378354,0.0043860613,0.0005065436,0.00062406133,0.008633424],"study_design_scores_gemma":[0.0000041447934,0.000007106852,0.98993266,0.000005430301,0.000017266004,0.000037203557,0.00048466187,0.008192597,0.0006917823,0.00011824574,0.0005002633,0.0000086270475],"about_ca_topic_score_codex":0.91494507,"about_ca_topic_score_gemma":0.9533911,"teacher_disagreement_score":0.085054934,"about_ca_system_score_codex":0.0058349,"about_ca_system_score_gemma":0.0018933456,"threshold_uncertainty_score":0.17111164},"labels":[],"label_agreement":null},{"id":"W2071407916","doi":"10.1016/j.foreco.2009.06.023","title":"Succession and management of tropical dry forests in the Americas: Review and new perspectives","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant and animal studies","field":"Agricultural and Biological Sciences","cited_by":356,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Fundação de Amparo à Pesquisa do Estado de Minas Gerais; Consejo Nacional de Ciencia y Tecnología; National Science Foundation","keywords":"Tropical and subtropical dry broadleaf forests; Ecological succession; Ecology; Secondary succession; Forest restoration; Agroforestry; Ecosystem; Geography; Forest ecology; Threatened species; Environmental resource management; Environmental science; Biology; Habitat","score_opus":0.025927943986092057,"score_gpt":0.2497464633511354,"score_spread":0.22381851936504335,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2071407916","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0007101104,0.9986821,0.0000433752,0.00034574867,0.00008505006,0.0000021037167,0.0000071847035,0.00000108861,0.00012326642],"genre_scores_gemma":[0.0035562208,0.99585766,0.00010924813,0.00012656397,0.000285672,0.0000023237974,0.000011431011,3.087848e-7,0.000050524326],"study_design_codex":"design_other","study_design_gemma":"systematic_review","domain_scores_codex":[0.9996635,0.000086423264,0.00008143241,0.000059770035,0.00008111061,0.000027831587],"domain_scores_gemma":[0.9986506,0.00071427046,0.00030989913,0.000020358899,0.00021109516,0.00009378643],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0018102075,0.0004892514,0.0014490278,0.001414492,0.00025137918,0.0013653388,0.0009558721,0.00089476653,0.00087727304],"category_scores_gemma":[0.00195856,0.000173161,0.0003179965,0.0025205812,0.0006156505,0.0010315188,0.0005226058,0.0005239382,0.00015685175],"study_design_candidate":"systematic_review","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00030765307,0.000102696315,0.0053668115,0.030607743,0.00036523875,0.00037801004,0.00041772923,0.0005056197,0.0010377027,0.0011416319,0.008019426,0.95174986],"study_design_scores_gemma":[0.00023742714,0.0011206182,0.09395774,0.054441124,0.0026556898,0.0071002645,0.004056202,0.00069053174,0.00079983246,0.0062450212,0.8285802,0.00011542123],"about_ca_topic_score_codex":0.004000474,"about_ca_topic_score_gemma":0.014960221,"teacher_disagreement_score":0.004000474,"about_ca_system_score_codex":0.00058919506,"about_ca_system_score_gemma":0.0020558215,"threshold_uncertainty_score":0.0095734},"labels":[],"label_agreement":null},{"id":"W2071526634","doi":"10.1016/j.foreco.2003.11.003","title":"Factors influencing tree colonization in fragmented forests: an experimental study of introduced seeds and seedlings","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":35,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"York University","funders":"","keywords":"Seedling; Colonization; Biology; Germination; Colonisation; Seed dispersal; Propagule; Biological dispersal; Ecology; Seed predation; Botany; Population","score_opus":0.009061946583824075,"score_gpt":0.23765952129006457,"score_spread":0.22859757470624048,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2071526634","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99990606,0.0000058264363,0.000023985085,0.0000020999569,0.0000013031122,0.0000078046605,0.000005818352,0.0000012204456,0.000045924287],"genre_scores_gemma":[0.9984301,0.000054470638,0.0006330741,0.00003178787,0.0000065571708,0.00007450858,0.000095040166,0.000010386182,0.0006641998],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99934334,0.00018130313,0.00004176977,0.00017704853,0.00008230617,0.00017411642],"domain_scores_gemma":[0.99757665,0.00083508616,0.00041467338,0.0002242151,0.00011767199,0.000831686],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.001001491,0.00080125855,0.001000708,0.0006816793,0.0012609535,0.00081967853,0.0009243807,0.0005529425,0.0015820159],"category_scores_gemma":[0.0013386045,0.0004736317,0.00038417705,0.0004630944,0.0017500452,0.0008665679,0.0007814975,0.0011920467,0.00016904672],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.036655392,0.04222134,0.24281093,0.00026166733,0.0003389419,0.0013332777,0.008561816,0.000888822,0.65449107,0.0009851912,0.00027956854,0.011172013],"study_design_scores_gemma":[0.0018012627,0.06678932,0.8808686,0.00003177623,0.00041834346,0.0013128545,0.006901065,0.004677858,0.035571203,0.00042054712,0.001108936,0.00009805921],"about_ca_topic_score_codex":0.006269112,"about_ca_topic_score_gemma":0.021091042,"teacher_disagreement_score":0.006269112,"about_ca_system_score_codex":0.00066465186,"about_ca_system_score_gemma":0.0007815314,"threshold_uncertainty_score":0.012465239},"labels":[],"label_agreement":null},{"id":"W2072841585","doi":"10.1016/j.foreco.2003.11.009","title":"Choice and development of decision support tools for the sustainable management of deer–forest systems","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Land Use and Ecosystem Services","field":"Environmental Science","cited_by":33,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval; Natural Sciences and Engineering Research Council; Center for Northern Studies","funders":"","keywords":"Computer science; Natural resource management; Sustainable forest management; Forest management; Context (archaeology); Environmental resource management; Sustainability; Asset (computer security); Risk analysis (engineering); Process (computing); Adaptive management; Decision support system; Management science; Natural resource; Ecology; Business; Geography; Artificial intelligence; Engineering","score_opus":0.010518434448266235,"score_gpt":0.22256682199317868,"score_spread":0.21204838754491245,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2072841585","genre_codex":"methods","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":"methods","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.14118254,0.0012993455,0.831699,0.005257333,0.00012511047,0.00046131545,0.00078779756,0.0008175573,0.01836999],"genre_scores_gemma":[0.6724217,0.0005781217,0.32383332,0.00020314961,0.00005086719,0.00035669628,0.0005770941,0.00007840126,0.0019006811],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9925867,0.005143633,0.00045210254,0.00045189305,0.0010453905,0.0003202877],"domain_scores_gemma":[0.9775235,0.019314576,0.0007802379,0.0008474654,0.0010618457,0.0004723265],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.01698191,0.00073025486,0.0008461677,0.0023580852,0.0007817336,0.005063065,0.0016555625,0.0015797075,0.008603614],"category_scores_gemma":[0.03192263,0.00052320486,0.0008098844,0.0018486205,0.0018433313,0.0078823725,0.0022445878,0.0016547659,0.00088791444],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011737646,0.00097211055,0.013491857,0.0006505913,0.0002073024,0.00029152582,0.0015025875,0.16833849,0.0031189062,0.29227656,0.009408804,0.50856763],"study_design_scores_gemma":[0.00014950115,0.0002501449,0.0021961818,0.00018703619,0.00007555742,0.000096354685,0.00084186083,0.62790394,0.004048461,0.3493991,0.014766028,0.00008585571],"about_ca_topic_score_codex":0.0019218351,"about_ca_topic_score_gemma":0.0020152607,"teacher_disagreement_score":0.01698191,"about_ca_system_score_codex":0.00137359,"about_ca_system_score_gemma":0.0022748185,"threshold_uncertainty_score":0.089810014},"labels":[],"label_agreement":null},{"id":"W2072955785","doi":"10.1016/s0378-1127(00)00650-2","title":"Effects of variations in micro-mammal abundance on artificial nest predation in conifer plantations and adjoining deciduous forests","year":2002,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Animal Ecology and Behavior Studies","field":"Environmental Science","cited_by":24,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université de Moncton","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Predation; Nest (protein structural motif); Deciduous; Ecology; Nest box; Habitat; Abundance (ecology); Plasticine; Transect; Biology; Predator; Clearcutting; Bird nest; Geography","score_opus":0.010343489014250544,"score_gpt":0.22411106771426437,"score_spread":0.2137675787000138,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2072955785","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998746,0.000009786904,0.000008320752,0.0000041868866,0.0000010453251,5.215156e-7,0.00001767723,7.327406e-7,0.00008312761],"genre_scores_gemma":[0.99981767,0.000005946836,0.000016853264,0.000007506523,0.0000015763198,0.0000017240158,0.000036377474,0.0000013715695,0.000110914945],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99970275,0.00013340704,0.000015931497,0.000057307,0.000025424688,0.00006512588],"domain_scores_gemma":[0.9974964,0.0012705936,0.0003649648,0.0001055668,0.00011681391,0.00064569025],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004576949,0.00019485605,0.0003398701,0.00031586573,0.00055284926,0.0005029929,0.00032291794,0.0003769274,0.0018977534],"category_scores_gemma":[0.0019622582,0.00023559676,0.00018703348,0.00023834233,0.00069140113,0.00032574002,0.00039809293,0.00041936195,0.00015588675],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0041131834,0.00041450167,0.9779825,0.000015179281,0.00013631667,0.0002444344,0.0003883732,0.00027875588,0.013795946,0.00005875787,0.00012477666,0.002447263],"study_design_scores_gemma":[0.000003881745,0.000071395094,0.9995128,3.903058e-7,0.000008290996,0.000042140426,0.00008612977,0.00012740327,0.000121714176,0.000008073411,0.000016367121,0.0000013910061],"about_ca_topic_score_codex":0.008900108,"about_ca_topic_score_gemma":0.043706853,"teacher_disagreement_score":0.008900108,"about_ca_system_score_codex":0.00045532527,"about_ca_system_score_gemma":0.00018926788,"threshold_uncertainty_score":0.017696619},"labels":[],"label_agreement":null},{"id":"W2073875265","doi":"10.1016/j.foreco.2006.06.020","title":"An integrated model for snag and downed woody debris decay class transitions","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":89,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"Natural Sciences and Engineering Research Council of Canada; University of Toronto; Ministry of Natural Resources","keywords":"Snag; Coarse woody debris; Chronosequence; Environmental science; Debris; Woody plant; Forestry; Ecology; Geography; Ecological succession; Habitat; Biology; Meteorology","score_opus":0.012474429262919272,"score_gpt":0.19960318299534457,"score_spread":0.1871287537324253,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2073875265","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.6693007,0.00052144343,0.29622513,0.001709568,0.0002464365,0.00013805878,0.0042201793,0.0009470958,0.026691305],"genre_scores_gemma":[0.9732736,0.0001232181,0.009026672,0.00013578845,0.000045115667,0.00011565295,0.0007611443,0.00014087794,0.016377972],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99959785,0.00008578818,0.000017649769,0.00012687138,0.00003456969,0.00013729768],"domain_scores_gemma":[0.9991073,0.0004292306,0.000093389746,0.00005721718,0.00015280282,0.00016009781],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012194617,0.0007064534,0.0015495052,0.00077801256,0.00082501303,0.0022500406,0.00318108,0.0028213542,0.0075586825],"category_scores_gemma":[0.0032318807,0.0009634835,0.0012990402,0.000994368,0.0010699603,0.002460583,0.0014715455,0.0016763821,0.00077135937],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00003168277,0.000019066993,0.00086391333,0.000007239706,0.000018704195,0.000033870765,0.00001758426,0.9933683,0.00010301151,0.0043035266,0.0002747733,0.00095826096],"study_design_scores_gemma":[0.0000103964285,0.000005389811,0.00019641499,0.0000020201753,0.00000883947,0.000005270412,0.0000071802256,0.9979036,0.000017405213,0.0017059941,0.00013339345,0.00000409993],"about_ca_topic_score_codex":0.07194275,"about_ca_topic_score_gemma":0.03974025,"teacher_disagreement_score":0.07194275,"about_ca_system_score_codex":0.002596039,"about_ca_system_score_gemma":0.002160437,"threshold_uncertainty_score":0.14304799},"labels":[],"label_agreement":null},{"id":"W2074471822","doi":"10.1016/j.foreco.2012.02.025","title":"Changes in soil chemical and biological properties after thinning and prescribed fire for ecosystem restoration in a Rocky Mountain Douglas-fir forest","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":55,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia; University of British Columbia","funders":"","keywords":"Forest floor; Environmental science; Thinning; Prescribed burn; Slash (logging); Ecosystem; Forest ecology; Coarse woody debris; Fire regime; Forest management; Ecology; Agroforestry; Habitat; Soil water; Soil science; Biology","score_opus":0.011879469347011937,"score_gpt":0.20073950493972478,"score_spread":0.18886003559271286,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2074471822","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999225,0.000009304763,0.0000071017616,0.0000063064635,8.937254e-7,0.0000029170849,0.000011959122,6.827622e-7,0.000038407175],"genre_scores_gemma":[0.99974364,0.000012179797,0.000059090995,0.000010480843,0.0000016340709,0.0000032995324,0.00005654948,4.443825e-7,0.000112651105],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984515,0.0000375782,0.0000123651425,0.0000207987,0.00003197117,0.00005216734],"domain_scores_gemma":[0.9994155,0.00013475397,0.00012882506,0.000024701501,0.000091292466,0.00020504715],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000635256,0.00023660863,0.0002199708,0.00025566592,0.00065728114,0.0003520316,0.0003937606,0.0003841569,0.0003937328],"category_scores_gemma":[0.0010646817,0.00011654489,0.0002592502,0.00020769607,0.00027455177,0.00023615359,0.00014752036,0.00031177618,0.000057310208],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.011877359,0.0050672228,0.9320078,0.00005216146,0.00020226218,0.0013754149,0.0005179383,0.0020930192,0.031648695,0.000064519445,0.0002892661,0.014804277],"study_design_scores_gemma":[0.000046296384,0.00087210943,0.9969246,0.0000015208718,0.000029807672,0.00012733383,0.00019973858,0.00072528166,0.0009780249,0.000012765817,0.00007807179,0.000004385442],"about_ca_topic_score_codex":0.052194417,"about_ca_topic_score_gemma":0.13923833,"teacher_disagreement_score":0.052194417,"about_ca_system_score_codex":0.0012456955,"about_ca_system_score_gemma":0.0009241896,"threshold_uncertainty_score":0.10378122},"labels":[],"label_agreement":null},{"id":"W2074519064","doi":"10.1016/j.foreco.2007.06.039","title":"Anthropogenic edges: Their influence on the American three-toed woodpecker (Picoides dorsalis) foraging behaviour in managed boreal forests of Quebec","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":24,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"Fonds Québécois de la Recherche sur la Nature et les Technologies","keywords":"Foraging; Snag; Woodpecker; Ecology; Taiga; Bark (sound); Biology; Windthrow; Habitat","score_opus":0.007871307393125856,"score_gpt":0.23810820985335276,"score_spread":0.2302369024602269,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2074519064","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99948955,0.000043133077,0.000013935118,0.000018295386,0.000001036781,0.0000018449371,0.000059065103,0.0000010200621,0.00037193854],"genre_scores_gemma":[0.99943155,0.000028715953,0.000038444265,0.000012847004,7.524365e-7,0.0000023477041,0.000056057565,0.0000011927305,0.00042808912],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997917,0.000051637027,0.00000616634,0.000035140925,0.00003804223,0.00007739204],"domain_scores_gemma":[0.9992424,0.000093134455,0.00016671016,0.000028440294,0.00017640709,0.00029279146],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024456088,0.00015529672,0.00019067749,0.0004738751,0.0010797046,0.00066365907,0.0005289334,0.0002687415,0.0015442682],"category_scores_gemma":[0.00066193176,0.0001041722,0.00011846795,0.0006393139,0.00071303215,0.00020738243,0.00042549483,0.00026336033,0.000112839654],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021336485,0.00008235367,0.98916644,0.000012030198,0.00004506906,0.00011795269,0.0015283098,0.00021261757,0.0029394072,0.00007652662,0.00032827095,0.005277727],"study_design_scores_gemma":[8.7125227e-7,0.000009404537,0.9992532,0.0000016088636,0.0000026573102,0.000009472794,0.0005468535,0.000059582486,0.00001922423,0.0000029713922,0.000092681454,0.0000014673814],"about_ca_topic_score_codex":0.89176524,"about_ca_topic_score_gemma":0.9840953,"teacher_disagreement_score":0.10823476,"about_ca_system_score_codex":0.0049422346,"about_ca_system_score_gemma":0.0018094752,"threshold_uncertainty_score":0.21774429},"labels":[],"label_agreement":null},{"id":"W2075307161","doi":"10.1016/j.foreco.2007.07.017","title":"Spatial distribution of carbon in natural and managed stands in an industrial forest in New Brunswick, Canada","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of New Brunswick","funders":"Natural Sciences and Engineering Research Council of Canada; U.S. Forest Service; Killam Trusts","keywords":"Abies balsamea; Balsam; Yellow birch; Forestry; Silviculture; Hardwood; Forest management; Softwood; Deciduous; Experimental forest; Environmental science; Geography; Agroforestry; Ecology; Biology; Botany","score_opus":0.0123199078826312,"score_gpt":0.1931553767089279,"score_spread":0.1808354688262967,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2075307161","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9971711,0.00021129685,0.000051630912,0.000054564847,0.000002840288,0.00001652962,0.0014301977,0.0000055493215,0.0010562723],"genre_scores_gemma":[0.99774784,0.0001478415,0.00018396668,0.000021156862,0.0000015619614,0.000010705969,0.00073830655,0.0000031844024,0.0011454041],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995914,0.00003548003,0.000028360886,0.00007448576,0.00011111353,0.00015924947],"domain_scores_gemma":[0.9986098,0.00014856849,0.00017904502,0.000045850713,0.0007581366,0.00025850386],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003330415,0.0002153975,0.00040754591,0.0020482088,0.002167234,0.0012554736,0.0012042657,0.0003137561,0.0016152005],"category_scores_gemma":[0.0009861205,0.0002791255,0.00029533784,0.003942481,0.0012180454,0.00034537006,0.00074936927,0.00030092258,0.00019859998],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020481237,0.000048850274,0.98824185,0.000045847886,0.000069663765,0.00019174509,0.0015373195,0.00067737687,0.0010855399,0.00031982805,0.0010351505,0.0065420936],"study_design_scores_gemma":[0.000008149491,0.000007180805,0.9972487,0.000013384597,0.000011501221,0.000051127485,0.001611342,0.0004735128,0.00009200648,0.000026908701,0.0004469019,0.000009284122],"about_ca_topic_score_codex":0.99567395,"about_ca_topic_score_gemma":0.9989293,"teacher_disagreement_score":0.021731364,"about_ca_system_score_codex":0.021731364,"about_ca_system_score_gemma":0.015009192,"threshold_uncertainty_score":0.15767282},"labels":[],"label_agreement":null},{"id":"W2076135637","doi":"10.1016/s0378-1127(03)00004-5","title":"Nondestructive and rapid estimation of hardwood foliar nitrogen status using the SPAD-502 chlorophyll meter","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Horticultural and Viticultural Research","field":"Agricultural and Biological Sciences","cited_by":186,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"North Carolina State University","keywords":"Hardwood; Liquidambar styraciflua; Crown (dentistry); Environmental science; Growing season; Horticulture; Diameter at breast height; Botany; Forestry; Mathematics; Agronomy; Biology; Geography; Materials science","score_opus":0.02176339992692439,"score_gpt":0.2504265707476074,"score_spread":0.228663170820683,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2076135637","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.46316388,0.0010056419,0.50642025,0.00038146536,0.00018618797,0.00085250434,0.0058886725,0.0076483577,0.014453094],"genre_scores_gemma":[0.44292828,0.00050700735,0.5398539,0.0007090058,0.00008294182,0.0010518389,0.0023422965,0.00043832787,0.012086378],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9991308,0.00016556619,0.000045369463,0.00025242558,0.00035922267,0.000046602523],"domain_scores_gemma":[0.9990495,0.00039932676,0.00009417709,0.0001442083,0.00024326041,0.000069500675],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012524913,0.00069220184,0.0006313746,0.00137211,0.0005283283,0.0005015623,0.0011446422,0.0008566329,0.0034388276],"category_scores_gemma":[0.0011919707,0.0005703483,0.00022041504,0.0011986889,0.00041926405,0.0011987792,0.0009946736,0.0007804883,0.0014766424],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0013930835,0.00036836445,0.13121006,0.000317868,0.00013897673,0.00013277716,0.00029164314,0.002571006,0.5844607,0.0012892691,0.008422199,0.26940408],"study_design_scores_gemma":[0.0006715251,0.0014570917,0.4149685,0.000091787915,0.000275101,0.0019755526,0.00029589233,0.20058887,0.35386282,0.0034028413,0.022088908,0.00032123143],"about_ca_topic_score_codex":0.0037504006,"about_ca_topic_score_gemma":0.012580618,"teacher_disagreement_score":0.0037504006,"about_ca_system_score_codex":0.00043812097,"about_ca_system_score_gemma":0.00062903727,"threshold_uncertainty_score":0.011504054},"labels":[],"label_agreement":null},{"id":"W2076158425","doi":"10.1016/j.foreco.2004.02.003","title":"A test and application of the model ForNBM in a northeastern Ontario jack pine (Pinus banksiana lamb.) stand","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":14,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Canadian Forest Service; University of New Brunswick","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Leaching (pedology); Nutrient; Environmental science; Mineralization (soil science); Nutrient cycle; Weathering; Cycling; Biomass (ecology); Pine forest; Organic matter; Soil water; Agronomy; Soil science; Ecology; Forestry; Geology; Biology","score_opus":0.006594692688083545,"score_gpt":0.18250363712505524,"score_spread":0.1759089444369717,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2076158425","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99294174,0.000070234724,0.0036307962,0.00029635194,0.000011249113,0.000026332571,0.00047035134,0.00008246696,0.0024706079],"genre_scores_gemma":[0.99765646,0.000016395314,0.0013910092,0.000020219115,0.0000024275193,0.000011795662,0.00019657395,0.00001424421,0.0006908319],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.99963486,0.00013036563,0.0000147387345,0.00009542665,0.000045355442,0.0000791748],"domain_scores_gemma":[0.99773204,0.0015993195,0.00011755122,0.000112235255,0.0003474793,0.00009139929],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002224175,0.00033481474,0.00043810194,0.00023397962,0.00078023627,0.0008797148,0.0014297991,0.0009093557,0.002556367],"category_scores_gemma":[0.0053912625,0.0002261569,0.00037553703,0.0002942266,0.0005043679,0.00085567066,0.0003968787,0.00045533,0.00022027365],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00062871363,0.00021230512,0.117066234,0.00011289901,0.00010634545,0.0001882186,0.00021215454,0.8574306,0.001995614,0.003671021,0.0021257012,0.016250223],"study_design_scores_gemma":[0.000033431224,0.00005463176,0.021154707,0.0000050160106,0.000018275767,0.000014619707,0.00011180978,0.97764266,0.00022947918,0.0004389825,0.00028765737,0.000008758747],"about_ca_topic_score_codex":0.5778146,"about_ca_topic_score_gemma":0.5978657,"teacher_disagreement_score":0.42218542,"about_ca_system_score_codex":0.0065163565,"about_ca_system_score_gemma":0.0032186129,"threshold_uncertainty_score":0.84934354},"labels":[],"label_agreement":null},{"id":"W2076461495","doi":"10.1016/s0378-1127(01)00741-1","title":"Maximum size–density relationship for constraining individual tree mortality functions","year":2002,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":44,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Statistics; Mathematics; Maximum density; Probability density function; Boreal; Density dependence; Thinning; Ecology; Function (biology); Tree (set theory); Biology; Demography; Physics; Mathematical analysis","score_opus":0.03229175598155788,"score_gpt":0.23318210409026588,"score_spread":0.20089034810870798,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2076461495","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.690136,0.000640548,0.30411634,0.0003607872,0.000018793977,0.000025069834,0.0003877519,0.00030465267,0.0040100166],"genre_scores_gemma":[0.98594475,0.00008780595,0.013095088,0.00004375937,0.000025566858,0.000021808679,0.0001399779,0.00004538648,0.0005957756],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9997235,0.0001399776,0.000012702324,0.00006851759,0.00002174568,0.00003355943],"domain_scores_gemma":[0.9895174,0.009350437,0.00036166102,0.0003677467,0.0002382101,0.00016456988],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0017218769,0.000380172,0.00046269462,0.0005942599,0.00027749312,0.00051623833,0.0009978561,0.00090583606,0.002014791],"category_scores_gemma":[0.013146049,0.00051883556,0.0004020038,0.00044516218,0.00039104407,0.0010987305,0.0005063875,0.00074731157,0.00024637656],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020872118,0.00011354121,0.07173996,0.00018694859,0.00017159048,0.00016812615,0.00015422782,0.8523999,0.016174374,0.02403445,0.001292437,0.033355694],"study_design_scores_gemma":[0.000010743866,0.000035660065,0.025411634,0.000013896967,0.000028745824,0.00014459196,0.000023748997,0.9627018,0.0009037197,0.010437602,0.00026773632,0.000020051484],"about_ca_topic_score_codex":0.0024915766,"about_ca_topic_score_gemma":0.004566452,"teacher_disagreement_score":0.0024915766,"about_ca_system_score_codex":0.00034314295,"about_ca_system_score_gemma":0.00027095174,"threshold_uncertainty_score":0.009106219},"labels":[],"label_agreement":null},{"id":"W2076629760","doi":"10.1016/j.foreco.2004.10.026","title":"Multiple-use management of forest recreation sites: a spatially explicit choice experiment","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Economic and Environmental Valuation","field":"Economics, Econometrics and Finance","cited_by":180,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Recreation; Zoning; Species richness; Forest management; Geography; Environmental resource management; Biodiversity; Preference; Ecology; Business; Environmental science; Forestry; Economics; Engineering","score_opus":0.0645094988550843,"score_gpt":0.22645420024268592,"score_spread":0.16194470138760164,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2076629760","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9988255,0.000021556229,0.00047282,0.000072376504,0.000022202223,0.00013053053,0.00007417247,0.000009655218,0.0003712888],"genre_scores_gemma":[0.9875552,0.000089605965,0.0051528546,0.0002002002,0.00006653478,0.0013083628,0.00024877212,0.000021741713,0.005356795],"study_design_codex":"nonrandomized_trial","study_design_gemma":"observational","domain_scores_codex":[0.9974426,0.0009753803,0.00022742909,0.00066493725,0.0003380176,0.00035159028],"domain_scores_gemma":[0.9884516,0.0064551462,0.0018828888,0.0015345898,0.00020571942,0.0014700751],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.004149208,0.0015245271,0.001801053,0.000557749,0.00095566135,0.0020787665,0.0020571277,0.0032604001,0.0070388825],"category_scores_gemma":[0.0072488873,0.0010952867,0.0007861089,0.0005297341,0.0020671356,0.0018797687,0.0014865396,0.002536841,0.0006485018],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.31749812,0.37928203,0.04686368,0.00070890965,0.0015356729,0.00076069374,0.003313658,0.021883236,0.18494684,0.009391043,0.0015455281,0.03227061],"study_design_scores_gemma":[0.09263611,0.38146508,0.22376703,0.00019017671,0.003587543,0.0007580728,0.0023444518,0.20067903,0.051854726,0.033569034,0.008253901,0.0008948609],"about_ca_topic_score_codex":0.0032662738,"about_ca_topic_score_gemma":0.0058121104,"teacher_disagreement_score":0.0070388825,"about_ca_system_score_codex":0.00096484815,"about_ca_system_score_gemma":0.0013533494,"threshold_uncertainty_score":0.023547411},"labels":[],"label_agreement":null},{"id":"W2077011505","doi":"10.1016/j.foreco.2009.05.040","title":"Trade-offs among establishment success, stem morphology and productivity of underplanted Toona ciliata: Effects of nurse-species and thinning density","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":14,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"University of British Columbia","keywords":"Ciliata; Biology; Thinning; Botany; Productivity; Horticulture; Ecology; Protozoa","score_opus":0.005023005747415441,"score_gpt":0.1909882000726709,"score_spread":0.18596519432525546,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2077011505","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99985564,0.000012179581,0.000017301138,0.000004852258,4.26832e-7,4.530216e-7,0.000010953791,0.0000010501864,0.00009698771],"genre_scores_gemma":[0.9997075,0.000008906386,0.000028721772,0.000010349803,0.0000011554934,0.0000015176597,0.00003558544,0.0000025929521,0.00020352294],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983704,0.000036619884,0.000021541378,0.00004156207,0.000023438068,0.000039689225],"domain_scores_gemma":[0.9979888,0.0008507792,0.00039952566,0.00015898155,0.00009103556,0.00051088753],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004396409,0.00016624965,0.00028547304,0.00039357613,0.00040018797,0.00057816226,0.000468682,0.00041349186,0.0016381799],"category_scores_gemma":[0.0012338767,0.0003191814,0.00027618633,0.00015679043,0.000564307,0.0006607459,0.0007926815,0.00038065287,0.00021272198],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0025175877,0.00040105806,0.5635259,0.00008239103,0.00014858712,0.0004312405,0.0005232801,0.0016057062,0.4230243,0.00051256176,0.0001239365,0.0071034078],"study_design_scores_gemma":[0.000014127001,0.00020640774,0.9956671,0.000002148986,0.000025203204,0.00013241336,0.00015321479,0.0009595099,0.0026301267,0.00013003765,0.00007328038,0.000006464408],"about_ca_topic_score_codex":0.002627146,"about_ca_topic_score_gemma":0.011775884,"teacher_disagreement_score":0.002627146,"about_ca_system_score_codex":0.00053493655,"about_ca_system_score_gemma":0.0002649899,"threshold_uncertainty_score":0.00548023},"labels":[],"label_agreement":null},{"id":"W2077527668","doi":"10.1016/j.foreco.2006.02.047","title":"Prediction of mortality in Appalachian sugar maple stands affected by dieback in southeastern Quebec, Canada","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université de Sherbrooke; Canadian Forest Service; Natural Resources Canada; Ministère des Ressources naturelles et des Forêts (Québec)","funders":"","keywords":"Yellow birch; Maple; Sugar; Marsh; Aceraceae; Betula pubescens; Geography; Forestry; Biology; Ecology; Wetland","score_opus":0.004010602911554362,"score_gpt":0.17389562107055143,"score_spread":0.16988501815899706,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2077527668","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9983388,0.000102552345,0.000084800005,0.00009025433,0.0000059320514,0.000012127333,0.00071056635,0.000006808672,0.00064810907],"genre_scores_gemma":[0.99764603,0.000094428186,0.0001408552,0.00003680007,0.0000025496897,0.000009153224,0.0008605319,0.0000033709682,0.0012063166],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997534,0.000038872317,0.000013393104,0.000038942366,0.00004751552,0.000107914515],"domain_scores_gemma":[0.9986552,0.00018228298,0.000163575,0.00002730551,0.00062677416,0.0003448325],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005404354,0.000475106,0.00027509258,0.00087298005,0.0015191906,0.0009439115,0.0011770149,0.00044053068,0.0011796503],"category_scores_gemma":[0.0013563294,0.00019123865,0.00030872604,0.00086715637,0.0004174803,0.00027684198,0.0004133358,0.00052403513,0.00021970227],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001033853,0.000051167626,0.99393785,0.0000078986595,0.00004625798,0.00009210717,0.0002462693,0.0012153168,0.00028684034,0.00004604746,0.0010532982,0.002913473],"study_design_scores_gemma":[0.000010711571,0.000019217989,0.9941969,0.000017113482,0.000016156353,0.000027231326,0.00096427265,0.0042205034,0.00007063956,0.00002578006,0.00042372945,0.0000077410805],"about_ca_topic_score_codex":0.9928496,"about_ca_topic_score_gemma":0.997566,"teacher_disagreement_score":0.011604448,"about_ca_system_score_codex":0.011604448,"about_ca_system_score_gemma":0.007533588,"threshold_uncertainty_score":0.08419651},"labels":[],"label_agreement":null},{"id":"W2077606954","doi":"10.1016/j.foreco.2006.06.030","title":"Understorey protection harvest expedites recolonisation of boreal forest stands by North American red squirrels","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Animal Ecology and Behavior Studies","field":"Environmental Science","cited_by":20,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Alberta Environment and Protected Areas","funders":"","keywords":"Understory; Arboreal locomotion; Deciduous; Boreal; Canopy; Taiga; Ecology; Snag; Abundance (ecology); Clearcutting; Biology; Habitat; Forestry; Geography","score_opus":0.010349246570755402,"score_gpt":0.2152263818782114,"score_spread":0.204877135307456,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2077606954","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996221,0.000015187384,0.00000555662,0.000009948434,0.0000024424926,0.0000013971626,0.000016654567,0.0000010243094,0.00032580315],"genre_scores_gemma":[0.99937576,0.000027016551,0.0000428798,0.000030329555,0.000003984664,0.0000031456448,0.00006459399,0.0000010836972,0.0004513076],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991083,0.00002075281,0.0000045928555,0.000018139042,0.000013718889,0.000031956934],"domain_scores_gemma":[0.9993981,0.000067429966,0.0002132974,0.000038038717,0.0000552397,0.0002278515],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031647552,0.0001693631,0.000117046286,0.00039381318,0.00055008964,0.0003118077,0.00020688,0.0001985023,0.0012918138],"category_scores_gemma":[0.0006574036,0.00010556116,0.000079157515,0.00012988287,0.00025338674,0.00025431687,0.00037566826,0.00025221487,0.00013724664],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00038874714,0.00028777376,0.98504364,0.000014468966,0.00003207626,0.00017232315,0.0010296649,0.00006765967,0.0048112674,0.00008711808,0.00058759615,0.007477667],"study_design_scores_gemma":[0.000004749305,0.00007747078,0.99891424,0.0000028222255,0.000005588273,0.000062572355,0.0004753329,0.00006644583,0.000094481074,0.000010953638,0.00028421995,0.0000010774653],"about_ca_topic_score_codex":0.016809681,"about_ca_topic_score_gemma":0.15196574,"teacher_disagreement_score":0.9831903,"about_ca_system_score_codex":0.00025306418,"about_ca_system_score_gemma":0.00028698266,"threshold_uncertainty_score":0.033423662},"labels":[],"label_agreement":null},{"id":"W2078073121","doi":"10.1016/j.foreco.2008.02.018","title":"Effects of mountain pine beetle (Dendroctonus ponderosae Hopkins) infestations on forest stand structure in the southern Canadian Rocky Mountains","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":40,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"Natural Resources Canada; Parks Canada","keywords":"Mountain pine beetle; Snag; Dendroctonus; Pinus contorta; Ecology; Forestry; Subalpine forest; Diameter at breast height; Species diversity; Coarse woody debris; Geography; Woody plant; Bark beetle; Montane ecology; Environmental science; Habitat; Biology; Bark (sound)","score_opus":0.0038082506680055727,"score_gpt":0.1879485289033253,"score_spread":0.18414027823531973,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2078073121","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99956435,0.000060916525,0.0000065698496,0.000019183086,9.558714e-7,0.0000013497043,0.000068375295,0.0000013390463,0.0002769469],"genre_scores_gemma":[0.99943715,0.000046334964,0.000029905688,0.000015688922,0.0000012111954,0.000001763523,0.0001156464,0.0000012272678,0.00035099467],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996183,0.000057116333,0.000012121344,0.00004313645,0.000086099106,0.00018310198],"domain_scores_gemma":[0.998708,0.00019476587,0.00020619144,0.0000385541,0.00031619018,0.000536254],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00041115846,0.00021738229,0.00029805506,0.0008110591,0.0015794339,0.00067202037,0.0006445333,0.00035623173,0.0014396124],"category_scores_gemma":[0.0009941544,0.00021741794,0.00024671978,0.00062341325,0.0010017315,0.00023689463,0.0003974896,0.00040363835,0.00010955653],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00062342745,0.00012476934,0.98531973,0.000025119669,0.00014355058,0.00021604435,0.0009232941,0.0006144409,0.005478254,0.000102847036,0.0005455967,0.005882941],"study_design_scores_gemma":[0.000002325637,0.000011849821,0.999532,0.0000013737875,0.000005753877,0.000014504547,0.00023809969,0.00008286354,0.000036206544,0.00000389113,0.00006927543,0.0000019260544],"about_ca_topic_score_codex":0.92524856,"about_ca_topic_score_gemma":0.9884736,"teacher_disagreement_score":0.07475144,"about_ca_system_score_codex":0.006637069,"about_ca_system_score_gemma":0.004446361,"threshold_uncertainty_score":0.1503833},"labels":[],"label_agreement":null},{"id":"W2079182940","doi":"10.1016/j.foreco.2010.12.020","title":"Characterizing stand-replacing disturbance in western Alberta grizzly bear habitat, using a satellite-derived high temporal and spatial resolution change sequence","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":33,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Thematic Mapper; Disturbance (geology); Remote sensing; Habitat; Satellite imagery; Environmental science; Thematic map; Ecology; Geography; Physical geography; Cartography; Geology","score_opus":0.03380316390755633,"score_gpt":0.22359114736819977,"score_spread":0.18978798346064343,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2079182940","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993536,0.000033781278,0.00009759809,0.000009293644,0.0000012673084,0.0000038924095,0.00021844941,0.000004743321,0.00027735022],"genre_scores_gemma":[0.9988851,0.000030589596,0.0002731108,0.000008726094,0.0000020732816,0.0000049113733,0.0005445507,0.0000025463596,0.0002484017],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986136,0.000013750484,0.0000069002654,0.000038612467,0.000038820344,0.000040525996],"domain_scores_gemma":[0.9996307,0.00004582634,0.00012136699,0.000026722568,0.000095005555,0.000080475766],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003380218,0.00017560806,0.00017122163,0.00108548,0.00058766786,0.00066475355,0.00047068865,0.0003134966,0.0005501762],"category_scores_gemma":[0.0006611953,0.00016212632,0.0001261324,0.0013634508,0.00043808357,0.00023989903,0.0002897636,0.00018608962,0.00009791828],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017347556,0.000068298184,0.98459005,0.000012531702,0.00005546114,0.00009798014,0.0004804772,0.0023036252,0.004413211,0.00006421064,0.00035573106,0.0073848367],"study_design_scores_gemma":[0.000002322631,0.000005833472,0.99829143,0.0000014563265,0.0000066723155,0.000023459934,0.00016769281,0.0012820514,0.00008403689,0.000008652993,0.00012416886,0.0000022805132],"about_ca_topic_score_codex":0.6536929,"about_ca_topic_score_gemma":0.90223294,"teacher_disagreement_score":0.3463071,"about_ca_system_score_codex":0.0020601822,"about_ca_system_score_gemma":0.0012584883,"threshold_uncertainty_score":0.6966931},"labels":[],"label_agreement":null},{"id":"W2080104418","doi":"10.1016/j.foreco.2013.05.043","title":"Canopy openings created by partial cutting increase growth rates and maintain the cover of three Cladonia species in the Canadian boreal forest","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":40,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia; Natural Sciences and Engineering Research Council; Université du Québec à Montréal","funders":"","keywords":"Clearcutting; Lichen; Cladonia; Thallus; Taiga; Biology; Canopy; Boreal; Botany; Ecology; Horticulture","score_opus":0.008574657505415183,"score_gpt":0.18650326453035748,"score_spread":0.1779286070249423,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2080104418","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99960726,0.000039323313,0.000016117387,0.0000042852016,6.5590785e-7,0.0000029703592,0.000035180583,0.0000023871514,0.0002918043],"genre_scores_gemma":[0.99940693,0.00002999261,0.000074913376,0.00000991975,4.917955e-7,0.00000351306,0.00010324223,0.0000022617737,0.00036882804],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979395,0.000014926085,0.000005988559,0.00003432173,0.000052761756,0.000098065706],"domain_scores_gemma":[0.9994653,0.00006276032,0.00008070129,0.000029329094,0.00009896465,0.00026290643],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019805593,0.00026682008,0.00023313072,0.00042090451,0.0012319462,0.00058080483,0.0006521008,0.00022194267,0.0006890653],"category_scores_gemma":[0.00043738363,0.00018697856,0.00017080292,0.0002581068,0.00066400104,0.0002499867,0.00043072377,0.00034388845,0.0000755033],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0026454306,0.00061959814,0.5259121,0.00016779648,0.00015245104,0.0004606001,0.0022732564,0.0018106179,0.43574765,0.00034457326,0.001104692,0.028761296],"study_design_scores_gemma":[0.000004506696,0.000048503138,0.99816656,0.0000025065078,0.000008711174,0.000027451304,0.00030445153,0.0002368323,0.0009280309,0.000010910536,0.00025664474,0.0000047929343],"about_ca_topic_score_codex":0.6645911,"about_ca_topic_score_gemma":0.9108049,"teacher_disagreement_score":0.33540893,"about_ca_system_score_codex":0.0042597433,"about_ca_system_score_gemma":0.0020445064,"threshold_uncertainty_score":0.67476845},"labels":[],"label_agreement":null},{"id":"W2080177694","doi":"10.1016/j.foreco.2011.05.013","title":"Growth, foliar nutrition and δ13C responses of red alder (Alnus rubra) to phosphorus additions soon after planting on moist sites","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Forests","funders":"Ministry of Environment","keywords":"Alder; Phosphorus; Sowing; Nutrient; Agronomy; Biology; Botany; Horticulture; Chemistry; Ecology","score_opus":0.010664536918654252,"score_gpt":0.2022340637967701,"score_spread":0.19156952687811585,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2080177694","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999559,0.000024777602,0.00004051954,0.000010649328,0.0000034681789,0.0000026769455,0.00012425506,0.0000046364726,0.0002299166],"genre_scores_gemma":[0.9971269,0.000036327976,0.00017812224,0.00006323271,0.0000062025733,0.000014023699,0.0005835732,0.000012869925,0.0019787548],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9998833,0.000015517293,0.000007842445,0.000049212376,0.000017983353,0.000026155896],"domain_scores_gemma":[0.99908876,0.00024683666,0.00014771093,0.00004539408,0.000111640846,0.00035969264],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019087941,0.00035307807,0.00032917593,0.00033589377,0.00040229806,0.00045465922,0.00050555606,0.00048667646,0.0014760022],"category_scores_gemma":[0.00048158315,0.00042388335,0.00023928544,0.00016473966,0.00050332764,0.00060239836,0.0003935795,0.0009663321,0.00039053944],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.010181816,0.0010563018,0.11695204,0.00008506131,0.000115609364,0.0003974197,0.0005127437,0.0009068066,0.8624969,0.00009948203,0.00034835062,0.00684743],"study_design_scores_gemma":[0.00006203464,0.0009861389,0.97255635,0.0000042597026,0.000049008147,0.00012975029,0.0003170449,0.001527945,0.023992872,0.00007469751,0.00028344852,0.000016371834],"about_ca_topic_score_codex":0.018596308,"about_ca_topic_score_gemma":0.0314715,"teacher_disagreement_score":0.018596308,"about_ca_system_score_codex":0.000677764,"about_ca_system_score_gemma":0.00028734514,"threshold_uncertainty_score":0.03697616},"labels":[],"label_agreement":null},{"id":"W2080529819","doi":"10.1016/j.foreco.2007.12.006","title":"Short-term effects of cut-to-length versus full-tree harvesting on understorey plant communities and understorey-regeneration associations in Manitoba boreal forests","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Manitoba; University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Understory; Shrub; Black spruce; Regeneration (biology); Plant community; Environmental science; Canopy; Ecology; Biology; Taiga; Forestry; Species richness; Agroforestry; Geography","score_opus":0.04277667164494586,"score_gpt":0.21748238256694272,"score_spread":0.17470571092199685,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2080529819","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997832,0.000048500307,0.000006495715,0.000009345038,0.0000015678983,0.0000016405862,0.000060624006,7.8236013e-7,0.00008781711],"genre_scores_gemma":[0.9992106,0.00005934846,0.000044269298,0.000029643525,0.0000030418662,0.000005611103,0.00015494652,0.0000017924826,0.0004907758],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997378,0.00008530837,0.000016323504,0.00005101823,0.000029348059,0.00008016479],"domain_scores_gemma":[0.99777335,0.0006258771,0.0003752679,0.00009282599,0.00022604124,0.00090671406],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008541701,0.00027280668,0.00028551003,0.00044398278,0.0007160051,0.0006938656,0.0007407869,0.00027541144,0.0012784317],"category_scores_gemma":[0.0014648966,0.00026109445,0.0003245958,0.00047175973,0.00095650397,0.00046425528,0.00070036494,0.00047073912,0.00013553888],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0034511723,0.0005175557,0.9774892,0.000043370805,0.00024081072,0.00016258027,0.0013812203,0.00030781777,0.011289496,0.0000640299,0.00025487083,0.0047979853],"study_design_scores_gemma":[0.0000049248915,0.00009120044,0.9992587,0.000002137537,0.000018393335,0.0000117889795,0.00040090937,0.00006162485,0.00009726595,0.000006507774,0.000044287946,0.000002241656],"about_ca_topic_score_codex":0.42085972,"about_ca_topic_score_gemma":0.8215141,"teacher_disagreement_score":0.42085972,"about_ca_system_score_codex":0.0030596722,"about_ca_system_score_gemma":0.0018614952,"threshold_uncertainty_score":0.8368201},"labels":[],"label_agreement":null},{"id":"W2080546606","doi":"10.1016/j.foreco.2007.04.029","title":"Comparative evaluation of five height–diameter models developed for black spruce and jack pine stand-types in terms of goodness-of-fit, lack-of-fit and predictive ability","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":73,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Black spruce; Mathematics; Basal area; Allometry; Statistics; Goodness of fit; Boreal; Range (aeronautics); Multivariate statistics; Ecology; Taiga; Biology","score_opus":0.07543855977542879,"score_gpt":0.32687344736097235,"score_spread":0.25143488758554355,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2080546606","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9724964,0.0007633607,0.023652779,0.00020373716,0.000052803254,0.00009306548,0.0010117999,0.00069751864,0.0010286111],"genre_scores_gemma":[0.9907742,0.00015640385,0.0067289737,0.000038469658,0.000013483993,0.00005788411,0.0017619346,0.0000853765,0.00038323025],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99684393,0.0017740402,0.0003003002,0.00048161251,0.00034754167,0.00025251132],"domain_scores_gemma":[0.95166075,0.043060105,0.0011327475,0.00089253974,0.0024727609,0.0007809963],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.023329547,0.0017339347,0.0016714185,0.0039869766,0.0007835612,0.0019374765,0.0023125955,0.0014842793,0.0010082263],"category_scores_gemma":[0.023347605,0.0006498245,0.003073173,0.0013135249,0.0006967192,0.0020808468,0.0009915347,0.0011864468,0.00038533832],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0034299227,0.0006420657,0.117326945,0.00026520094,0.0015851668,0.00025967296,0.0004249674,0.8285745,0.0015257795,0.0011528392,0.0013746619,0.043438375],"study_design_scores_gemma":[0.000117957476,0.0007822226,0.026191566,0.00004572742,0.0003897788,0.000097526514,0.00026737727,0.9699524,0.0010262813,0.00071177504,0.0003553081,0.000062196406],"about_ca_topic_score_codex":0.02030844,"about_ca_topic_score_gemma":0.014312106,"teacher_disagreement_score":0.023329547,"about_ca_system_score_codex":0.002495747,"about_ca_system_score_gemma":0.0020200144,"threshold_uncertainty_score":0.123379886},"labels":[],"label_agreement":null},{"id":"W2080671390","doi":"10.1016/j.foreco.2013.08.055","title":"Young jack pine and high severity fire combine to create potentially expansive areas of understocked forest","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":55,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"Natural Resources Canada","keywords":"Taiga; Boreal; Canopy; Forestry; Regeneration (biology); Fire ecology; Environmental science; Fire regime; Expansive; Ecology; Geography; Biology; Ecosystem","score_opus":0.0037575891749427404,"score_gpt":0.1804248680837393,"score_spread":0.17666727890879658,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2080671390","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9954906,0.00019023861,0.00091192394,0.000019983692,0.000007812215,0.00001617105,0.000041229065,0.000022608669,0.003299428],"genre_scores_gemma":[0.9983612,0.00008020855,0.0006482979,0.000026239157,0.00000533763,0.000010352575,0.000050913248,0.000009688076,0.0008077479],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999694,0.00003844405,0.000019091865,0.000067150584,0.00007354905,0.000107816755],"domain_scores_gemma":[0.9995425,0.000072187104,0.00012785218,0.00004403167,0.000041115327,0.00017234526],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002911293,0.00036878578,0.0004214216,0.00088326505,0.0011940462,0.0016193273,0.00047283573,0.00029145202,0.0020877002],"category_scores_gemma":[0.0003786971,0.0003958968,0.00031140633,0.00046409247,0.0008704379,0.0006367095,0.0023120532,0.0003633976,0.00029909748],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009644294,0.00055175764,0.5962161,0.0002630149,0.00036881506,0.004329781,0.0015517125,0.0038195795,0.34101093,0.0035913843,0.0008909142,0.04644164],"study_design_scores_gemma":[0.000015605592,0.00016615624,0.98389906,0.000024464893,0.0000931614,0.0038742914,0.0018719179,0.0008445473,0.0042503844,0.00090650737,0.004032844,0.000020908894],"about_ca_topic_score_codex":0.0027442663,"about_ca_topic_score_gemma":0.043585163,"teacher_disagreement_score":0.0027442663,"about_ca_system_score_codex":0.00034268983,"about_ca_system_score_gemma":0.0003921197,"threshold_uncertainty_score":0.0069841146},"labels":[],"label_agreement":null},{"id":"W2081741154","doi":"10.1016/j.foreco.2011.08.032","title":"Partial cutting does not maintain spider assemblages within the observed range of natural variability in Eastern Canadian black spruce forests","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec à Montréal; Natural Sciences and Engineering Research Council of Canada","funders":"Fonds Québécois de la Recherche sur la Nature et les Technologies","keywords":"Black spruce; Range (aeronautics); Natural (archaeology); Spider; Ecology; Natural forest; Geography; Environmental science; Biology; Taiga; Archaeology","score_opus":0.030943546161819217,"score_gpt":0.20576873316248107,"score_spread":0.17482518700066185,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2081741154","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995852,0.00004877022,0.000028564262,0.0000070928218,6.4753027e-7,0.0000011552584,0.00002850858,0.0000021626624,0.0002978918],"genre_scores_gemma":[0.9997464,0.000014354139,0.00004246085,0.000009047345,5.37812e-7,8.7445653e-7,0.000051577295,0.00000171208,0.0001330194],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99955064,0.000047968922,0.000017111972,0.00013784025,0.00010867497,0.00013769888],"domain_scores_gemma":[0.99837035,0.00023511166,0.0004004974,0.0002148902,0.0003587708,0.00042034558],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00051219785,0.00018312616,0.00040256447,0.0006200127,0.0013836109,0.00081581244,0.0008623366,0.0002553831,0.0009387629],"category_scores_gemma":[0.0013496656,0.00024974323,0.00017129023,0.00055963197,0.0011177362,0.00034156913,0.00041349462,0.00027149273,0.00008560619],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00034287953,0.00007550101,0.9660975,0.000034778008,0.00022347757,0.00010818517,0.00066220376,0.00029573092,0.02339489,0.00017573388,0.00022127561,0.008367952],"study_design_scores_gemma":[0.0000012092239,0.0000112358375,0.999516,0.000001351276,0.000008509385,0.00002728782,0.00014079525,0.00010694827,0.00007666594,0.000024342218,0.00008382066,0.0000018669299],"about_ca_topic_score_codex":0.45999143,"about_ca_topic_score_gemma":0.87628144,"teacher_disagreement_score":0.54000854,"about_ca_system_score_codex":0.0026198581,"about_ca_system_score_gemma":0.0024475907,"threshold_uncertainty_score":0.91462797},"labels":[],"label_agreement":null},{"id":"W2081953105","doi":"10.1016/j.foreco.2007.08.002","title":"Effects of [CO2] and nitrogen on morphological and biomass traits of white birch (Betula papyrifera) seedlings","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant responses to elevated CO2","field":"Agricultural and Biological Sciences","cited_by":42,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"","keywords":"Biomass (ecology); Horticulture; Nitrogen; Specific leaf area; Seedling; Botany; Chemistry; Animal science; Agronomy; Biology; Photosynthesis","score_opus":0.006843494341273794,"score_gpt":0.19785734122209236,"score_spread":0.19101384688081857,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2081953105","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999616,0.000065701985,0.000038632166,0.000018722385,0.0000045125594,0.0000024937174,0.000042779324,0.0000045592474,0.00020648522],"genre_scores_gemma":[0.9989316,0.00003800458,0.00011555979,0.00006044241,0.0000054235775,0.000009699215,0.0001301486,0.00000985938,0.00069927255],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998215,0.000041922,0.000016273994,0.000047055306,0.000025259005,0.000048012043],"domain_scores_gemma":[0.9987919,0.00044507525,0.00014895768,0.000047624766,0.00007923851,0.00048721596],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002595232,0.0004468015,0.0004696905,0.00027374804,0.00040638572,0.0005205805,0.0005068618,0.00052123866,0.0013616696],"category_scores_gemma":[0.00053309265,0.00044198395,0.00016637477,0.0002552144,0.000718577,0.00061637704,0.00042133243,0.00090559584,0.00016486317],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.009815703,0.0006621298,0.02260123,0.000081816484,0.0001063155,0.0003756057,0.00020388559,0.00043423806,0.96198595,0.00013241226,0.00011621449,0.0034844722],"study_design_scores_gemma":[0.00029522713,0.002083945,0.85403883,0.000009566599,0.00013374984,0.00035530145,0.00048290682,0.0037213303,0.13791274,0.00024317906,0.00066774164,0.000055463806],"about_ca_topic_score_codex":0.00900268,"about_ca_topic_score_gemma":0.019239036,"teacher_disagreement_score":0.00900268,"about_ca_system_score_codex":0.0008458441,"about_ca_system_score_gemma":0.0004803524,"threshold_uncertainty_score":0.017900586},"labels":[],"label_agreement":null},{"id":"W2081990860","doi":"10.1016/j.foreco.2012.11.010","title":"Fungal species assemblages associated with Phytophthora ramorum-infected coast live oaks following bark and ambrosia beetle colonization in northern California","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Pathogens and Resistance","field":"Agricultural and Biological Sciences","cited_by":39,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"University of Alberta","keywords":"Phytophthora ramorum; Biology; Ambrosia beetle; Colonization; Bark beetle; Ambrosia; Host (biology); Bark (sound); Woody plant; Botany; Ecology; Phytophthora; Curculionidae","score_opus":0.005787861616139457,"score_gpt":0.17289300792670695,"score_spread":0.1671051463105675,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2081990860","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99969995,0.000028521426,0.0000052949563,0.0000053703084,0.0000010785144,0.0000018774945,0.000059377406,5.060606e-7,0.00019801022],"genre_scores_gemma":[0.9994111,0.000059905808,0.000030272715,0.000006957395,0.0000017110457,0.0000027981337,0.00012892674,5.527156e-7,0.00035786902],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998981,0.000012420449,0.000005692931,0.000033590073,0.00001867801,0.000031503863],"domain_scores_gemma":[0.99944395,0.000052603133,0.00018804663,0.000016494007,0.00010950143,0.00018949946],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015495665,0.00012936447,0.00014848396,0.0005029953,0.0008348723,0.0004888673,0.00031295905,0.00019091109,0.00095280254],"category_scores_gemma":[0.00032849438,0.00017497742,0.00010507167,0.000259964,0.00028476355,0.00021964156,0.00034404767,0.00027135608,0.00009580796],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028143256,0.00010614678,0.99099284,0.00002079854,0.000030907147,0.00021274095,0.0017512349,0.00006484589,0.003938875,0.000022073373,0.00020764304,0.0023703983],"study_design_scores_gemma":[9.551107e-7,0.000014268201,0.9991233,0.0000028300858,0.0000040609225,0.0000244373,0.0007050075,0.000016569928,0.000046723257,0.0000018513115,0.0000593418,8.076898e-7],"about_ca_topic_score_codex":0.18069391,"about_ca_topic_score_gemma":0.5689876,"teacher_disagreement_score":0.18069391,"about_ca_system_score_codex":0.0007954665,"about_ca_system_score_gemma":0.00051404006,"threshold_uncertainty_score":0.35928434},"labels":[],"label_agreement":null},{"id":"W2082149633","doi":"10.1016/j.foreco.2007.01.001","title":"Self-thinning dynamics in a balsam fir (Abies balsamea (L.) Mill.) insect-mediated boreal forest chronosequence","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":31,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; U.S. Forest Service","keywords":"Abies balsamea; Balsam; Chronosequence; Thinning; Basal area; Black spruce; Spruce budworm; Silviculture; Forestry; Choristoneura fumiferana; Environmental science; Ecology; Biology; Taiga; Geography; Botany; Ecological succession; Tortricidae","score_opus":0.0052425768557756705,"score_gpt":0.20608767463806046,"score_spread":0.2008450977822848,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2082149633","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997222,0.00003742431,0.000028902832,0.0000035081678,0.0000012678992,0.0000010305018,0.00006886799,0.0000030261424,0.00013368677],"genre_scores_gemma":[0.9995572,0.00002061149,0.000076000455,0.0000063244593,0.0000014666748,0.0000025751306,0.0001489999,0.0000014577223,0.00018546256],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999651,0.00000581733,0.0000029765904,0.00001254131,0.0000047419935,0.0000087769395],"domain_scores_gemma":[0.99962425,0.000043950986,0.000114743394,0.000027386694,0.0000903913,0.00009923757],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033309995,0.00013247,0.00013878837,0.00043995492,0.00036177417,0.00037412022,0.0002221328,0.0002084136,0.0008690357],"category_scores_gemma":[0.0004198732,0.000109609406,0.0000866699,0.00018554075,0.0002027013,0.0002358424,0.00018090144,0.00015817373,0.00015282122],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00044741743,0.00015749912,0.9596343,0.000021421276,0.000056297136,0.0001946441,0.00058265816,0.00063266396,0.028863842,0.00017413341,0.00038967782,0.008845573],"study_design_scores_gemma":[0.0000056690956,0.000040490344,0.9986045,0.0000018306969,0.000011071587,0.000078603814,0.00007259128,0.000722615,0.00026413245,0.000019513674,0.00017542171,0.0000035301402],"about_ca_topic_score_codex":0.023000425,"about_ca_topic_score_gemma":0.06993398,"teacher_disagreement_score":0.023000425,"about_ca_system_score_codex":0.00043211793,"about_ca_system_score_gemma":0.0001953263,"threshold_uncertainty_score":0.045733094},"labels":[],"label_agreement":null},{"id":"W2082171844","doi":"10.1016/j.foreco.2004.09.002","title":"Retention of canopy lichens after partial-cut harvesting in wet-belt interior cedar–hemlock forests, British Columbia, Canada","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":29,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia","funders":"","keywords":"Lichen; Canopy; Environmental science; Understory; Tsuga; Tree canopy; Old-growth forest; Thallus; Forest floor; Agroforestry; Forestry; Ecology; Geography; Botany; Biology; Soil water; Soil science","score_opus":0.0067998985393454125,"score_gpt":0.1756464108934224,"score_spread":0.168846512354077,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2082171844","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990109,0.00015882173,0.000011506084,0.000023339973,0.0000021980047,0.0000042670963,0.00033314363,0.0000017036972,0.00045414103],"genre_scores_gemma":[0.9978283,0.00012700759,0.000035868783,0.000026601327,0.0000014436864,0.0000041390704,0.0004919639,0.000001487941,0.0014831533],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997658,0.00001629674,0.000009329327,0.00004086998,0.00004920298,0.00011851819],"domain_scores_gemma":[0.9988165,0.000083763436,0.00016654664,0.000044924363,0.0004497287,0.00043851335],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002704498,0.00017964802,0.0003253493,0.0007768295,0.0016333301,0.0009460575,0.0009224412,0.0003263138,0.0016999431],"category_scores_gemma":[0.0008276453,0.0001613463,0.00016606697,0.0011306836,0.00055747904,0.00035828495,0.0004282166,0.0004411303,0.00023184973],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00052448007,0.000102911545,0.988296,0.000024262044,0.00005406672,0.00013688585,0.0010899486,0.00012544352,0.0013475379,0.00003708195,0.00070253276,0.007558812],"study_design_scores_gemma":[0.000002238769,0.000009850379,0.99908507,0.00000497789,0.000005594796,0.00001515926,0.0006398953,0.000044536257,0.00003537801,0.0000036607232,0.00015127771,0.0000023135278],"about_ca_topic_score_codex":0.97879624,"about_ca_topic_score_gemma":0.9960311,"teacher_disagreement_score":0.021203756,"about_ca_system_score_codex":0.008660661,"about_ca_system_score_gemma":0.006759992,"threshold_uncertainty_score":0.06283778},"labels":[],"label_agreement":null},{"id":"W2082405629","doi":"10.1016/j.foreco.2008.07.020","title":"Carbon sequestration by forests and soils on mined land in the Midwestern and Appalachian coalfields of the U.S.","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":111,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan","funders":"","keywords":"Carbon sequestration; Land reclamation; Environmental science; Ecosystem; Forest ecology; Hardwood; Surface mining; Forestry; Afforestation; Litter; Soil quality; Soil water; Agroforestry; Land use; Ecology; Coal mining; Geography; Coal; Soil science; Carbon dioxide; Biology","score_opus":0.009202803381192544,"score_gpt":0.18937297478660442,"score_spread":0.1801701714054119,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2082405629","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99945027,0.00013379632,0.000008169251,0.00006902222,0.0000013663584,9.897759e-7,0.00013948671,4.3154296e-7,0.00019663072],"genre_scores_gemma":[0.99951434,0.00011933573,0.000023666034,0.000025141311,0.0000018460547,0.000002332139,0.00011403363,3.5475765e-7,0.00019898196],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99988556,0.000022575428,0.000009904266,0.000021945094,0.000016026002,0.00004402251],"domain_scores_gemma":[0.99976164,0.00004744297,0.00008552392,0.000009895807,0.000040721156,0.000054709522],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018859217,0.000111956186,0.00012190228,0.0006208985,0.000465463,0.00049737585,0.00024434415,0.00025652026,0.000782863],"category_scores_gemma":[0.0004795614,0.0001279656,0.00014190831,0.00095562404,0.0004519564,0.00040443504,0.00065434014,0.0002150675,0.000072593444],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000078493336,0.000028710092,0.99092406,0.00002120979,0.000032575146,0.00026753233,0.000855254,0.00037600793,0.00079791155,0.00020975077,0.00026411458,0.0061444133],"study_design_scores_gemma":[0.000002848264,0.0000068179597,0.99795365,0.000016501612,0.000006788348,0.00007074181,0.0012775772,0.00030096897,0.00006709988,0.000081338345,0.00021315616,0.0000025218778],"about_ca_topic_score_codex":0.36664551,"about_ca_topic_score_gemma":0.6899756,"teacher_disagreement_score":0.36664551,"about_ca_system_score_codex":0.0013215804,"about_ca_system_score_gemma":0.0012089119,"threshold_uncertainty_score":0.7290228},"labels":[],"label_agreement":null},{"id":"W2082449294","doi":"10.1016/j.foreco.2009.06.012","title":"Long-term response of planted conifers, natural regeneration, and vegetation to harvesting, scalping, and weeding on a boreal mixedwood site","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute","funders":"Forest Research Institute","keywords":"Boreal; Natural regeneration; Environmental science; Regeneration (biology); Vegetation (pathology); Forest regeneration; Term (time); Taiga; Agroforestry; Natural (archaeology); Agronomy; Ecology; Biology","score_opus":0.010484258209898786,"score_gpt":0.21033882501985096,"score_spread":0.19985456680995217,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2082449294","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998242,0.000013592439,0.000011773994,0.0000061308065,0.000002202458,0.0000017640782,0.000052915486,9.1515244e-7,0.00008647526],"genre_scores_gemma":[0.9994191,0.0000117720065,0.00003599641,0.000013747364,0.000004012258,0.0000063051525,0.0002019679,9.2537584e-7,0.00030621322],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983656,0.0000341465,0.000010257664,0.00004429433,0.000021846838,0.000052933097],"domain_scores_gemma":[0.99876547,0.0002451323,0.00024998907,0.00007480984,0.00013854547,0.0005259518],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033072513,0.00019651065,0.00023183622,0.00033411608,0.0006382899,0.00043786527,0.00035961438,0.0004279932,0.0009382117],"category_scores_gemma":[0.0008583958,0.00015462884,0.00026356077,0.00021598279,0.0005664517,0.00038962634,0.00044095312,0.00055865693,0.00021657092],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.003343025,0.0013973409,0.96225387,0.00002671817,0.00016062963,0.00043161795,0.000853255,0.00042299408,0.024616456,0.00005716403,0.00025230058,0.006184623],"study_design_scores_gemma":[0.0000063507955,0.00022539233,0.999062,0.0000012189619,0.000008906519,0.000050279406,0.00021728712,0.00013246051,0.00021086898,0.000014466886,0.000067009576,0.0000037061036],"about_ca_topic_score_codex":0.012457294,"about_ca_topic_score_gemma":0.064286426,"teacher_disagreement_score":0.012457294,"about_ca_system_score_codex":0.00053092965,"about_ca_system_score_gemma":0.0002536739,"threshold_uncertainty_score":0.024769545},"labels":[],"label_agreement":null},{"id":"W2082712999","doi":"10.1016/j.foreco.2012.03.016","title":"Epiphytic lichen colonization in regenerating black spruce forest stands of clearcut origin","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia; Université du Québec à Montréal; Natural Sciences and Engineering Research Council of Canada","funders":"","keywords":"Lichen; Epiphyte; Colonization; Thallus; Understory; Biology; Regeneration (biology); Taiga; Ecology; Black spruce; Botany; Canopy","score_opus":0.01718531753825368,"score_gpt":0.22712830970400955,"score_spread":0.20994299216575588,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2082712999","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99991,0.00002058338,0.0000066062867,5.140977e-7,1.5655158e-7,4.891819e-7,0.000008445203,5.719187e-7,0.000052633735],"genre_scores_gemma":[0.9997011,0.000020244252,0.000032662207,0.0000020812715,4.9993787e-7,0.0000013210858,0.000048341175,5.7680234e-7,0.0001931756],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998266,0.000030274618,0.0000104454,0.00004679134,0.00002016386,0.00006569546],"domain_scores_gemma":[0.99963,0.0000640864,0.000093504204,0.000018975528,0.00005099643,0.00014234227],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020848196,0.00022101439,0.00023138794,0.00065242965,0.00042660357,0.0004616831,0.00024938298,0.00020616302,0.00077640323],"category_scores_gemma":[0.0003903373,0.00013040134,0.000112893256,0.0002343136,0.00036109384,0.00035890372,0.00043518524,0.00018481893,0.0001283924],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011013767,0.00020530033,0.8891274,0.00006014449,0.00004843801,0.00044015783,0.0015107683,0.00020479463,0.10021944,0.00007543457,0.000056747085,0.0069500636],"study_design_scores_gemma":[0.0000024596782,0.00010335529,0.9987645,0.0000017289996,0.000006067788,0.00009869702,0.0003230135,0.00008990872,0.0005612429,0.000007294385,0.000040289084,0.0000015768685],"about_ca_topic_score_codex":0.013578885,"about_ca_topic_score_gemma":0.08331514,"teacher_disagreement_score":0.013578885,"about_ca_system_score_codex":0.00037572987,"about_ca_system_score_gemma":0.00023897491,"threshold_uncertainty_score":0.026999712},"labels":[],"label_agreement":null},{"id":"W2083076396","doi":"10.1016/s0378-1127(02)00303-1","title":"Carbon sequestration in a boreal forest ecosystem: results from the ecosystem simulation model, FORECAST","year":2002,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":154,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Environmental science; Biomass (ecology); Pinus contorta; Ecosystem; Carbon sequestration; Understory; Carbon cycle; Boreal ecosystem; Soil carbon; Litter; Agronomy; Taiga; Ecology; Biology; Soil science; Soil water; Canopy; Carbon dioxide","score_opus":0.01379014816885122,"score_gpt":0.20613990491168083,"score_spread":0.19234975674282961,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2083076396","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.996947,0.0000971224,0.00056949846,0.00022285458,0.000022041824,0.000009235911,0.000808767,0.00011030555,0.0012132917],"genre_scores_gemma":[0.997881,0.000054686814,0.0008795419,0.000029102144,0.000009456304,0.000012905011,0.00075997855,0.000027513286,0.0003459515],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997831,0.000095223426,0.000015759113,0.000038425012,0.000028775079,0.00003876189],"domain_scores_gemma":[0.9974433,0.0017337981,0.00014431351,0.00016292138,0.00030828573,0.00020733912],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012094922,0.00091260887,0.0008838519,0.00045223674,0.0006827335,0.0007001347,0.00085791666,0.0010684722,0.0013323836],"category_scores_gemma":[0.0031515635,0.00037346367,0.0006987736,0.0007257046,0.0006871969,0.0010798619,0.000387871,0.00083225314,0.0001137328],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005462855,0.0003345568,0.02551215,0.000038129998,0.00009570507,0.00010492027,0.00005030161,0.9667038,0.00076389086,0.0007439908,0.0017303007,0.0033759617],"study_design_scores_gemma":[0.00020070089,0.00011563045,0.009355792,0.0000048149586,0.00006374536,0.000025238614,0.00005178583,0.9887918,0.00053964625,0.0005794688,0.00025097997,0.000020371346],"about_ca_topic_score_codex":0.15295687,"about_ca_topic_score_gemma":0.117272094,"teacher_disagreement_score":0.15295687,"about_ca_system_score_codex":0.0013631936,"about_ca_system_score_gemma":0.0012637068,"threshold_uncertainty_score":0.30413312},"labels":[],"label_agreement":null},{"id":"W2083303015","doi":"10.1016/j.foreco.2012.09.039","title":"Understory plant community resilience to partial harvesting in riparian buffers of central Canadian boreal forests","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":23,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Forestry; Natural Resources Canada; Lakehead University","funders":"","keywords":"Understory; Riparian zone; Environmental science; Boreal; Ecology; Taiga; Geography; Plant community; Resilience (materials science); Agroforestry; Forestry; Canopy; Species richness; Habitat; Biology","score_opus":0.01373131068974589,"score_gpt":0.22191928615288614,"score_spread":0.20818797546314025,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2083303015","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99964345,0.000040934294,0.000017677528,0.000014522899,8.807235e-7,0.00000240511,0.000091625225,0.0000011085871,0.0001874771],"genre_scores_gemma":[0.99969184,0.000023063976,0.000031315238,0.000010328914,6.2507394e-7,0.000002382175,0.00009136588,9.874127e-7,0.00014827728],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99961287,0.000037585418,0.000013658258,0.000107872795,0.000056773457,0.00017133343],"domain_scores_gemma":[0.9986896,0.00016638958,0.00030388657,0.000080285376,0.00029797052,0.00046176242],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00050946476,0.00019108427,0.00027467508,0.0007331183,0.002134696,0.0010470733,0.0010400985,0.00036404823,0.0011696395],"category_scores_gemma":[0.0018740783,0.00021953728,0.00019904434,0.0010780297,0.0011910065,0.0005181938,0.0009124433,0.00030714544,0.000074486794],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022067652,0.00006885233,0.9861091,0.000029412986,0.00009391336,0.000112105394,0.003951105,0.0008172678,0.0016675572,0.00016905517,0.0003873228,0.006373608],"study_design_scores_gemma":[0.0000011884418,0.0000064344854,0.9983512,0.0000032106695,0.0000073701417,0.000016221373,0.001290324,0.00016946459,0.000024770708,0.000018029103,0.00010801504,0.0000037356294],"about_ca_topic_score_codex":0.94882774,"about_ca_topic_score_gemma":0.99098045,"teacher_disagreement_score":0.051172256,"about_ca_system_score_codex":0.0061307168,"about_ca_system_score_gemma":0.004263329,"threshold_uncertainty_score":0.102947176},"labels":[],"label_agreement":null},{"id":"W2083639002","doi":"10.1016/j.foreco.2014.08.027","title":"Occurrence patterns and niche relationships of sympatric owls in South American temperate forests: A multi-scale approach","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":33,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Environment and Climate Change Canada; University of British Columbia","funders":"","keywords":"Generalist and specialist species; Understory; Habitat; Ecology; Temperate rainforest; Threatened species; Temperate forest; Forest management; Guild; Geography; Temperate climate; Niche; Biology; Forestry; Ecosystem; Canopy","score_opus":0.014322141007306095,"score_gpt":0.21322153768880797,"score_spread":0.1988993966815019,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2083639002","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998431,0.000030324847,0.000023677478,0.0000030429965,4.441373e-7,0.0000011424434,0.000031196974,5.3620266e-7,0.00006649403],"genre_scores_gemma":[0.999718,0.000025885674,0.0000753688,0.0000045313573,0.0000013901604,0.000004975821,0.000074766234,0.0000012395133,0.00009376731],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996654,0.00009637967,0.000031780368,0.0001021818,0.00004416216,0.000060050566],"domain_scores_gemma":[0.99904186,0.00026290634,0.0003376306,0.00006453282,0.000117055715,0.00017600202],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006380752,0.00015904651,0.0003487984,0.0016177355,0.00067051087,0.0005939643,0.00037705732,0.0003087013,0.0009524195],"category_scores_gemma":[0.0010553232,0.00025645155,0.0003452476,0.0010656066,0.0006269024,0.0007401691,0.0009980305,0.00022038982,0.00011623103],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006168639,0.000031378855,0.99593604,0.000011929361,0.00006285135,0.000053537155,0.0012711734,0.000049745217,0.001182194,0.000021196147,0.0000287811,0.0012895598],"study_design_scores_gemma":[5.741389e-7,0.000008102406,0.9990995,0.0000012569466,0.000006139592,0.00003429825,0.0007116899,0.0000938916,0.000013417855,0.000008458815,0.000021429956,0.0000013065776],"about_ca_topic_score_codex":0.021023469,"about_ca_topic_score_gemma":0.09110417,"teacher_disagreement_score":0.021023469,"about_ca_system_score_codex":0.0003584469,"about_ca_system_score_gemma":0.00020746469,"threshold_uncertainty_score":0.041802227},"labels":[],"label_agreement":null},{"id":"W2083787556","doi":"10.1016/j.foreco.2007.10.062","title":"Edge effects created by wildfire and clear-cutting on boreal forest ground-dwelling spiders","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":61,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal; Carleton University","funders":"Natural Sciences and Engineering Research Council of Canada; Université du Québec à Montréal","keywords":"Transect; Species richness; Habitat; Abundance (ecology); Ecology; Coarse woody debris; Shrub; Taiga; Snag; Boreal; Environmental science; Clearcutting; Geography; Disturbance (geology); Debris; Biology","score_opus":0.010664355737833123,"score_gpt":0.1831649465139062,"score_spread":0.17250059077607308,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2083787556","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99972385,0.000024735316,0.00000596435,0.0000036667718,0.0000011985076,4.3166727e-7,0.0000138040095,4.9725554e-7,0.00022585892],"genre_scores_gemma":[0.99980456,0.0000158717,0.000022156437,0.000010567448,0.0000021441,0.0000010366825,0.000035967252,0.0000011471933,0.00010653972],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983823,0.00006157885,0.000009958958,0.000020914456,0.00001885009,0.000050395596],"domain_scores_gemma":[0.9985594,0.0006092261,0.00021462119,0.000054495205,0.00008527277,0.0004769915],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039698163,0.00017660987,0.00035892992,0.0003712251,0.0004439096,0.0006460819,0.0001919945,0.00036177624,0.0024215726],"category_scores_gemma":[0.0012532079,0.00017126328,0.0002903197,0.00016072518,0.0003890501,0.00045341128,0.0006077735,0.00034959038,0.0001401618],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.006409277,0.00080956984,0.95481396,0.00006985434,0.00025142776,0.00061765965,0.000472248,0.0010185223,0.023506809,0.0002803406,0.00025170654,0.011498635],"study_design_scores_gemma":[0.000015098968,0.00015628847,0.99903,0.000002090358,0.000023866047,0.00010341117,0.00022089152,0.00017448148,0.00014785824,0.0000586932,0.000063946136,0.0000033450335],"about_ca_topic_score_codex":0.0025612898,"about_ca_topic_score_gemma":0.0126173245,"teacher_disagreement_score":0.0025612898,"about_ca_system_score_codex":0.00020542348,"about_ca_system_score_gemma":0.00014335703,"threshold_uncertainty_score":0.008100927},"labels":[],"label_agreement":null},{"id":"W2084274911","doi":"10.1016/j.foreco.2007.05.010","title":"Immediate impacts of partial cutting strategies on stand characteristics and value","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"","keywords":"Balsam; Mathematics; Basal area; Environmental science; Forestry; Selection (genetic algorithm); Statistics; Agricultural engineering; Pulp and paper industry; Horticulture; Engineering; Biology; Geography; Computer science","score_opus":0.005632083482903378,"score_gpt":0.2257291993263633,"score_spread":0.22009711584345992,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2084274911","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9965209,0.00015249201,0.00012290997,0.00005209753,0.0000043536156,0.000005798073,0.000115154115,0.0000032937676,0.0030229148],"genre_scores_gemma":[0.999156,0.00004649099,0.00007920634,0.000027661274,0.0000031245256,0.0000024599335,0.00006994789,0.0000037759744,0.00061143376],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995834,0.000092607996,0.00001881223,0.00006123122,0.000069453046,0.00017444632],"domain_scores_gemma":[0.9974962,0.0012642173,0.000221681,0.00012304822,0.0002908733,0.0006040183],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00080317806,0.00027648697,0.00041465316,0.00031599647,0.0006229081,0.0014106964,0.00056272466,0.0005835173,0.010813597],"category_scores_gemma":[0.0027906732,0.00019702959,0.0005358099,0.00032234396,0.0005875889,0.0008741061,0.0009090876,0.0007246866,0.00034133458],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.008545825,0.0022680112,0.73135555,0.00033130375,0.0007520595,0.002397415,0.000928504,0.016646454,0.11910482,0.006396586,0.0018741859,0.10939926],"study_design_scores_gemma":[0.00003102436,0.0008583911,0.9890497,0.000017416834,0.00014686202,0.0002486148,0.0013050773,0.0019625816,0.0033300822,0.0020923973,0.0009370256,0.000020851763],"about_ca_topic_score_codex":0.004559928,"about_ca_topic_score_gemma":0.02204932,"teacher_disagreement_score":0.010813597,"about_ca_system_score_codex":0.0008771549,"about_ca_system_score_gemma":0.0007204531,"threshold_uncertainty_score":0.036175072},"labels":[],"label_agreement":null},{"id":"W2084479562","doi":"10.1016/j.foreco.2013.07.058","title":"Management and productivity of cedar-hemlock-salal scrub forests on the north coast of British Columbia","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Forests","funders":"","keywords":"Western Hemlock; Environmental science; Chamaecyparis; Productivity; Basal area; Canopy; Forest floor; Forestry; Soil water; Ecology; Geography; Biology","score_opus":0.006131699350764084,"score_gpt":0.17334628842298258,"score_spread":0.1672145890722185,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2084479562","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.998953,0.00014051989,0.000011564358,0.000046485307,0.0000015076027,0.0000033387905,0.00014185598,0.0000020179032,0.00069970544],"genre_scores_gemma":[0.998528,0.00014521873,0.000040495273,0.000024115106,0.0000010561713,0.0000036868817,0.0001633037,0.0000014299908,0.0010925762],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999696,0.000044204215,0.000017579197,0.00004096437,0.000059705268,0.00014151259],"domain_scores_gemma":[0.9991284,0.00008863029,0.00015344405,0.00003190252,0.0002956857,0.00030189392],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026722942,0.00017199348,0.00019755858,0.0011637781,0.0015560826,0.0007959851,0.00070869783,0.0002414606,0.0011899724],"category_scores_gemma":[0.00081046065,0.00015441403,0.00010564796,0.001393144,0.0006376137,0.00023266907,0.0005050746,0.00028377512,0.00016819441],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010395236,0.000083116465,0.9821415,0.000029498933,0.00004845681,0.000490513,0.0018475258,0.00025217232,0.0021418862,0.00014279882,0.00083384337,0.011884722],"study_design_scores_gemma":[0.0000022508655,0.00000522536,0.99841297,0.0000069119556,0.000005091232,0.000035324352,0.0010355257,0.00010156376,0.000052578947,0.000010771048,0.00032933094,0.0000025333047],"about_ca_topic_score_codex":0.9588186,"about_ca_topic_score_gemma":0.9948967,"teacher_disagreement_score":0.041181386,"about_ca_system_score_codex":0.0069758683,"about_ca_system_score_gemma":0.0048956187,"threshold_uncertainty_score":0.082847774},"labels":[],"label_agreement":null},{"id":"W2084493011","doi":"10.1016/j.foreco.2014.03.034","title":"Stand structure in fire refuges of the eastern Canadian boreal mixedwood forest","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval; Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal; Natural Sciences and Engineering Research Council of Canada","funders":"","keywords":"Taiga; Environmental science; Boreal; Ecology; Residual; Forestry; Agroforestry; Geography; Biology","score_opus":0.0023086584359988155,"score_gpt":0.16988233912738024,"score_spread":0.16757368069138143,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2084493011","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99923706,0.00011224334,0.000017192762,0.000015841902,0.0000016973341,0.000003222667,0.00026976154,0.0000012640851,0.000341738],"genre_scores_gemma":[0.9992449,0.00003608004,0.00003873504,0.000009890136,8.1158794e-7,0.0000026459363,0.00033031873,0.0000015796729,0.00033510829],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995814,0.00003102955,0.000016881482,0.00008256764,0.000070726084,0.00021727114],"domain_scores_gemma":[0.9989084,0.00008177527,0.00020535885,0.000042879,0.00028639226,0.00047512457],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040369487,0.00022299499,0.0003364548,0.0017198381,0.0019935055,0.0011245308,0.0009621585,0.0003683952,0.0017372734],"category_scores_gemma":[0.0010625194,0.0002443516,0.0002714909,0.001653791,0.0010226093,0.0003645866,0.0008920294,0.0004447582,0.00016604306],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00032770188,0.00006668031,0.98802626,0.000023111821,0.00009197943,0.00012954923,0.0020005153,0.0002773367,0.0022626736,0.00021474127,0.0005105244,0.0060689645],"study_design_scores_gemma":[0.0000020380185,0.000007166666,0.998868,0.0000030341694,0.0000048192187,0.0000280155,0.00077834725,0.00011410127,0.000021699489,0.000011563218,0.00015763793,0.0000035848657],"about_ca_topic_score_codex":0.9374319,"about_ca_topic_score_gemma":0.9925523,"teacher_disagreement_score":0.06256813,"about_ca_system_score_codex":0.007716153,"about_ca_system_score_gemma":0.0048722816,"threshold_uncertainty_score":0.12587315},"labels":[],"label_agreement":null},{"id":"W2085307652","doi":"10.1016/j.foreco.2013.03.018","title":"Impact of salvage logging on stand structure and beetle diversity in boreal balsam fir forest, 20 years after a spruce budworm outbreak","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Université Laval","funders":"Canadian Forest Service; Natural Resources Canada; Fonds Québécois de la Recherche sur la Nature et les Technologies; Université Laval","keywords":"Balsam; Spruce budworm; Taiga; Salvage logging; Logging; Outbreak; Forestry; Choristoneura fumiferana; Ecology; Snag; Geography; Agroforestry; Biology; Tortricidae; Botany; Lepidoptera genitalia; Habitat","score_opus":0.008956828163654677,"score_gpt":0.200564619003442,"score_spread":0.19160779083978732,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2085307652","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99978954,0.00003574268,0.000004896161,0.000014618504,0.0000034852371,9.373583e-7,0.000061578015,7.312215e-7,0.000088480934],"genre_scores_gemma":[0.9997092,0.000023739374,0.000008866476,0.000011572648,0.0000039094,0.0000013716494,0.00015413211,3.0246676e-7,0.000086833774],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997445,0.00004075239,0.000023793886,0.000043638243,0.000028643506,0.0001186723],"domain_scores_gemma":[0.99869883,0.00020946751,0.00046389905,0.000058914567,0.00015238418,0.0004164059],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006126979,0.00026743946,0.0001975763,0.0005327216,0.0007241423,0.0006176641,0.00040284873,0.00070006866,0.00085884985],"category_scores_gemma":[0.0013645218,0.00014064122,0.0003921945,0.00030985393,0.00049465935,0.0004985297,0.000450704,0.00053253426,0.00013163731],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00039337497,0.00035349213,0.99574584,0.0000058329424,0.000049599348,0.0004440447,0.00020652173,0.00012250496,0.00058729947,0.000010065385,0.000093021496,0.0019883637],"study_design_scores_gemma":[0.00000223942,0.00009251389,0.9994518,0.0000018990892,0.000014720123,0.00007078824,0.00020967463,0.00007647241,0.000040965573,0.0000047924013,0.000032123844,0.0000019057948],"about_ca_topic_score_codex":0.030520493,"about_ca_topic_score_gemma":0.1008735,"teacher_disagreement_score":0.030520493,"about_ca_system_score_codex":0.0008464221,"about_ca_system_score_gemma":0.0004605396,"threshold_uncertainty_score":0.060685694},"labels":[],"label_agreement":null},{"id":"W2085366970","doi":"10.1016/j.foreco.2012.02.001","title":"Response of bird communities to single-tree selection system harvesting in northern hardwoods: 10–12years post-harvest","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Species richness; Sparrow; Warbler; Biology; Habitat; Abundance (ecology); Ecology; Hardwood","score_opus":0.01189762750122759,"score_gpt":0.21614668245982807,"score_spread":0.2042490549586005,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2085366970","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99981767,0.00001365668,0.0000066862845,0.00001230785,0.000001928638,0.0000014750268,0.00005629076,5.0418447e-7,0.00008967101],"genre_scores_gemma":[0.9990716,0.000017532131,0.000011950962,0.000012177473,0.0000031533366,0.000005287805,0.00019797146,5.744526e-7,0.0006796981],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99980456,0.000023104156,0.00000899479,0.000043938166,0.000017042013,0.00010243987],"domain_scores_gemma":[0.9989415,0.00016919957,0.00027306032,0.000041087234,0.00010590349,0.0004693529],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003676835,0.00016127768,0.00019605848,0.00032978342,0.00054508203,0.0004747244,0.00030155934,0.0005710816,0.0038227218],"category_scores_gemma":[0.0010104058,0.00020699186,0.00029559672,0.0001901138,0.00030494746,0.0005655753,0.00063302525,0.0005566351,0.0005857518],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00076849223,0.0003608388,0.9942569,0.000008330273,0.000025473284,0.00016117892,0.0006387843,0.000073589705,0.001662673,0.00001577003,0.00015781396,0.0018702887],"study_design_scores_gemma":[0.0000010838188,0.000073203766,0.9993668,0.0000010754993,0.0000021037783,0.000019049323,0.00042586363,0.000035321937,0.000041799285,0.0000038268918,0.000028568398,0.000001135306],"about_ca_topic_score_codex":0.018813482,"about_ca_topic_score_gemma":0.07072938,"teacher_disagreement_score":0.018813482,"about_ca_system_score_codex":0.0005225584,"about_ca_system_score_gemma":0.00029259964,"threshold_uncertainty_score":0.037407994},"labels":[],"label_agreement":null},{"id":"W2085694651","doi":"10.1016/j.foreco.2015.02.028","title":"How important is dead wood for woodpeckers foraging in eastern North American boreal forests?","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":70,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"","keywords":"Woodpecker; Foraging; Ecology; Taiga; Biology; Nest (protein structural motif); National park; Boreal; Snag; Bark (sound); Habitat","score_opus":0.02291539378571337,"score_gpt":0.21553091637715688,"score_spread":0.19261552259144352,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2085694651","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982186,0.00047358024,0.00004220065,0.00011596145,0.000008120781,0.000001039097,0.00002209479,6.916151e-7,0.0011177869],"genre_scores_gemma":[0.99943644,0.00023445542,0.000038984002,0.000039406495,0.000010780969,7.390078e-7,0.000025118767,8.592793e-7,0.00021321732],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998118,0.000048927344,0.000010607893,0.00004459357,0.000026049851,0.000057962578],"domain_scores_gemma":[0.9991572,0.00020667366,0.00028655512,0.000035273697,0.0000687215,0.0002455898],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039401802,0.0001926139,0.00018197701,0.00044334988,0.00063021044,0.00083742983,0.00038430473,0.00042115056,0.0018436892],"category_scores_gemma":[0.0011283127,0.00014694854,0.00013530282,0.00025532683,0.0010484827,0.0010009825,0.00043413878,0.00029668826,0.00011744295],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00026064942,0.00009712655,0.9686312,0.0000990644,0.00008479667,0.00032889872,0.002068547,0.0001517012,0.002977758,0.00040830314,0.00030928603,0.024582533],"study_design_scores_gemma":[0.0000015649902,0.000019098896,0.99607193,0.000016008116,0.000017282773,0.00013067643,0.003025962,0.00007714212,0.00004313375,0.00016927197,0.00042495877,0.0000028750828],"about_ca_topic_score_codex":0.015677609,"about_ca_topic_score_gemma":0.12710336,"teacher_disagreement_score":0.015677609,"about_ca_system_score_codex":0.0003648197,"about_ca_system_score_gemma":0.00022783052,"threshold_uncertainty_score":0.031172693},"labels":[],"label_agreement":null},{"id":"W2086849268","doi":"10.1016/j.foreco.2010.11.020","title":"Long-term influence of fire and harvesting on boreal forest age structure and forest composition in eastern Québec","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":84,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada; Université Laval","keywords":"Clearcutting; Abies balsamea; Taiga; Disturbance (geology); Balsam; Abundance (ecology); Black spruce; Ecology; Forest management; Boreal; Environmental science; Geography; Logging; Silviculture; Range (aeronautics); Forestry; Fire ecology; Slash (logging); Forest ecology; Ecosystem; Geology; Biology","score_opus":0.006921978339174769,"score_gpt":0.19739125173914518,"score_spread":0.1904692733999704,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2086849268","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.998324,0.0002722778,0.00005164035,0.00013933962,0.000009217285,0.0000067248598,0.00063853245,0.0000050910744,0.00055326294],"genre_scores_gemma":[0.99809486,0.000104929335,0.000050298175,0.000046467794,0.000004024405,0.0000067084065,0.00041963987,0.0000031399925,0.0012698623],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995633,0.00009890793,0.00002018094,0.000071526076,0.00006942072,0.00017662368],"domain_scores_gemma":[0.9977355,0.00032670208,0.0003796434,0.000102686536,0.00076348113,0.0006919298],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008085631,0.00023171028,0.0003303895,0.0007510472,0.0015856209,0.000938138,0.0009791435,0.00046834524,0.002078466],"category_scores_gemma":[0.0016642072,0.0001959669,0.00039238425,0.0010919954,0.00075643894,0.0004491161,0.00051766087,0.00065355795,0.00019085337],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018034906,0.000088111556,0.9934617,0.000008493974,0.000105521925,0.000096857286,0.0006768097,0.00026165042,0.00058099435,0.000058940186,0.00061639823,0.0038640061],"study_design_scores_gemma":[0.000002659813,0.000009047267,0.9992267,0.0000036565034,0.0000075355574,0.000011170776,0.000351902,0.00013406317,0.00001943584,0.0000034340435,0.00022699029,0.0000033602732],"about_ca_topic_score_codex":0.9864531,"about_ca_topic_score_gemma":0.99598396,"teacher_disagreement_score":0.015334783,"about_ca_system_score_codex":0.015334783,"about_ca_system_score_gemma":0.007833981,"threshold_uncertainty_score":0.1112622},"labels":[],"label_agreement":null},{"id":"W2086932004","doi":"10.1016/j.foreco.2008.12.025","title":"Simulating age-related changes in carbon storage and allocation in a Chinese fir plantation growing in southern China using the 3-PG model","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":142,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"","keywords":"Cunninghamia; Environmental science; Biomass (ecology); Primary production; Plant litter; Productivity; Forestry; Carbon cycle; Litter; Agroforestry; Range (aeronautics); Soil respiration; Ecosystem; Carbon sequestration; Forest ecology; Temperate rainforest; Atmospheric sciences; Ecology; Geography; Biology; Botany; Carbon dioxide","score_opus":0.006127106026426562,"score_gpt":0.2090519682947208,"score_spread":0.20292486226829426,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2086932004","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9987747,0.000013620516,0.0005865479,0.00003879957,0.0000045046013,0.0000035572702,0.000119868026,0.00003383768,0.0004245581],"genre_scores_gemma":[0.9993968,0.000010712756,0.00027010948,0.0000066975067,0.0000013853536,0.0000044413364,0.00007965339,0.000005917229,0.0002241675],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999188,0.000015971516,0.0000039539586,0.000023924738,0.0000064606625,0.000030965104],"domain_scores_gemma":[0.99961615,0.0001743988,0.00004306295,0.000026398771,0.000048173973,0.00009181568],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037614434,0.00053858844,0.00058140245,0.00034383684,0.00051094225,0.00043228912,0.0010346383,0.0010363612,0.0013595258],"category_scores_gemma":[0.00070816785,0.00037618648,0.0007359543,0.0005106206,0.0005612147,0.00051843445,0.00037926724,0.000444882,0.00008698304],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000104361716,0.00006546104,0.013437825,0.000013554381,0.000028148024,0.00011805032,0.00004022885,0.98330265,0.0015661059,0.0002689629,0.00013011083,0.0009244948],"study_design_scores_gemma":[0.000019766967,0.000022791226,0.0055667763,7.8236695e-7,0.000012683293,0.0000068920394,0.000024239627,0.9940533,0.0001620889,0.000094674455,0.000028688419,0.000007354107],"about_ca_topic_score_codex":0.19628212,"about_ca_topic_score_gemma":0.122228324,"teacher_disagreement_score":0.19628212,"about_ca_system_score_codex":0.0018620401,"about_ca_system_score_gemma":0.0015473776,"threshold_uncertainty_score":0.39027923},"labels":[],"label_agreement":null},{"id":"W2087032783","doi":"10.1016/j.foreco.2004.05.048","title":"The application of a hierarchical, decision-support system to evaluate multi-objective forest management strategies: a case study in northeastern British Columbia, Canada","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":81,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"Social Sciences and Humanities Research Council of Canada","keywords":"Forest management; Baseline (sea); Environmental resource management; Management by objectives; Disturbance (geology); Decision support system; Recreation; Environmental science; Ecology; Geography; Computer science; Business; Agroforestry","score_opus":0.007214553876689381,"score_gpt":0.2461647675449462,"score_spread":0.23895021366825683,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2087032783","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9886049,0.00010168939,0.005946127,0.00024388853,0.000011858883,0.00041699983,0.00034475417,0.0003086352,0.004021053],"genre_scores_gemma":[0.9840094,0.00007242749,0.014241453,0.000033902146,0.0000029693624,0.00008911809,0.00019617718,0.00001811843,0.0013364286],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9987161,0.00047075262,0.00011071194,0.00016779822,0.00030454397,0.00023014132],"domain_scores_gemma":[0.99495053,0.0027713948,0.00026053964,0.0001706456,0.0014190831,0.0004276764],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0032202199,0.00083280326,0.0005886323,0.0014521678,0.002728594,0.0025548039,0.0012398344,0.0009328764,0.0023091577],"category_scores_gemma":[0.008834285,0.00045843722,0.00029249897,0.0019842384,0.0010206116,0.000835115,0.00081847113,0.0006615417,0.00021620694],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0019264597,0.0017189205,0.08842092,0.00031552714,0.00023898875,0.0013939706,0.0022585758,0.74212,0.005314375,0.002141249,0.004592962,0.14955795],"study_design_scores_gemma":[0.0003062003,0.00038275984,0.024598636,0.000031039803,0.00010348802,0.00004568159,0.0018954466,0.9680539,0.0019923018,0.00078436884,0.0017416377,0.00006456208],"about_ca_topic_score_codex":0.9336241,"about_ca_topic_score_gemma":0.9491491,"teacher_disagreement_score":0.06637591,"about_ca_system_score_codex":0.021162981,"about_ca_system_score_gemma":0.017136242,"threshold_uncertainty_score":0.1535489},"labels":[],"label_agreement":null},{"id":"W2088142504","doi":"10.1016/j.foreco.2013.07.033","title":"Quantifying connectivity using graph based connectivity response curves in complex landscapes under simulated forest management scenarios","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife-Road Interactions and Conservation","field":"Environmental Science","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Thompson Rivers University","funders":"","keywords":"Landscape connectivity; Computer science; Functional connectivity; Graph; Environmental science; Ecology; Biology; Theoretical computer science; Neuroscience","score_opus":0.03348422770367034,"score_gpt":0.26932291269225983,"score_spread":0.23583868498858948,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2088142504","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9972429,0.000020357404,0.0020228534,0.0000459456,0.0000032264384,0.00001119441,0.0002616198,0.000035537007,0.0003562353],"genre_scores_gemma":[0.9988343,0.000008423624,0.00089855044,0.000003804161,8.5138817e-7,0.000008187327,0.0001756511,0.000005688534,0.00006448164],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9995309,0.00026158142,0.000020347756,0.00008800795,0.00004461932,0.000054559096],"domain_scores_gemma":[0.99252313,0.0059614987,0.00061667984,0.00029954396,0.0003537114,0.00024552274],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0014274959,0.00037794712,0.00027846498,0.0013349075,0.00024995883,0.00056513643,0.00069807866,0.00084616087,0.0011744475],"category_scores_gemma":[0.008150874,0.00017987615,0.0004914489,0.0011440461,0.00048212006,0.0011513195,0.00042595013,0.00040944526,0.00007083374],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016828865,0.00007089978,0.025082514,0.000021760035,0.000071617,0.000045618493,0.00006435631,0.97042453,0.00042145394,0.0007024135,0.00025119574,0.0026752553],"study_design_scores_gemma":[0.000020214278,0.00009432596,0.019696493,0.000006770057,0.00002685189,0.000031270178,0.00008722111,0.9784694,0.00026974437,0.0011404732,0.00014332602,0.000013989475],"about_ca_topic_score_codex":0.023249872,"about_ca_topic_score_gemma":0.027133215,"teacher_disagreement_score":0.023249872,"about_ca_system_score_codex":0.0013592746,"about_ca_system_score_gemma":0.00030621767,"threshold_uncertainty_score":0.046229064},"labels":[],"label_agreement":null},{"id":"W2088382061","doi":"10.1016/j.foreco.2014.03.014","title":"Integrating climatic response in competition dependent tree-level growth models for northern hardwoods","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Outaouais; Ministry of Natural Resources and Wildlife; Université de Montréal; Université du Québec à Montréal","funders":"","keywords":"Basal area; Climate change; Environmental science; Precipitation; Growth function; Climatology; Tree (set theory); Competition (biology); Physical geography; Ecology; Atmospheric sciences; Geography; Mathematics; Meteorology; Biology; Statistics; Geology","score_opus":0.0215050729019886,"score_gpt":0.2295248114094342,"score_spread":0.2080197385074456,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2088382061","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9748505,0.00023770524,0.021209393,0.00033693187,0.000034027482,0.000016983418,0.00032728218,0.00010810261,0.0028790536],"genre_scores_gemma":[0.9957526,0.000075898264,0.0017816077,0.000050543527,0.000013616169,0.000017180275,0.00014699447,0.000042600535,0.0021189523],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997582,0.000096945245,0.000011800464,0.00006393346,0.00001796369,0.000051182476],"domain_scores_gemma":[0.99906677,0.000624077,0.00008464038,0.000039967446,0.00007567416,0.00010886067],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012513018,0.0005920471,0.0008147377,0.00034677752,0.00061887526,0.0009186709,0.0016459525,0.0014464057,0.002260089],"category_scores_gemma":[0.0024388535,0.00062240695,0.0009327977,0.00048078413,0.0005837899,0.0009619357,0.000726625,0.00091425737,0.00024649358],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00002269473,0.000028836128,0.0025152073,0.0000075427834,0.000020292502,0.000021096821,0.000023623174,0.9952703,0.00035927363,0.0009005809,0.00008020615,0.00075037073],"study_design_scores_gemma":[0.000005318316,0.000007269172,0.0009285566,0.0000013988979,0.0000073888014,0.000004253829,0.000010427623,0.99853253,0.00005002825,0.00039030492,0.000057788744,0.000004651254],"about_ca_topic_score_codex":0.070736244,"about_ca_topic_score_gemma":0.07192468,"teacher_disagreement_score":0.070736244,"about_ca_system_score_codex":0.0016647333,"about_ca_system_score_gemma":0.001161504,"threshold_uncertainty_score":0.14064902},"labels":[],"label_agreement":null},{"id":"W2088431911","doi":"10.1016/j.foreco.2008.10.029","title":"Mapping site index and age by linking a time series of canopy height models with growth curves","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":71,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"","keywords":"Canopy; Lidar; Site index; Mean squared error; Aerial photography; Remote sensing; Photogrammetry; Tree canopy; Environmental science; Mathematics; Statistics; Geography; Forestry","score_opus":0.005746965597664502,"score_gpt":0.17103675914802402,"score_spread":0.16528979355035953,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2088431911","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.93656796,0.00023271222,0.05530333,0.00007941895,0.000030661566,0.000044835986,0.005571698,0.0010211477,0.0011481905],"genre_scores_gemma":[0.9633934,0.00012544829,0.029258369,0.000019581257,0.00002228866,0.000038868,0.006457679,0.00007711799,0.0006072812],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997441,0.00005088381,0.000015806574,0.000114138194,0.00004489718,0.00003007782],"domain_scores_gemma":[0.9985275,0.0006471105,0.00031360378,0.00021119237,0.00020368324,0.00009677634],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00092301395,0.00073817733,0.00051468005,0.0030749985,0.00022945879,0.000797865,0.00060169917,0.0007188284,0.0010831526],"category_scores_gemma":[0.0025601767,0.00034210275,0.00068137073,0.0030403333,0.00016054092,0.00092310633,0.0003710763,0.00047695625,0.0007030563],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00040653523,0.00061119604,0.6060221,0.000070331764,0.00044296205,0.00011661334,0.0001291011,0.28157827,0.008255481,0.0007945459,0.0021788992,0.09939392],"study_design_scores_gemma":[0.000030887208,0.0000920089,0.23424454,0.000014792478,0.00012677505,0.0001448119,0.00006594885,0.76027954,0.002151934,0.0018906713,0.00091360946,0.00004449735],"about_ca_topic_score_codex":0.018348081,"about_ca_topic_score_gemma":0.026088312,"teacher_disagreement_score":0.018348081,"about_ca_system_score_codex":0.0005628818,"about_ca_system_score_gemma":0.0004498925,"threshold_uncertainty_score":0.036482513},"labels":[],"label_agreement":null},{"id":"W2088595002","doi":"10.1016/j.foreco.2013.06.006","title":"Impact of clear cutting on soil microbial communities and bioavailable nutrients in the LFH and Ae horizons of Boreal Plain forest soils","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":31,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan","funders":"Fisheries and Oceans Canada; Natural Sciences and Engineering Research Council of Canada; Forest Resource Improvement Association of Alberta","keywords":"Soil water; Microbial population biology; Nutrient; Biomass (ecology); Environmental science; Taiga; Agronomy; Ecology; Biology; Soil science","score_opus":0.01045397234809416,"score_gpt":0.21109449101185773,"score_spread":0.20064051866376356,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2088595002","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99973696,0.00006625127,0.000015708796,0.000007657792,0.0000013900117,0.0000016726941,0.000027046528,7.788906e-7,0.00014246193],"genre_scores_gemma":[0.99957246,0.000047189755,0.00008745205,0.000026226833,0.0000027695996,0.0000028994475,0.00009510736,9.4559374e-7,0.00016505294],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997278,0.000043041404,0.000019712874,0.000053480795,0.000045898152,0.000110149624],"domain_scores_gemma":[0.99916816,0.00015923579,0.00022891519,0.0000334338,0.000090314315,0.0003199732],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039189024,0.0002704227,0.00023752429,0.00047913758,0.0006384164,0.00061354117,0.00028106102,0.00034871127,0.0011041621],"category_scores_gemma":[0.000524988,0.00020356473,0.000192026,0.00021342309,0.0006999376,0.0004947763,0.0006227069,0.0003772326,0.00005745955],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.003531655,0.0005864816,0.74674296,0.00017124636,0.00023621428,0.0004604429,0.0007386095,0.00082430383,0.22944339,0.00032501854,0.00017259605,0.01676704],"study_design_scores_gemma":[0.000005959638,0.00008442253,0.99892646,0.0000027225092,0.000010370516,0.000020873953,0.0001656868,0.00009605783,0.000592581,0.00001931621,0.000073085655,0.0000025395918],"about_ca_topic_score_codex":0.028658427,"about_ca_topic_score_gemma":0.09596692,"teacher_disagreement_score":0.028658427,"about_ca_system_score_codex":0.0008537763,"about_ca_system_score_gemma":0.0007947667,"threshold_uncertainty_score":0.056983232},"labels":[],"label_agreement":null},{"id":"W2088706895","doi":"10.1016/j.foreco.2008.08.034","title":"Can predicted mountain pine beetle net production be used to improve stand prioritization for management?","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":14,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of Northern British Columbia","funders":"","keywords":"Brood; Mountain pine beetle; Productivity; Pinus contorta; Prioritization; Environmental science; Ecology; Forest management; Agroforestry; Biology; Business","score_opus":0.008580460605832431,"score_gpt":0.21249990384755627,"score_spread":0.20391944324172384,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2088706895","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9459448,0.00095822534,0.0409368,0.0023438525,0.00016618002,0.000074824806,0.0019150139,0.0007486925,0.0069114547],"genre_scores_gemma":[0.98652786,0.00018072469,0.011355644,0.00019092885,0.00004682622,0.000022615992,0.0006910189,0.00002852929,0.0009558946],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99948525,0.00028509495,0.000022416414,0.00009194508,0.000061180326,0.000054188084],"domain_scores_gemma":[0.99747187,0.0013990727,0.00036835021,0.00012131469,0.00045620676,0.00018313796],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00252911,0.0006111448,0.0010287082,0.0009857288,0.00037600362,0.0014279255,0.0008100677,0.00097345054,0.003940719],"category_scores_gemma":[0.0077360617,0.0002668071,0.00034294097,0.0008141416,0.00020741427,0.0013742507,0.00028740295,0.00042094363,0.0010023129],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012822223,0.00049718365,0.7110234,0.00021844986,0.0006801562,0.00013810466,0.00011261856,0.07173449,0.005726434,0.0012173365,0.0073782867,0.19999124],"study_design_scores_gemma":[0.00017349614,0.0005032465,0.49516717,0.000058745594,0.00025867645,0.0001267358,0.0005157118,0.49146825,0.0030163836,0.005095609,0.0035491586,0.000066788576],"about_ca_topic_score_codex":0.015276227,"about_ca_topic_score_gemma":0.039144203,"teacher_disagreement_score":0.015276227,"about_ca_system_score_codex":0.000515907,"about_ca_system_score_gemma":0.0007846869,"threshold_uncertainty_score":0.030374587},"labels":[],"label_agreement":null},{"id":"W2089773515","doi":"10.1016/j.foreco.2004.11.010","title":"Soil, surface water and ground water phosphorus relationships in a partially harvested Boreal Plain aspen catchment","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil and Water Nutrient Dynamics","field":"Environmental Science","cited_by":41,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Western University; University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; Alberta-Pacific Forest Industries","keywords":"Soil water; Surface water; Phosphorus; Environmental science; Hydrology (agriculture); Wetland; Soil horizon; Geology; Chemistry; Soil science; Ecology; Biology","score_opus":0.009522566838157187,"score_gpt":0.1991850384428324,"score_spread":0.1896624716046752,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2089773515","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998797,0.0000039153097,0.00000907678,0.0000034837005,2.174275e-7,0.0000015546588,0.00003325088,8.1726944e-7,0.00006792248],"genre_scores_gemma":[0.9996737,0.000010128004,0.00004275051,0.000004653431,9.5056953e-7,0.0000033099066,0.00010463408,6.7022347e-7,0.00015916434],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998549,0.000028768694,0.0000116271285,0.000036209025,0.000025973155,0.000042393276],"domain_scores_gemma":[0.9997148,0.000079465564,0.0000508044,0.000013447582,0.00003954704,0.000101917554],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023175027,0.00017960418,0.00031447783,0.00042970382,0.0007093986,0.0006753442,0.00047149786,0.00031263698,0.0006564351],"category_scores_gemma":[0.0006239878,0.00019453674,0.00018183373,0.00084119063,0.00070499233,0.0005061045,0.0005312033,0.0002361653,0.0000908114],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012700052,0.00070300716,0.97669286,0.000030104384,0.000078234574,0.0017106674,0.0022336897,0.0026576833,0.00889193,0.00023742404,0.0002535158,0.005240801],"study_design_scores_gemma":[0.000018931732,0.000092445625,0.9963152,0.0000013456956,0.000016186963,0.00014837903,0.001098945,0.0019217373,0.00019914322,0.000049482387,0.00013270428,0.000005533133],"about_ca_topic_score_codex":0.12393918,"about_ca_topic_score_gemma":0.23693877,"teacher_disagreement_score":0.12393918,"about_ca_system_score_codex":0.0012418347,"about_ca_system_score_gemma":0.0006467116,"threshold_uncertainty_score":0.24643558},"labels":[],"label_agreement":null},{"id":"W2089956530","doi":"10.1016/j.foreco.2013.05.008","title":"Interactions between stand thinning, site quality and host tree species on spruce budworm biological performance and host tree resistance over a 6 year period after thinning","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval; Centre de Géomatique du Québec","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Abies balsamea; Spruce budworm; Balsam; Choristoneura fumiferana; Thinning; Black spruce; Biology; Botany; Forestry; Agronomy; Ecology; PEST analysis; Tortricidae; Taiga; Geography","score_opus":0.012774207531558175,"score_gpt":0.23230163933953707,"score_spread":0.2195274318079789,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2089956530","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998516,0.000033293578,0.000011923598,0.0000066755515,0.0000023376026,0.0000010062672,0.00003618008,0.0000013094755,0.000055498214],"genre_scores_gemma":[0.99957305,0.00002073593,0.000026828733,0.000011071497,0.000004316139,0.000002168673,0.000098428995,0.0000012791108,0.00026220462],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99958867,0.00012455274,0.000033765868,0.00007899481,0.000040840067,0.00013322516],"domain_scores_gemma":[0.99632204,0.0017431688,0.00084582105,0.00012863346,0.00016126344,0.00079913496],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011635221,0.0003522364,0.00042116758,0.0002586872,0.0003596744,0.0005819696,0.00027521615,0.00048400846,0.0014216974],"category_scores_gemma":[0.0019080843,0.00017135328,0.0005700616,0.00024276949,0.00038955797,0.0003335973,0.00028124033,0.0006714893,0.00011864171],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.013923737,0.0013341773,0.9594643,0.00002575584,0.00035130497,0.00042551223,0.00020018738,0.0006716523,0.019761384,0.000048195543,0.00016999214,0.0036238178],"study_design_scores_gemma":[0.0000117499085,0.0009155326,0.9981255,0.0000014014274,0.00005427122,0.000047726116,0.00006940435,0.0002790984,0.0004461303,0.000010037787,0.00003589336,0.0000032643509],"about_ca_topic_score_codex":0.004921107,"about_ca_topic_score_gemma":0.01922856,"teacher_disagreement_score":0.004921107,"about_ca_system_score_codex":0.00049674493,"about_ca_system_score_gemma":0.0004403405,"threshold_uncertainty_score":0.009784937},"labels":[],"label_agreement":null},{"id":"W2091034120","doi":"10.1016/j.foreco.2007.06.046","title":"Intra- and interspecific patterns of day roost selection by three species of forest-dwelling bats in Southern British Columbia","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bat Biology and Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":38,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ecology; Snag; Eptesicus fuscus; Interspecific competition; Biology; Canopy; Habitat","score_opus":0.009648191667585597,"score_gpt":0.1838175280114244,"score_spread":0.1741693363438388,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2091034120","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996414,0.000040504645,0.000012329913,0.0000076112283,5.093397e-7,0.0000021095425,0.000053181608,0.0000011691548,0.00024124426],"genre_scores_gemma":[0.99932504,0.00004583877,0.000039512135,0.00001555124,3.6084546e-7,0.0000045047927,0.00013203234,0.0000022948952,0.00043495756],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999548,0.00007212214,0.00002921572,0.00009621821,0.00009125252,0.00016319029],"domain_scores_gemma":[0.99842405,0.0002503444,0.00018982946,0.00006730324,0.0005210932,0.0005473836],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004487282,0.0003128117,0.00043469577,0.0014655245,0.0025181882,0.001096497,0.00084927847,0.00039283585,0.0018416378],"category_scores_gemma":[0.0014868135,0.0003011149,0.00020005467,0.0017700132,0.0012901563,0.00028951865,0.00096193474,0.00053096405,0.00020940017],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003001182,0.00008486264,0.9811473,0.000024219362,0.000090410605,0.0001457631,0.005189142,0.00016519801,0.0058120955,0.0000672771,0.00024220644,0.00673149],"study_design_scores_gemma":[0.0000026496398,0.000008704189,0.9981312,0.000003902768,0.00000813447,0.000021611473,0.0015960686,0.000056328452,0.00006075335,0.0000075790012,0.00009871311,0.0000042819397],"about_ca_topic_score_codex":0.9210714,"about_ca_topic_score_gemma":0.98707795,"teacher_disagreement_score":0.07892859,"about_ca_system_score_codex":0.0065796133,"about_ca_system_score_gemma":0.0030046871,"threshold_uncertainty_score":0.15878677},"labels":[],"label_agreement":null},{"id":"W2091202994","doi":"10.1016/j.foreco.2008.03.039","title":"Deer prevent western redcedar (Thuya plicata) regeneration in old-growth forests of Haida Gwaii: Is there a potential for recovery?","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":42,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Carleton University; Environment and Climate Change Canada","funders":"","keywords":"Odocoileus; Thuja; Seedling; Regeneration (biology); Ecology; Biology; Forestry; Geography; Botany","score_opus":0.007737149441644544,"score_gpt":0.21588088306691444,"score_spread":0.2081437336252699,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2091202994","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99914026,0.00004754479,0.000014771086,0.000030600473,0.000002200481,0.000007356009,0.000023905382,0.0000012927575,0.00073204655],"genre_scores_gemma":[0.9987827,0.000063489504,0.00007570995,0.000020859547,0.000002447128,0.0000065168247,0.00006339439,5.421536e-7,0.0009842493],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998659,0.000020997535,0.00000577825,0.000015753536,0.000021790256,0.00006981393],"domain_scores_gemma":[0.9997073,0.000027108215,0.00007189682,0.0000144276055,0.000042869488,0.00013638144],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003656125,0.00018433144,0.00015016938,0.00040388503,0.0008992592,0.00039992214,0.00055590126,0.00022519077,0.0015177471],"category_scores_gemma":[0.00046421704,0.00014597806,0.000098587145,0.0003133409,0.000731319,0.00048517986,0.00055331923,0.0003413276,0.0001992574],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00058118143,0.00067318,0.95209736,0.000081788676,0.000041734784,0.0013547894,0.0047228495,0.00014774437,0.00982692,0.0005795403,0.0005813943,0.029311575],"study_design_scores_gemma":[0.000010948956,0.00015763256,0.9922564,0.00001244666,0.00001463455,0.00019212747,0.0058038863,0.0001480355,0.00043038698,0.00007693256,0.0008924755,0.0000041386334],"about_ca_topic_score_codex":0.044936605,"about_ca_topic_score_gemma":0.2909411,"teacher_disagreement_score":0.9550634,"about_ca_system_score_codex":0.00082638126,"about_ca_system_score_gemma":0.0012126658,"threshold_uncertainty_score":0.089350045},"labels":[],"label_agreement":null},{"id":"W2092081821","doi":"10.1016/j.foreco.2010.12.037","title":"Impacts of hemlock looper defoliation on growth and survival of balsam fir, black spruce and white birch in Newfoundland, Canada","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":14,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of New Brunswick","funders":"Atlantic Canada Opportunities Agency","keywords":"Balsam; Abies balsamea; Black spruce; Spruce budworm; Yellow birch; Biology; Betulaceae; Choristoneura fumiferana; Forestry; Botany; Horticulture; Agronomy; Ecology; Geography; Taiga; Hardwood; Tortricidae; PEST analysis","score_opus":0.007649347535721259,"score_gpt":0.19175292305960148,"score_spread":0.18410357552388024,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2092081821","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9979619,0.00020468878,0.000021851507,0.00014097494,0.0000070232613,0.00000467,0.000793357,0.000005291006,0.0008603243],"genre_scores_gemma":[0.99733233,0.00014783436,0.00004659785,0.000072361756,0.000002941204,0.0000041855274,0.0006500567,0.0000030975903,0.001740513],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995277,0.000055706725,0.000021992206,0.000070456976,0.000076893535,0.00024727834],"domain_scores_gemma":[0.99798906,0.00022029426,0.00029354967,0.00006390163,0.00070878473,0.00072438316],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004941513,0.00027559133,0.00034004578,0.00075014133,0.0014615309,0.00085514784,0.00089595024,0.00036640593,0.0018505018],"category_scores_gemma":[0.0009775087,0.00021286502,0.0003804766,0.00072744733,0.0008927223,0.00033490284,0.0005508121,0.00061574264,0.00025298263],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00034962635,0.00009374672,0.99154156,0.000017172513,0.000103699895,0.0001751613,0.00055279135,0.0005620862,0.00087376556,0.00012778828,0.0015824966,0.0040201573],"study_design_scores_gemma":[0.0000047592225,0.000011314763,0.9988851,0.000006752283,0.00001580996,0.000018168921,0.00054475095,0.00015583602,0.00005590511,0.000007434286,0.00029015238,0.00000402432],"about_ca_topic_score_codex":0.99301493,"about_ca_topic_score_gemma":0.99837935,"teacher_disagreement_score":0.021117227,"about_ca_system_score_codex":0.021117227,"about_ca_system_score_gemma":0.013402878,"threshold_uncertainty_score":0.1532169},"labels":[],"label_agreement":null},{"id":"W2093400500","doi":"10.1016/j.foreco.2004.07.076","title":"Reducing paper birch density increases Douglas-fir growth rate and Armillaria root disease incidence in southern interior British Columbia","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":33,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia; Kamloops Art Gallery","funders":"","keywords":"Armillaria; Thinning; Horticulture; Productivity; Douglas fir; Yellow birch; Biology; Silviculture; Botany; Forestry; Geography; Agroforestry; Ecology; Hardwood","score_opus":0.003293428203049474,"score_gpt":0.18361807654056297,"score_spread":0.1803246483375135,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2093400500","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9989525,0.00007948802,0.000019057778,0.00006682337,0.0000027849921,0.0000034336415,0.000111189795,0.000007851203,0.00075692206],"genre_scores_gemma":[0.99826604,0.0000835383,0.000035636855,0.00006530748,9.89737e-7,0.0000035146363,0.0001099934,0.0000024619278,0.0014326074],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99978393,0.00004639832,0.000009770555,0.000042275653,0.000041884465,0.00007579864],"domain_scores_gemma":[0.99909556,0.00015779736,0.00015302996,0.0000417284,0.00022395958,0.00032800902],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026227982,0.00020886617,0.00020320152,0.0005117901,0.0008375974,0.0006906254,0.00049442484,0.00030790886,0.0016208807],"category_scores_gemma":[0.0010906523,0.00018633819,0.00014170805,0.00042377692,0.00044492143,0.00018568427,0.00030987934,0.00039880592,0.00018088627],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00045628735,0.0002614274,0.9810759,0.000018027671,0.00006760529,0.00023561371,0.00045330488,0.00042617123,0.009456302,0.00006262278,0.0013693877,0.0061173174],"study_design_scores_gemma":[0.0000062861905,0.000022829354,0.99893767,0.0000037528469,0.0000123602,0.000020178753,0.00041854696,0.00017820319,0.00015258759,0.000010906779,0.0002344276,0.0000022007907],"about_ca_topic_score_codex":0.928167,"about_ca_topic_score_gemma":0.9760485,"teacher_disagreement_score":0.071833014,"about_ca_system_score_codex":0.004621459,"about_ca_system_score_gemma":0.0031738759,"threshold_uncertainty_score":0.14451206},"labels":[],"label_agreement":null},{"id":"W2093428443","doi":"10.1016/j.foreco.2005.12.001","title":"An application of fuzzy set theory for seral-class constraints in forest planning models","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":15,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; University of British Columbia; Canadian Forest Service","funders":"National Science Council","keywords":"Seral community; Mathematics; Ecology; Ecological succession","score_opus":0.009959016662258336,"score_gpt":0.2467552113533545,"score_spread":0.23679619469109614,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2093428443","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.011357976,0.0005192234,0.97420293,0.00091158174,0.00008223333,0.0000546997,0.00014251651,0.000053082687,0.0126758935],"genre_scores_gemma":[0.58419687,0.001201809,0.4065578,0.00025477054,0.00026101878,0.00031526215,0.00020101856,0.00009171976,0.0069198357],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9989279,0.0005985429,0.00004481973,0.00011579589,0.00023646749,0.00007650752],"domain_scores_gemma":[0.9955824,0.0036912365,0.00016375116,0.00014227773,0.00030992972,0.00011037676],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0030249273,0.0006132562,0.0012858565,0.0011416837,0.0011269099,0.002216706,0.0018679891,0.0014804975,0.0056177825],"category_scores_gemma":[0.011845857,0.0006593412,0.0018368746,0.0019156528,0.0015417697,0.002983629,0.0017104906,0.002068857,0.0003078569],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000019736975,0.000034113364,0.00032814214,0.00007297387,0.000041316398,0.00007598545,0.00017995751,0.59133035,0.00017035857,0.38420185,0.0013586264,0.022186551],"study_design_scores_gemma":[0.000007456425,0.000011022677,0.00006422801,0.000018605551,0.000009179741,0.000013068337,0.000029777782,0.78525436,0.000055704422,0.21296726,0.0015591526,0.000010120352],"about_ca_topic_score_codex":0.018544117,"about_ca_topic_score_gemma":0.016520305,"teacher_disagreement_score":0.018544117,"about_ca_system_score_codex":0.0025050354,"about_ca_system_score_gemma":0.0018463202,"threshold_uncertainty_score":0.036872327},"labels":[],"label_agreement":null},{"id":"W2095116905","doi":"10.1016/j.foreco.2006.01.022","title":"Development of tree volume equations for common timber species in the tropical rain forest area of Nigeria","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":122,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"University of British Columbia","keywords":"Diameter at breast height; Discriminant function analysis; Genus; Volume (thermodynamics); Mathematics; Ecology; Global biodiversity; Tropics; Linear discriminant analysis; Tropical rain forest; Common species; Cluster (spacecraft); Geography; Forestry; Statistics; Rainforest; Biology; Biodiversity","score_opus":0.011754870862178432,"score_gpt":0.2130220997488471,"score_spread":0.20126722888666865,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2095116905","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.5921282,0.0011458845,0.396195,0.0002828364,0.00009957806,0.00026064485,0.0017145344,0.00058838614,0.0075848973],"genre_scores_gemma":[0.870336,0.00051679637,0.12406443,0.000022914717,0.000021369337,0.00020809867,0.0010949435,0.00013451425,0.003600959],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99969363,0.000094959905,0.000030475207,0.00006446546,0.000084651096,0.000031820993],"domain_scores_gemma":[0.9986578,0.000787397,0.00013411585,0.000051933144,0.00033912918,0.00002950889],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011625439,0.00036291344,0.00050466607,0.00086765725,0.00042675974,0.00091659534,0.0010281873,0.00043781163,0.0013301185],"category_scores_gemma":[0.004215634,0.00043583137,0.00063845934,0.00071143947,0.00021623952,0.0010694554,0.0004409128,0.00079691707,0.0002698239],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012060743,0.00015964729,0.12708783,0.00020730056,0.00011488901,0.00021114964,0.00045194486,0.69964325,0.0032904781,0.022975642,0.0025654791,0.14317185],"study_design_scores_gemma":[0.0000072861353,0.000036846515,0.02320736,0.00003564539,0.000032867334,0.00006512352,0.00015879144,0.97068113,0.0013226091,0.0024127804,0.0020232832,0.000016351552],"about_ca_topic_score_codex":0.03652587,"about_ca_topic_score_gemma":0.04108436,"teacher_disagreement_score":0.03652587,"about_ca_system_score_codex":0.0013022609,"about_ca_system_score_gemma":0.0013042117,"threshold_uncertainty_score":0.07262653},"labels":[],"label_agreement":null},{"id":"W2096512021","doi":"10.1016/j.foreco.2010.03.021","title":"Local and regional environmental variation influences the growth of tropical trees in selection trials in the Republic of Panama","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":40,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Winnipeg","funders":"Natural Sciences and Engineering Research Council of Canada; Smithsonian Tropical Research Institute; Grantham Foundation for the Protection of the Environment","keywords":"Panama; Basal area; Subsoil; Soil texture; Ecology; Geography; Vegetation (pathology); Environmental science; Forestry; Soil water; Biology","score_opus":0.008617908425071326,"score_gpt":0.21670230228429926,"score_spread":0.20808439385922795,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2096512021","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999201,0.000008687342,0.000009870078,0.0000032750045,3.0669105e-7,7.0099725e-7,0.0000052895307,3.365709e-7,0.000051416275],"genre_scores_gemma":[0.99991405,0.000006067025,0.000020119289,0.0000029633643,6.088282e-7,0.0000015022183,0.000012468379,9.842304e-7,0.000041250143],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9992525,0.0004633217,0.000031674914,0.00012261394,0.000043746037,0.00008617742],"domain_scores_gemma":[0.9986332,0.00055616634,0.00039004546,0.00008258298,0.00008426376,0.0002537917],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00080809515,0.0001842889,0.00024999576,0.0003740653,0.00046933314,0.0005665881,0.00027938857,0.00021255086,0.0008277715],"category_scores_gemma":[0.0020803586,0.00013198647,0.00013870688,0.0006388437,0.00077755714,0.000311764,0.0004187741,0.0003138605,0.000074428295],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011373902,0.00023966086,0.9824583,0.0000112258185,0.00010475281,0.00020628971,0.0012895394,0.0002258823,0.009631285,0.000058245474,0.00006283116,0.0045746206],"study_design_scores_gemma":[0.0000052622177,0.00009552087,0.9989599,9.965171e-7,0.000015591257,0.000045906218,0.00049179286,0.00015712215,0.00017044555,0.000017654358,0.000038066086,0.0000017456142],"about_ca_topic_score_codex":0.008727334,"about_ca_topic_score_gemma":0.04354326,"teacher_disagreement_score":0.008727334,"about_ca_system_score_codex":0.00039163313,"about_ca_system_score_gemma":0.00021258532,"threshold_uncertainty_score":0.017353058},"labels":[],"label_agreement":null},{"id":"W2097239375","doi":"10.1016/j.foreco.2006.02.024","title":"Relationships between yellowheaded spruce sawfly, Pikonema alaskensis, density and defoliation on juvenile black spruce","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada; University of New Brunswick","funders":"","keywords":"Sawfly; Black spruce; Biology; Juvenile; Lepidoptera genitalia; Botany; Larva; Ecology; Horticulture; Taiga","score_opus":0.008943546764992254,"score_gpt":0.19967380355741063,"score_spread":0.19073025679241837,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2097239375","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998474,0.000019545249,0.000005977068,0.0000038866683,6.5821627e-7,2.5203354e-7,0.000033056655,4.997369e-7,0.00008866099],"genre_scores_gemma":[0.99966633,0.000027396154,0.000011695125,0.0000039866204,0.0000013051414,7.238847e-7,0.00010008213,4.438509e-7,0.00018809189],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99992955,0.000018628965,0.0000062656472,0.000017674864,0.000010096925,0.000017710061],"domain_scores_gemma":[0.9987458,0.00059546804,0.00025910258,0.000042549345,0.000101922524,0.0002551734],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021553494,0.0001358129,0.00011370104,0.00037894846,0.0002571177,0.00025639238,0.00016375237,0.00020605887,0.0015506579],"category_scores_gemma":[0.00077972,0.00011270341,0.0001296631,0.0002205927,0.00022994148,0.00021589115,0.00017221716,0.00025209034,0.00017071629],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008567184,0.000021493282,0.9981042,0.0000030718327,0.000020723772,0.00003540839,0.0000715409,0.00006403657,0.0010813347,0.000013361897,0.0000342581,0.0004649],"study_design_scores_gemma":[9.603252e-7,0.000018667317,0.9996449,7.711583e-7,0.0000056555305,0.000040924868,0.000089474604,0.00011865889,0.000045939447,0.0000066489383,0.000026833117,5.9752676e-7],"about_ca_topic_score_codex":0.022199344,"about_ca_topic_score_gemma":0.1083728,"teacher_disagreement_score":0.022199344,"about_ca_system_score_codex":0.0003704318,"about_ca_system_score_gemma":0.00023907381,"threshold_uncertainty_score":0.04414022},"labels":[],"label_agreement":null},{"id":"W2097576559","doi":"10.1016/j.foreco.2012.12.050","title":"Potential for lodgepole pine regeneration after mountain pine beetle attack in newly invaded Alberta stands","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":33,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; Forest Resource Improvement Association of Alberta; Killam Trusts","keywords":"Seedbed; Mountain pine beetle; Pinus contorta; Dendroctonus; Environmental science; Moss; Disturbance (geology); Forestry; Ecology; Curculionidae; Biology; Agronomy; Agroforestry; Seedling; Geography; Bark beetle","score_opus":0.005889232897586028,"score_gpt":0.20902029024524682,"score_spread":0.2031310573476608,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2097576559","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99849045,0.00006802167,0.000020473539,0.000014015744,0.0000013093876,0.0000029213531,0.000029767467,0.000002765259,0.001370323],"genre_scores_gemma":[0.9989417,0.000029718616,0.000038299568,0.000005592111,9.0895605e-7,0.0000015837982,0.000050974446,6.7771515e-7,0.0009304044],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998379,0.000016020547,0.0000040569607,0.000021254706,0.000035534493,0.00008526331],"domain_scores_gemma":[0.99941146,0.00008097849,0.00009414063,0.0000198126,0.00011016235,0.00028342978],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025958903,0.00016243906,0.00012045881,0.0005222084,0.0010865213,0.0009794473,0.0005540211,0.0002952123,0.0022280058],"category_scores_gemma":[0.0005383326,0.00013819293,0.00014255618,0.00017892098,0.00045827992,0.00026351504,0.0004681232,0.0002571192,0.00016920509],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0013323376,0.00022562231,0.95790875,0.000052486357,0.000060960185,0.00086102984,0.0011857913,0.0015374172,0.017618952,0.00042727482,0.0005835072,0.018205965],"study_design_scores_gemma":[0.000007943539,0.00010458921,0.9971232,0.000008574888,0.000016320455,0.00014847188,0.0011871597,0.00054750365,0.00032637583,0.00006929697,0.0004548951,0.000005729237],"about_ca_topic_score_codex":0.29460797,"about_ca_topic_score_gemma":0.8327101,"teacher_disagreement_score":0.705392,"about_ca_system_score_codex":0.0024864564,"about_ca_system_score_gemma":0.0017952612,"threshold_uncertainty_score":0.58578634},"labels":[],"label_agreement":null},{"id":"W2097603442","doi":"10.1016/j.foreco.2009.11.033","title":"Relationships between climate and tree radial growth in interior British Columbia, Canada","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":100,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"","keywords":"Pinus contorta; Picea engelmannii; Dendrochronology; Dendroclimatology; Precipitation; Climate change; Growing season; Physical geography; Environmental science; Ecology; Abies lasiocarpa; Elevation (ballistics); Atmospheric sciences; Climatology; Geography; Biology; Geology; Mathematics; Meteorology; Geometry","score_opus":0.008879258631475907,"score_gpt":0.18809249002278886,"score_spread":0.17921323139131295,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2097603442","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9937177,0.0007119386,0.00008150915,0.00032661235,0.000014424396,0.000010510747,0.0026189496,0.000017202505,0.0025011902],"genre_scores_gemma":[0.99444675,0.0005294004,0.00014092264,0.0000977638,0.000004075333,0.00000932083,0.0010493678,0.000009503054,0.0037129077],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99974614,0.000027265485,0.000016496162,0.000048309066,0.000053023945,0.00010884913],"domain_scores_gemma":[0.9978765,0.00028623367,0.00019311177,0.00005689438,0.0010634181,0.00052382454],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040053873,0.00021741628,0.000292101,0.0009624074,0.0018929681,0.0009527639,0.0007329604,0.00034565644,0.0035258017],"category_scores_gemma":[0.0015520074,0.00021877,0.00022602174,0.0019495515,0.0005124672,0.00025395388,0.00048984407,0.0005700823,0.00034986893],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016488408,0.000057019977,0.9829525,0.000036605263,0.00006767326,0.00013898223,0.0012125918,0.00055689894,0.0007119152,0.00015265422,0.0030829913,0.010865348],"study_design_scores_gemma":[0.0000064593955,0.0000052515516,0.99705684,0.000020743804,0.000018495479,0.000027018921,0.001334703,0.00030969092,0.00006640796,0.000027275797,0.001118599,0.000008543593],"about_ca_topic_score_codex":0.9974874,"about_ca_topic_score_gemma":0.9993936,"teacher_disagreement_score":0.016632034,"about_ca_system_score_codex":0.016632034,"about_ca_system_score_gemma":0.015610794,"threshold_uncertainty_score":0.12067443},"labels":[],"label_agreement":null},{"id":"W2100736812","doi":"10.1016/j.foreco.2006.12.019","title":"Growth and structure development of semi-natural larch-spruce-fir (Larix olgensis–Picea jezoensis–Abies nephrolepis) forests in northeast China: 12-year results after thinning","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":49,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"National Natural Science Foundation of China","keywords":"Thinning; Basal area; Larch; Understory; Biology; Deciduous; Cunninghamia; Forest management; Botany; Ecology; Forestry; Geography; Canopy","score_opus":0.0031913846224972363,"score_gpt":0.19130180428497878,"score_spread":0.18811041966248154,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2100736812","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99979705,0.000029623807,0.00001190788,0.0000017583917,9.2829316e-7,0.0000016978804,0.000098453114,0.000001208458,0.00005736085],"genre_scores_gemma":[0.9993297,0.000026478483,0.00002659599,0.0000040410437,0.0000010625224,0.000002892403,0.00028923067,7.1570014e-7,0.00031944038],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998822,0.000011781461,0.000012568335,0.00003663279,0.000018678624,0.000038069775],"domain_scores_gemma":[0.9997788,0.000016703912,0.00004498141,0.00002093205,0.000052676292,0.0000859454],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033771837,0.00038809702,0.00023163475,0.00060140475,0.0003232882,0.0001782674,0.000293105,0.0002031771,0.00047304961],"category_scores_gemma":[0.00019368666,0.00017651526,0.00035707685,0.00035618508,0.00025068293,0.00028370344,0.00017193593,0.0001897317,0.00011220638],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.003184856,0.0006902954,0.94618934,0.00003470209,0.00010829785,0.00052016467,0.00078982115,0.00059649884,0.037814673,0.00004395478,0.00018142894,0.009846075],"study_design_scores_gemma":[0.0000071813665,0.00012384582,0.9989002,6.836721e-7,0.000017892646,0.000047708985,0.00006486288,0.00012115749,0.0006597448,0.0000040481304,0.00005017537,0.0000024987257],"about_ca_topic_score_codex":0.033295874,"about_ca_topic_score_gemma":0.06400591,"teacher_disagreement_score":0.033295874,"about_ca_system_score_codex":0.0006372845,"about_ca_system_score_gemma":0.00042134247,"threshold_uncertainty_score":0.06620413},"labels":[],"label_agreement":null},{"id":"W2103653086","doi":"10.1016/j.foreco.2015.03.025","title":"Epiphytic macrolichen cover, richness and composition in young successional boreal forest: A comparison of fire and logging disturbance","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"Ontario Ministry of Research and Innovation; Natural Sciences and Engineering Research Council of Canada","keywords":"Species richness; Epiphyte; Lichen; Disturbance (geology); Ecology; Logging; Geography; Environmental science; Biology","score_opus":0.014391644897033427,"score_gpt":0.24310752056106577,"score_spread":0.22871587566403234,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2103653086","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997999,0.00004210368,0.0000132529585,0.0000014760504,7.9065546e-7,8.149698e-7,0.000043867578,6.7041356e-7,0.000097189244],"genre_scores_gemma":[0.9997224,0.000026915191,0.00002502413,0.0000032704872,0.0000016223178,0.0000010085004,0.000099967256,4.7982337e-7,0.00011919041],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990106,0.000017071932,0.000009403556,0.000026396148,0.000015058572,0.00003099463],"domain_scores_gemma":[0.9996251,0.00004934035,0.00012606893,0.000019814528,0.000036216305,0.00014339175],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024648255,0.00014650097,0.00012712908,0.0005680559,0.00028144714,0.00034358632,0.00016688749,0.00013309788,0.0008050312],"category_scores_gemma":[0.00042539363,0.00011260855,0.00015069639,0.0003190956,0.00021195447,0.00033551388,0.00023617496,0.00012789496,0.000104765124],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025878043,0.000042741165,0.99489427,0.0000057517127,0.000031983578,0.00005454066,0.00018285365,0.000040735937,0.0025774562,0.000015018934,0.000024313638,0.001871484],"study_design_scores_gemma":[5.151431e-7,0.000019136667,0.9998129,3.1683007e-7,0.0000029051553,0.000040897095,0.000056098048,0.000020616566,0.000029294784,0.0000017119327,0.00001527011,3.8710252e-7],"about_ca_topic_score_codex":0.0098614935,"about_ca_topic_score_gemma":0.046178635,"teacher_disagreement_score":0.0098614935,"about_ca_system_score_codex":0.00020639454,"about_ca_system_score_gemma":0.00012325463,"threshold_uncertainty_score":0.0196082},"labels":[],"label_agreement":null},{"id":"W2106165540","doi":"10.1016/j.foreco.2014.05.023","title":"Stand age effects on Boreal forest physiology using a long time-series of satellite data","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing in Agriculture","field":"Environmental Science","cited_by":32,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute; University of Toronto","funders":"","keywords":"Chronosequence; Leaf area index; Canopy; Environmental science; Chlorophyll; Photosynthetic capacity; Vegetation (pathology); Atmospheric sciences; Photosynthesis; Biology; Botany; Soil science; Geology; Soil water","score_opus":0.00841152650785575,"score_gpt":0.21165415518962452,"score_spread":0.20324262868176876,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2106165540","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993845,0.00005025891,0.00013658532,0.000015081885,0.0000050939852,0.0000015864402,0.00027892648,0.000004662011,0.00012316869],"genre_scores_gemma":[0.999033,0.000025578905,0.0002238424,0.0000112366215,0.0000068908807,0.0000029818525,0.0005816624,0.0000034481277,0.0001113384],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977356,0.00008498782,0.000017247956,0.00006126191,0.000027470653,0.000035462403],"domain_scores_gemma":[0.99859625,0.0007502346,0.00023904274,0.00009435925,0.00012861758,0.00019154247],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0009967516,0.0002650162,0.00017923344,0.00036431837,0.00021311095,0.00041466719,0.00017800837,0.00026593625,0.0006481759],"category_scores_gemma":[0.0016752508,0.000119905744,0.00040790974,0.0003525453,0.0001829115,0.0005678077,0.00020201845,0.00023202642,0.000083521285],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003562046,0.00009721468,0.9867727,0.000010855041,0.00010013794,0.0000500519,0.00008088293,0.0014076622,0.0066187736,0.000041291307,0.00016843117,0.004295767],"study_design_scores_gemma":[0.000001991774,0.000025805075,0.9981384,7.2396347e-7,0.00001833384,0.000019699937,0.000029840121,0.0015556175,0.0001441855,0.000011250354,0.000051432162,0.0000025978152],"about_ca_topic_score_codex":0.017804556,"about_ca_topic_score_gemma":0.05457318,"teacher_disagreement_score":0.017804556,"about_ca_system_score_codex":0.00036428327,"about_ca_system_score_gemma":0.00025961726,"threshold_uncertainty_score":0.03540188},"labels":[],"label_agreement":null},{"id":"W2108318390","doi":"10.1016/j.foreco.2005.04.015","title":"Does forest harvesting emulate fire disturbance? A comparison of effects on selected attributes in coniferous-dominated headwater systems","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":57,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Environmental science; Disturbance (geology); Riparian zone; Ecosystem; Sedimentation; Forest ecology; Hydrology (agriculture); Emulation; Forest management; Ecology; Agroforestry; Sediment; Geology; Biology","score_opus":0.005481274008977078,"score_gpt":0.21690985330907578,"score_spread":0.2114285793000987,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2108318390","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996723,0.000040375384,0.000037316808,0.000006807786,0.0000012602101,0.0000024014732,0.000016884773,7.928506e-7,0.00022182967],"genre_scores_gemma":[0.9997346,0.000034133278,0.000043318378,0.000011581244,0.000001830997,0.0000021180992,0.000048081547,0.0000016025866,0.00012278017],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996233,0.00017665283,0.000021280362,0.00004039813,0.000046521647,0.000091791655],"domain_scores_gemma":[0.9969559,0.0016871187,0.0005662323,0.0002374917,0.0001666987,0.00038655338],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011215738,0.00024634344,0.00031428243,0.00046304963,0.00035012537,0.00059520814,0.0002651494,0.0003137178,0.0011287685],"category_scores_gemma":[0.0037373533,0.00014620736,0.0003378018,0.0004253584,0.0005370611,0.0005555281,0.0003953081,0.0002186284,0.00013936087],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0050031496,0.00062366884,0.960385,0.000045727233,0.00032712784,0.00014941666,0.000391602,0.002019616,0.01607566,0.0002178842,0.00011885448,0.014642277],"study_design_scores_gemma":[0.000009146428,0.00023827824,0.9984706,0.0000017764097,0.000032040225,0.000028060282,0.00015711409,0.0005217192,0.00040175358,0.000054011114,0.00008334516,0.0000021873896],"about_ca_topic_score_codex":0.01018351,"about_ca_topic_score_gemma":0.030529259,"teacher_disagreement_score":0.01018351,"about_ca_system_score_codex":0.00050129823,"about_ca_system_score_gemma":0.00040452852,"threshold_uncertainty_score":0.020248473},"labels":[],"label_agreement":null},{"id":"W2108423001","doi":"10.1016/j.foreco.2008.09.022","title":"Wildfire promotes broadleaves and species mixture in boreal forest","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":80,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Forestry; Lakehead University","funders":"Networks of Centres of Excellence of Canada; Natural Sciences and Engineering Research Council of Canada; Canadian Natural Resources Limited; Ministry of Natural Resources","keywords":"Abies balsamea; Taiga; Black spruce; Biology; Basal area; Botany; Seedling; Boreal; Jack pine; Ecology; Balsam; Pinus <genus>","score_opus":0.005112669642375293,"score_gpt":0.18173239980118167,"score_spread":0.17661973015880636,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2108423001","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994081,0.00012234904,0.000038213806,0.000015852202,0.0000023929797,0.0000021404678,0.000020065738,0.0000035770788,0.0003873686],"genre_scores_gemma":[0.9994636,0.00006513508,0.00008273446,0.000021985887,0.00000646686,0.0000025521947,0.00005290422,0.0000032060914,0.00030138984],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99966085,0.0001071031,0.00002345594,0.00007627141,0.00005060384,0.00008166949],"domain_scores_gemma":[0.9979899,0.0003289604,0.0005488661,0.00012368975,0.00014281357,0.0008659236],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010170988,0.00028724325,0.0003557863,0.0009340886,0.0011267193,0.0012827672,0.0004231544,0.00034294493,0.0028156156],"category_scores_gemma":[0.0016744958,0.0003378892,0.00030452677,0.00033221542,0.00065821735,0.0009317256,0.0014123148,0.00036916143,0.00023517707],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0023116542,0.0003843335,0.9388063,0.000047444795,0.00020569575,0.0002723381,0.0009108341,0.00042760652,0.042534266,0.00063403964,0.00025826614,0.013207144],"study_design_scores_gemma":[0.000007392543,0.0000861356,0.9983601,0.0000030553247,0.00001689659,0.00009588972,0.00039678835,0.00023130226,0.0004066824,0.00017329257,0.00021844232,0.000004069097],"about_ca_topic_score_codex":0.009349286,"about_ca_topic_score_gemma":0.06080701,"teacher_disagreement_score":0.009349286,"about_ca_system_score_codex":0.00047006228,"about_ca_system_score_gemma":0.00031869303,"threshold_uncertainty_score":0.018589735},"labels":[],"label_agreement":null},{"id":"W2109237993","doi":"10.1016/j.foreco.2008.01.034","title":"Linking tree biodiversity to belowground process in a young tropical plantation: Impacts on soil CO2 flux","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":33,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"","keywords":"Soil respiration; Biomass (ecology); Monoculture; Environmental science; Agronomy; Respiration; Biodiversity; Biology; Soil water; Ecology; Botany; Soil science","score_opus":0.010377328972398408,"score_gpt":0.22365347184720727,"score_spread":0.21327614287480887,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2109237993","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999039,0.000006586318,0.000019842826,0.0000045405673,1.5963921e-7,7.637111e-7,0.00001777231,4.745999e-7,0.00004587516],"genre_scores_gemma":[0.9998586,0.000008765323,0.00004805203,0.0000026212244,4.403652e-7,0.0000010945789,0.000024194034,6.6196543e-7,0.000055581233],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999231,0.000021178332,0.0000038242633,0.000016244743,0.000007178342,0.00002854284],"domain_scores_gemma":[0.99913555,0.00035263266,0.0001501918,0.000029476925,0.0000654155,0.00026674243],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036758324,0.0001920216,0.00017510627,0.00037349874,0.0004824258,0.00052552746,0.00025886585,0.0002413041,0.0011521258],"category_scores_gemma":[0.00079768983,0.00012619402,0.00022365592,0.0004690004,0.0005592902,0.00040210978,0.0003908037,0.00022802527,0.000081967846],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00064324314,0.00011880682,0.9733672,0.00002441877,0.000059900583,0.0004921892,0.0003933083,0.0011163843,0.021019422,0.00014911935,0.00003748515,0.0025784343],"study_design_scores_gemma":[0.0000048351535,0.00007516383,0.99708194,9.966102e-7,0.000023278651,0.00011925451,0.0003897123,0.001177208,0.0010299464,0.00006303142,0.00003091128,0.0000036851463],"about_ca_topic_score_codex":0.027427921,"about_ca_topic_score_gemma":0.05452033,"teacher_disagreement_score":0.027427921,"about_ca_system_score_codex":0.00063085975,"about_ca_system_score_gemma":0.0004852895,"threshold_uncertainty_score":0.05453652},"labels":[],"label_agreement":null},{"id":"W2109259315","doi":"10.1016/s0378-1127(01)00593-x","title":"Spatial distribution and species composition of tree seeds and seedlings under the canopy of the shrub, Chromolaena odorata Linn., in Ghana","year":2002,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"African Botany and Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"","keywords":"Chromolaena odorata; Seedling; Shrub; Soil seed bank; Biology; Germination; Seed dispersal; Canopy; Tree canopy; Species richness; Botany; Agronomy; Biological dispersal; Ecology; Weed; Population","score_opus":0.013863349798345019,"score_gpt":0.18351806323340414,"score_spread":0.1696547134350591,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2109259315","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99963427,0.000056763787,0.000012321809,0.000008470012,3.5301548e-7,0.000001194319,0.000109542656,8.3508525e-7,0.00017620837],"genre_scores_gemma":[0.99967396,0.000052856594,0.000034707366,0.0000038809276,7.5357207e-7,0.0000020235893,0.000094535346,7.0381327e-7,0.00013662435],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998944,0.000022751301,0.000008439106,0.0000332698,0.000012369337,0.000028749151],"domain_scores_gemma":[0.99953353,0.00009521319,0.00022707126,0.000016997534,0.00005547802,0.00007163072],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014106146,0.00012224684,0.00014132063,0.00074624084,0.0003032598,0.00026222857,0.00019603717,0.00016490121,0.0016307312],"category_scores_gemma":[0.0005351602,0.0001633293,0.00009486305,0.00081395777,0.0004243285,0.00028625442,0.00028744488,0.00012886254,0.00019869432],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000143012,0.000021579663,0.9915842,0.000028266906,0.000017954913,0.00022096395,0.0014237657,0.000102098704,0.0032578758,0.00007643705,0.00010662896,0.0030171804],"study_design_scores_gemma":[0.0000015962705,0.0000105408635,0.99892753,0.0000030625238,0.0000030126353,0.00008718085,0.00082478975,0.00004257361,0.000030903506,0.0000093627295,0.00005821437,0.0000012170998],"about_ca_topic_score_codex":0.04296146,"about_ca_topic_score_gemma":0.11824558,"teacher_disagreement_score":0.04296146,"about_ca_system_score_codex":0.0004479433,"about_ca_system_score_gemma":0.00014266619,"threshold_uncertainty_score":0.085422754},"labels":[],"label_agreement":null},{"id":"W2110032094","doi":"10.1016/j.foreco.2007.01.031","title":"Growth rate responses of Lobaria pulmonaria to canopy structure in even-aged and old-growth cedar–hemlock forests of central-interior British Columbia, Canada","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":61,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia","funders":"","keywords":"Canopy; Old-growth forest; Thallus; Microclimate; Lichen; Ecology; Tree canopy; Environmental science; Biology; Geography; Botany","score_opus":0.0039834073392364475,"score_gpt":0.17977560206531484,"score_spread":0.1757921947260784,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2110032094","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993319,0.00006965756,0.000022141063,0.0000069944294,0.0000010061682,0.0000023077678,0.00028818587,0.00000390331,0.00027389143],"genre_scores_gemma":[0.99883,0.00004027847,0.000036206693,0.000015530051,7.635606e-7,0.0000030643516,0.0003470561,0.0000030556087,0.0007240534],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998882,0.000011702094,0.0000058828355,0.000028024197,0.000022193759,0.000044039924],"domain_scores_gemma":[0.9991781,0.00015021108,0.00011213379,0.000043340246,0.00023016437,0.00028609228],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020008918,0.00020432544,0.00027054854,0.00059139205,0.00063185435,0.00049047056,0.00044636367,0.00020735871,0.0011514209],"category_scores_gemma":[0.0004755818,0.00020409453,0.00014643562,0.00032269853,0.0003726091,0.0002528252,0.00027046987,0.00027370287,0.00023761217],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0015911713,0.0001921141,0.89072025,0.000053741554,0.00010502486,0.00024894578,0.0013474069,0.0010782917,0.09255713,0.000105348976,0.00089527806,0.011105268],"study_design_scores_gemma":[0.0000030169206,0.000011460876,0.99917185,0.0000012319487,0.00000490345,0.000019419524,0.00014763321,0.00023062939,0.00030193874,0.000008103426,0.00009677767,0.0000030504748],"about_ca_topic_score_codex":0.7537746,"about_ca_topic_score_gemma":0.8959233,"teacher_disagreement_score":0.24622542,"about_ca_system_score_codex":0.003929268,"about_ca_system_score_gemma":0.0010562817,"threshold_uncertainty_score":0.49535096},"labels":[],"label_agreement":null},{"id":"W2113443776","doi":"10.1016/j.foreco.2010.11.016","title":"Juvenile growth of hybrid poplars on acidic boreal soil determined by environmental effects of soil preparation, vegetation control, and fertilization","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bioenergy crop production and management","field":"Agricultural and Biological Sciences","cited_by":68,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Université TÉLUQ; Natural Resources Canada; Université du Québec à Montréal","funders":"Fonds Québécois de la Recherche sur la Nature et les Technologies; McGill University","keywords":"Silviculture; Human fertilization; Vegetation (pathology); Taiga; Agronomy; Environmental science; Soil fertility; Boreal; Biology; Agroforestry; Forestry; Ecology; Soil water; Geography","score_opus":0.002336898127920065,"score_gpt":0.1706126902015568,"score_spread":0.16827579207363674,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2113443776","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99965394,0.000026347981,0.000048432474,0.0000030484387,0.0000024621856,0.0000017311962,0.00007452297,0.000003718137,0.00018575098],"genre_scores_gemma":[0.9980775,0.00003871869,0.00010894555,0.000020022213,0.000004003297,0.0000075191356,0.00032994192,0.000010996617,0.0014023007],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998932,0.000014495639,0.000008135149,0.000033578122,0.000019184125,0.00003140071],"domain_scores_gemma":[0.99915016,0.0002530926,0.00013011578,0.00004018202,0.00007161505,0.0003549172],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015859993,0.0003214629,0.00024507512,0.0002854028,0.00027719114,0.00033142837,0.00018744732,0.00017424104,0.0010680977],"category_scores_gemma":[0.0003442375,0.0002402726,0.00017273371,0.00011968117,0.00029907154,0.00030210233,0.00033473654,0.00053586275,0.00027063212],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0033132606,0.00023203868,0.043941684,0.00003885107,0.000041956333,0.00035508047,0.00031928468,0.00022010483,0.9472535,0.000085227155,0.00009614953,0.004102803],"study_design_scores_gemma":[0.00006200302,0.002436842,0.91834885,0.000007970032,0.000056855188,0.00036671027,0.00055372267,0.0010325758,0.07644013,0.00009749906,0.0005708074,0.000026036756],"about_ca_topic_score_codex":0.004183307,"about_ca_topic_score_gemma":0.013537402,"teacher_disagreement_score":0.004183307,"about_ca_system_score_codex":0.00032680383,"about_ca_system_score_gemma":0.00022492449,"threshold_uncertainty_score":0.008317888},"labels":[],"label_agreement":null},{"id":"W2115458453","doi":"10.1016/s0378-1127(02)00481-4","title":"Geographic variation in cold hardiness among eastern white pine (Pinus strobus L.) provenances in Ontario","year":2002,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ontario Forest Research Institute","funders":"","keywords":"Hardiness (plants); Provenance; Latitude; Acclimatization; Shoot; Biology; Environmental science; Climate change; Horticulture; Botany; Ecology; Geography","score_opus":0.006402512948587967,"score_gpt":0.16907992116661055,"score_spread":0.1626774082180226,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2115458453","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9989937,0.000045723515,0.000037051097,0.000015769905,0.000001335775,0.0000025968816,0.00021966867,0.0000014667891,0.0006827168],"genre_scores_gemma":[0.99879044,0.000048340502,0.000048245583,0.000009787916,9.843467e-7,0.0000035924518,0.0002477557,0.000002580124,0.00084837724],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997625,0.000028498494,0.000012159879,0.00007444617,0.000058339865,0.00006403777],"domain_scores_gemma":[0.9993685,0.000073003655,0.0001519656,0.00003491744,0.00020307805,0.0001685139],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022111385,0.00012325651,0.00016416589,0.0007817723,0.0010811074,0.0005457204,0.00026982083,0.00012906335,0.0009182155],"category_scores_gemma":[0.00046527313,0.0001620027,0.00013316504,0.0010094071,0.00066624716,0.00018181675,0.000369341,0.00016072855,0.0001309892],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013487348,0.000016021257,0.98684406,0.000014968044,0.000036947225,0.000169325,0.0031598466,0.00007463993,0.006231156,0.00012675955,0.0002905645,0.0029008135],"study_design_scores_gemma":[0.0000012742576,0.0000038351495,0.99933076,0.00000223305,0.0000029851374,0.000016345344,0.00037549075,0.000015883235,0.00003515046,0.000007753823,0.00020709552,0.000001291466],"about_ca_topic_score_codex":0.86769843,"about_ca_topic_score_gemma":0.9773012,"teacher_disagreement_score":0.13230157,"about_ca_system_score_codex":0.0037703558,"about_ca_system_score_gemma":0.0016850124,"threshold_uncertainty_score":0.26616138},"labels":[],"label_agreement":null},{"id":"W2115991224","doi":"10.1016/j.foreco.2004.10.013","title":"Does the shelterwood method to regenerate oak forests affect acorn production and predation?","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Animal Ecology and Behavior Studies","field":"Environmental Science","cited_by":35,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada","funders":"","keywords":"Acorn; Biology; Predation; Curculio; Fagaceae; Canopy; Ecology; Curculionidae","score_opus":0.008636231855099156,"score_gpt":0.26152538179931173,"score_spread":0.2528891499442126,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2115991224","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990972,0.00015280653,0.00007362384,0.00006947079,0.000008317566,0.0000033438425,0.00001411351,0.0000017527225,0.00057928247],"genre_scores_gemma":[0.9989201,0.000093634415,0.00021645485,0.000060454284,0.000010778616,0.000003512501,0.000021857453,0.00000325443,0.0006699658],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976534,0.00008996269,0.0000121605635,0.0000433864,0.000037253998,0.000051845076],"domain_scores_gemma":[0.99868613,0.0003632243,0.00037561767,0.00012244361,0.00009470187,0.0003579916],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00084642053,0.00020322224,0.00022443756,0.00025115086,0.00026725596,0.0005339811,0.00031272968,0.00051031116,0.0032376433],"category_scores_gemma":[0.001803167,0.00010613789,0.00018496207,0.00011950122,0.00043596522,0.00036409442,0.00017179287,0.00031053944,0.00026567344],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0026159186,0.002293868,0.8938899,0.00006956822,0.0003700176,0.00035595716,0.0004115549,0.00047232545,0.045616396,0.00061148667,0.00064904074,0.052643996],"study_design_scores_gemma":[0.000026549582,0.00047505932,0.9973016,0.0000071197856,0.000030435152,0.00020159283,0.00030709995,0.00028136602,0.0007941037,0.00013672923,0.00043421576,0.0000041124385],"about_ca_topic_score_codex":0.0026857352,"about_ca_topic_score_gemma":0.017185953,"teacher_disagreement_score":0.0032376433,"about_ca_system_score_codex":0.00023423498,"about_ca_system_score_gemma":0.00028464655,"threshold_uncertainty_score":0.010830939},"labels":[],"label_agreement":null},{"id":"W2118502661","doi":"10.1016/j.foreco.2014.06.004","title":"Sapling recruitment and mortality dynamics following partial harvesting in aspen-dominated mixedwoods in eastern Canada","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":33,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Basal area; Clearcutting; Silviculture; Stand development; Forest management; Logging; Ecosystem; Chronosequence; Environmental science; Biology; Agronomy; Animal science; Forestry; Ecology; Geography","score_opus":0.017326083453761555,"score_gpt":0.25335675798863067,"score_spread":0.23603067453486912,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2118502661","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997322,0.000036552618,0.000007113206,0.000010167308,6.2523037e-7,0.0000014808272,0.0000680849,6.026295e-7,0.0001431093],"genre_scores_gemma":[0.9990127,0.000047421945,0.000020866679,0.000013930369,6.5684816e-7,0.0000021162814,0.00013973619,6.366579e-7,0.0007618733],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985445,0.000008724996,0.0000049600117,0.000023452787,0.000025191372,0.00008317709],"domain_scores_gemma":[0.9993229,0.00007171143,0.00009195277,0.000017319711,0.0001694336,0.00032666937],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022977493,0.0001561779,0.00018937059,0.0004683372,0.0013117453,0.0005972995,0.0006004334,0.00030185672,0.0011703266],"category_scores_gemma":[0.0007495036,0.00016580448,0.00013772487,0.00047732302,0.0005395182,0.00024917145,0.00046109178,0.00027476018,0.00016829069],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002866039,0.00007153641,0.9909615,0.000011361161,0.000026919439,0.00016032069,0.0013075995,0.00021582727,0.0014429187,0.000048749826,0.0002905024,0.005176183],"study_design_scores_gemma":[0.0000017424455,0.000012068238,0.99890447,0.0000029113203,0.0000034954842,0.000020125943,0.0008175749,0.00010591886,0.00003909751,0.000007124078,0.00008343921,0.0000019990234],"about_ca_topic_score_codex":0.9399025,"about_ca_topic_score_gemma":0.9890511,"teacher_disagreement_score":0.060097516,"about_ca_system_score_codex":0.005434283,"about_ca_system_score_gemma":0.0046111103,"threshold_uncertainty_score":0.12090284},"labels":[],"label_agreement":null},{"id":"W2119965664","doi":"10.1016/j.foreco.2008.05.054","title":"Risk rating for mountain pine beetle infestation of lodgepole pine forests over large areas with ordinal regression modelling","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":44,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of Victoria","funders":"","keywords":"Mountain pine beetle; Pinus contorta; Dendroctonus; Diameter at breast height; Ecology; Bark beetle; Forest ecology; Ordinal regression; Geography; Environmental science; Forestry; Ecosystem; Biology; Statistics","score_opus":0.008286001724937877,"score_gpt":0.22242501783902485,"score_spread":0.21413901611408698,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2119965664","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9725585,0.00014330188,0.026248315,0.000076147495,0.000011647599,0.00002312881,0.00036816395,0.00014984088,0.0004209632],"genre_scores_gemma":[0.9967989,0.000023263989,0.0026687218,0.000004170255,0.000004748599,0.000011599375,0.00017811391,0.000008284475,0.0003021423],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9975352,0.0015848184,0.00018079365,0.0003408352,0.00016949105,0.00018895078],"domain_scores_gemma":[0.96209407,0.03220707,0.0031250261,0.0013059998,0.00067438144,0.0005934562],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.007776507,0.000657108,0.00075092306,0.0011350602,0.00031325518,0.0009870181,0.0012228366,0.0007977635,0.0022056922],"category_scores_gemma":[0.020064583,0.00032804464,0.001290501,0.00081855303,0.00039544076,0.00096998666,0.0007637001,0.0009142399,0.00022482456],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018441292,0.00027034088,0.37431172,0.00012378806,0.00065801677,0.00031250282,0.00024625805,0.5956293,0.0009441044,0.0015526421,0.0006469644,0.023460282],"study_design_scores_gemma":[0.000013733104,0.00016532656,0.05110124,0.000007915048,0.00007636837,0.00009596926,0.00008226774,0.94731426,0.000107224936,0.00095176895,0.00006120124,0.00002267746],"about_ca_topic_score_codex":0.009810261,"about_ca_topic_score_gemma":0.010485949,"teacher_disagreement_score":0.009810261,"about_ca_system_score_codex":0.000589681,"about_ca_system_score_gemma":0.00030681645,"threshold_uncertainty_score":0.04112661},"labels":[],"label_agreement":null},{"id":"W2120856666","doi":"10.1016/j.foreco.2012.02.036","title":"Fuels and fire behavior dynamics in bark beetle-attacked forests in Western North America and implications for fire management","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":162,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Bark beetle; Flammable liquid; Environmental science; Fire protection; Bark (sound); Ecology; Forest management; Climate change; Prescribed burn; Environmental resource management; Geography; Agroforestry; Biology; Engineering; Civil engineering","score_opus":0.006776162442470435,"score_gpt":0.2351203923982982,"score_spread":0.2283442299558278,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2120856666","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99974865,0.000067468216,0.000012697654,0.000017067572,9.0170073e-7,8.780401e-7,0.00003760605,3.3979222e-7,0.00011434593],"genre_scores_gemma":[0.99945647,0.00009771748,0.000054664557,0.000014016424,0.0000028186803,0.0000034137338,0.00013289323,9.220506e-7,0.0002370832],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999175,0.000020810263,0.0000062250474,0.000020223662,0.000012604453,0.00002261056],"domain_scores_gemma":[0.9995426,0.00010871619,0.00015484862,0.000015135253,0.00006644451,0.00011217256],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018503651,0.00012824325,0.00013531896,0.0005340302,0.0005843173,0.0005141388,0.00023776379,0.00028343956,0.0011437993],"category_scores_gemma":[0.0007107154,0.00019146928,0.00011441549,0.00064832415,0.00033896667,0.00052316324,0.00027992288,0.0002802703,0.00010289479],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000079423226,0.00007803522,0.9950494,0.000008420807,0.000030473211,0.000060863968,0.0010638828,0.00011582558,0.00086272653,0.000029392848,0.000081847706,0.0025395867],"study_design_scores_gemma":[8.373467e-7,0.0000053930958,0.9991032,0.0000013856403,0.0000038445282,0.000017474664,0.000679656,0.000091899245,0.00002031441,0.00001214419,0.00006313275,8.6483703e-7],"about_ca_topic_score_codex":0.12084519,"about_ca_topic_score_gemma":0.4861823,"teacher_disagreement_score":0.8791548,"about_ca_system_score_codex":0.0006436157,"about_ca_system_score_gemma":0.00031969819,"threshold_uncertainty_score":0.24028361},"labels":[],"label_agreement":null},{"id":"W2123119201","doi":"10.1016/j.foreco.2006.12.020","title":"Growth and physiological response of eastern white pine seedlings to partial cutting and site preparation","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":25,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Seedling; Microsite; Understory; Crown (dentistry); Growing season; Scarification; Sowing; Shrub; Biology; Vegetation (pathology); Shoot; Horticulture; Woody plant; Agronomy; Botany; Canopy; Germination","score_opus":0.01168292880397618,"score_gpt":0.2417898054493145,"score_spread":0.23010687664533833,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2123119201","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992976,0.000037461752,0.00007623613,0.0000066525954,0.0000045594256,0.000008757992,0.00008468432,0.0000044991866,0.00047944163],"genre_scores_gemma":[0.9977869,0.00003780567,0.00014424666,0.00003910349,0.000004949113,0.00002148989,0.00040715752,0.000006561338,0.0015517165],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9999056,0.000015272311,0.0000079362535,0.000027129863,0.00001772941,0.000026206117],"domain_scores_gemma":[0.99929464,0.00022757014,0.00009302712,0.0000523102,0.00007859486,0.0002537417],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020196839,0.00026377797,0.00029308378,0.00016132275,0.00035984573,0.00025976953,0.0002251865,0.0002952576,0.0015371323],"category_scores_gemma":[0.000540568,0.00019711434,0.00018913817,0.00015216137,0.00031999795,0.00032541598,0.000298258,0.00082791667,0.0002101298],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.008591036,0.0006052578,0.043395102,0.0000966239,0.000036417223,0.00060264353,0.0006119636,0.000550439,0.9379878,0.00013505902,0.00022341596,0.0071641556],"study_design_scores_gemma":[0.00006576407,0.0047253775,0.9092727,0.000010612052,0.000041147512,0.0003235808,0.0009242884,0.0010695203,0.08279185,0.000094142335,0.00065892923,0.00002208348],"about_ca_topic_score_codex":0.0068709883,"about_ca_topic_score_gemma":0.014772854,"teacher_disagreement_score":0.0068709883,"about_ca_system_score_codex":0.00029973546,"about_ca_system_score_gemma":0.00032941296,"threshold_uncertainty_score":0.013661981},"labels":[],"label_agreement":null},{"id":"W2123168966","doi":"10.1016/j.foreco.2007.08.027","title":"Evaluation of competitive effects of green alder, willow and other tall shrubs on white spruce and lodgepole pine in Northern Alberta","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":31,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Pinus contorta; Alder; Willow; Biology; Competition (biology); Botany; Shrub; Betulaceae; Woody plant; Forestry; Ecology; Geography","score_opus":0.005539727660888202,"score_gpt":0.21992033078674816,"score_spread":0.21438060312585996,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2123168966","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991535,0.00005871031,0.000020588355,0.000007926187,0.000001270331,0.0000060102093,0.00003095445,0.0000019533816,0.0007190275],"genre_scores_gemma":[0.99741614,0.00011219405,0.00024133979,0.000021067452,0.0000020347456,0.0000052171417,0.00015851106,0.0000017882894,0.002041616],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996061,0.00006922733,0.000013851146,0.000038154878,0.0001655791,0.00010708099],"domain_scores_gemma":[0.9989027,0.00024736798,0.00008859927,0.0000184111,0.0003053192,0.00043760944],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00073278055,0.0004375917,0.00029310893,0.0006011431,0.0014877837,0.00056264526,0.0007263816,0.00021177305,0.0009572055],"category_scores_gemma":[0.0007266669,0.00012580282,0.0001856163,0.0005334378,0.00045211584,0.00024152553,0.0003136628,0.00025720868,0.000106907646],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0149302455,0.0042221704,0.81449425,0.00027437357,0.0003274025,0.0015653872,0.0034994576,0.0067815334,0.09916047,0.0006937191,0.0011747874,0.052876286],"study_design_scores_gemma":[0.00009759145,0.0035494112,0.9804166,0.000012783522,0.00012762588,0.00012716142,0.0038001316,0.0025587475,0.007277746,0.00008708876,0.0019193818,0.000025638354],"about_ca_topic_score_codex":0.8006005,"about_ca_topic_score_gemma":0.9565241,"teacher_disagreement_score":0.19939947,"about_ca_system_score_codex":0.0069290968,"about_ca_system_score_gemma":0.0042337882,"threshold_uncertainty_score":0.40114754},"labels":[],"label_agreement":null},{"id":"W2123897622","doi":"10.1016/j.foreco.2008.01.040","title":"Impacts of silvicultural treatments on arboreal lichen biomass in balsam fir stands on Québec's Gaspé Peninsula: Implications for a relict caribou herd","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Center for Northern Studies; Université du Québec à Rimouski","funders":"","keywords":"Lichen; Biomass (ecology); Environmental science; Chronosequence; Abies balsamea; Logging; Clearcutting; Forestry; Balsam; Ecology; Biology; Botany; Ecosystem; Geography","score_opus":0.02174483396389323,"score_gpt":0.24160896160084466,"score_spread":0.21986412763695143,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2123897622","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992255,0.000071864226,0.000022157208,0.00005523585,0.000002547305,0.000006372439,0.00017125675,0.0000029556188,0.00044217324],"genre_scores_gemma":[0.9984157,0.000048515292,0.00006441474,0.000051104194,0.0000013796159,0.000008156337,0.00017094263,0.0000022139684,0.0012375534],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99972385,0.000055775396,0.0000069880634,0.000040442283,0.00004375198,0.00012909788],"domain_scores_gemma":[0.99909556,0.00012307097,0.00011778037,0.000026497031,0.0003033489,0.00033369052],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004856581,0.00030041265,0.00031683448,0.00058916974,0.0018192441,0.0008864293,0.00089578674,0.00036050152,0.002600297],"category_scores_gemma":[0.00095165166,0.0001437296,0.0002167556,0.00075844774,0.00082009734,0.0002873857,0.0003865112,0.00036400784,0.00018909019],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010916578,0.00030741302,0.9736934,0.00003373492,0.00015591702,0.00024203683,0.0018144324,0.0011461782,0.0065583857,0.00016308874,0.0014797975,0.013313962],"study_design_scores_gemma":[0.000012510168,0.000044647255,0.997834,0.0000069916227,0.000017401775,0.00000985866,0.0011174057,0.00042702554,0.00017170595,0.000011385587,0.0003425711,0.0000043940336],"about_ca_topic_score_codex":0.9870024,"about_ca_topic_score_gemma":0.9974222,"teacher_disagreement_score":0.9870024,"about_ca_system_score_codex":0.017101709,"about_ca_system_score_gemma":0.008683264,"threshold_uncertainty_score":0.12408215},"labels":[],"label_agreement":null},{"id":"W2124346242","doi":"10.1016/j.foreco.2007.01.073","title":"Seed transfer and climate change effects on radial growth of jack pine populations in a common garden in Petawawa, Ontario, Canada","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":49,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Sciences and Engineering Research Council; Université du Québec à Montréal; Université du Québec en Abitibi-Témiscamingue","funders":"","keywords":"Basal area; Precipitation; Climate change; Dendrochronology; Pinus <genus>; Environmental science; Mean radiant temperature; Ecology; Horticulture; Animal science; Forestry; Biology; Geography; Botany; Meteorology","score_opus":0.014504387130341908,"score_gpt":0.21713991002993716,"score_spread":0.20263552289959524,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2124346242","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992055,0.000046806003,0.000028978151,0.000031504453,0.0000013939537,0.000006244593,0.00022468487,0.0000029957139,0.00045179419],"genre_scores_gemma":[0.9988952,0.000038685386,0.000062380735,0.00001760149,8.980727e-7,0.0000049212226,0.00016902224,0.0000028060238,0.0008083634],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995919,0.000049271093,0.00001430055,0.00009793888,0.000078982484,0.00016761401],"domain_scores_gemma":[0.9986065,0.00014913484,0.00022467184,0.00005001307,0.00046296697,0.0005068213],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000327994,0.00017262965,0.00033985748,0.00069238,0.0021677343,0.0007646304,0.0009633482,0.00027133408,0.0011341372],"category_scores_gemma":[0.00091170333,0.00027221793,0.00022720319,0.0010586976,0.0010072667,0.0003075463,0.00051894883,0.0003423654,0.00016184212],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00033118084,0.00008595451,0.9839569,0.000025401683,0.00006529969,0.0003165824,0.0048463973,0.00034500935,0.0044278605,0.00014641251,0.00071137864,0.004741724],"study_design_scores_gemma":[0.0000039156334,0.000010004891,0.99812824,0.0000025231225,0.000005347796,0.000022936416,0.0013958733,0.00012608281,0.000060614166,0.000008007233,0.00023235519,0.0000041104454],"about_ca_topic_score_codex":0.9871104,"about_ca_topic_score_gemma":0.99817324,"teacher_disagreement_score":0.017309729,"about_ca_system_score_codex":0.017309729,"about_ca_system_score_gemma":0.008911338,"threshold_uncertainty_score":0.12559146},"labels":[],"label_agreement":null},{"id":"W2125855052","doi":"10.1016/j.foreco.2006.12.011","title":"When do replanted sub-boreal clearcuts become net sinks for CO2?","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":41,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia","funders":"","keywords":"Eddy covariance; Boreal; Environmental science; Clearcutting; Taiga; Growing season; Ecosystem; Sink (geography); Carbon sink; Atmospheric sciences; Reforestation; Forestry; Ecology; Hydrology (agriculture); Agroforestry; Geography; Geology; Biology","score_opus":0.005400123724386469,"score_gpt":0.2047902140685627,"score_spread":0.19939009034417624,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2125855052","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982502,0.00020609201,0.0002540568,0.00014907964,0.000016748554,0.000005810567,0.00004747839,0.000012802506,0.0010576452],"genre_scores_gemma":[0.9973699,0.000200032,0.00036433572,0.000115381554,0.000013820437,0.0000057697816,0.00014776508,0.000011462495,0.0017715144],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996983,0.000031712323,0.000018265086,0.000102840764,0.000046195404,0.00010269278],"domain_scores_gemma":[0.99868816,0.00019145307,0.00042103112,0.00007965576,0.00031415655,0.0003054135],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00071860413,0.00016276992,0.0003621439,0.00023392831,0.00043372804,0.0014762332,0.00048262032,0.0008234156,0.0026867394],"category_scores_gemma":[0.0017084164,0.00026548532,0.00020017373,0.00016920315,0.00062321423,0.0020229435,0.00030703328,0.000547787,0.0005031497],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0025992172,0.0004134573,0.571886,0.00030374355,0.00017975642,0.00095209933,0.0018913297,0.00061213865,0.3443649,0.0016115338,0.0024491386,0.072736666],"study_design_scores_gemma":[0.00001617265,0.00021465418,0.9776015,0.000025025172,0.000042350268,0.00028819777,0.0052988096,0.0008057977,0.011859447,0.0005956205,0.0032293429,0.00002303427],"about_ca_topic_score_codex":0.008448331,"about_ca_topic_score_gemma":0.028559936,"teacher_disagreement_score":0.008448331,"about_ca_system_score_codex":0.0007223461,"about_ca_system_score_gemma":0.00041893445,"threshold_uncertainty_score":0.016798317},"labels":[],"label_agreement":null},{"id":"W2128376731","doi":"10.1016/j.foreco.2007.01.029","title":"Understory plant communities of boreal mixedwood forests in western Canada: Natural patterns and response to variable-retention harvesting","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":177,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Understory; Species richness; Environmental science; Shrub; Canopy; Species diversity; Deciduous; Ecology; Agroforestry; Biology","score_opus":0.009022186158598821,"score_gpt":0.20702576961487856,"score_spread":0.19800358345627975,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2128376731","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994855,0.00008676353,0.000020372036,0.000016313363,9.948435e-7,0.000004328122,0.00019771926,0.0000015037987,0.00018656111],"genre_scores_gemma":[0.99865156,0.00010577042,0.000102562466,0.000029231078,0.0000011590802,0.0000061904,0.00032241901,0.00000204299,0.0007790228],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997371,0.000029276698,0.000012624337,0.000052318333,0.000051105508,0.00011754496],"domain_scores_gemma":[0.998963,0.00009056709,0.00017936167,0.000033304495,0.0003253661,0.00040842989],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029710887,0.00021398056,0.00027640208,0.0007296333,0.0019689156,0.0008153427,0.0006667042,0.0002517848,0.0010239058],"category_scores_gemma":[0.0009315916,0.00025462158,0.00014293157,0.0012719841,0.0009974987,0.00034654306,0.0006455108,0.00026371586,0.00013019783],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00032927442,0.00006394858,0.9825798,0.000033217973,0.000058986352,0.00012348285,0.0047728126,0.00014894607,0.003438138,0.00008405242,0.00039891142,0.007968431],"study_design_scores_gemma":[0.000002455749,0.000008907498,0.99785584,0.000003877047,0.0000060416514,0.00002603675,0.0017544832,0.00007257789,0.00005840547,0.000011037678,0.00019737524,0.000003085338],"about_ca_topic_score_codex":0.9763907,"about_ca_topic_score_gemma":0.99657685,"teacher_disagreement_score":0.02360928,"about_ca_system_score_codex":0.0067755086,"about_ca_system_score_gemma":0.0055615744,"threshold_uncertainty_score":0.049160004},"labels":[],"label_agreement":null},{"id":"W2128716952","doi":"10.1016/j.foreco.2009.10.038","title":"Comparing different forest zoning options for landscape-scale management of the boreal forest: Possible benefits of the TRIAD","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":109,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto; Simon Fraser University; Université du Québec à Montréal","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Forest management; Zoning; Forest ecology; Taiga; Sustainable forest management; Environmental science; Geography; Old-growth forest; Environmental resource management; Agroforestry; Forest farming; Forest restoration; Ecosystem; Ecology; Forestry; Biology; Engineering","score_opus":0.013243838818711239,"score_gpt":0.2280130312310351,"score_spread":0.21476919241232387,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2128716952","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.974013,0.0013693896,0.010138084,0.00076328026,0.00015032924,0.0006208707,0.0007900967,0.00011738108,0.012037557],"genre_scores_gemma":[0.992238,0.00034346315,0.0057044206,0.00016241636,0.000033183038,0.0003173296,0.0003264767,0.000021301137,0.0008533308],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.9946918,0.0035408896,0.000289457,0.00038559388,0.00054899545,0.0005432026],"domain_scores_gemma":[0.99176735,0.0048936377,0.0012357305,0.00067774404,0.00059659226,0.0008290086],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.008544601,0.00074138783,0.0012961347,0.0020177711,0.0008098539,0.002164047,0.0020289228,0.0012321227,0.009806594],"category_scores_gemma":[0.012469038,0.00041691397,0.0016032669,0.0015887272,0.001088429,0.0033675567,0.0020212855,0.0014823151,0.00042468458],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.102578714,0.012140197,0.22975726,0.0028628302,0.0050064726,0.00044156038,0.001983004,0.24910533,0.005746738,0.085714206,0.007486375,0.29717728],"study_design_scores_gemma":[0.028579865,0.052111346,0.3772363,0.0007951325,0.008740116,0.0009876178,0.019329386,0.3885066,0.0050474843,0.099881575,0.018063292,0.00072125095],"about_ca_topic_score_codex":0.0077415467,"about_ca_topic_score_gemma":0.020805098,"teacher_disagreement_score":0.009806594,"about_ca_system_score_codex":0.0015168173,"about_ca_system_score_gemma":0.0012181288,"threshold_uncertainty_score":0.045188665},"labels":[],"label_agreement":null},{"id":"W2129285520","doi":"10.1016/j.foreco.2014.03.027","title":"Fire history, fuels, and overstory effects on the regeneration-layer dynamics of mixed-pine forest ecosystems of eastern Upper Michigan, USA","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":25,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"","keywords":"Seedling; Environmental science; Regeneration (biology); Red pine; Ecosystem; Forest ecology; Fire regime; Pinus <genus>; Pine barrens; Ecology; Fire ecology; Pine forest; Forestry; Forest dynamics; Biology; Geography; Botany","score_opus":0.004965304409407138,"score_gpt":0.1750163495848706,"score_spread":0.17005104517546346,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2129285520","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997335,0.000033408145,0.000008699756,0.000011543356,6.854455e-7,6.779394e-7,0.00008209289,8.4057694e-7,0.00012849727],"genre_scores_gemma":[0.99960774,0.00003419342,0.000023897826,0.00001107053,0.0000025891202,0.0000018348303,0.00015346835,8.9295173e-7,0.00016429082],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999163,0.000022213397,0.000008725994,0.000017668395,0.00001192966,0.000023144099],"domain_scores_gemma":[0.9995041,0.0001343003,0.0001376254,0.000021308975,0.00005690734,0.00014570433],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026472352,0.0001323291,0.00014340351,0.00043519124,0.00034234076,0.00051030045,0.00026513927,0.0001894609,0.0013016261],"category_scores_gemma":[0.00061556575,0.00012753898,0.00016863266,0.00032743785,0.00021621067,0.00035180617,0.00039579376,0.00018325297,0.000104069535],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017546485,0.000052787356,0.9955663,0.000006712471,0.00009108225,0.000056516346,0.00013746362,0.00022298399,0.0014585325,0.000032001644,0.00011191465,0.002088313],"study_design_scores_gemma":[0.0000013769074,0.0000105754,0.999424,0.0000014097051,0.000012715278,0.000018639928,0.00011277802,0.00030544327,0.00005092547,0.000008376408,0.00005273313,9.5312123e-7],"about_ca_topic_score_codex":0.04741757,"about_ca_topic_score_gemma":0.24627404,"teacher_disagreement_score":0.04741757,"about_ca_system_score_codex":0.0005510589,"about_ca_system_score_gemma":0.00026879174,"threshold_uncertainty_score":0.09428316},"labels":[],"label_agreement":null},{"id":"W2129548482","doi":"10.1016/j.foreco.2008.02.056","title":"Derivation of a spatially explicit 86-year retrospective carbon budget for a landscape undergoing conversion from old-growth to managed forests on Vancouver Island, BC","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":62,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Environmental science; Forest inventory; Disturbance (geology); Biomass (ecology); Forest dynamics; Carbon sink; Ecosystem; Logging; Biome; Forest ecology; Forestry; Old-growth forest; Sink (geography); Forest management; Geography; Physical geography; Ecology; Agroforestry; Geology","score_opus":0.004239962674255426,"score_gpt":0.18164978328921683,"score_spread":0.1774098206149614,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2129548482","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98848945,0.00012345727,0.0060727503,0.00010188728,0.000011650443,0.000031598203,0.0027489846,0.00009065525,0.0023295477],"genre_scores_gemma":[0.994239,0.0000798437,0.0035545554,0.000028963428,0.0000056600093,0.000021451371,0.0014786457,0.000038843642,0.00055298157],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.99990356,0.000014805226,0.0000096621725,0.000027650756,0.000020554196,0.00002386392],"domain_scores_gemma":[0.99951017,0.00013812033,0.000056527002,0.000050331088,0.00020329926,0.00004160364],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00042339126,0.00037355872,0.00040846696,0.0007695947,0.0007354554,0.00089887454,0.00088644197,0.00078549486,0.0013763647],"category_scores_gemma":[0.0020328967,0.00086804386,0.00047585295,0.0010660868,0.00031814206,0.00055490714,0.00031463167,0.0004426012,0.00026497172],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012472227,0.00014473611,0.14091057,0.00007843916,0.00018877976,0.00055232306,0.000109310706,0.8377948,0.004850578,0.0016245866,0.00093121326,0.012689985],"study_design_scores_gemma":[0.000046544068,0.00001598406,0.12595248,0.000030503072,0.00005988826,0.0000958794,0.00009653016,0.8710169,0.0010550119,0.00044574178,0.0011389235,0.000045655754],"about_ca_topic_score_codex":0.6459313,"about_ca_topic_score_gemma":0.6651027,"teacher_disagreement_score":0.3540687,"about_ca_system_score_codex":0.0029251084,"about_ca_system_score_gemma":0.0034088905,"threshold_uncertainty_score":0.71230775},"labels":[],"label_agreement":null},{"id":"W2129756022","doi":"10.1016/s0378-1127(03)00047-1","title":"Responses of planted conifers and natural hardwood regeneration to harvesting, scalping, and weeding on a boreal mixedwood site","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":52,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute","funders":"","keywords":"Hardwood; Windthrow; Environmental science; Basal area; Silviculture; Seedling; Throughfall; Regeneration (biology); Clearcutting; Natural regeneration; Agronomy; Understory; Taiga; Biology; Forestry; Canopy; Agroforestry; Ecology; Geography","score_opus":0.005684933195005152,"score_gpt":0.20715574301889259,"score_spread":0.20147080982388743,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2129756022","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99986494,0.0000044680546,0.00000778113,0.0000024068936,9.557814e-7,0.0000013364352,0.000022186383,7.72522e-7,0.00009528373],"genre_scores_gemma":[0.9994665,0.000007831233,0.000046385976,0.0000106977795,0.0000019042529,0.000004559187,0.00009437071,0.0000010075809,0.0003668427],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998796,0.000030541807,0.000005821217,0.000027816403,0.0000148422205,0.000041334573],"domain_scores_gemma":[0.9992931,0.000152841,0.00011844306,0.000028881777,0.00006651547,0.00034026263],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021507386,0.00020942473,0.00016077836,0.00023681513,0.00042342255,0.00034425157,0.00024530702,0.00022670679,0.0012325082],"category_scores_gemma":[0.0006575706,0.00014333065,0.0001436578,0.00014969046,0.00040135498,0.00023391671,0.00026648093,0.00029900082,0.00014021914],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0070574484,0.001990068,0.89606035,0.00003262351,0.0000923785,0.00052400585,0.0012015868,0.0007423295,0.0837455,0.00012311725,0.00035566598,0.008074815],"study_design_scores_gemma":[0.0000181039,0.00043538996,0.9980259,8.64324e-7,0.000006047218,0.00007621475,0.00036775327,0.00029729126,0.00065515196,0.000023509723,0.0000903266,0.0000035267965],"about_ca_topic_score_codex":0.017188385,"about_ca_topic_score_gemma":0.0800741,"teacher_disagreement_score":0.017188385,"about_ca_system_score_codex":0.0004558229,"about_ca_system_score_gemma":0.0002461812,"threshold_uncertainty_score":0.034176648},"labels":[],"label_agreement":null},{"id":"W2130068491","doi":"10.1016/j.foreco.2011.12.009","title":"Effects of trees on the burning of organic layers on permafrost terrain","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Guelph","funders":"","keywords":"Permafrost; Terrain; Environmental science; Earth science; Physical geography; Geology; Ecology; Soil science; Geography; Biology; Oceanography","score_opus":0.020530659361977358,"score_gpt":0.20230193590708198,"score_spread":0.1817712765451046,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2130068491","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9986308,0.000046927515,0.00002548229,0.000027905588,0.000003759789,0.0000014511293,0.00009169649,0.000002090541,0.001169828],"genre_scores_gemma":[0.99906737,0.000044247885,0.00003792621,0.000019202605,0.000004840639,0.0000013657439,0.00011782041,0.0000037572913,0.0007033369],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982625,0.000062434,0.000010012644,0.000019030256,0.00001958736,0.00006269683],"domain_scores_gemma":[0.99848855,0.00076350855,0.00022780876,0.00007054084,0.00015458491,0.00029494116],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040380438,0.000197318,0.0001966803,0.00043610943,0.0005556173,0.0007107022,0.00035553062,0.0004201841,0.005866362],"category_scores_gemma":[0.0013861227,0.00010871513,0.00038465403,0.00038317725,0.00049810956,0.00033686336,0.00038640198,0.0002776781,0.0002646728],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.009432303,0.0006376964,0.9166766,0.00010806548,0.00042298072,0.00090231135,0.00060051726,0.015176435,0.03457258,0.00097151403,0.0008524382,0.019646669],"study_design_scores_gemma":[0.000018061914,0.00018040025,0.99638474,0.000004781186,0.00004435527,0.00005541919,0.00031532804,0.0014895175,0.0010233127,0.0001321674,0.00034595616,0.0000058655114],"about_ca_topic_score_codex":0.020841002,"about_ca_topic_score_gemma":0.047668636,"teacher_disagreement_score":0.020841002,"about_ca_system_score_codex":0.00062169344,"about_ca_system_score_gemma":0.00031178776,"threshold_uncertainty_score":0.041439414},"labels":[],"label_agreement":null},{"id":"W2130105740","doi":"10.1016/j.foreco.2008.07.016","title":"Finding the appropriate level of complexity for a simulation model: An example with a forest growth model","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":45,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada","funders":"","keywords":"Model selection; Function (biology); Computer science; Tree (set theory); Growth function; Selection (genetic algorithm); Predictive modelling; Growth model; Decision tree model; Information Criteria; Bayesian information criterion; Machine learning; Mathematical optimization; Statistics; Econometrics; Mathematics; Decision tree","score_opus":0.1286801327384692,"score_gpt":0.2675094949235336,"score_spread":0.1388293621850644,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2130105740","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.71621495,0.0001825942,0.2671822,0.0029535526,0.00005618778,0.00021489672,0.00038699343,0.00043110523,0.01237758],"genre_scores_gemma":[0.9225016,0.00008047229,0.075834975,0.00008409354,0.0000129324935,0.00010466278,0.00014680349,0.000069747446,0.0011647252],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9992834,0.00040411265,0.000038633967,0.000067718385,0.00010815838,0.00009805648],"domain_scores_gemma":[0.9873312,0.011176926,0.0002569445,0.00041626405,0.0004463898,0.00037218723],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002034156,0.0007853845,0.0011951939,0.0006483368,0.0015733817,0.0014849317,0.0011071992,0.0028274716,0.0032201447],"category_scores_gemma":[0.012208409,0.0006750514,0.0013495808,0.0007404742,0.0009712572,0.0020918378,0.0013166612,0.0022488153,0.00018152608],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013166507,0.00015368492,0.0019866135,0.000055137993,0.000029880846,0.0002447365,0.00014614385,0.98195744,0.0011119634,0.010876063,0.00032760293,0.002979166],"study_design_scores_gemma":[0.00004781852,0.000034381643,0.00020385812,0.0000080162135,0.000017662964,0.000021063066,0.000035858233,0.9930205,0.00046556463,0.0058750855,0.00026079148,0.000009376972],"about_ca_topic_score_codex":0.01735581,"about_ca_topic_score_gemma":0.017181782,"teacher_disagreement_score":0.01735581,"about_ca_system_score_codex":0.0012326386,"about_ca_system_score_gemma":0.0015150654,"threshold_uncertainty_score":0.03450954},"labels":[],"label_agreement":null},{"id":"W2130931702","doi":"10.1016/j.foreco.2007.04.037","title":"Indigenous influence on forest management on the Menominee Indian Reservation","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":64,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Indigenous; Tribe; Reservation; Government (linguistics); Legislation; Forest management; Sustainable forest management; Geography; Sustainable management; Logging; Agroforestry; Political science; Environmental resource management; Ecology; Forestry; Law; Sustainability; Economics; Environmental science","score_opus":0.008350289783197282,"score_gpt":0.22211556052342757,"score_spread":0.21376527074023027,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2130931702","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9837247,0.000102025195,0.000016697617,0.00032762217,0.0000069386383,0.000005626352,0.000023941784,0.0000020257824,0.015790388],"genre_scores_gemma":[0.997324,0.00010059188,0.000026194779,0.000044449782,0.0000052129844,0.000002636929,0.000011309045,0.00000184651,0.0024837905],"study_design_codex":"observational","study_design_gemma":"qualitative","domain_scores_codex":[0.9994154,0.00018920297,0.000018590752,0.00003604028,0.000083280946,0.0002574763],"domain_scores_gemma":[0.9991061,0.00022577857,0.00013850325,0.000038647304,0.00014654286,0.00034442553],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005020727,0.000070792616,0.00011939211,0.0005354786,0.0037618168,0.0014671072,0.0005148619,0.0001889963,0.003827875],"category_scores_gemma":[0.0011776036,0.00008738717,0.00010559991,0.0009417802,0.001501308,0.00030908297,0.001456776,0.0007983776,0.00016656287],"study_design_candidate":"qualitative","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00064813904,0.0004892816,0.61066467,0.00027140143,0.00010502926,0.0048026415,0.2764189,0.00095041766,0.008858808,0.02018843,0.0033068222,0.07329543],"study_design_scores_gemma":[0.000007357305,0.000068771915,0.82352877,0.00006121965,0.0000312283,0.0003630681,0.16340847,0.00020153636,0.0003163568,0.0004395381,0.011550854,0.000022807362],"about_ca_topic_score_codex":0.2630031,"about_ca_topic_score_gemma":0.6113964,"teacher_disagreement_score":0.2630031,"about_ca_system_score_codex":0.0029633923,"about_ca_system_score_gemma":0.0030663847,"threshold_uncertainty_score":0.52294457},"labels":[],"label_agreement":null},{"id":"W2130989460","doi":"10.1016/j.foreco.2007.03.072","title":"Variation in carbon storage among tree species: Implications for the management of a small-scale carbon sink project","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Conservation, Biodiversity, and Resource Management","field":"Environmental Science","cited_by":445,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"","keywords":"Agroforestry; Hectare; Carbon sequestration; Species diversity; Pasture; Species richness; Biodiversity; Ecology; Land use; Environmental science; Forestry; Geography; Agriculture; Biology","score_opus":0.014321357782750213,"score_gpt":0.2089207665603046,"score_spread":0.19459940877755438,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2130989460","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99850947,0.00002928948,0.00094817404,0.000063468506,0.000001963654,0.0000054670368,0.00006398093,0.000006955992,0.00037129773],"genre_scores_gemma":[0.9994711,0.000008476281,0.00041218312,0.000008827735,0.000001592561,0.0000030146398,0.000041986517,0.000002994979,0.000049777176],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995425,0.00027344408,0.000027547272,0.00009601756,0.000037983526,0.00002259973],"domain_scores_gemma":[0.99762374,0.0014004186,0.00035851393,0.00021789623,0.00020820276,0.00019111118],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0013205733,0.00012954371,0.00024401075,0.0006402758,0.00043360586,0.0005246146,0.00032287207,0.0002562279,0.0011772038],"category_scores_gemma":[0.004577687,0.000080867714,0.0001381314,0.00071474153,0.00052089395,0.0004872973,0.0003610482,0.00021169391,0.00006816055],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00070201274,0.00023909917,0.93724173,0.00004048258,0.00021801371,0.00013847675,0.00069824094,0.0032552828,0.026769005,0.0018042284,0.0003412548,0.02855216],"study_design_scores_gemma":[0.00001511641,0.00013183568,0.9865652,0.000006199037,0.000045412053,0.000134981,0.000608347,0.008843453,0.0013375117,0.0019415171,0.0003528915,0.000017454908],"about_ca_topic_score_codex":0.0026434548,"about_ca_topic_score_gemma":0.006913931,"teacher_disagreement_score":0.0026434548,"about_ca_system_score_codex":0.00026875763,"about_ca_system_score_gemma":0.00023730607,"threshold_uncertainty_score":0.006983936},"labels":[],"label_agreement":null},{"id":"W2131044970","doi":"10.1016/j.foreco.2009.06.037","title":"Logging history (1820–2000) of a heavily exploited southern boreal forest landscape: Insights from sunken logs and forestry maps","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":45,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Rimouski","funders":"","keywords":"Logging; Salvage logging; Disturbance (geology); Taiga; Geography; Balsam; Forestry; Boreal; Forest management; Agroforestry; Sustainable forest management; Clearcutting; Silviculture; Ecology; Deciduous; Biodiversity; Forest restoration; Forest ecology; Environmental science; Ecosystem; Archaeology; Geology; Biology","score_opus":0.012245547988784201,"score_gpt":0.1740754805952838,"score_spread":0.1618299326064996,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2131044970","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.996994,0.00027341803,0.00003826206,0.000032167074,0.0000039186284,0.0000029324044,0.0012644494,0.000004611046,0.0013861413],"genre_scores_gemma":[0.99672616,0.00022513764,0.00015120419,0.000018442079,0.000007978847,0.000004157475,0.0020076951,0.0000037938084,0.00085542264],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990094,0.000017072678,0.000012827909,0.000028980183,0.00001587565,0.000024319239],"domain_scores_gemma":[0.9992187,0.000091479276,0.00041528308,0.000044875724,0.00010637275,0.00012326986],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029876002,0.00020492481,0.00014856114,0.0018721991,0.000448722,0.0005051881,0.00032361937,0.00022916516,0.0013966636],"category_scores_gemma":[0.00074221956,0.0001519436,0.00014294125,0.0020964316,0.0003674133,0.0005838113,0.00052472815,0.00021245382,0.0002705088],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000117770964,0.00005023452,0.9765346,0.000061064224,0.00006219864,0.0004016798,0.0028060684,0.00027821952,0.0009981967,0.00012423244,0.0010306388,0.01753501],"study_design_scores_gemma":[6.051611e-7,0.0000067272454,0.99894387,0.0000043323785,0.000004880081,0.00009770807,0.00022181902,0.000039038656,0.00001878367,0.00000667308,0.00065380073,0.0000016990415],"about_ca_topic_score_codex":0.050227467,"about_ca_topic_score_gemma":0.23811246,"teacher_disagreement_score":0.94977254,"about_ca_system_score_codex":0.00047175656,"about_ca_system_score_gemma":0.00020696188,"threshold_uncertainty_score":0.099870205},"labels":[],"label_agreement":null},{"id":"W2131616514","doi":"10.1016/j.foreco.2013.11.032","title":"Temporal dynamics and causes of postharvest mortality in a selection-managed tolerant hardwood forest","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":20,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute; University of Toronto","funders":"Ministry of Natural Resources","keywords":"Postharvest; Felling; Biology; Abies balsamea; Chronosequence; Silviculture; Yellow birch; Hardwood; Beech; Shade tolerance; Forestry; Ecology; Horticulture; Geography; Ecological succession; Canopy","score_opus":0.010351456614280483,"score_gpt":0.19981692444659094,"score_spread":0.18946546783231044,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2131616514","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998951,0.0000075663797,0.000010639518,0.0000036221338,3.9449895e-7,7.549323e-7,0.000030573112,6.8421923e-7,0.00005063902],"genre_scores_gemma":[0.99979,0.0000068519503,0.000012672713,0.0000025780946,0.0000012690158,0.0000014547687,0.000067439294,4.0881963e-7,0.000117291944],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991715,0.000012605676,0.0000074729755,0.000018967572,0.000010528379,0.000033248703],"domain_scores_gemma":[0.9994381,0.00012781372,0.00019592469,0.000024720017,0.000055441094,0.00015810967],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023804072,0.00013631149,0.0001238855,0.000721969,0.0004092045,0.0003269846,0.00026811397,0.00024051694,0.0010513499],"category_scores_gemma":[0.00050833647,0.00012311168,0.000121508165,0.00033816588,0.00023742965,0.00026466118,0.00025677597,0.00024152231,0.00010717794],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00064452464,0.00021477659,0.9915495,0.0000061474084,0.000026720701,0.00021757542,0.00029714283,0.00022591231,0.0044044675,0.00005736152,0.00008027591,0.0022755503],"study_design_scores_gemma":[0.0000029371831,0.00006338701,0.9991598,6.219817e-7,0.000005411274,0.00008521865,0.00018254526,0.00033380874,0.000115072995,0.00002059801,0.000028534765,0.000002003329],"about_ca_topic_score_codex":0.008839669,"about_ca_topic_score_gemma":0.02618253,"teacher_disagreement_score":0.008839669,"about_ca_system_score_codex":0.00031256335,"about_ca_system_score_gemma":0.00016392625,"threshold_uncertainty_score":0.017576456},"labels":[],"label_agreement":null},{"id":"W2133883410","doi":"10.1016/j.foreco.2010.01.033","title":"Biological control of intolerant hardwood competition: Silvicultural efficacy of Chondrostereum purpureum and worker productivity in conifer plantations","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":31,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Wildlife","funders":"","keywords":"Hardwood; Productivity; Pulpwood; Silviculture; Competition (biology); Biology; Deciduous; Liquidambar styraciflua; Horticulture; Botany; Forestry; Agroforestry; Ecology; Geography","score_opus":0.006171711210708681,"score_gpt":0.2059828471687072,"score_spread":0.19981113595799854,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2133883410","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99983037,0.00003257466,0.000012786503,0.0000059061945,5.156072e-7,0.0000010835844,0.000007248536,0.0000015560476,0.00010793003],"genre_scores_gemma":[0.99968815,0.00001781009,0.000040949908,0.000014095419,0.0000017556534,0.000002285484,0.000033808217,0.0000011913949,0.00019998116],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998325,0.00004959205,0.0000129475975,0.000032847376,0.000025058123,0.00004704654],"domain_scores_gemma":[0.99918836,0.00017160876,0.00020725529,0.000040980485,0.000062919644,0.00032884104],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036051768,0.0002529713,0.00018984245,0.0003419226,0.0004350979,0.00037604288,0.00041169263,0.00019886109,0.0008696089],"category_scores_gemma":[0.00042423158,0.0001220869,0.00009577873,0.00014599072,0.00034929038,0.00028495258,0.00041746077,0.00030810563,0.00007564722],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0024562704,0.0013839197,0.19928084,0.00011548298,0.00012248792,0.00016963294,0.0006082305,0.0006578136,0.7746222,0.0003249855,0.00013593225,0.020122178],"study_design_scores_gemma":[0.000046470832,0.0011127449,0.9777539,0.000005127584,0.000033194297,0.00008290755,0.00029808073,0.0010187831,0.019215092,0.000079026475,0.00034749444,0.000007227812],"about_ca_topic_score_codex":0.0050666644,"about_ca_topic_score_gemma":0.015331708,"teacher_disagreement_score":0.0050666644,"about_ca_system_score_codex":0.00058212,"about_ca_system_score_gemma":0.00034142344,"threshold_uncertainty_score":0.010074317},"labels":[],"label_agreement":null},{"id":"W2135490041","doi":"10.1016/s0378-1127(99)00170-x","title":"Establishment, growth and survival of natural regeneration after clearcutting and drainage on forested wetlands","year":2000,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":76,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada; Ministère de l'Éducation, du Loisir et du Sport Québec","keywords":"Clearcutting; Abies balsamea; Balsam; Black spruce; Silviculture; Slash (logging); Deciduous; Taiga; Forestry; Environmental science; Biology; Botany; Ecology; Geography","score_opus":0.004190810262608912,"score_gpt":0.1968229776694091,"score_spread":0.19263216740680017,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2135490041","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998821,0.000015344041,0.0000060316293,0.0000012366489,4.1673763e-7,9.2024925e-7,0.000020621454,6.31689e-7,0.000072768555],"genre_scores_gemma":[0.999416,0.000018374803,0.000028268993,0.0000026623777,0.0000011662089,0.0000036524455,0.00009375015,7.2415077e-7,0.0004354643],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986637,0.000029971477,0.0000075146313,0.000026912676,0.00001665865,0.000052519426],"domain_scores_gemma":[0.9989053,0.00033956117,0.00022401326,0.00008314197,0.00010201359,0.00034591992],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036096477,0.00015271897,0.00017111441,0.00038078483,0.00036814017,0.0003209001,0.00028483605,0.00017634181,0.0010091735],"category_scores_gemma":[0.00085106835,0.00014564522,0.00016196871,0.00012855632,0.00042448318,0.00039651018,0.0003551368,0.0002453807,0.00020460755],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.008813846,0.0016458244,0.85414964,0.00006191774,0.00009878869,0.0005748908,0.0015047388,0.0007691496,0.11149901,0.0003708215,0.00036528576,0.020146139],"study_design_scores_gemma":[0.000011986526,0.00041561938,0.9975661,0.0000021939786,0.000006741257,0.00010462919,0.0001524791,0.00040302443,0.0011926311,0.000034267265,0.00010605988,0.000004325528],"about_ca_topic_score_codex":0.009059946,"about_ca_topic_score_gemma":0.02826357,"teacher_disagreement_score":0.009059946,"about_ca_system_score_codex":0.00038172762,"about_ca_system_score_gemma":0.0003213434,"threshold_uncertainty_score":0.018014431},"labels":[],"label_agreement":null},{"id":"W2138333886","doi":"10.1016/j.foreco.2008.03.040","title":"Relative size and stand age determine Pinus banksiana mortality","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"Kimberly-Clark","keywords":"Diameter at breast height; Pinus <genus>; Logistic regression; Demography; Estimation; Statistics; Mortality rate; Regression analysis; Ecological succession; Biology; Mathematics; Forestry; Ecology; Geography; Botany","score_opus":0.011761287133171943,"score_gpt":0.21798295445073917,"score_spread":0.20622166731756722,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2138333886","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99936014,0.00005598635,0.00006321027,0.000011084341,0.0000028250502,0.0000016479032,0.00003931603,0.000003247383,0.0004624258],"genre_scores_gemma":[0.9990237,0.000035591056,0.00007583604,0.000017913726,0.0000034294255,0.00000259322,0.000072038805,0.0000046949085,0.0007642649],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990976,0.000021874186,0.0000051576153,0.0000243067,0.000017708933,0.000021174636],"domain_scores_gemma":[0.9989434,0.00040669017,0.00022590115,0.00003825597,0.00006641171,0.0003193583],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024279124,0.00019886298,0.0001479874,0.00043700167,0.0002265998,0.00038185428,0.00025646522,0.00023713711,0.0027075114],"category_scores_gemma":[0.00080450095,0.00024162733,0.0001416328,0.00017057698,0.00029240892,0.0005590778,0.00040669247,0.00031337552,0.0004568924],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005067669,0.00021120886,0.8716681,0.000023139497,0.000055293192,0.00027183947,0.0002117013,0.00026998107,0.11775183,0.00020939519,0.000191383,0.008629329],"study_design_scores_gemma":[0.000002406753,0.00005045426,0.99895644,0.0000010725466,0.000008336818,0.000088310386,0.00005594703,0.00022811578,0.00048164272,0.000053284268,0.00007184789,0.0000021151793],"about_ca_topic_score_codex":0.0022524826,"about_ca_topic_score_gemma":0.013399832,"teacher_disagreement_score":0.0027075114,"about_ca_system_score_codex":0.00021646643,"about_ca_system_score_gemma":0.00019034234,"threshold_uncertainty_score":0.009057522},"labels":[],"label_agreement":null},{"id":"W2139110618","doi":"10.1016/j.foreco.2005.03.017","title":"Paludification in black spruce (Picea mariana) forests of eastern Canada: Potential factors and management implications","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":184,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Black spruce; Forest floor; Understory; Sphagnum; Environmental science; Basal area; Taiga; Silviculture; Chronosequence; Forest management; Ecology; Context (archaeology); Forest ecology; Canopy; Forestry; Agroforestry; Peat; Geography; Ecological succession; Ecosystem; Biology","score_opus":0.00543339722238335,"score_gpt":0.1935846812382689,"score_spread":0.18815128401588557,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2139110618","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99802005,0.00025804783,0.000037383725,0.000104031904,0.0000026253576,0.000007787971,0.00015112465,0.000003728686,0.0014152658],"genre_scores_gemma":[0.9986029,0.00013635022,0.00006207375,0.00003775866,0.000001848104,0.0000046802475,0.00017232272,0.0000032734615,0.0009787722],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995447,0.00004142307,0.000017526623,0.00008534054,0.00009243261,0.00021853515],"domain_scores_gemma":[0.99895465,0.00007915383,0.0001514794,0.000027065806,0.0005140365,0.0002735983],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000508415,0.00021953938,0.00026559824,0.0018165946,0.003438571,0.002019772,0.0012819109,0.00040727563,0.0014222567],"category_scores_gemma":[0.0013545945,0.00021302015,0.00018554003,0.0021840408,0.0015271279,0.00059504516,0.0012615632,0.0005059403,0.0001585157],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001820924,0.000044808057,0.98296446,0.000034997,0.00004381631,0.0002115498,0.0046053543,0.00013455159,0.0023534996,0.0006029031,0.00035711666,0.008464741],"study_design_scores_gemma":[0.0000019433537,0.0000063978227,0.9938658,0.000009281262,0.0000072424127,0.00003231971,0.0052733766,0.00011978021,0.00007787434,0.000048841623,0.0005539419,0.0000033265683],"about_ca_topic_score_codex":0.9657502,"about_ca_topic_score_gemma":0.9922099,"teacher_disagreement_score":0.034249783,"about_ca_system_score_codex":0.011965015,"about_ca_system_score_gemma":0.009586992,"threshold_uncertainty_score":0.086812735},"labels":[],"label_agreement":null},{"id":"W2139354661","doi":"10.1016/j.foreco.2007.01.038","title":"Early development of tended mixtures of aspen and spruce in western Canadian boreal forests","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":49,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Clearcutting; Taiga; Boreal; Salicaceae; Silviculture; Collar; Black spruce; Environmental science; Botany; Forestry; Woody plant; Biology; Agronomy; Horticulture; Ecology; Geography","score_opus":0.005339866640674201,"score_gpt":0.2078115772786663,"score_spread":0.2024717106379921,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2139354661","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99849415,0.00021934284,0.000038834383,0.000009637096,0.0000013001012,0.0000054980414,0.000107520085,0.000002874896,0.001120774],"genre_scores_gemma":[0.9969662,0.00015960974,0.00017791222,0.000019281944,8.415985e-7,0.0000075360185,0.00021240694,0.0000050916615,0.0024512033],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995602,0.000034041088,0.000011351299,0.00010851094,0.00010824138,0.00017771157],"domain_scores_gemma":[0.9988513,0.000098538745,0.00017458675,0.000030105572,0.00044429448,0.0004011761],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00056599674,0.00031371872,0.00024412107,0.0013726269,0.0021253251,0.0013291826,0.0007538368,0.0003359112,0.0011683317],"category_scores_gemma":[0.0009418726,0.00038072636,0.0001534939,0.0006301059,0.0007704565,0.0004600914,0.0010245455,0.0004296676,0.0002070582],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010775265,0.00011807628,0.9093982,0.00006692193,0.00006876781,0.000640754,0.008379565,0.00034195537,0.05594205,0.00039595307,0.00043868675,0.023131564],"study_design_scores_gemma":[9.633956e-7,0.000021431028,0.9977144,0.000006039361,0.000005055241,0.00006116623,0.0012199781,0.00004361077,0.00040517963,0.000011916088,0.0005054853,0.000004906628],"about_ca_topic_score_codex":0.8714633,"about_ca_topic_score_gemma":0.97889555,"teacher_disagreement_score":0.1285367,"about_ca_system_score_codex":0.0076489532,"about_ca_system_score_gemma":0.0046636127,"threshold_uncertainty_score":0.2585873},"labels":[],"label_agreement":null},{"id":"W2140131090","doi":"10.1016/j.foreco.2009.09.001","title":"A global overview of drought and heat-induced tree mortality reveals emerging climate change risks for forests","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":7649,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service","funders":"","keywords":"Climate change; Global warming; Ecosystem; Ecology; Global change; Environmental science; Forest ecology; Climate model; Effects of global warming; Geography; Environmental resource management; Biology","score_opus":0.04628119067182708,"score_gpt":0.3190819744984997,"score_spread":0.2728007838266726,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2140131090","genre_codex":"review","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.37939715,0.541703,0.025886638,0.013482039,0.0011090981,0.0001063103,0.007673081,0.0006814538,0.029961279],"genre_scores_gemma":[0.5633542,0.4139895,0.011057613,0.0019084113,0.0014151481,0.000057945468,0.0035205786,0.00007341778,0.0046231034],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.9998776,0.000020585363,0.000015661653,0.000028625993,0.000031197873,0.00002633566],"domain_scores_gemma":[0.99961215,0.0001001507,0.00009819272,0.000023066204,0.00010161711,0.00006480383],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004395774,0.00039307444,0.0003193561,0.0021979285,0.00023282575,0.00073536957,0.00019190702,0.00027026417,0.0016789001],"category_scores_gemma":[0.00043955835,0.00011750568,0.00032255918,0.0027688448,0.00016353656,0.0011457447,0.00051651493,0.00046988513,0.0002102777],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002590092,0.000058826052,0.12259201,0.0023567805,0.00052767474,0.00022378382,0.00042656064,0.0033092406,0.0055417498,0.003041651,0.015237646,0.84642506],"study_design_scores_gemma":[0.000011946907,0.0002990053,0.71251875,0.0008143067,0.0006869789,0.0012676405,0.00087725115,0.0017021868,0.0012247396,0.007700865,0.27285013,0.000046227156],"about_ca_topic_score_codex":0.002027336,"about_ca_topic_score_gemma":0.007284107,"teacher_disagreement_score":0.0021979285,"about_ca_system_score_codex":0.00029446543,"about_ca_system_score_gemma":0.0004344203,"threshold_uncertainty_score":0.0056165457},"labels":[],"label_agreement":null},{"id":"W2140371235","doi":"10.1016/j.foreco.2008.01.074","title":"Successional development of silviculturally treated and untreated high-latitude Populus tremuloides clearcuts in northern Alberta, Canada","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Calgary","funders":"Arctic Institute of North America","keywords":"Graminoid; Shrub; Understory; Forb; Vegetation (pathology); Forestry; Agronomy; Seedling; Sowing; Boreal; Willow; Biology; Ecology; Grassland; Geography; Canopy","score_opus":0.004443400683210493,"score_gpt":0.18183524290498768,"score_spread":0.17739184222177717,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2140371235","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9989888,0.00019008598,0.000019357525,0.000012527225,0.000003494786,0.0000069434805,0.0002775135,0.0000024147284,0.00049881765],"genre_scores_gemma":[0.9968009,0.0001954502,0.00010272692,0.000028577426,0.0000014679798,0.000005871846,0.00048180003,0.000001918057,0.0023813082],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997867,0.000019285351,0.000009114056,0.0000328853,0.000056169116,0.000095928524],"domain_scores_gemma":[0.9995571,0.000025737665,0.00006674403,0.000010087419,0.00015502847,0.00018535256],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022215779,0.00028083628,0.00022697626,0.0007754901,0.0009869853,0.0005514764,0.0005339045,0.0002121512,0.0008057231],"category_scores_gemma":[0.00027384408,0.00014692779,0.0001674227,0.0005963609,0.00046440487,0.00013266265,0.0003027352,0.00024133839,0.00012238191],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0052312575,0.0007072068,0.90403384,0.00016945605,0.00017292371,0.0009283589,0.0040274374,0.0011087904,0.053788118,0.00038727335,0.0018837502,0.027561625],"study_design_scores_gemma":[0.000010176886,0.000084672065,0.99789315,0.0000046663263,0.000011242762,0.000029076033,0.00096620456,0.00010560456,0.00040267472,0.000009219056,0.00047908613,0.0000043733316],"about_ca_topic_score_codex":0.9465993,"about_ca_topic_score_gemma":0.99193466,"teacher_disagreement_score":0.053400695,"about_ca_system_score_codex":0.008776661,"about_ca_system_score_gemma":0.006187502,"threshold_uncertainty_score":0.10743034},"labels":[],"label_agreement":null},{"id":"W2140613985","doi":"10.1016/j.foreco.2008.01.008","title":"Effects of compaction and water content on lodgepole pine seedling growth","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":46,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia; Government of British Columbia; Simon Fraser University","funders":"","keywords":"Loam; Silt; Soil compaction; Compaction; Water content; Environmental science; Seedling; Agronomy; Greenhouse; Soil water; Soil science; Biology; Geology; Geotechnical engineering","score_opus":0.012827968697844411,"score_gpt":0.1909225248625113,"score_spread":0.17809455616466688,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2140613985","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99949944,0.000119915545,0.00007940293,0.000011732995,0.0000049045807,0.0000053524623,0.00006776385,0.0000045497595,0.00020693956],"genre_scores_gemma":[0.9991973,0.000047448393,0.00010527659,0.000033615834,0.000007073307,0.000008299746,0.00009617353,0.0000063089133,0.00049856975],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.999655,0.00008189831,0.000028322902,0.000067197674,0.00005836576,0.00010912691],"domain_scores_gemma":[0.9976647,0.0012161705,0.0003252666,0.00010246796,0.00011979511,0.00057161576],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029508962,0.00042296227,0.00041700102,0.000289379,0.00039549713,0.0005380902,0.0003504329,0.00039582662,0.0016725766],"category_scores_gemma":[0.0008899481,0.00034741897,0.00023970012,0.00028072277,0.00079515384,0.00052214466,0.00043130864,0.0009006818,0.00011622826],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.03891573,0.0014688919,0.15078194,0.00022221821,0.00024544334,0.0008947152,0.0009481563,0.0013112569,0.78450364,0.00026878662,0.00039179917,0.020047486],"study_design_scores_gemma":[0.00017207486,0.005412062,0.90996414,0.0000121932735,0.00015734423,0.0002601578,0.0005300167,0.0012829055,0.08150843,0.000109745124,0.0005585577,0.000032472446],"about_ca_topic_score_codex":0.009418424,"about_ca_topic_score_gemma":0.027367597,"teacher_disagreement_score":0.009418424,"about_ca_system_score_codex":0.000778089,"about_ca_system_score_gemma":0.00056305545,"threshold_uncertainty_score":0.018727243},"labels":[],"label_agreement":null},{"id":"W2142018268","doi":"10.1016/j.foreco.2008.06.014","title":"Roles of seed and pollen dispersal in natural regeneration of Castanopsis fargesii (Fagaceae): Implications for forest management","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Genetic diversity and population structure","field":"Biochemistry, Genetics and Molecular Biology","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Biology; Seed dispersal; Biological dispersal; Genetic diversity; Ecology; RAPD; Fagaceae; Pollen; Genetic variation; Regeneration (biology); Climax; Population","score_opus":0.007913137047433481,"score_gpt":0.22220642102488367,"score_spread":0.21429328397745018,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2142018268","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99915385,0.00034268107,0.00008987037,0.000023632243,0.0000011851073,0.0000018086761,0.00004069027,0.0000035891967,0.00034270278],"genre_scores_gemma":[0.9995109,0.00007138659,0.00014094406,0.000011439699,0.0000011377373,0.000002640313,0.00007812481,0.0000013754259,0.00018192714],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99992335,0.000021048145,0.0000051637885,0.000020600151,0.000010330202,0.000019478013],"domain_scores_gemma":[0.99978024,0.00006191026,0.000048511178,0.000011104217,0.0000381449,0.000060108978],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021691374,0.00017831926,0.00017921635,0.00062235206,0.0005915888,0.00029813292,0.00034395422,0.00028402117,0.00041833625],"category_scores_gemma":[0.00026031546,0.00015007604,0.0001591644,0.0002206882,0.00034395224,0.00033325303,0.00027514476,0.0003127619,0.00006511957],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009049505,0.00016863424,0.25649595,0.00021776653,0.000072817544,0.00040110678,0.0011337197,0.0009758828,0.7150946,0.0016036171,0.00011670096,0.022814276],"study_design_scores_gemma":[0.000027082106,0.00009542871,0.9921182,0.0000082075,0.00001921695,0.00025961248,0.0004165083,0.0013162915,0.0049326182,0.00026686137,0.0005271433,0.000012820698],"about_ca_topic_score_codex":0.015165122,"about_ca_topic_score_gemma":0.033746246,"teacher_disagreement_score":0.015165122,"about_ca_system_score_codex":0.0008976242,"about_ca_system_score_gemma":0.00046493646,"threshold_uncertainty_score":0.030153692},"labels":[],"label_agreement":null},{"id":"W2144285961","doi":"10.1016/j.foreco.2011.05.016","title":"Uncertainty of 21st century growing stocks and GHG balance of forests in British Columbia, Canada resulting from potential climate change impacts on ecosystem processes","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":50,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Forests; Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Environmental science; Climate change; Greenhouse gas; Stock (firearms); Ecosystem; Forest ecology; Carbon sink; Ecology; Geography","score_opus":0.005987726327508969,"score_gpt":0.17661740989222194,"score_spread":0.17062968356471298,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2144285961","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9851645,0.0013188281,0.00026305648,0.003353466,0.000029353669,0.000010467291,0.005393868,0.000017571927,0.0044488953],"genre_scores_gemma":[0.9967962,0.00045463865,0.00010910442,0.00019329292,0.0000085448055,0.0000028777056,0.0012485043,0.000005884914,0.0011809879],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99950373,0.0000683353,0.00005103514,0.000090178335,0.00014458777,0.00014225562],"domain_scores_gemma":[0.9975464,0.00066064537,0.00030750505,0.00007776206,0.0011205246,0.00028708173],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.001349681,0.0002667069,0.0003602528,0.0012637507,0.0018861513,0.0025782234,0.00094693806,0.00084695016,0.0019367352],"category_scores_gemma":[0.0049538985,0.00039519297,0.00045110052,0.0025530888,0.0011534012,0.0008364828,0.0008203216,0.0012142025,0.00015857632],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004965869,0.00006455737,0.8969849,0.00011266105,0.0004132958,0.0005424709,0.0013543051,0.06634487,0.0007374251,0.004183773,0.008483832,0.020281287],"study_design_scores_gemma":[0.000044293873,0.000016432838,0.9459144,0.00010185856,0.0001629789,0.00009732889,0.0034308278,0.03861829,0.0005050477,0.0031243912,0.007881769,0.000102460464],"about_ca_topic_score_codex":0.9945543,"about_ca_topic_score_gemma":0.9969459,"teacher_disagreement_score":0.03858424,"about_ca_system_score_codex":0.03858424,"about_ca_system_score_gemma":0.020991016,"threshold_uncertainty_score":0.27994955},"labels":[],"label_agreement":null},{"id":"W2144567921","doi":"10.1016/j.foreco.2005.11.005","title":"Growth response and water relations of 3-year-old planted black spruce and jack pine seedlings in site prepared lichen woodlands","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":52,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada; Université du Québec à Chicoutimi","funders":"","keywords":"Black spruce; Scarification; Woodland; Seedling; Afforestation; Taiga; Silviculture; Forestry; Jack pine; Canopy; Sowing; Growing season; Environmental science; Agronomy; Biology; Botany; Agroforestry; Geography; Pinus <genus>; Germination","score_opus":0.004056434519025012,"score_gpt":0.18442638614007034,"score_spread":0.18036995162104533,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2144567921","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997209,0.00001397412,0.00002793466,0.000004040729,0.0000020879747,0.0000032127634,0.00006108151,0.0000026878351,0.00016396535],"genre_scores_gemma":[0.99878126,0.00002002611,0.000086035216,0.000023741959,0.0000024477151,0.000012558232,0.00025134246,0.0000039110496,0.00081857404],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9999211,0.000010314163,0.000006267961,0.00002419961,0.00001143283,0.000026591735],"domain_scores_gemma":[0.9995016,0.000120023346,0.000056341432,0.000020227477,0.00006009045,0.00024178675],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015619355,0.00024353454,0.00030693936,0.00021867073,0.00045154602,0.0002870716,0.00023900635,0.00032771143,0.0010329984],"category_scores_gemma":[0.0003425321,0.00017896756,0.00018743785,0.000121306504,0.00033137054,0.0004974955,0.0003089074,0.00082835456,0.00020579422],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0069381506,0.0012273222,0.21690767,0.00011196427,0.0000622038,0.0010290683,0.0026891679,0.00062290975,0.764613,0.00017537198,0.0003488791,0.0052743624],"study_design_scores_gemma":[0.000032409156,0.0012800449,0.9774529,0.0000037707434,0.000025554416,0.00020537653,0.0011073556,0.0008041997,0.018729758,0.00005167064,0.00029233488,0.000014788154],"about_ca_topic_score_codex":0.014941407,"about_ca_topic_score_gemma":0.03530836,"teacher_disagreement_score":0.014941407,"about_ca_system_score_codex":0.0003978382,"about_ca_system_score_gemma":0.00027362356,"threshold_uncertainty_score":0.029708862},"labels":[],"label_agreement":null},{"id":"W2144920428","doi":"10.1016/j.foreco.2004.02.063","title":"Age structure of Picea schrenkiana forest along an altitudinal gradient in the central Tianshan Mountains, northwestern China","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":62,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Chinese Academy of Forestry; Chinese Academy of Sciences; National Natural Science Foundation of China; Université du Québec à Chicoutimi","keywords":"Transect; Altitude (triangle); Dominance (genetics); Age structure; Taiga; Limiting; Ecology; Diameter at breast height; Geography; Physical geography; Forest structure; Population; Forestry; Environmental science; Biology; Demography","score_opus":0.008723088784399282,"score_gpt":0.21483060225243186,"score_spread":0.20610751346803258,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2144920428","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996891,0.00004178195,0.000021815385,0.0000044291533,7.3354994e-7,0.0000012313293,0.00008389548,0.0000018787817,0.00015521391],"genre_scores_gemma":[0.9997098,0.000017007991,0.000017491211,0.0000029315613,0.0000010668629,0.0000019509384,0.00012770393,6.477487e-7,0.0001214741],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998548,0.000019804986,0.000013415199,0.00005257349,0.000022119442,0.000037161135],"domain_scores_gemma":[0.99966705,0.000040135692,0.00009636043,0.000020728607,0.00006855288,0.00010721403],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022219021,0.00020725689,0.000195844,0.0016006799,0.00035824243,0.00026788094,0.00029112792,0.00016089661,0.00060862064],"category_scores_gemma":[0.00030211586,0.00015434189,0.00016544915,0.0010021118,0.000278049,0.00022901774,0.00032735174,0.00011065507,0.00010035794],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000063678905,0.000014112963,0.99414474,0.000010295952,0.00005057653,0.00009501767,0.00063206773,0.00016763994,0.00255514,0.000050062532,0.000066029184,0.0021508178],"study_design_scores_gemma":[5.89305e-7,0.0000034358698,0.99976,5.5624156e-7,0.0000041427984,0.000013874856,0.000083348285,0.00008646673,0.000014051978,0.000005189374,0.000027497668,8.061038e-7],"about_ca_topic_score_codex":0.039437734,"about_ca_topic_score_gemma":0.119616345,"teacher_disagreement_score":0.039437734,"about_ca_system_score_codex":0.00054701924,"about_ca_system_score_gemma":0.00036601632,"threshold_uncertainty_score":0.07841635},"labels":[],"label_agreement":null},{"id":"W2145077290","doi":"10.1016/s0378-1127(03)00064-1","title":"Plant species diversity and soil quality in harvested and grazed boreal aspen stands of northeastern British Columbia","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bioenergy crop production and management","field":"Agricultural and Biological Sciences","cited_by":39,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia; Agriculture and Agri-Food Canada; University of British Columbia","funders":"","keywords":"Grazing; Understory; Vegetation (pathology); Plant community; Environmental science; Agronomy; Forestry; Plant cover; Transect; Shrub; Species diversity; Canopy; Ecology; Geography; Biology; Ecological succession","score_opus":0.018926595833408853,"score_gpt":0.19399861798693907,"score_spread":0.1750720221535302,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2145077290","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994455,0.00006783706,0.000013578598,0.000010601004,0.0000010967226,0.0000021055055,0.00020169104,0.0000012440029,0.0002564545],"genre_scores_gemma":[0.9990013,0.000065743974,0.000033425604,0.000018890923,7.652313e-7,0.0000031226512,0.00024817366,0.0000016421259,0.00062690314],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997203,0.000039542163,0.000021325703,0.000067658635,0.000062632396,0.000088449924],"domain_scores_gemma":[0.9988331,0.00015010711,0.00020871974,0.000052516618,0.0003592479,0.00039626617],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00034216847,0.00020749576,0.00026678038,0.00095232326,0.0011556817,0.0008523543,0.00057993806,0.0002369502,0.0012996268],"category_scores_gemma":[0.0010006998,0.00025290332,0.00014736416,0.0012950519,0.0007080515,0.00028431485,0.00051338,0.0003224291,0.000192332],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013103001,0.000043891192,0.9942994,0.0000139835865,0.00006183832,0.00016175618,0.0010088996,0.00011520946,0.0014317218,0.000039195576,0.00029649492,0.002396628],"study_design_scores_gemma":[0.0000017407948,0.0000042971337,0.9990933,0.0000030663464,0.000006191816,0.000032314863,0.0006429539,0.00006266139,0.000033374334,0.0000056306467,0.00011257117,0.0000019230035],"about_ca_topic_score_codex":0.9130246,"about_ca_topic_score_gemma":0.98592144,"teacher_disagreement_score":0.086975396,"about_ca_system_score_codex":0.004070857,"about_ca_system_score_gemma":0.0020784214,"threshold_uncertainty_score":0.17497516},"labels":[],"label_agreement":null},{"id":"W2145280893","doi":"10.1016/j.foreco.2005.11.012","title":"Influence of pre-commercial thinning of balsam fir on defoliation by the balsam fir sawfly","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":20,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université de Moncton; Natural Resources Canada; Ontario Forest Research Institute; Canadian Forest Service; University of New Brunswick","funders":"","keywords":"Abies balsamea; Balsam; Sawfly; Thinning; Biology; Forestry; Silviculture; Competition (biology); Agronomy; Agroforestry; Botany; Ecology; Geography","score_opus":0.0030055400677651287,"score_gpt":0.1984797038698916,"score_spread":0.19547416380212648,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2145280893","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994373,0.00006235444,0.0000142667795,0.00001830162,0.0000052037235,0.0000011066843,0.000026946958,0.0000019978954,0.00043249075],"genre_scores_gemma":[0.99948895,0.000034896813,0.00002496221,0.000028621225,0.0000051909565,0.0000017283143,0.00007674111,0.00000235914,0.00033653222],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998192,0.00005599044,0.000012005353,0.000028384884,0.000017955914,0.00006639981],"domain_scores_gemma":[0.9981737,0.00074349955,0.00026016138,0.00006241402,0.00015084523,0.0006093612],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000547461,0.0002818792,0.00028525185,0.00024912323,0.0004709714,0.00061529066,0.00033470558,0.00037980775,0.0029799247],"category_scores_gemma":[0.0015213318,0.00014526726,0.00026294033,0.0001558866,0.00034119238,0.00028393668,0.00026197967,0.0005191074,0.00020384793],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0053037573,0.0011703377,0.8909751,0.000060897153,0.0002378522,0.00094920566,0.00020991385,0.0017873698,0.08519508,0.00020800576,0.0006009331,0.013301607],"study_design_scores_gemma":[0.00000987767,0.00029037448,0.99803203,0.0000026981832,0.000023397764,0.00005646344,0.00010982099,0.00034589285,0.000957989,0.00001856484,0.00015001348,0.0000028846553],"about_ca_topic_score_codex":0.012480769,"about_ca_topic_score_gemma":0.04252308,"teacher_disagreement_score":0.012480769,"about_ca_system_score_codex":0.00083097257,"about_ca_system_score_gemma":0.00060463126,"threshold_uncertainty_score":0.024816215},"labels":[],"label_agreement":null},{"id":"W2145795758","doi":"10.1016/j.foreco.2008.08.013","title":"Can the impact of deer browsing on tree regeneration be mitigated by shelterwood cutting and strip clearcutting?","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":33,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; Ministère des Ressources naturelles et des Forêts (Québec); Université Laval; Natural Sciences and Engineering Research Council of Canada","funders":"","keywords":"Balsam; Clearcutting; Abies balsamea; Odocoileus; Natural regeneration; Scarification; Regeneration (biology); Forestry; Biology; Silviculture; Canopy; Agroforestry; Botany; Ecology; Geography; Germination","score_opus":0.01006629393622982,"score_gpt":0.21483427302753688,"score_spread":0.20476797909130706,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2145795758","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.96238315,0.0044368417,0.000990983,0.016955413,0.00025197017,0.000024110359,0.0001573684,0.000029931285,0.014770139],"genre_scores_gemma":[0.99326706,0.0023999803,0.00080431986,0.0018408388,0.00021754528,0.000015298363,0.00005001652,0.0000058972346,0.0013991253],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99927646,0.00031394616,0.000020088215,0.00006476446,0.000096589276,0.00022809878],"domain_scores_gemma":[0.9977303,0.0008953947,0.0005725361,0.00014782723,0.00019980205,0.0004541404],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0018234861,0.00032680167,0.00047662284,0.00024158841,0.00060639984,0.0009196466,0.00061775267,0.0020363543,0.007098734],"category_scores_gemma":[0.0059933886,0.00016320229,0.000553907,0.00032152145,0.0008687335,0.0012300103,0.0006418634,0.0006579819,0.0005419023],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.007500924,0.007095095,0.49213877,0.0013147217,0.0028277703,0.00069536874,0.00096783636,0.012371127,0.014959905,0.012670292,0.017140547,0.4303176],"study_design_scores_gemma":[0.00055232603,0.0032507295,0.9480526,0.00036417955,0.00085818034,0.0004210929,0.002676041,0.0037326,0.0016971225,0.022022903,0.016301485,0.00007081636],"about_ca_topic_score_codex":0.0074823233,"about_ca_topic_score_gemma":0.03897576,"teacher_disagreement_score":0.0074823233,"about_ca_system_score_codex":0.00043836725,"about_ca_system_score_gemma":0.0012666278,"threshold_uncertainty_score":0.023747623},"labels":[],"label_agreement":null},{"id":"W2145941176","doi":"10.1016/j.foreco.2010.04.024","title":"Factors influencing fructification phenology of edible mushrooms in a boreal mixed forest of Eastern Canada","year":2010,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Mycorrhizal Fungi and Plant Interactions","field":"Agricultural and Biological Sciences","cited_by":74,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec à Rimouski; Centre Intégré de Santé et Services Sociaux de la Gaspésie","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Phenology; Fructification; Taiga; Biology; Quadrat; Ecology; Boreal; Botany; Shrub","score_opus":0.009711249692851082,"score_gpt":0.1916719365386549,"score_spread":0.18196068684580383,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2145941176","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99958986,0.000057394434,0.000013417938,0.000007775592,5.0829254e-7,0.0000028355635,0.000086632186,7.226767e-7,0.00024084125],"genre_scores_gemma":[0.99924785,0.000054877833,0.000059253733,0.000011028448,4.4665043e-7,0.0000020812288,0.00013871632,0.0000010622612,0.0004845879],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998591,0.000010873479,0.000004670991,0.000027921371,0.000027314763,0.00007017043],"domain_scores_gemma":[0.999551,0.000034301676,0.00007048711,0.0000085955535,0.00014780533,0.00018773886],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014620261,0.00018692364,0.00022456534,0.00071642315,0.0014968714,0.00084330415,0.0004217461,0.00015462279,0.000745187],"category_scores_gemma":[0.00031718507,0.00014870074,0.000118992604,0.0007857528,0.0005256645,0.00023572212,0.00037531496,0.00024011276,0.00007544457],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005793193,0.00010492173,0.96842986,0.000024491294,0.0000459129,0.00027740456,0.0024786834,0.00013763727,0.02232362,0.000098042285,0.00018666347,0.0053133625],"study_design_scores_gemma":[0.0000012202335,0.000011913026,0.99846977,0.000002178322,0.000003447321,0.00002486179,0.0011304149,0.0000678533,0.00014728529,0.000006152152,0.00013246736,0.0000023564082],"about_ca_topic_score_codex":0.9431888,"about_ca_topic_score_gemma":0.98977166,"teacher_disagreement_score":0.056811213,"about_ca_system_score_codex":0.006322334,"about_ca_system_score_gemma":0.0034122376,"threshold_uncertainty_score":0.11429155},"labels":[],"label_agreement":null},{"id":"W2146728015","doi":"10.1016/j.foreco.2011.09.012","title":"Impact of logging and natural stand-replacing disturbances on high-elevation boreal landscape dynamics (1950–2005) in eastern Canada","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":33,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Wildlife","funders":"","keywords":"Logging; Disturbance (geology); Taiga; Salvage logging; Natural (archaeology); Felling; Boreal; Geography; Balsam; Altitude (triangle); Elevation (ballistics); Forest dynamics; Ecology; Environmental science; Forestry; Abies balsamea; Physical geography; Forest ecology; Ecosystem; Geology; Archaeology; Biology","score_opus":0.003932713184835713,"score_gpt":0.19021739854096753,"score_spread":0.18628468535613182,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2146728015","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9974317,0.0006133586,0.00003003221,0.00020799362,0.000012100794,0.000003394148,0.0006670761,0.00000495449,0.00102933],"genre_scores_gemma":[0.99802655,0.00031886355,0.000050395418,0.000063482534,0.000005153993,0.0000019206168,0.00048907916,0.0000026734153,0.0010419488],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996867,0.000024388528,0.000021979306,0.000047281734,0.000056595898,0.0001630639],"domain_scores_gemma":[0.9981522,0.00012934353,0.00035870355,0.000049232796,0.00060708384,0.00070336444],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005576714,0.00024347904,0.00026720474,0.001063135,0.0018530805,0.0015043475,0.00076961296,0.00053248275,0.0019522569],"category_scores_gemma":[0.0014638061,0.00022395828,0.00039001578,0.0013014668,0.0010081499,0.0005364397,0.0008811804,0.00064505445,0.0001266026],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002306957,0.000059628648,0.9880695,0.000034368364,0.00013983024,0.00027601683,0.001071418,0.0009012957,0.00073132926,0.0003043244,0.001292335,0.006889227],"study_design_scores_gemma":[0.0000030209733,0.0000058946976,0.9983467,0.000012412915,0.000016818973,0.000033156903,0.0005829841,0.00021014024,0.000053906853,0.000013057444,0.00071667455,0.000005109952],"about_ca_topic_score_codex":0.9917035,"about_ca_topic_score_gemma":0.99800915,"teacher_disagreement_score":0.02448069,"about_ca_system_score_codex":0.02448069,"about_ca_system_score_gemma":0.018737813,"threshold_uncertainty_score":0.17762065},"labels":[],"label_agreement":null},{"id":"W2146787877","doi":"10.1016/j.foreco.2012.03.021","title":"Understory light predictions in mixed conifer mountain forests: Role of aspect-induced variation in crown geometry and openness","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":25,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"Ministerio de Ciencia e Innovación; Ministerio de Educación, Cultura y Deporte","keywords":"Understory; Crown (dentistry); Scots pine; Interception; Canopy; Environmental science; Shade tolerance; Ecology; Atmospheric sciences; Forestry; Physical geography; Geography; Biology; Botany; Geology; Pinus <genus>; Materials science","score_opus":0.006592052687766244,"score_gpt":0.21066057131743415,"score_spread":0.2040685186296679,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2146787877","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99975604,0.000009797491,0.00013607134,0.000009231793,6.231177e-7,6.211018e-7,0.00002095724,0.0000029215098,0.00006376307],"genre_scores_gemma":[0.99986553,0.000003037014,0.000049332408,0.0000036597137,7.312806e-7,6.752348e-7,0.000040465457,0.0000014241924,0.000035114645],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998567,0.000058542453,0.000006388724,0.00003553862,0.000010710717,0.000031979558],"domain_scores_gemma":[0.9989864,0.0006122331,0.000105307685,0.00006379832,0.00005504355,0.00017721872],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008119189,0.0002420327,0.00020482771,0.00016056266,0.0002928902,0.0006348647,0.0003075017,0.0003344552,0.000766299],"category_scores_gemma":[0.0014694682,0.00018734492,0.0002977736,0.0001325682,0.00025042638,0.00037196866,0.00030481463,0.00030216514,0.00008713538],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000784148,0.00015573013,0.9506276,0.0000182206,0.00012672125,0.00007948275,0.00019768123,0.0366575,0.007144834,0.0002925526,0.00020329643,0.0037122946],"study_design_scores_gemma":[0.000016602855,0.00007086415,0.9089019,0.0000030796077,0.000026737744,0.000043745953,0.00020100603,0.08971948,0.0005908631,0.00036060516,0.000056347704,0.000008851598],"about_ca_topic_score_codex":0.011240506,"about_ca_topic_score_gemma":0.021897031,"teacher_disagreement_score":0.011240506,"about_ca_system_score_codex":0.00031275832,"about_ca_system_score_gemma":0.00024965967,"threshold_uncertainty_score":0.022350192},"labels":[],"label_agreement":null},{"id":"W2147365178","doi":"10.1016/j.foreco.2007.07.009","title":"Browsing of tree regeneration by white-tailed deer in large clearcuts on Anticosti Island, Quebec","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Rangeland and Wildlife Management","field":"Environmental Science","cited_by":51,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Sciences and Engineering Research Council; Université Laval","funders":"","keywords":"Abies balsamea; Balsam; Odocoileus; Stocking; Clearcutting; Regeneration (biology); Forestry; Natural regeneration; Biology; Population; Geography; Ecology; Botany","score_opus":0.004016865823617118,"score_gpt":0.20404012180902892,"score_spread":0.2000232559854118,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2147365178","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99921,0.00007531211,0.000016168513,0.000030409494,0.0000019366196,0.000006940343,0.0002335606,0.0000018355386,0.00042381353],"genre_scores_gemma":[0.9982582,0.000062177554,0.00005330596,0.000033037493,0.0000017517949,0.000007542806,0.00026862844,0.0000023839796,0.0013129171],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99970526,0.000051439063,0.000009773047,0.00005237208,0.000050848746,0.00013026295],"domain_scores_gemma":[0.998852,0.0001621994,0.00018113383,0.000037923204,0.00031504527,0.00045173275],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039073254,0.00022106284,0.00030829135,0.0009249807,0.0018600976,0.0009876168,0.0009210352,0.0005136502,0.0025365467],"category_scores_gemma":[0.0009298428,0.0002782044,0.00023181234,0.0010414554,0.0007620909,0.00041505654,0.00052649615,0.0005022089,0.00026484797],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020222028,0.00012341111,0.99187285,0.00001557805,0.000045981247,0.00019572553,0.0020826512,0.000112686146,0.0011481765,0.0000573041,0.0007407697,0.003402527],"study_design_scores_gemma":[0.0000034913496,0.000015534959,0.9986797,0.000005368722,0.000004454365,0.000024716315,0.00097025046,0.00009747899,0.000021808453,0.00000426129,0.00016972516,0.000003094288],"about_ca_topic_score_codex":0.9748009,"about_ca_topic_score_gemma":0.99626213,"teacher_disagreement_score":0.025199115,"about_ca_system_score_codex":0.008030669,"about_ca_system_score_gemma":0.0047543785,"threshold_uncertainty_score":0.05826682},"labels":[],"label_agreement":null},{"id":"W2147510007","doi":"10.1016/j.foreco.2012.03.018","title":"Canada Warbler use of harvested stands following timber management in the southern portion of their range","year":2012,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Avian ecology and behavior","field":"Environmental Science","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"U.S. Fish and Wildlife Service; National Council for Air and Stream Improvement; Australian Government; University of Pennsylvania","keywords":"Warbler; Range (aeronautics); Geography; Forest management; Agroforestry; Ecology; Forestry; Environmental science; Biology; Habitat; Engineering","score_opus":0.014853449176705696,"score_gpt":0.2099898700491922,"score_spread":0.1951364208724865,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2147510007","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99884856,0.000065194145,0.000010618564,0.00003125375,0.000001945818,0.000002504427,0.000263722,0.0000014648161,0.0007748239],"genre_scores_gemma":[0.9980495,0.00009182386,0.00003515287,0.00002417863,0.000001259742,0.000002648852,0.00041003595,0.0000014197536,0.0013839394],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998883,0.000009371761,0.0000031716702,0.000018947769,0.000030055344,0.000050056402],"domain_scores_gemma":[0.99943644,0.00004133269,0.00010164925,0.000010596015,0.00015030813,0.0002595962],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012863602,0.0001319457,0.0001775815,0.0005479953,0.001235416,0.00060620625,0.00037682947,0.0002767227,0.0028496427],"category_scores_gemma":[0.00061019644,0.00015043236,0.0001675487,0.000670717,0.00041393616,0.00026345853,0.00037081426,0.00035423454,0.00020228213],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017850556,0.00004618552,0.9912335,0.000014060904,0.000034482135,0.00015850652,0.0017961708,0.00021100078,0.0008117302,0.00008391518,0.00091009407,0.0045218323],"study_design_scores_gemma":[0.0000015599467,0.000008809536,0.9981729,0.000005417784,0.000004081695,0.00002751451,0.0013245412,0.0000928559,0.000033952274,0.000008134431,0.00031776907,0.0000024075132],"about_ca_topic_score_codex":0.9697057,"about_ca_topic_score_gemma":0.9962049,"teacher_disagreement_score":0.9697057,"about_ca_system_score_codex":0.0046810205,"about_ca_system_score_gemma":0.004273827,"threshold_uncertainty_score":0.060945332},"labels":[],"label_agreement":null},{"id":"W2150894023","doi":"10.1016/j.foreco.2005.01.003","title":"Constraints and opportunities for better silvicultural practice in tropical forestry: an interdisciplinary approach","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Conservation, Biodiversity, and Resource Management","field":"Environmental Science","cited_by":53,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Mount Allison University","funders":"","keywords":"Silviculture; Variety (cybernetics); Amazon rainforest; Forest management; Tropical forest; Business; Environmental resource management; Agroforestry; Geography; Economics; Ecology; Forestry; Computer science","score_opus":0.02304761688614656,"score_gpt":0.25037828625980146,"score_spread":0.2273306693736549,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2150894023","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.95357144,0.0032817111,0.0020992937,0.010879024,0.000043764972,0.000047493202,0.00013299132,0.0000075191606,0.029936707],"genre_scores_gemma":[0.9981111,0.0006435215,0.0006127544,0.00015072347,0.000025195146,0.000021859736,0.00002370034,0.000003930284,0.00040710456],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99386436,0.0031379815,0.00035030022,0.00038094603,0.0008030552,0.0014633092],"domain_scores_gemma":[0.9848391,0.008357048,0.0025495721,0.0002304253,0.0010593733,0.0029645702],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0069980905,0.00033086987,0.0005736601,0.0025790269,0.004813609,0.009110821,0.0013949835,0.0015022104,0.0065554427],"category_scores_gemma":[0.014556289,0.0004381903,0.00031258303,0.003327431,0.0061877184,0.005078642,0.00483649,0.0014430033,0.00015325229],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010769244,0.0008368049,0.5626394,0.0017086087,0.00033704573,0.0021289617,0.081214555,0.012934828,0.0033918307,0.13698485,0.0053764684,0.19136968],"study_design_scores_gemma":[0.00004519962,0.0002264987,0.5921395,0.00093207735,0.00010237809,0.0006993111,0.29399514,0.006103937,0.0005536292,0.08619949,0.01887979,0.00012300858],"about_ca_topic_score_codex":0.016206611,"about_ca_topic_score_gemma":0.07784916,"teacher_disagreement_score":0.016206611,"about_ca_system_score_codex":0.006795021,"about_ca_system_score_gemma":0.008271437,"threshold_uncertainty_score":0.049301565},"labels":[],"label_agreement":null},{"id":"W2151169286","doi":"10.1016/j.foreco.2008.05.021","title":"A framework to categorize forest structure concepts","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":32,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"National Science Foundation","keywords":"Categorization; Forest structure; Computer science; Function (biology); Representation (politics); Forest ecology; Data science; Ecology; Artificial intelligence; Ecosystem","score_opus":0.007688220653773361,"score_gpt":0.23928731128152417,"score_spread":0.2315990906277508,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2151169286","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.020068562,0.0033453025,0.8914498,0.0075204666,0.0010624342,0.0005476828,0.00078030885,0.00064446585,0.07458086],"genre_scores_gemma":[0.31652707,0.0021002325,0.66468316,0.0013147421,0.0006811263,0.0014236707,0.0014527257,0.00022146679,0.011595811],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.9984792,0.00051555934,0.0002301789,0.00028146114,0.00026933136,0.0002242656],"domain_scores_gemma":[0.99820983,0.00059420656,0.00021728445,0.00020741913,0.0005118669,0.00025931868],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002914974,0.0011275375,0.0008475096,0.00818544,0.0033613946,0.0071270913,0.0020414859,0.0017563466,0.0070128115],"category_scores_gemma":[0.0030965232,0.00046150884,0.002098819,0.0049993945,0.0076217474,0.011736988,0.0024990079,0.003712159,0.0013620984],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":"theoretical_or_conceptual","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000003502678,0.000013208433,0.00024933874,0.000030133599,0.000006141906,0.00003688857,0.0010526961,0.0002373738,0.0002013432,0.98752475,0.0016517127,0.008993023],"study_design_scores_gemma":[0.000011375547,0.000029266983,0.00060859777,0.00014945555,0.000023932209,0.00027067625,0.0024118049,0.0037529124,0.00021991997,0.9154386,0.07706399,0.000019447882],"about_ca_topic_score_codex":0.0062732548,"about_ca_topic_score_gemma":0.0047170594,"teacher_disagreement_score":0.00818544,"about_ca_system_score_codex":0.0028457781,"about_ca_system_score_gemma":0.002381793,"threshold_uncertainty_score":0.02346021},"labels":[],"label_agreement":null},{"id":"W2151179211","doi":"10.1016/j.foreco.2007.07.022","title":"Comparison of spatially explicit forest landscape fire disturbance models","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Research Manitoba; Canadian Forest Service","funders":"Canadian Forest Service; University of Alberta","keywords":"Cellular automaton; Disturbance (geology); Percolation (cognitive psychology); Computer science; Simulation modeling; Environmental science; Replicate; Ecology; Simulation; Environmental resource management; Algorithm; Mathematics; Statistics; Geology","score_opus":0.00946157617474142,"score_gpt":0.23494589145934452,"score_spread":0.2254843152846031,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2151179211","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9789494,0.00050307455,0.013761067,0.0004147425,0.00006769301,0.000039686165,0.0011695228,0.0003458072,0.00474894],"genre_scores_gemma":[0.99525934,0.00022306283,0.0029944964,0.00005268831,0.000017391787,0.000030731968,0.0005714418,0.00006414683,0.0007865883],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9994506,0.00028845383,0.000051271458,0.000072415925,0.00006400126,0.00007323539],"domain_scores_gemma":[0.99280494,0.005772918,0.0003167497,0.00036037868,0.000538152,0.0002069682],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002129215,0.00070536794,0.000946575,0.0008987615,0.00042321676,0.0010339671,0.0014726131,0.0011108577,0.002518272],"category_scores_gemma":[0.006037227,0.00046807973,0.00086278125,0.0010628809,0.00032189194,0.0013041849,0.0004937878,0.00062940124,0.00026693253],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018731074,0.000107981505,0.004148772,0.0000348893,0.00010987083,0.00002400105,0.000035408324,0.9899969,0.00014374657,0.0010061121,0.00027200812,0.0039330237],"study_design_scores_gemma":[0.000053160657,0.00007364202,0.0023282205,0.000009651076,0.000060253165,0.00001667157,0.00003565656,0.9963159,0.00017759622,0.00069449283,0.00021981505,0.000014987775],"about_ca_topic_score_codex":0.053099,"about_ca_topic_score_gemma":0.04319589,"teacher_disagreement_score":0.053099,"about_ca_system_score_codex":0.0020593894,"about_ca_system_score_gemma":0.0012890213,"threshold_uncertainty_score":0.10557985},"labels":[],"label_agreement":null},{"id":"W2151219596","doi":"10.1016/j.foreco.2013.08.037","title":"Stand recovery and self-organization following large-scale mountain pine beetle induced canopy mortality in northern forests","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":41,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Forests","funders":"","keywords":"Canopy; Mountain pine beetle; Basal area; Ecology; Disturbance (geology); Forest dynamics; Seral community; Pinus contorta; Regeneration (biology); Pine barrens; Stocking; Ecosystem; Biology; Ecological succession; Forestry; Geography","score_opus":0.0044472354214951946,"score_gpt":0.20194884520674392,"score_spread":0.19750160978524872,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2151219596","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999049,0.000011526345,0.000005568894,0.0000022379838,3.8130557e-7,6.934418e-7,0.0000077249515,5.330089e-7,0.000066441404],"genre_scores_gemma":[0.99972075,0.000006758576,0.0000105893305,0.0000054628945,0.0000010702394,0.0000021723263,0.0000450012,5.413426e-7,0.00020777588],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999448,0.000009532873,0.0000032233295,0.000011049114,0.000008230338,0.000023196884],"domain_scores_gemma":[0.99955434,0.0000695598,0.00016248875,0.000027858237,0.000029440667,0.00015622175],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021507467,0.00007713272,0.00014649468,0.0001919548,0.000330623,0.00030395447,0.0001442424,0.0002388913,0.0010181211],"category_scores_gemma":[0.000588987,0.00009164147,0.00011834884,0.00007931975,0.00024508097,0.00019583036,0.00024624317,0.00029983665,0.00014614547],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002504001,0.0011257248,0.91462547,0.00003567376,0.00010505208,0.0007747474,0.0010512796,0.00056491693,0.06900803,0.00012319113,0.00026843802,0.009813437],"study_design_scores_gemma":[0.0000020006903,0.00007398878,0.99944955,8.8619714e-7,0.000002579929,0.00004478313,0.00011203394,0.00009649303,0.00018032911,0.000014755255,0.000021301004,0.0000013576833],"about_ca_topic_score_codex":0.0043231198,"about_ca_topic_score_gemma":0.01926652,"teacher_disagreement_score":0.0043231198,"about_ca_system_score_codex":0.00030564456,"about_ca_system_score_gemma":0.00016604892,"threshold_uncertainty_score":0.008595943},"labels":[],"label_agreement":null},{"id":"W2153849063","doi":"10.1016/s0378-1127(00)00281-4","title":"Effects of light and intraspecific competition on growth and crown morphology of two size classes of understory balsam fir saplings","year":2001,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":90,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal; Université du Québec à Chicoutimi","funders":"","keywords":"Understory; Intraspecific competition; Balsam; Dominance (genetics); Biology; Crown (dentistry); Competition (biology); Abies balsamea; Botany; Sunlight; Ecology; Canopy","score_opus":0.0035209295171314214,"score_gpt":0.18191998040093674,"score_spread":0.1783990508838053,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2153849063","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998115,0.000018727924,0.000013270502,0.000006286633,9.93086e-7,7.011664e-7,0.000021313535,8.5790805e-7,0.00012650278],"genre_scores_gemma":[0.99956316,0.000013267028,0.00004550126,0.000024720612,0.0000019138686,0.000003178377,0.000083993466,0.0000026283665,0.00026155164],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998348,0.00004279652,0.000011675908,0.00003506862,0.000027734499,0.000047848585],"domain_scores_gemma":[0.99739033,0.0013141633,0.00022741566,0.00007632589,0.00012724141,0.0008645141],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003493325,0.00034048661,0.00026395457,0.00034671836,0.00040404603,0.00040922657,0.00035126426,0.0004234956,0.0015355583],"category_scores_gemma":[0.0009880781,0.00030497127,0.00020190273,0.00016414397,0.000642952,0.00040865527,0.00043598056,0.00067530683,0.00017907422],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.019065695,0.0018885368,0.5505848,0.00009674385,0.00021169678,0.0007987944,0.0006903944,0.0009363934,0.41282368,0.00028633766,0.00035238155,0.012264494],"study_design_scores_gemma":[0.00003883909,0.00052606553,0.99490696,0.0000018440915,0.000026730044,0.00013388712,0.00016074776,0.00046047123,0.0036201067,0.0000470611,0.00006899981,0.000008229033],"about_ca_topic_score_codex":0.006951813,"about_ca_topic_score_gemma":0.022515135,"teacher_disagreement_score":0.006951813,"about_ca_system_score_codex":0.0005593962,"about_ca_system_score_gemma":0.00029994242,"threshold_uncertainty_score":0.013822675},"labels":[],"label_agreement":null},{"id":"W2154752868","doi":"10.1016/j.foreco.2008.03.011","title":"Complexity in modelling forest ecosystems: How much is enough?","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":108,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Ecosystem; Ecology; Understory; Disturbance (geology); Ecological succession; Population; Forest ecology; Boreal; Competition (biology); Environmental resource management; Environmental science; Geography; Biology","score_opus":0.033720886485443455,"score_gpt":0.22401016351533076,"score_spread":0.1902892770298873,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2154752868","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.19553351,0.062271107,0.57770747,0.13600516,0.002242382,0.0002486968,0.0005629063,0.00027133003,0.025157437],"genre_scores_gemma":[0.89833605,0.02101451,0.07160646,0.0034686804,0.00267731,0.0002882218,0.00020586088,0.00019238202,0.0022105067],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9957917,0.0027347496,0.00017316849,0.00030241325,0.0007864167,0.00021151167],"domain_scores_gemma":[0.95016813,0.04211444,0.0023583127,0.0015767008,0.0012955099,0.0024869344],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.007176233,0.0011551342,0.0027967866,0.0017411206,0.0014699559,0.0060948837,0.0031544964,0.0044335653,0.0024231018],"category_scores_gemma":[0.051499207,0.0012413032,0.0014669005,0.0014917764,0.0068087443,0.022644233,0.0055541685,0.006558341,0.00038913023],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031274487,0.00020965454,0.036335584,0.0018315393,0.0011312284,0.000285788,0.0024101674,0.54822636,0.0005019696,0.29132155,0.00944802,0.10798529],"study_design_scores_gemma":[0.00005983845,0.00009282193,0.0027199234,0.00042321326,0.0001457699,0.00010606401,0.00070299086,0.33289132,0.00014484959,0.65514505,0.0074750865,0.00009297574],"about_ca_topic_score_codex":0.0076089683,"about_ca_topic_score_gemma":0.010201873,"teacher_disagreement_score":0.0076089683,"about_ca_system_score_codex":0.002118635,"about_ca_system_score_gemma":0.0015122095,"threshold_uncertainty_score":0.037952006},"labels":[],"label_agreement":null},{"id":"W2154982247","doi":"10.1016/s0378-1127(02)00453-x","title":"A review of the long-term effects of post-harvest silviculture on vertebrate wildlife, and predictive models, with an emphasis on boreal forests in Ontario, Canada","year":2003,"lang":"en","type":"review","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":126,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ontario Forest Research Institute; Canadian Forest Service","funders":"Ministry of Natural Resources","keywords":"Silviculture; Wildlife; Biodiversity; Logging; Taiga; Thinning; Agroforestry; Forest management; Boreal; Ecology; Geography; Biology; Environmental science","score_opus":0.012323460851512714,"score_gpt":0.20451254044563402,"score_spread":0.19218907959412132,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2154982247","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0005401867,0.99821174,0.00009634411,0.00015243975,0.00007420335,0.000009085478,0.00026365163,0.000006172162,0.0006462155],"genre_scores_gemma":[0.0016512569,0.99748933,0.00017630815,0.000065855354,0.000032272525,0.0000058419687,0.0001222176,0.0000012378049,0.00045573557],"study_design_codex":"design_other","study_design_gemma":"systematic_review","domain_scores_codex":[0.9997079,0.000028596469,0.000041492545,0.000039287013,0.00015573713,0.000026999303],"domain_scores_gemma":[0.99887294,0.00041199397,0.00015712406,0.000020727592,0.00047657642,0.000060625847],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010460155,0.0011950885,0.0017707844,0.002489229,0.0004621921,0.0011842129,0.001219439,0.000571585,0.0026259131],"category_scores_gemma":[0.0020908725,0.00037904453,0.000659657,0.0072693913,0.00042895062,0.00062729954,0.00031952542,0.00042448138,0.0004319808],"study_design_candidate":"systematic_review","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001730774,0.000071137794,0.0027302785,0.051369898,0.00038013916,0.0002455037,0.00021575563,0.003152449,0.00065753167,0.00090906094,0.048296656,0.8917985],"study_design_scores_gemma":[0.000060276758,0.00029023353,0.050291765,0.03518549,0.0021297608,0.0009265285,0.0004462138,0.0008391252,0.00055507553,0.0011405225,0.90803754,0.000097482494],"about_ca_topic_score_codex":0.59700507,"about_ca_topic_score_gemma":0.8145352,"teacher_disagreement_score":0.40299493,"about_ca_system_score_codex":0.0060891523,"about_ca_system_score_gemma":0.01828041,"threshold_uncertainty_score":0.8107365},"labels":[],"label_agreement":null},{"id":"W2158006920","doi":"10.1016/j.foreco.2014.12.027","title":"Differentiating mixed- and high-severity fire regimes in mixed-conifer forests of the Canadian Cordillera","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":52,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Guelph; University of British Columbia","funders":"","keywords":"Larch; Forest structure; Ecology; Geography; Fire regime; Disturbance (geology); Snag; Fire history; Physical geography; Fire ecology; Forestry; Pinus contorta; Environmental science; Habitat; Ecosystem; Biology; Climate change; Canopy","score_opus":0.006303322165966203,"score_gpt":0.1875251400875506,"score_spread":0.1812218179215844,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2158006920","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991198,0.00013327244,0.0000312679,0.000017987624,0.0000018574717,0.0000058976934,0.00010556611,0.0000017498943,0.0005825479],"genre_scores_gemma":[0.9995332,0.000049896236,0.00007200107,0.000011745739,0.0000012922377,0.000002493651,0.000119969,0.000001375719,0.00020806443],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995096,0.000046176112,0.000021938726,0.00010412171,0.00010241678,0.000215702],"domain_scores_gemma":[0.9989563,0.00010682336,0.00018568545,0.000034995497,0.00039339575,0.00032282976],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00051558134,0.0003018809,0.00030185474,0.001700138,0.0018190416,0.0011999335,0.00076512893,0.0003284922,0.0009870022],"category_scores_gemma":[0.0015338082,0.000222158,0.00018195304,0.0016369552,0.0008884451,0.0004068243,0.00077236333,0.00027442983,0.00010564595],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016960986,0.000036759186,0.9876978,0.000020845257,0.00004798162,0.00007755559,0.0011921728,0.00018977532,0.0024659613,0.00011491163,0.0001947261,0.007791908],"study_design_scores_gemma":[0.0000016717371,0.000003633825,0.9989353,0.0000041393887,0.0000057547654,0.000019138386,0.00064144214,0.00018723104,0.00005787974,0.000014659588,0.00012642254,0.0000026826206],"about_ca_topic_score_codex":0.9516569,"about_ca_topic_score_gemma":0.993932,"teacher_disagreement_score":0.048343122,"about_ca_system_score_codex":0.0075994907,"about_ca_system_score_gemma":0.005229055,"threshold_uncertainty_score":0.09725559},"labels":[],"label_agreement":null},{"id":"W2158392549","doi":"10.1016/j.foreco.2006.02.007","title":"Random acts of weevil: A spatial analysis of Hylobius warreni attack on Pinus contorta var. latifolia in the sub-boreal spruce zone of Northern British Columbia","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":15,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Pinus contorta; Weevil; Biology; Spatial distribution; Host (biology); Woody plant; Boreal; Mountain pine beetle; Forestry; Ecology; PEST analysis; Botany; Geography","score_opus":0.005558587745934597,"score_gpt":0.20212509181867966,"score_spread":0.19656650407274506,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2158392549","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99959356,0.000027253447,0.000040157323,0.000012000629,7.1598805e-7,0.0000017499545,0.00017465952,0.0000015122945,0.00014838691],"genre_scores_gemma":[0.99954176,0.00002112677,0.000041996616,0.000003861178,7.3803903e-7,0.0000023689163,0.00019077321,0.0000014128175,0.00019597265],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996718,0.000080146514,0.000018414281,0.00007702082,0.0000569037,0.000095701325],"domain_scores_gemma":[0.99865854,0.0004067004,0.00036830024,0.00011697611,0.00022291337,0.00022657278],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030099403,0.00013924012,0.00021780781,0.00083393726,0.0005661926,0.0005684995,0.0004574849,0.0003077334,0.001141862],"category_scores_gemma":[0.0017797346,0.00023305719,0.0002012126,0.0011095802,0.0006460644,0.00027270787,0.0004985449,0.0003019932,0.00016239956],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001266899,0.00003200435,0.99314404,0.000011657756,0.000095618976,0.0001221915,0.00059079594,0.0013428947,0.0015237764,0.000101795,0.00027245577,0.0026362364],"study_design_scores_gemma":[0.000001396641,0.000008122846,0.9985488,0.0000018106277,0.0000091501815,0.000029278903,0.0004468979,0.00081564474,0.000039582294,0.000015402627,0.000080541984,0.000003290015],"about_ca_topic_score_codex":0.59143394,"about_ca_topic_score_gemma":0.8365633,"teacher_disagreement_score":0.40856606,"about_ca_system_score_codex":0.0019158316,"about_ca_system_score_gemma":0.0009399649,"threshold_uncertainty_score":0.82194436},"labels":[],"label_agreement":null},{"id":"W2161875025","doi":"10.1016/j.foreco.2012.11.017","title":"Adaptive variation in growth, phenology, cold tolerance and nitrogen fixation of red alder (Alnus rubra Bong.)","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia; Ministry of Forests; University of Victoria","funders":"Natural Sciences and Engineering Research Council of Canada; Rural Development Administration","keywords":"Alder; Canopy; Hardiness (plants); Biology; Deciduous; Phenology; Ecology; Betula pendula; Botany; Cultivar","score_opus":0.004759036421418882,"score_gpt":0.17891414517590315,"score_spread":0.17415510875448426,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2161875025","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99980694,0.000027238631,0.000025936439,0.0000064310243,0.0000014574665,7.3443437e-7,0.000027861424,0.0000038761204,0.000099617006],"genre_scores_gemma":[0.9993799,0.000018937268,0.00009811506,0.00003263123,0.000003224742,0.0000043903983,0.00015359878,0.000007347753,0.0003018818],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998343,0.000042097894,0.0000093778435,0.00007016474,0.000022092108,0.000021958498],"domain_scores_gemma":[0.99967,0.00007272663,0.00008651851,0.000034919718,0.000038476363,0.000097345335],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00042822456,0.00042616136,0.00019566201,0.00067456166,0.00027990446,0.000351206,0.00043994607,0.0003456273,0.0008059012],"category_scores_gemma":[0.00033059274,0.00019609643,0.00013793647,0.00021357251,0.0004308016,0.00025495415,0.00031941332,0.0004237894,0.00014457769],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010256207,0.0008964039,0.64917004,0.000093347364,0.00045509648,0.00027542506,0.0012341322,0.0018222228,0.32387868,0.00027726273,0.00048413916,0.020387705],"study_design_scores_gemma":[0.000007624133,0.00007162111,0.9986707,0.0000018754863,0.000014795082,0.000069297705,0.00010422529,0.0004169992,0.0005180923,0.00003137632,0.00008831064,0.0000051841853],"about_ca_topic_score_codex":0.007188715,"about_ca_topic_score_gemma":0.021591824,"teacher_disagreement_score":0.007188715,"about_ca_system_score_codex":0.0005007739,"about_ca_system_score_gemma":0.00013598653,"threshold_uncertainty_score":0.01429373},"labels":[],"label_agreement":null},{"id":"W2162277394","doi":"10.1016/j.foreco.2014.01.032","title":"Growth and root development of black and white spruce planted after deep planting","year":2014,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Wildlife; Université du Québec en Abitibi-Témiscamingue","funders":"Fonds Québécois de la Recherche sur la Nature et les Technologies; Université du Québec à Montréal","keywords":"Black spruce; Sowing; Basal area; Root system; Biology; Taiga; Botany; Horticulture; Agronomy; Ecology","score_opus":0.004334547471014141,"score_gpt":0.1769205227150872,"score_spread":0.17258597524407307,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2162277394","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992198,0.000041796004,0.000083466584,0.0000031181673,0.0000027900735,0.000002224973,0.00013822725,0.0000044013823,0.00050416787],"genre_scores_gemma":[0.9960575,0.000044059463,0.00023413365,0.000019972298,0.0000030033493,0.000008697112,0.00048870995,0.000008728522,0.0031352083],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9999182,0.000011505972,0.0000062065333,0.000027108066,0.000014091714,0.000022932474],"domain_scores_gemma":[0.99923337,0.00026585956,0.0000814383,0.00004246668,0.000096457065,0.00028031055],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019216501,0.00029529675,0.00027189602,0.00035902282,0.00025321406,0.00028649028,0.00023971131,0.00028938314,0.0011328581],"category_scores_gemma":[0.0003836279,0.00017672054,0.00020276527,0.00019754087,0.00023583545,0.000408769,0.00031919964,0.0007200629,0.00027377385],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0061498885,0.0005440773,0.0715957,0.00008608445,0.000052252515,0.00070257107,0.0011018801,0.0007166303,0.908838,0.00025419268,0.00017165436,0.009787089],"study_design_scores_gemma":[0.000040590872,0.0023151673,0.9618556,0.000008481915,0.000044424683,0.0002860642,0.00066104706,0.000983012,0.033023942,0.00011417981,0.0006483048,0.00001923487],"about_ca_topic_score_codex":0.011130854,"about_ca_topic_score_gemma":0.028658224,"teacher_disagreement_score":0.011130854,"about_ca_system_score_codex":0.0003724191,"about_ca_system_score_gemma":0.0002606669,"threshold_uncertainty_score":0.022132099},"labels":[],"label_agreement":null},{"id":"W2163569540","doi":"10.1016/j.foreco.2003.08.010","title":"Effect of harvest intensity on development of natural regeneration and shrubs in an Ontario boreal mixedwood stand","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":50,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ontario Forest Research Institute","funders":"","keywords":"Abies balsamea; Understory; Hardwood; Basal area; Boreal; Balsam; Shrub; Environmental science; Natural regeneration; Crown (dentistry); Silviculture; Agronomy; Biology; Forestry; Canopy; Botany; Agroforestry; Ecology; Geography","score_opus":0.004456755349620077,"score_gpt":0.20290242132630573,"score_spread":0.19844566597668564,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2163569540","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995347,0.000023097347,0.000011092992,0.000012126666,7.0170006e-7,0.0000026691314,0.000056099503,0.0000012186714,0.0003583125],"genre_scores_gemma":[0.9991442,0.000024797926,0.000049336326,0.0000151407685,0.000001305834,0.000004246525,0.00009258769,0.0000014296552,0.0006668759],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976677,0.000039366965,0.000017990762,0.000038490987,0.000059133854,0.00007826212],"domain_scores_gemma":[0.9985532,0.00033201117,0.00026756324,0.00004974227,0.00020600912,0.00059134193],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004311956,0.00015120851,0.000159689,0.00042784854,0.000939293,0.0006116804,0.00050958106,0.00020573614,0.0012666773],"category_scores_gemma":[0.0012004193,0.000221992,0.00016305466,0.00030626266,0.0007648268,0.00028754654,0.0004908894,0.0002662366,0.00010318652],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016037391,0.00025362923,0.9770245,0.000021071837,0.00008959345,0.00036224825,0.001356995,0.0005657116,0.013545831,0.00011303338,0.00040092465,0.004662674],"study_design_scores_gemma":[0.0000057889165,0.000036790225,0.9993395,9.592403e-7,0.0000061750648,0.000021583042,0.00026312415,0.00011427331,0.00010377956,0.000009213174,0.00009616438,0.0000025973172],"about_ca_topic_score_codex":0.62732995,"about_ca_topic_score_gemma":0.9345781,"teacher_disagreement_score":0.37267005,"about_ca_system_score_codex":0.005408993,"about_ca_system_score_gemma":0.0026497925,"threshold_uncertainty_score":0.7497295},"labels":[],"label_agreement":null},{"id":"W2166510457","doi":"10.1016/j.foreco.2009.09.019","title":"Threshold effects of variable retention harvesting on understory plant communities in the boreal mixedwood forest","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":61,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Understory; Environmental science; Boreal; Plant community; Growing season; Species richness; Vegetation (pathology); Taiga; Agronomy; Ecology; Biology; Canopy","score_opus":0.01119658906547288,"score_gpt":0.20417942495307906,"score_spread":0.19298283588760617,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2166510457","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998839,0.000014046336,0.000018692894,0.0000027554354,3.865604e-7,4.3317695e-7,0.00000774925,8.799698e-7,0.00007114425],"genre_scores_gemma":[0.99992037,0.000003641719,0.000025518239,0.0000045745965,6.329596e-7,6.937529e-7,0.000013525094,7.638687e-7,0.000030328087],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99974746,0.00006904525,0.000020348554,0.00005901305,0.000029932553,0.00007420555],"domain_scores_gemma":[0.9974406,0.0012495675,0.00044317154,0.00014206288,0.00009911026,0.0006254112],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00064151053,0.00012546631,0.00028627788,0.0003210531,0.00038692594,0.0006417331,0.00027962678,0.00033412123,0.0011237748],"category_scores_gemma":[0.002314591,0.00020126595,0.00014666129,0.0001358134,0.0006767304,0.0004967684,0.000484461,0.00032329684,0.00007881232],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0050950865,0.00072340015,0.9021083,0.000048655056,0.00013719844,0.00030794303,0.0008333276,0.001373323,0.07910716,0.00048211,0.00020011471,0.009583382],"study_design_scores_gemma":[0.000008053492,0.00013119873,0.9986827,0.0000014295073,0.000009647412,0.00005502151,0.0001639631,0.00053583324,0.0002920375,0.00009964839,0.000016682148,0.0000038621038],"about_ca_topic_score_codex":0.004883065,"about_ca_topic_score_gemma":0.015444892,"teacher_disagreement_score":0.004883065,"about_ca_system_score_codex":0.00039798082,"about_ca_system_score_gemma":0.0002378724,"threshold_uncertainty_score":0.009709239},"labels":[],"label_agreement":null},{"id":"W2166637706","doi":"10.1016/j.foreco.2013.07.052","title":"Is Markhamia lutea’s abundance determined by animal foraging?","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Primate Behavior and Ecology","field":"Psychology","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"Economic and Social Research Council; National Institute of Allergy and Infectious Diseases; Natural Sciences and Engineering Research Council of Canada; Canada Research Chairs; National Science Foundation; National Institutes of Health; Fogarty International Center; Fonds Québécois de la Recherche sur la Nature et les Technologies; National Geographic Society","keywords":"Abundance (ecology); Biology; Herbivore; Ecology; Foraging; Population; Species richness","score_opus":0.011460516913940602,"score_gpt":0.2750063274697167,"score_spread":0.2635458105557761,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2166637706","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9960983,0.0002975666,0.00027375764,0.00017477282,0.0000065884383,0.0000024378687,0.000057353227,0.000009761441,0.0030795678],"genre_scores_gemma":[0.9993759,0.000045755973,0.00014638882,0.000039387807,0.000007650128,0.0000018237695,0.000019802183,0.0000022923655,0.0003611369],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985075,0.0000346109,0.0000083427385,0.000053008665,0.000020142263,0.000033150216],"domain_scores_gemma":[0.9991683,0.00018602336,0.00037247434,0.000071504146,0.00009643662,0.00010522746],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002746434,0.0000814699,0.00021795154,0.00046667032,0.00050854054,0.00045399816,0.00037966078,0.00041913457,0.001862938],"category_scores_gemma":[0.001006253,0.00022382296,0.000117776704,0.000296997,0.00047665308,0.0008405429,0.00038341127,0.00022174195,0.00036085158],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004216454,0.00014781495,0.77244925,0.0001430374,0.000108831446,0.00043963888,0.0017364682,0.00023364839,0.17147976,0.0016313923,0.00068731,0.050521217],"study_design_scores_gemma":[0.0000031450877,0.00005337176,0.995552,0.000008247296,0.000013503867,0.0002647081,0.00079581427,0.0003107931,0.0016098697,0.0003163486,0.0010648608,0.000007190025],"about_ca_topic_score_codex":0.0028328018,"about_ca_topic_score_gemma":0.009481712,"teacher_disagreement_score":0.0028328018,"about_ca_system_score_codex":0.00026594033,"about_ca_system_score_gemma":0.00012371964,"threshold_uncertainty_score":0.0062321424},"labels":[],"label_agreement":null},{"id":"W2166908783","doi":"10.1016/j.foreco.2005.08.005","title":"Do rates of litter decomposition tell us anything we really need to know?","year":2005,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":235,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Decomposition; Litter; Environmental science; Ecology; Need to know; Biology; Computer science","score_opus":0.008580525820706309,"score_gpt":0.23665975695135646,"score_spread":0.22807923113065015,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2166908783","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8059579,0.0603316,0.027578816,0.06922409,0.0035558576,0.000046702316,0.0040334472,0.00038706601,0.028884562],"genre_scores_gemma":[0.9526026,0.021007,0.006484783,0.012359906,0.0018658016,0.00004644088,0.0013127553,0.00019808605,0.0041226353],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9989899,0.0003103715,0.00010879905,0.00020295852,0.0002681514,0.00011970956],"domain_scores_gemma":[0.97425157,0.0136602735,0.005842853,0.0020661738,0.0027548114,0.00142423],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.005446619,0.00045822532,0.001148366,0.0008127065,0.00030013267,0.0022756206,0.000794613,0.0020348546,0.0035469364],"category_scores_gemma":[0.033709385,0.000564619,0.00066855963,0.0006822515,0.0014750276,0.011417494,0.0008186506,0.0025650398,0.002228766],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00067800644,0.0003384108,0.6392007,0.0010753627,0.0016651304,0.00021517182,0.00086013385,0.0013069396,0.0070393384,0.0056013367,0.020056235,0.32196316],"study_design_scores_gemma":[0.000056243447,0.00055347534,0.85008144,0.00102443,0.000531613,0.002213171,0.0040275343,0.0034848182,0.007825567,0.08026341,0.049722366,0.00021583358],"about_ca_topic_score_codex":0.0012935448,"about_ca_topic_score_gemma":0.0022935476,"teacher_disagreement_score":0.005446619,"about_ca_system_score_codex":0.00042957196,"about_ca_system_score_gemma":0.00038304867,"threshold_uncertainty_score":0.028804779},"labels":[],"label_agreement":null},{"id":"W2167228893","doi":"10.1016/j.foreco.2012.12.033","title":"Recent declines of Populus tremuloides in North America linked to climate","year":2013,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":272,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; University of Alberta","funders":"Comisión Nacional para el Conocimiento y Uso de la Biodiversidad, Gobierno de México","keywords":"Climate change; Range (aeronautics); Ecology; Habitat; Precipitation; Environmental science; Geography; Arid; Biology","score_opus":0.007794499262758755,"score_gpt":0.22608516749682217,"score_spread":0.21829066823406343,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2167228893","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99866927,0.0003025984,0.00007236435,0.00015719228,0.000007739555,0.000001850795,0.0002607641,0.0000058714404,0.0005223577],"genre_scores_gemma":[0.998971,0.00023971514,0.00006567243,0.00005427996,0.0000143781635,0.0000038277412,0.00040187978,0.0000017387981,0.00024754778],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999238,0.000010931777,0.0000059844265,0.00002447326,0.000015910407,0.000018924675],"domain_scores_gemma":[0.99913365,0.0000851321,0.00047906383,0.000040618343,0.00017290763,0.00008867158],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028190447,0.00015038131,0.00012434185,0.00058517564,0.00053529715,0.0004393495,0.00027466984,0.00037599952,0.0012047327],"category_scores_gemma":[0.00095375476,0.00013966017,0.00009806087,0.0008515546,0.00046974357,0.0005445352,0.0004216398,0.000349184,0.00009902696],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001096126,0.000045639896,0.98986816,0.00004319603,0.000059571983,0.0000662369,0.00054440455,0.00022924868,0.0017250339,0.00007078141,0.000476348,0.0067617176],"study_design_scores_gemma":[7.0850217e-7,0.000005186432,0.9993438,0.000002301852,0.0000063270113,0.000022245866,0.00018886781,0.00006127209,0.000043990472,0.000015875843,0.00030868792,8.2507e-7],"about_ca_topic_score_codex":0.03118369,"about_ca_topic_score_gemma":0.09795368,"teacher_disagreement_score":0.03118369,"about_ca_system_score_codex":0.00052304356,"about_ca_system_score_gemma":0.00027844505,"threshold_uncertainty_score":0.062004387},"labels":[],"label_agreement":null},{"id":"W2167484462","doi":"10.1016/j.foreco.2009.07.047","title":"Landscape-level habitat supply modelling to develop and evaluate management practices that maintain diverse forest values in a dry forest ecosystem in southern British Columbia","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia","funders":"","keywords":"Understory; Forest management; Salvage logging; Habitat; Biodiversity; Environmental science; Wildlife; Silviculture; Productivity; Agroforestry; Logging; Snag; Forest ecology; Prescribed burn; Sustainable forest management; Geography; Ecology; Ecosystem; Forestry","score_opus":0.015513404066013228,"score_gpt":0.22457605981195813,"score_spread":0.2090626557459449,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2167484462","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99762815,0.000035213943,0.0011058021,0.00006248678,0.0000016243645,0.000023312537,0.00020553052,0.000017372122,0.00092050043],"genre_scores_gemma":[0.99593025,0.000028375667,0.0029805433,0.000015750178,6.855536e-7,0.000025785313,0.00019410565,0.000007763441,0.0008166583],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997191,0.000102138576,0.000017542223,0.0000478529,0.00003757762,0.00007589158],"domain_scores_gemma":[0.9989531,0.00042238767,0.0001231255,0.00005782306,0.0003041645,0.0001393506],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006943475,0.00028709485,0.00034061895,0.0007819489,0.00094289175,0.0012753268,0.0010479101,0.0003722388,0.0015417271],"category_scores_gemma":[0.0025460967,0.000310665,0.00024906718,0.0012567047,0.00045529418,0.00053072977,0.00055707956,0.00037616782,0.0000967682],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028330233,0.0003254955,0.4145819,0.00009459757,0.00021886855,0.0001666939,0.00045608362,0.55445623,0.001544336,0.0014561523,0.001284684,0.025131684],"study_design_scores_gemma":[0.00004046439,0.000058166122,0.13001794,0.000017685643,0.00007207905,0.000028020953,0.0008709531,0.86722183,0.0003205104,0.00063749606,0.0006981356,0.000016764243],"about_ca_topic_score_codex":0.8921871,"about_ca_topic_score_gemma":0.96112853,"teacher_disagreement_score":0.10781288,"about_ca_system_score_codex":0.015678426,"about_ca_system_score_gemma":0.006848291,"threshold_uncertainty_score":0.21689558},"labels":[],"label_agreement":null},{"id":"W2168292394","doi":"10.1016/j.foreco.2004.09.017","title":"Mortality and stand renewal patterns following the last spruce budworm outbreak in mixed forests of western Quebec","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":78,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec à Montréal","funders":"","keywords":"Balsam; Spruce budworm; Abies balsamea; Choristoneura fumiferana; Black spruce; Yellow birch; Basal area; Canopy; Outbreak; Ecology; Forestry; Biology; Geography; Taiga; Hardwood; Botany; Tortricidae; Lepidoptera genitalia","score_opus":0.00786808046592228,"score_gpt":0.2251048606650971,"score_spread":0.21723678019917483,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2168292394","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994948,0.00006177859,0.000013127969,0.000036003054,0.0000021040016,0.000003831056,0.0001841793,0.000001777947,0.00020235279],"genre_scores_gemma":[0.9991904,0.00003022124,0.000017440243,0.000021575974,0.000002228318,0.0000040552195,0.00024208313,0.0000010240126,0.00049086014],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998086,0.000019459625,0.0000066577554,0.00002939423,0.000029023973,0.0001067851],"domain_scores_gemma":[0.998765,0.00013408586,0.00030381943,0.00002845684,0.00036723533,0.0004014051],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036588867,0.00019357644,0.00026977478,0.0008224667,0.0011771686,0.00076067715,0.0007874318,0.0006089476,0.0016134599],"category_scores_gemma":[0.0010887131,0.0001856834,0.0001952036,0.00067998446,0.0004885326,0.0003508596,0.00041279258,0.0005333267,0.00018032831],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002734882,0.000077945464,0.9949063,0.000007350905,0.00004748892,0.0001006846,0.00066236936,0.00021165962,0.000996061,0.00002248045,0.00038929158,0.002304934],"study_design_scores_gemma":[0.0000020371124,0.00001292721,0.99945456,0.0000021361257,0.000004003976,0.000009963722,0.00028161952,0.00014888759,0.000021476064,0.0000020823882,0.000058436926,0.0000019262854],"about_ca_topic_score_codex":0.940967,"about_ca_topic_score_gemma":0.9821752,"teacher_disagreement_score":0.059032977,"about_ca_system_score_codex":0.007382953,"about_ca_system_score_gemma":0.0025680817,"threshold_uncertainty_score":0.11876124},"labels":[],"label_agreement":null},{"id":"W2168825390","doi":"10.1016/j.foreco.2006.02.003","title":"Analysis of historic western spruce budworm defoliation in south central British Columbia","year":2006,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":34,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia","funders":"","keywords":"Spruce budworm; Tortricidae; Lepidoptera genitalia; Forestry; Geography; Outbreak; Douglas fir; Population; Ecology; Biology; Demography","score_opus":0.002433309057555092,"score_gpt":0.16521295804256986,"score_spread":0.16277964898501476,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2168825390","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99810684,0.00017396982,0.000047803893,0.000028722945,0.0000021883118,0.000006205401,0.0007353217,0.0000035739513,0.00089530647],"genre_scores_gemma":[0.997879,0.00015226896,0.000085665095,0.000024037323,0.0000013842473,0.000006449143,0.0009063078,0.0000032175815,0.00094166084],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99970514,0.000043367985,0.00002785553,0.000055719698,0.00007524653,0.00009261371],"domain_scores_gemma":[0.99877864,0.00012619929,0.00018871724,0.0000622578,0.0006261845,0.00021799479],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003545227,0.0001693158,0.00022338527,0.0018692734,0.0013163227,0.0007441818,0.0005747303,0.00030860747,0.0012088531],"category_scores_gemma":[0.0010706756,0.00020802785,0.00015944405,0.003281091,0.00045481639,0.00019042313,0.00048399897,0.00030156365,0.00018989116],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00003902254,0.000021666001,0.99300545,0.0000221362,0.000042244636,0.00017104087,0.0005825367,0.0003029418,0.00043200006,0.00004886305,0.0004191403,0.004912904],"study_design_scores_gemma":[7.839598e-7,0.0000032530786,0.9986462,0.0000068751006,0.0000074952895,0.000035372726,0.00059633865,0.00015731672,0.00004470892,0.0000044177655,0.00049538433,0.0000018758554],"about_ca_topic_score_codex":0.9541361,"about_ca_topic_score_gemma":0.99039394,"teacher_disagreement_score":0.045863926,"about_ca_system_score_codex":0.0069922647,"about_ca_system_score_gemma":0.004020127,"threshold_uncertainty_score":0.09226799},"labels":[],"label_agreement":null},{"id":"W2170131456","doi":"10.1016/j.foreco.2009.07.009","title":"Mapping dead wood distribution in a temperate hardwood forest using high resolution airborne imagery","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":59,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Carleton University","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Snag; Coarse woody debris; Environmental science; Dead wood; Canopy; Temperate forest; Forest ecology; Temperate rainforest; Forest management; Remote sensing; Vegetation (pathology); Ecosystem; Biodiversity; Ecology; Forestry; Geography; Habitat; Agroforestry; Biology","score_opus":0.01579248526721931,"score_gpt":0.19973462709464154,"score_spread":0.18394214182742225,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2170131456","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99919313,0.00002349555,0.00031149457,0.000005462751,0.0000010113345,0.0000044425237,0.000118102995,0.000009155097,0.00033373456],"genre_scores_gemma":[0.9979394,0.00002379486,0.001580218,0.0000037044501,0.0000023499024,0.0000057099824,0.00017986029,0.0000022477006,0.0002626999],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999355,0.0000065751537,0.0000039863066,0.000022222255,0.000017053628,0.000014653931],"domain_scores_gemma":[0.9998524,0.000043976317,0.000022079386,0.000014847989,0.000036416157,0.000030253868],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013009644,0.00013851469,0.00015297461,0.00060836546,0.00028556422,0.00026022366,0.00030197477,0.00017464506,0.0005485237],"category_scores_gemma":[0.0002962832,0.00016000771,0.00010254275,0.00046434734,0.00017905954,0.00026555848,0.0002539689,0.00011080416,0.000096997035],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014547294,0.0006292935,0.73789185,0.00016837854,0.00014510169,0.0011797511,0.002393467,0.013136146,0.13704194,0.00042660264,0.0009287751,0.104603894],"study_design_scores_gemma":[0.000023408946,0.00006963061,0.9862099,0.0000051890784,0.000026114616,0.00022626553,0.0003569028,0.011367248,0.0013128299,0.000075566306,0.0003173418,0.000009548736],"about_ca_topic_score_codex":0.020612214,"about_ca_topic_score_gemma":0.044001147,"teacher_disagreement_score":0.020612214,"about_ca_system_score_codex":0.00016980017,"about_ca_system_score_gemma":0.00017048838,"threshold_uncertainty_score":0.04098445},"labels":[],"label_agreement":null},{"id":"W2170468405","doi":"10.1016/j.foreco.2011.05.025","title":"Do partial cross sections from live trees for fire history analysis result in higher mortality 2years after sampling?","year":2011,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Sciences and Engineering Research Council; Université du Québec à Montréal; Université du Québec en Abitibi-Témiscamingue","funders":"","keywords":"Sampling (signal processing); Red pine; Partial correlation; Biology; Cross section (physics); Pinus <genus>; Tree (set theory); Botany; Ecology; Forestry; Horticulture; Mathematics; Geography; Correlation","score_opus":0.03365797025916379,"score_gpt":0.2530618148884951,"score_spread":0.21940384462933132,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2170468405","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9965635,0.00024463225,0.0018467121,0.00012345963,0.00005566725,0.000017572664,0.00032759423,0.000014145573,0.000806818],"genre_scores_gemma":[0.9972873,0.00009970588,0.001079183,0.00019314689,0.00004043439,0.000014344802,0.0006187807,0.000016917289,0.0006502675],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99844474,0.00046438692,0.00014392087,0.00040775537,0.00022736577,0.0003119162],"domain_scores_gemma":[0.9903869,0.0039827167,0.0022610629,0.0016605442,0.0011994925,0.0005092775],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0061474363,0.0004477734,0.0006275262,0.0005436839,0.0005741981,0.0009262507,0.00086461066,0.001448494,0.0022572696],"category_scores_gemma":[0.013260978,0.0004149424,0.00080266007,0.00055938936,0.00048862596,0.0012225687,0.00034571413,0.00040653278,0.00080260343],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00032762333,0.00009903889,0.9830052,0.000028370816,0.00027963577,0.00012800912,0.00016268335,0.00010487512,0.0046663424,0.00003800586,0.00027990498,0.010880304],"study_design_scores_gemma":[0.0000051329916,0.00007008982,0.9979081,0.0000069637795,0.00006826025,0.00018116867,0.00012768549,0.00034776257,0.0009845241,0.00007132998,0.00022573484,0.000003220165],"about_ca_topic_score_codex":0.005113424,"about_ca_topic_score_gemma":0.014692108,"teacher_disagreement_score":0.0061474363,"about_ca_system_score_codex":0.00021425333,"about_ca_system_score_gemma":0.00022410248,"threshold_uncertainty_score":0.032511115},"labels":[],"label_agreement":null},{"id":"W2171696607","doi":"10.1016/j.foreco.2009.02.004","title":"Grapevine (Vitis spp.) dynamics in association with manual tending, physiography, and host tree associations in temperate deciduous forests","year":2009,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Horticultural and Viticultural Research","field":"Agricultural and Biological Sciences","cited_by":15,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"","keywords":"Liana; Deciduous; Temperate deciduous forest; Biology; Temperate climate; Temperate rainforest; Temperate forest; Quercus serrata; Understory; Ecology; Host (biology); Canopy; Botany; Ecosystem","score_opus":0.007995098784845427,"score_gpt":0.24055438051842704,"score_spread":0.23255928173358162,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2171696607","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998066,0.00006144907,0.000008019114,0.0000028958868,5.80282e-7,6.147158e-7,0.00002376375,8.841074e-7,0.00009519752],"genre_scores_gemma":[0.99970406,0.000038281927,0.000021044209,0.0000054079,0.0000015426998,0.0000012933809,0.00007656768,7.6078913e-7,0.00015094558],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998491,0.00004025287,0.000009903395,0.00005657422,0.000015773505,0.000028407614],"domain_scores_gemma":[0.99952674,0.000103767925,0.00014438991,0.000023594348,0.000054046955,0.0001474384],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002550434,0.0001212644,0.00020939617,0.0005337147,0.00032929078,0.0004261486,0.00017503566,0.0001738401,0.00069550483],"category_scores_gemma":[0.00037951677,0.00016279274,0.00011000489,0.0003240918,0.000288324,0.00024774112,0.00026921852,0.00014589512,0.000109267006],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019858219,0.00004785356,0.98881334,0.000017182143,0.000050473205,0.00012470182,0.00058726204,0.00007963847,0.007814454,0.000033002285,0.00010103892,0.0021324814],"study_design_scores_gemma":[0.0000010831194,0.000015731148,0.9997055,9.903082e-7,0.00000287854,0.00003568086,0.0001342664,0.000042725133,0.000025004767,0.0000062937647,0.000029055205,6.6084795e-7],"about_ca_topic_score_codex":0.009072696,"about_ca_topic_score_gemma":0.03472429,"teacher_disagreement_score":0.009072696,"about_ca_system_score_codex":0.00027144974,"about_ca_system_score_gemma":0.00012307389,"threshold_uncertainty_score":0.018039763},"labels":[],"label_agreement":null},{"id":"W2180225027","doi":"10.1016/j.foreco.2015.09.038","title":"Assessing the potential for forest management practitioner participation in climate change adaptation","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":68,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of British Columbia","funders":"Ministry of Forests, Lands and Natural Resource Operations","keywords":"Environmental resource management; Forest management; Adaptive management; Climate change; Adaptive capacity; Adaptation (eye); Sustainable forest management; Corporate governance; Business; Vulnerability (computing); Environmental planning; Computer science; Ecology; Geography; Economics; Forestry","score_opus":0.04662180618984087,"score_gpt":0.317353343570207,"score_spread":0.27073153738036615,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2180225027","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9800617,0.000091678965,0.0007004361,0.0031312492,0.000023867016,0.00014503444,0.0000965029,0.0000057859347,0.015743779],"genre_scores_gemma":[0.99844545,0.000039696894,0.00035248487,0.00021877624,0.000008965805,0.0001053947,0.00002996024,0.000001627158,0.00079767976],"study_design_codex":"observational","study_design_gemma":"qualitative","domain_scores_codex":[0.956253,0.03373805,0.0010726285,0.0013000995,0.0038574105,0.0037788032],"domain_scores_gemma":[0.8601214,0.09363554,0.016514892,0.00480841,0.013955197,0.010964471],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.03191457,0.00019818894,0.00022900352,0.001321096,0.0026581541,0.0037182288,0.0011161822,0.0025946826,0.008742169],"category_scores_gemma":[0.13232496,0.00031940604,0.00042076872,0.0013699809,0.0014970389,0.0034085005,0.005069016,0.002199413,0.00065948383],"study_design_candidate":"qualitative","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018177502,0.002960538,0.85520077,0.00027438285,0.00017429245,0.0004933797,0.057194352,0.0014130088,0.0009912513,0.00916706,0.0026303036,0.067682914],"study_design_scores_gemma":[0.00035461137,0.002768887,0.751951,0.00035543856,0.00021944217,0.00033782024,0.2096207,0.009986214,0.0012696652,0.0057842643,0.01728589,0.000066096305],"about_ca_topic_score_codex":0.007760426,"about_ca_topic_score_gemma":0.019046871,"teacher_disagreement_score":0.03191457,"about_ca_system_score_codex":0.002746777,"about_ca_system_score_gemma":0.0066869357,"threshold_uncertainty_score":0.16878241},"labels":[],"label_agreement":null},{"id":"W2181524570","doi":"10.1016/j.foreco.2015.10.020","title":"Black spruce ( Picea mariana ) restoration in Kalmia heath by scarification and microsite mulching","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":14,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"Natural Sciences and Engineering Research Council of Canada; Lakehead University","keywords":"Black spruce; Seedling; Scarification; Microsite; Biology; Clearcutting; Agronomy; Environmental science; Ecology; Taiga; Germination; Dormancy","score_opus":0.010749091376616048,"score_gpt":0.21328147539171743,"score_spread":0.20253238401510137,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2181524570","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998337,0.00001825833,0.000012759199,0.000004150218,0.0000015411719,0.0000041189414,0.0000050168146,9.903672e-7,0.00011941166],"genre_scores_gemma":[0.9994566,0.000039679606,0.00007949097,0.000008336897,0.000002411419,0.0000077993145,0.000020398662,4.790521e-7,0.00038495543],"study_design_codex":"observational","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.999913,0.000013854341,0.000005360757,0.000018317893,0.00001103962,0.000038387512],"domain_scores_gemma":[0.99986804,0.000010373938,0.000026445518,0.000005612225,0.000011094639,0.00007838358],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001831864,0.00021852774,0.00019375408,0.00022178591,0.0006026395,0.00021806816,0.000271121,0.00014897934,0.00046262756],"category_scores_gemma":[0.00014604071,0.000082534934,0.00017030656,0.00013344164,0.00026349694,0.00024005506,0.0002371023,0.0002619557,0.000059066828],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.01794663,0.01949611,0.5138021,0.00044379794,0.00034767325,0.0038560245,0.006904217,0.0018259494,0.33813703,0.0008105167,0.0008814587,0.09554848],"study_design_scores_gemma":[0.00006033144,0.005547317,0.98696893,0.000010259792,0.00007395256,0.00021386049,0.0020962965,0.0005400118,0.003930371,0.00007252329,0.0004739004,0.000012292944],"about_ca_topic_score_codex":0.0117178885,"about_ca_topic_score_gemma":0.059222832,"teacher_disagreement_score":0.0117178885,"about_ca_system_score_codex":0.00051639066,"about_ca_system_score_gemma":0.0005284897,"threshold_uncertainty_score":0.023299336},"labels":[],"label_agreement":null},{"id":"W2186686638","doi":"10.1016/j.foreco.2015.11.015","title":"Trends in post-disturbance recovery rates of Canada’s forests following wildfire and harvest","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":236,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Canadian Forest Service; Lakehead University","funders":"Natural Resources Canada; Canadian Space Agency","keywords":"Disturbance (geology); Environmental science; Ecology; Forestry; Agroforestry; Geography; Biology","score_opus":0.006276383464892233,"score_gpt":0.20575970355589693,"score_spread":0.1994833200910047,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2186686638","genre_codex":"review","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.06498649,0.91754276,0.00038826012,0.0011505677,0.00010260693,0.000031053314,0.010416781,0.000055340992,0.0053261383],"genre_scores_gemma":[0.26805067,0.7202697,0.0015511845,0.0006823418,0.00007530428,0.000033916636,0.00782358,0.000023714803,0.0014895275],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.99887186,0.000062371786,0.00015425716,0.00016948573,0.00058742956,0.00015466637],"domain_scores_gemma":[0.9909334,0.0016000007,0.0016181486,0.00011111841,0.005307165,0.0004302536],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0016277459,0.0003278727,0.0005409564,0.007384543,0.0009183086,0.001862852,0.0008956216,0.00035126694,0.0008175845],"category_scores_gemma":[0.0042101527,0.00020079614,0.0007479349,0.013915983,0.0006524324,0.00071004854,0.00031817998,0.00058398384,0.000119848824],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000531059,0.00006007079,0.19310713,0.07756661,0.002049896,0.0008418703,0.0053045335,0.0019755985,0.0051049115,0.0022581997,0.03096758,0.6802325],"study_design_scores_gemma":[0.000018738649,0.00012266304,0.80891526,0.012793209,0.0018680663,0.00064489845,0.0024241246,0.00040381777,0.0019563842,0.00030562596,0.17043991,0.000107290536],"about_ca_topic_score_codex":0.92701584,"about_ca_topic_score_gemma":0.97544825,"teacher_disagreement_score":0.07298416,"about_ca_system_score_codex":0.013708046,"about_ca_system_score_gemma":0.030815257,"threshold_uncertainty_score":0.14682788},"labels":[],"label_agreement":null},{"id":"W2189964883","doi":"10.1016/j.foreco.2015.11.048","title":"Root rather than leaf litter input drives soil carbon sequestration after afforestation on a marginal cropland","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":77,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"National Natural Science Foundation of China","keywords":"Environmental science; Agronomy; Litter; Afforestation; Plant litter; Carbon sequestration; Soil carbon; Soil respiration; Soil water; Biochar; Ecosystem; Biomass (ecology); Mineralization (soil science); Agroforestry; Soil science; Biology; Chemistry; Ecology; Carbon dioxide","score_opus":0.011498186827586512,"score_gpt":0.20782808439445902,"score_spread":0.1963298975668725,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2189964883","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998398,0.000012475172,0.00001784891,0.000012313546,5.583801e-7,5.3825124e-7,0.000014726355,0.0000011418873,0.000100626305],"genre_scores_gemma":[0.99985707,0.000008613056,0.00001914529,0.0000059173803,7.309223e-7,5.9629576e-7,0.000020077488,0.0000010284709,0.000086778986],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991775,0.000011655372,0.000004808139,0.00002380055,0.000005186022,0.000036741578],"domain_scores_gemma":[0.9995209,0.0001290398,0.000114778275,0.000027878248,0.000051710253,0.00015578864],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027361652,0.00015448619,0.000215302,0.00017232656,0.0003353172,0.0005920155,0.00030416145,0.0004063844,0.0015909957],"category_scores_gemma":[0.0006314679,0.00015270454,0.00021208223,0.00017231358,0.0005800279,0.00046475697,0.00034467917,0.0002548754,0.00013890593],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0022949053,0.00034722674,0.81198215,0.00008674635,0.00017041498,0.00048394676,0.00057027704,0.0028153665,0.1716046,0.00084760523,0.00025410895,0.008542564],"study_design_scores_gemma":[0.000008080138,0.00007258925,0.9962567,0.0000021268677,0.000017165728,0.0000334954,0.00028714945,0.0018200004,0.0012633757,0.00016691111,0.00006872547,0.000003666594],"about_ca_topic_score_codex":0.01942412,"about_ca_topic_score_gemma":0.051023263,"teacher_disagreement_score":0.01942412,"about_ca_system_score_codex":0.00080379937,"about_ca_system_score_gemma":0.00051102747,"threshold_uncertainty_score":0.03862208},"labels":[],"label_agreement":null},{"id":"W2196915400","doi":"10.1016/j.foreco.2015.11.013","title":"Introduction to Forests, roots and soil carbon","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Environmental science; Soil respiration; Ecosystem; Ecosystem respiration; Carbon sink; Q10; Biomass (ecology); Soil carbon; Primary production; Forest ecology; Agronomy; Forestry; Ecology; Soil water; Respiration; Botany; Biology; Geography; Soil science","score_opus":0.00485799108319529,"score_gpt":0.18491766140081914,"score_spread":0.18005967031762385,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2196915400","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0055088997,0.6697442,0.040620554,0.10634052,0.04407008,0.000086416374,0.0027235511,0.00030001235,0.13060585],"genre_scores_gemma":[0.06666204,0.4932334,0.029053101,0.0793026,0.1255366,0.00028832848,0.0013123775,0.00036746194,0.20424409],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.99980146,0.000038309034,0.000014065432,0.000084539366,0.00004298099,0.000018637507],"domain_scores_gemma":[0.99903655,0.0006796317,0.00004480631,0.000045311655,0.00011892373,0.00007475582],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005822745,0.0008039331,0.00056795194,0.0008434999,0.0008810188,0.0017348414,0.0010984966,0.0021557636,0.022633366],"category_scores_gemma":[0.0014345981,0.00035166886,0.0006595015,0.0018673838,0.0022122767,0.0019567618,0.0011756024,0.0038180146,0.003595138],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00009245639,0.00010392612,0.0014961131,0.0023031957,0.00005206011,0.00020587473,0.00043345464,0.0023826368,0.0017957605,0.377665,0.39095077,0.22251876],"study_design_scores_gemma":[0.000008543893,0.000020501657,0.0013325311,0.00045918647,0.000018820843,0.00012562226,0.000105186286,0.00025984048,0.00011302591,0.08399263,0.9135486,0.00001552402],"about_ca_topic_score_codex":0.0060443385,"about_ca_topic_score_gemma":0.00850252,"teacher_disagreement_score":0.022633366,"about_ca_system_score_codex":0.00087187847,"about_ca_system_score_gemma":0.0011125798,"threshold_uncertainty_score":0.0757162},"labels":[],"label_agreement":null},{"id":"W2207419183","doi":"10.1016/j.foreco.2015.10.032","title":"Soil CO2 efflux and net ecosystem exchange following biomass harvesting: Impacts of harvest intensity, residue retention and vegetation control","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Forestry; Canadian Forest Service","funders":"Canadian Forest Service","keywords":"Environmental science; Biomass (ecology); Soil respiration; Agronomy; Ecosystem; Organic matter; Herbaceous plant; Nutrient; Forest floor; Nutrient cycle; Growing season; Crop residue; Soil water; Ecology; Biology; Soil science; Agriculture","score_opus":0.010747732892751539,"score_gpt":0.20941645453881835,"score_spread":0.1986687216460668,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2207419183","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99979633,0.00002625015,0.000028465694,0.000011958297,0.0000019762913,0.0000011352264,0.00003792381,0.0000012865887,0.00009459923],"genre_scores_gemma":[0.9993461,0.000023958695,0.000032331398,0.000013390252,0.0000035692,0.0000031158977,0.00012741786,0.0000028892855,0.00044722782],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999892,0.000024016108,0.000007088438,0.000022755934,0.00001049113,0.00004370087],"domain_scores_gemma":[0.99871135,0.0006739292,0.0001909943,0.000077106735,0.00006149807,0.00028515718],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006365154,0.000260345,0.00039643855,0.00018383891,0.0002425978,0.0006194196,0.0003341878,0.00068007584,0.0022123577],"category_scores_gemma":[0.001654595,0.00024929002,0.00035035156,0.00030214986,0.00049146014,0.000961093,0.00045699233,0.0006599337,0.00027161674],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.05277913,0.0029253894,0.82242393,0.000074453856,0.0004992562,0.00065256585,0.00034466138,0.0037463328,0.10533304,0.0004162256,0.00037585353,0.010429166],"study_design_scores_gemma":[0.000036303943,0.00031882414,0.9954006,0.0000015791987,0.000050757622,0.00008190299,0.00008667369,0.0016062972,0.0022202225,0.00012833433,0.00006213512,0.000006401979],"about_ca_topic_score_codex":0.0064033717,"about_ca_topic_score_gemma":0.0108809015,"teacher_disagreement_score":0.0064033717,"about_ca_system_score_codex":0.000397133,"about_ca_system_score_gemma":0.00044882338,"threshold_uncertainty_score":0.012732208},"labels":[],"label_agreement":null},{"id":"W2209210434","doi":"10.1016/j.foreco.2015.08.004","title":"Climatic niche models and their consensus projections for future climates for four major forest tree species in the Asia–Pacific region","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":98,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Asia-Pacific Network for Sustainable Forest Management and Rehabilitation","keywords":"Reforestation; Climate change; Afforestation; Ecological niche; Forest management; Vegetation (pathology); Geography; Forest restoration; Forest ecology; Ecology; Forest inventory; Environmental science; Global change; Environmental resource management; Ecosystem; Agroforestry; Habitat; Biology","score_opus":0.06916527346528172,"score_gpt":0.25422872236330435,"score_spread":0.18506344889802262,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2209210434","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9287395,0.00045057165,0.05828526,0.0012589262,0.00008289799,0.000056277084,0.0033225734,0.00024540347,0.007558721],"genre_scores_gemma":[0.9870287,0.00011030195,0.011174909,0.00004928828,0.000009182495,0.0000514626,0.0012424056,0.000029690793,0.00030406186],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9995222,0.00022468236,0.000042932614,0.00010316781,0.00005910208,0.000047964357],"domain_scores_gemma":[0.9977744,0.0012497735,0.00021679877,0.00010041546,0.00050615036,0.00015245569],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0031244177,0.0005117001,0.0003891751,0.0010811538,0.00054933934,0.0011320657,0.0013009921,0.0007373717,0.002986057],"category_scores_gemma":[0.0067724064,0.00039867056,0.0010780252,0.0012928076,0.00033682113,0.0011547667,0.00078502495,0.0008805429,0.00027286806],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015789102,0.00003803809,0.022502529,0.00005536088,0.00014887148,0.000051405983,0.00015554384,0.9611299,0.00022110442,0.00528843,0.0011017972,0.009149203],"study_design_scores_gemma":[0.00004625729,0.00002235342,0.010614392,0.00002952718,0.00005528949,0.00003241476,0.00033847833,0.9752911,0.00013228305,0.01276053,0.0006479695,0.00002942222],"about_ca_topic_score_codex":0.0364876,"about_ca_topic_score_gemma":0.044693064,"teacher_disagreement_score":0.0364876,"about_ca_system_score_codex":0.0017590943,"about_ca_system_score_gemma":0.001869906,"threshold_uncertainty_score":0.072550476},"labels":[],"label_agreement":null},{"id":"W2212538009","doi":"10.1016/j.foreco.2015.11.004","title":"Predicting softwood quality attributes from climate data in interior British Columbia, Canada","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":14,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia; University of Victoria","funders":"Natural Sciences and Engineering Research Council of Canada; Canadian Foundation for Climate and Atmospheric Sciences","keywords":"Softwood; Environmental science; Climate change; Dendrochronology; Forest inventory; Physical geography; Forestry; Agroforestry; Forest management; Geography; Ecology; Pulp and paper industry; Engineering","score_opus":0.03390032991224026,"score_gpt":0.24497691099926355,"score_spread":0.2110765810870233,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2212538009","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99233234,0.0004974686,0.00025211563,0.00024696754,0.000016766939,0.000024059138,0.004175269,0.000030950698,0.0024240345],"genre_scores_gemma":[0.993419,0.00040365095,0.00045857308,0.00007348618,0.000004149276,0.000014971513,0.0027425785,0.000014091664,0.0028695224],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996351,0.0000371898,0.000024320334,0.00008328813,0.00008667834,0.00013343568],"domain_scores_gemma":[0.9977888,0.00029002724,0.00014412648,0.00007245517,0.0012463037,0.0004581848],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00072789367,0.00044382748,0.00038737568,0.0011636163,0.0019464354,0.0016632732,0.0010976074,0.00046479597,0.0022227808],"category_scores_gemma":[0.0021008053,0.00027731195,0.00033684087,0.0022476953,0.0005146026,0.00039586416,0.00060976855,0.0007301432,0.00042338198],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020930426,0.00014556284,0.9558553,0.000058282436,0.00014791053,0.00017000792,0.00058382266,0.008977154,0.0009977889,0.00025948317,0.007279156,0.025316194],"study_design_scores_gemma":[0.000024364665,0.00001066652,0.9822091,0.000053568103,0.000052159445,0.00002500426,0.0016562088,0.012875015,0.00027944928,0.00010123694,0.0026885308,0.000024594923],"about_ca_topic_score_codex":0.9982407,"about_ca_topic_score_gemma":0.99943966,"teacher_disagreement_score":0.022249028,"about_ca_system_score_codex":0.022249028,"about_ca_system_score_gemma":0.021084752,"threshold_uncertainty_score":0.16142875},"labels":[],"label_agreement":null},{"id":"W2261577305","doi":"10.1016/s0378-1127(02)00002-6","title":"Carbon storage of harvest-age teak (Tectona grandis) plantations, Panama","year":2003,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":183,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"Smithsonian Tropical Research Institute","keywords":"Tectona; Forestry; Reforestation; Environmental science; Carbon fibers; Carbon sequestration; Soil carbon; Undergrowth; Afforestation; Biomass (ecology); Agroforestry; Carbon sink; Litter; Geography; Agronomy; Carbon dioxide; Mathematics; Biology; Climate change; Ecology; Soil water; Soil science","score_opus":0.004880632109309135,"score_gpt":0.19361800690224795,"score_spread":0.1887373747929388,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2261577305","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998368,0.000026345564,0.000012420516,0.0000040503423,3.913389e-7,6.571944e-7,0.000045365472,0.0000010211767,0.00007291565],"genre_scores_gemma":[0.99963224,0.000026652138,0.000038051585,0.0000062418812,7.958695e-7,0.00000227994,0.00010671383,0.0000016496509,0.00018529472],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999379,0.000008139469,0.0000041854946,0.000026881458,0.000008043416,0.000014935738],"domain_scores_gemma":[0.99978393,0.00003618022,0.00006826833,0.000014865023,0.000031261723,0.00006545708],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013545748,0.00028108593,0.00022976397,0.00050614093,0.0006402383,0.0004787393,0.00032898173,0.00025062534,0.00093776395],"category_scores_gemma":[0.00018025129,0.0002013341,0.00015054057,0.000498644,0.0003645746,0.00062067516,0.0003823741,0.00024339896,0.00011350486],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0032692377,0.00037372287,0.77664137,0.00010730811,0.00029689193,0.0005636706,0.0019990625,0.0006732516,0.20179586,0.00031736845,0.00028780443,0.013674401],"study_design_scores_gemma":[0.000007494596,0.000051284696,0.9979845,0.0000011233326,0.000022478762,0.00005796163,0.00024145062,0.00027441126,0.0012148033,0.000021295966,0.000120570956,0.0000026042903],"about_ca_topic_score_codex":0.03721346,"about_ca_topic_score_gemma":0.12598363,"teacher_disagreement_score":0.03721346,"about_ca_system_score_codex":0.00079517846,"about_ca_system_score_gemma":0.00025953114,"threshold_uncertainty_score":0.07399368},"labels":[],"label_agreement":null},{"id":"W2283186049","doi":"10.1016/j.foreco.2016.01.013","title":"Scale effects in survey estimates of proportions and quantiles of per unit area attributes","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":11,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Quantile; Statistics; Scale (ratio); Spatial analysis; Sampling (signal processing); Context (archaeology); Econometrics; Spatial ecology; Mathematics; Consistency (knowledge bases); Spatial distribution; Scaling; Forest inventory; Unit (ring theory); Environmental science; Geography; Computer science; Cartography; Ecology; Forestry; Forest management","score_opus":0.014609607544093623,"score_gpt":0.24116351707327696,"score_spread":0.22655390952918333,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2283186049","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.56942433,0.0021759206,0.41223082,0.0013370704,0.0001982233,0.00028692762,0.0019133352,0.0010984683,0.01133495],"genre_scores_gemma":[0.9852284,0.00013307754,0.012552727,0.00028453497,0.00004856505,0.0000658337,0.0004940797,0.00011405698,0.0010787094],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.93527806,0.049492814,0.0019633116,0.007986569,0.0040129703,0.0012662174],"domain_scores_gemma":[0.47766677,0.4754578,0.009572715,0.032024175,0.004708079,0.0005704806],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.07798628,0.0005444719,0.0010422986,0.0011674433,0.0007967903,0.0022729859,0.0013584147,0.0018293991,0.0041682865],"category_scores_gemma":[0.27137884,0.0011400366,0.0020141304,0.0022427186,0.003498691,0.0032275289,0.0026294072,0.0019170174,0.0005389279],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0020976244,0.00016193894,0.72679526,0.0006332824,0.004268588,0.00049938203,0.0025445018,0.12531897,0.0066666203,0.036588304,0.004860736,0.08956489],"study_design_scores_gemma":[0.00011024746,0.00027444348,0.8376299,0.000110613226,0.0011410296,0.00041688935,0.0009797144,0.11500689,0.0035817975,0.03735366,0.0032668998,0.0001278705],"about_ca_topic_score_codex":0.010025561,"about_ca_topic_score_gemma":0.013696594,"teacher_disagreement_score":0.07798628,"about_ca_system_score_codex":0.00088363886,"about_ca_system_score_gemma":0.0005064795,"threshold_uncertainty_score":0.41243577},"labels":[],"label_agreement":null},{"id":"W2298307107","doi":"10.1016/j.foreco.2016.02.029","title":"Beetle community response to residual forest patch size in managed boreal forest landscapes: Feeding habits matter","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Ministère des Forêts, de la Faune et des Parcs","funders":"Canadian Forest Service","keywords":"Clearcutting; Ecology; Taiga; Species richness; Biodiversity; Habitat; Fragmentation (computing); Old-growth forest; Forest management; Disturbance (geology); Forest ecology; Secondary forest; Biology; Geography; Ecosystem","score_opus":0.012988351712426282,"score_gpt":0.20554049772894945,"score_spread":0.19255214601652315,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2298307107","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999049,0.000020523257,0.00000858922,0.0000044596973,5.390383e-7,4.2428886e-7,0.000012594645,5.9316045e-7,0.000047372356],"genre_scores_gemma":[0.999838,0.000010181057,0.000024714887,0.000009440143,0.0000012674549,0.0000011195461,0.000040098632,7.235796e-7,0.00007441751],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984026,0.000043531192,0.000009347782,0.000053273867,0.000016844198,0.00003685323],"domain_scores_gemma":[0.99943024,0.00010368075,0.00018876888,0.000052494965,0.000042282427,0.00018259084],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031032725,0.00017361912,0.0002106863,0.00031305396,0.00031833412,0.00052146055,0.00024978587,0.00032729807,0.0012919356],"category_scores_gemma":[0.00065635965,0.0001822637,0.00019690265,0.00019506611,0.00045893696,0.00033174892,0.0002750527,0.0002641366,0.00008700867],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007966733,0.00023652478,0.98466474,0.000015769529,0.00017226409,0.00006164741,0.00038510517,0.0001480905,0.010587883,0.000033774006,0.00008250437,0.0028150282],"study_design_scores_gemma":[0.0000018493122,0.00003112084,0.99971515,5.5018126e-7,0.0000074556147,0.000017103743,0.0000991051,0.00007182447,0.000035063124,0.000005415671,0.00001435621,9.843462e-7],"about_ca_topic_score_codex":0.010620652,"about_ca_topic_score_gemma":0.061143424,"teacher_disagreement_score":0.010620652,"about_ca_system_score_codex":0.00028754357,"about_ca_system_score_gemma":0.000122598,"threshold_uncertainty_score":0.021117687},"labels":[],"label_agreement":null},{"id":"W2302925362","doi":"10.1016/j.foreco.2016.03.032","title":"Wildlife habitat enhancements for grizzly bears: Survival rates of planted fruiting shrubs in forest harvests","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Rangeland and Wildlife Management","field":"Environmental Science","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Alberta Conservation Association; University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; Alberta Conservation Association","keywords":"Habitat; Wildlife; Ecology; Ungulate; Shrub; Biology; Foraging; Geography; Understory; Canopy","score_opus":0.01308177713320825,"score_gpt":0.24137766655569484,"score_spread":0.2282958894224866,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2302925362","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99972194,0.00002598724,0.000015008709,0.000012272155,0.0000020920552,9.081387e-7,0.000049440892,6.69479e-7,0.0001716305],"genre_scores_gemma":[0.99953234,0.00002976473,0.000037596015,0.000011104514,0.0000069101493,0.0000015476834,0.000116995194,0.0000010101625,0.00026287168],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998816,0.000024525849,0.000006544397,0.00003780182,0.000017248602,0.000032173783],"domain_scores_gemma":[0.99916756,0.000167528,0.00030828515,0.000047968333,0.00006044787,0.0002482675],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000500344,0.00016563872,0.00013068317,0.00029821138,0.00027361757,0.00034646972,0.00023806457,0.00027477148,0.0022024624],"category_scores_gemma":[0.0012618317,0.00010720553,0.00027171543,0.00019338532,0.00024862424,0.0006056709,0.00034499608,0.0003953814,0.00016680763],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00059236714,0.00019212399,0.99401724,0.000008562668,0.00005057487,0.00012899752,0.0001926153,0.00009866842,0.0018751774,0.000043507094,0.000105401945,0.0026948168],"study_design_scores_gemma":[0.0000016111037,0.000057531644,0.99957246,9.887195e-7,0.000011476235,0.000055392364,0.00010284901,0.000058041624,0.00009083259,0.0000104561095,0.00003754764,8.1985706e-7],"about_ca_topic_score_codex":0.0055480804,"about_ca_topic_score_gemma":0.02002681,"teacher_disagreement_score":0.0055480804,"about_ca_system_score_codex":0.00017918459,"about_ca_system_score_gemma":0.00016823356,"threshold_uncertainty_score":0.011031568},"labels":[],"label_agreement":null},{"id":"W2310247040","doi":"10.1016/j.foreco.2016.03.024","title":"Mesocarnivores respond to fine-grain habitat structure in a mosaic landscape comprised by commercial forest plantations in southern Chile","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":53,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Fondo Nacional de Ciencia y Tecnología; Mohammed bin Zayed Species Conservation Fund","keywords":"Habitat; Ecology; Geography; Vegetation (pathology); Understory; Wildlife; Wildlife conservation; Occupancy; Biology; Canopy","score_opus":0.004231674339601253,"score_gpt":0.19850785765144363,"score_spread":0.19427618331184238,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2310247040","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99973387,0.000010749235,0.00000848431,0.000013382169,3.2813298e-7,0.0000012908193,0.000023768162,7.585254e-7,0.00020719091],"genre_scores_gemma":[0.99975556,0.000011503015,0.000019721998,0.00000602128,5.52809e-7,0.0000034411898,0.00003791981,8.783008e-7,0.00016434192],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999099,0.000019210995,0.0000032581208,0.000023667633,0.000008038473,0.000036087662],"domain_scores_gemma":[0.9997079,0.000051956828,0.00008481003,0.000019356574,0.00003361505,0.00010233164],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016461812,0.00013801343,0.00022145566,0.000571484,0.0005536423,0.0007280272,0.00040944273,0.0002651848,0.00251149],"category_scores_gemma":[0.00064736465,0.00019223044,0.00013478428,0.000545632,0.00067860493,0.0004157099,0.00084587466,0.00020783555,0.00016886629],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00034289126,0.00019065235,0.98260534,0.000047981703,0.00008263703,0.00045487983,0.0034466956,0.0008267511,0.007441374,0.00026382107,0.0003600423,0.003936783],"study_design_scores_gemma":[0.0000066230823,0.000015379755,0.9966221,0.000004201248,0.00000634479,0.000023928416,0.0026855313,0.00044987508,0.00003110795,0.000050262148,0.00010123154,0.0000034774505],"about_ca_topic_score_codex":0.06320427,"about_ca_topic_score_gemma":0.20537594,"teacher_disagreement_score":0.06320427,"about_ca_system_score_codex":0.0010621176,"about_ca_system_score_gemma":0.00048812904,"threshold_uncertainty_score":0.12567282},"labels":[],"label_agreement":null},{"id":"W2320655794","doi":"10.1016/j.foreco.2016.03.056","title":"Using forest structure to predict the distribution of treed boreal peatlands in Canada","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":42,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Peat; Environmental science; Boreal; Taiga; Larch; Black spruce; Physical geography; Atmospheric sciences; Forestry; Ecology; Geography; Geology; Biology","score_opus":0.005673004005915209,"score_gpt":0.19446380516147402,"score_spread":0.1887908011555588,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2320655794","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9979911,0.00013624706,0.00018247508,0.00007517922,0.0000034836291,0.000005651399,0.00097323704,0.000012051271,0.00062071293],"genre_scores_gemma":[0.99865425,0.00009254829,0.00019677788,0.000010769326,0.0000013351352,0.0000028031484,0.0006130185,0.0000034728932,0.00042501444],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979335,0.000016900029,0.000011364997,0.00004455313,0.000047536138,0.00008628814],"domain_scores_gemma":[0.9990951,0.00012170927,0.000088197565,0.000027883863,0.00042902847,0.00023811481],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00041798246,0.0002451167,0.0002618511,0.001162431,0.0011837013,0.0012292268,0.0006196656,0.00034490792,0.0011314093],"category_scores_gemma":[0.0013764879,0.00023310451,0.00032923208,0.0012277862,0.0004847899,0.00039536442,0.00056753715,0.00042198904,0.00018295199],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00007413883,0.000037059395,0.9827939,0.000015413776,0.000067584704,0.00006346791,0.00025054382,0.0075276415,0.00047227077,0.00024099226,0.0006484107,0.0078085028],"study_design_scores_gemma":[0.000011033394,0.00000931933,0.9765464,0.000025914524,0.000022106587,0.000028487659,0.000828539,0.021176044,0.00018454132,0.0001536336,0.0010015971,0.00001239268],"about_ca_topic_score_codex":0.99174213,"about_ca_topic_score_gemma":0.99700195,"teacher_disagreement_score":0.01283468,"about_ca_system_score_codex":0.01283468,"about_ca_system_score_gemma":0.014224425,"threshold_uncertainty_score":0.0931226},"labels":[],"label_agreement":null},{"id":"W2337711717","doi":"10.1016/j.foreco.2016.04.013","title":"The importance of large-tree retention for the persistence of old-growth epiphytic bryophyte Neckera pennata in selection harvest systems","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bryophyte Studies and Records","field":"Agricultural and Biological Sciences","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université de Moncton","funders":"Natural Sciences and Engineering Research Council of Canada; Kempe Foundation","keywords":"Bryophyte; Ecology; Clearcutting; Silviculture; Yellow birch; Epiphyte; Moss; Aceraceae; Forestry; Biology; Hardwood; Geography; Maple","score_opus":0.013816079241075177,"score_gpt":0.2062884545416444,"score_spread":0.19247237530056924,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2337711717","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99966884,0.00005701799,0.000068764755,0.0000075960857,6.202663e-7,0.0000010383345,0.000033367396,0.0000012116623,0.00016154734],"genre_scores_gemma":[0.99983644,0.000015281556,0.00003862196,0.0000035533817,9.947518e-7,8.662e-7,0.000030671657,8.0537086e-7,0.000072878094],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998553,0.000028094239,0.000014024251,0.00004672437,0.00002016409,0.000035678073],"domain_scores_gemma":[0.9987437,0.00032383247,0.0004187535,0.000101951286,0.0001445437,0.00026722153],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004287237,0.00010809779,0.00018130864,0.00039853627,0.00066741847,0.0006208636,0.00042067084,0.00021435038,0.0017014204],"category_scores_gemma":[0.0011048554,0.00012583208,0.000112683534,0.00021549343,0.00046355068,0.0007074953,0.00049884984,0.00026072506,0.00014218122],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016231168,0.00004885277,0.975518,0.000026322796,0.000041624313,0.000051696436,0.00029893604,0.00011913806,0.017104274,0.00008994796,0.000052447172,0.006486363],"study_design_scores_gemma":[8.608865e-7,0.000023177186,0.99939585,0.0000011570494,0.000007008713,0.000029435998,0.00013316999,0.00009698361,0.00025283417,0.000018319493,0.000039981027,0.0000011872429],"about_ca_topic_score_codex":0.007897139,"about_ca_topic_score_gemma":0.026831822,"teacher_disagreement_score":0.007897139,"about_ca_system_score_codex":0.0004107495,"about_ca_system_score_gemma":0.0003465409,"threshold_uncertainty_score":0.015702367},"labels":[],"label_agreement":null},{"id":"W2340953538","doi":"10.1016/j.foreco.2016.04.022","title":"Wood density is a poor predictor of competitive ability among individuals of the same species","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":31,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Fondo Nacional de Desarrollo Científico y Tecnológico; McGill University","keywords":"Intraspecific competition; Biology; Competition (biology); Nothofagus; Proxy (statistics); Interspecific competition; Ecology; Mathematics; Statistics","score_opus":0.005514812298327236,"score_gpt":0.18606946504691654,"score_spread":0.1805546527485893,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2340953538","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99766254,0.00019408553,0.00027250845,0.000105396044,0.000023559038,0.0000034679229,0.0001794883,0.0000071591294,0.0015517694],"genre_scores_gemma":[0.9994412,0.000058449856,0.00009717309,0.000025747151,0.000018975454,0.0000021462395,0.000120366276,0.0000024434157,0.0002334897],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99933976,0.00025654334,0.00006659513,0.00012420482,0.00011771954,0.00009515851],"domain_scores_gemma":[0.9911277,0.0044349353,0.0018010088,0.0005354133,0.00059697556,0.0015039312],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.001220225,0.0002965367,0.00049101067,0.0008583549,0.0007211489,0.0008595592,0.00060419465,0.0006696389,0.003500831],"category_scores_gemma":[0.004741384,0.0003021876,0.00044818397,0.0007066564,0.0005794126,0.0008557731,0.00046640393,0.0006207958,0.000735535],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00003397427,0.00003684262,0.9976572,0.00000584532,0.00010110337,0.000034828605,0.000029546254,0.0000713081,0.0002319967,0.000017787592,0.000096778334,0.001682925],"study_design_scores_gemma":[0.0000012362019,0.000046832192,0.9989317,0.000003466161,0.000024596571,0.00015072041,0.00011758117,0.00053044653,0.000040768915,0.000073455965,0.00007579565,0.0000035212083],"about_ca_topic_score_codex":0.005596967,"about_ca_topic_score_gemma":0.018119792,"teacher_disagreement_score":0.005596967,"about_ca_system_score_codex":0.00015184426,"about_ca_system_score_gemma":0.00024761172,"threshold_uncertainty_score":0.011711419},"labels":[],"label_agreement":null},{"id":"W2342783298","doi":"10.1016/j.foreco.2016.04.038","title":"The legacy of disturbance on individual tree and stand-level aboveground biomass accumulation and stocks in primary mountain Picea abies forests","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":39,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Seventh Framework Programme; Česká Zemědělská Univerzita v Praze; Grantová Agentura České Republiky; Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung; SCIEX","keywords":"Disturbance (geology); Biomass (ecology); Picea abies; Canopy; Environmental science; Ecology; Old-growth forest; Ecosystem; Forest ecology; Forest dynamics; Competition (biology); Stand development; Taiga; Biology; Agroforestry","score_opus":0.01638450066615981,"score_gpt":0.2380107414608055,"score_spread":0.22162624079464568,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2342783298","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999668,0.00009411308,0.000016954908,0.000007170634,0.000001763488,5.925496e-7,0.000058099227,0.0000013249055,0.00015192248],"genre_scores_gemma":[0.9996784,0.000037925234,0.000015175178,0.0000071520367,0.000004522371,9.67133e-7,0.00010230999,0.0000011407149,0.00015238185],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984777,0.00003199172,0.000014150214,0.000038324764,0.000023075865,0.000044550496],"domain_scores_gemma":[0.9987197,0.00037314137,0.00028580506,0.00015344493,0.00014762186,0.00032031216],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004453742,0.00020000753,0.00026134675,0.0007297995,0.0005250979,0.0010792947,0.0004004576,0.00032241622,0.0013722928],"category_scores_gemma":[0.0013392268,0.00026334578,0.00023810045,0.0007016908,0.0007424619,0.0006315861,0.000848309,0.00029107492,0.00019701794],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017873471,0.00004582003,0.99433917,0.000011450596,0.00012060383,0.000105200146,0.0002517229,0.00022465289,0.0014234835,0.000060199665,0.000052771844,0.0031862818],"study_design_scores_gemma":[4.322458e-7,0.000004354293,0.9998481,7.0719864e-7,0.000003972297,0.000014173057,0.000045855457,0.000046326484,0.0000116666815,0.000008543441,0.000015168481,6.546047e-7],"about_ca_topic_score_codex":0.03221076,"about_ca_topic_score_gemma":0.09890901,"teacher_disagreement_score":0.03221076,"about_ca_system_score_codex":0.0005662976,"about_ca_system_score_gemma":0.00028588212,"threshold_uncertainty_score":0.06404656},"labels":[],"label_agreement":null},{"id":"W2345920995","doi":"10.1016/j.foreco.2016.04.020","title":"Significant effects of biodiversity on forest biomass during the succession of subtropical forest in south China","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":88,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"National Natural Science Foundation of China","keywords":"Biodiversity; Phylogenetic diversity; Biomass (ecology); Ecological succession; Ecology; Species richness; Species diversity; Biology; Tropical and subtropical moist broadleaf forests; Diversity index; Forest ecology; Gamma diversity; Alpha diversity; Ecosystem; Subtropics; Phylogenetic tree","score_opus":0.0036233527128747603,"score_gpt":0.1846475676755192,"score_spread":0.18102421496264445,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2345920995","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998037,0.000040762967,0.000008353508,0.000012608921,0.0000011468478,6.957496e-7,0.000023605773,5.8703426e-7,0.00010849681],"genre_scores_gemma":[0.99982685,0.000024420204,0.000010503711,0.000005071044,0.0000018349998,0.0000010991771,0.000046490713,4.625535e-7,0.0000833262],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977833,0.000037465303,0.000019369647,0.00003925858,0.000029838113,0.0000957055],"domain_scores_gemma":[0.99942905,0.00007825911,0.00015057158,0.000029417808,0.000068222944,0.0002443554],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00041360778,0.00028308659,0.00024806094,0.0011416211,0.00079387025,0.0005149755,0.00038509685,0.00029804994,0.0011534315],"category_scores_gemma":[0.0005855762,0.0002345125,0.0004355519,0.0009090261,0.00080136466,0.00048046894,0.00080496026,0.00029448845,0.000092450224],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014297731,0.00003592028,0.99397355,0.0000200337,0.00007205584,0.00023440954,0.00072235934,0.00023621875,0.002527227,0.0000890208,0.000053203763,0.0018931313],"study_design_scores_gemma":[7.5596944e-7,0.0000072738635,0.9996125,0.0000010963809,0.0000045831866,0.000015335985,0.0002278504,0.000079464866,0.00001772411,0.000011605236,0.000020562347,0.0000011514402],"about_ca_topic_score_codex":0.042265736,"about_ca_topic_score_gemma":0.15142755,"teacher_disagreement_score":0.042265736,"about_ca_system_score_codex":0.001174486,"about_ca_system_score_gemma":0.0009503515,"threshold_uncertainty_score":0.08403945},"labels":[],"label_agreement":null},{"id":"W2346308355","doi":"10.1016/j.foreco.2016.04.047","title":"Response of sugar maple (Acer saccharum, Marsh.) tree crown structure to competition in pure versus mixed stands","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":87,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université de Sherbrooke; Université du Québec à Rimouski","funders":"","keywords":"Maple; Competition (biology); Canopy; Crown (dentistry); Marsh; Forest structure; Stand development; Yellow birch; Aceraceae; Ecology; Environmental science; Forestry; Biology; Geography; Wetland","score_opus":0.006984610630157322,"score_gpt":0.2199496530176828,"score_spread":0.21296504238752548,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2346308355","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99988925,0.000010295389,0.000007904792,0.0000024517558,6.0750233e-7,3.608874e-7,0.00001230345,4.1944153e-7,0.00007636214],"genre_scores_gemma":[0.9997125,0.0000057635616,0.000015038785,0.0000122444735,0.0000010388295,0.0000012194033,0.00005079561,8.609622e-7,0.00020046532],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99988866,0.000022165763,0.000006264089,0.000028005243,0.000014628712,0.00004017285],"domain_scores_gemma":[0.99919754,0.00023786866,0.00009448561,0.000023793526,0.00007286841,0.0003734356],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022803503,0.00015109625,0.0002224908,0.00025856568,0.0002251854,0.00042372194,0.00021069816,0.0002709618,0.0016975114],"category_scores_gemma":[0.0005962333,0.00014985484,0.00010979634,0.0001088801,0.00023096782,0.00023644535,0.0003307472,0.00024368176,0.00019613683],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.006420776,0.00068890286,0.732808,0.00006594569,0.00024166325,0.0004023962,0.0007482978,0.0013708415,0.25067008,0.00025351404,0.0005028104,0.005826679],"study_design_scores_gemma":[0.000011457253,0.0002545567,0.9977812,0.000001357971,0.000014302281,0.000069092916,0.00024406167,0.00078011997,0.00074560667,0.00003411207,0.00005942565,0.00000465041],"about_ca_topic_score_codex":0.007920043,"about_ca_topic_score_gemma":0.026826942,"teacher_disagreement_score":0.007920043,"about_ca_system_score_codex":0.00029211325,"about_ca_system_score_gemma":0.00017642589,"threshold_uncertainty_score":0},"labels":[{"model":"gpt","categories":[],"domain":null,"study_design":"observational","genre":"empirical","about_ca_system":false,"about_ca_topic":false,"confidence":"low"},{"model":"grok","categories":[],"domain":null,"study_design":"observational","genre":"empirical","about_ca_system":false,"about_ca_topic":false,"confidence":"low"},{"model":"opus","categories":[],"domain":null,"study_design":"observational","genre":"empirical","about_ca_system":false,"about_ca_topic":false,"confidence":"medium"}],"label_agreement":"agree"},{"id":"W2410616403","doi":"10.1016/j.foreco.2016.05.041","title":"Variation in total and volatile carbon concentration among the major tree species of the boreal forest","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":41,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Lakehead University","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Bark (sound); Taiga; Botany; Boreal; Environmental science; Woody plant; Biology; Animal science; Ecology","score_opus":0.0035361816101403655,"score_gpt":0.17069999686801104,"score_spread":0.1671638152578707,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2410616403","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99962497,0.00003868663,0.00003656477,0.0000036376275,0.0000012095413,0.0000014761764,0.000112550115,0.0000020286939,0.0001788722],"genre_scores_gemma":[0.9996346,0.000012498774,0.000057789443,0.000004438354,0.0000018119365,0.0000019387437,0.000178258,0.0000015498373,0.00010714666],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999838,0.000039118528,0.00001071677,0.00005675971,0.000027686941,0.00002768166],"domain_scores_gemma":[0.99954635,0.000099425255,0.00012832224,0.000026787266,0.00008238179,0.00011670085],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025028936,0.00023275295,0.0002252348,0.0007805839,0.00037359647,0.0004577442,0.00025331863,0.00021021494,0.0007545336],"category_scores_gemma":[0.00039602758,0.00015386111,0.0001668999,0.00047228235,0.00041506128,0.0003584575,0.0002569055,0.00018973569,0.00008611152],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00047525132,0.000070143906,0.9713633,0.0000168805,0.00013469743,0.00006989251,0.00041651973,0.00014987713,0.023838839,0.00007861748,0.0000930871,0.003292885],"study_design_scores_gemma":[0.0000011170405,0.000017242332,0.9996897,3.8823637e-7,0.0000046782056,0.000040848132,0.00006821837,0.00006763322,0.000069791975,0.000006521101,0.00003224891,0.0000017031452],"about_ca_topic_score_codex":0.013484879,"about_ca_topic_score_gemma":0.044054825,"teacher_disagreement_score":0.013484879,"about_ca_system_score_codex":0.00030572497,"about_ca_system_score_gemma":0.00013908288,"threshold_uncertainty_score":0.026812732},"labels":[],"label_agreement":null},{"id":"W2413091006","doi":"10.1016/j.foreco.2016.05.033","title":"Site preparation and fertilization of wet forests alter soil bacterial and fungal abundance, community profiles and CO2 fluxes","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; Shell Canada","keywords":"Microbial population biology; Community structure; Abundance (ecology); Environmental science; Ecology; Human fertilization; Terminal restriction fragment length polymorphism; Agronomy; Ecosystem; Biology; Restriction fragment length polymorphism","score_opus":0.007038285962251297,"score_gpt":0.2188947951476355,"score_spread":0.2118565091853842,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2413091006","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9985819,0.00015971114,0.00035171484,0.000030810075,0.000020091335,0.000018401854,0.00014529887,0.000015829493,0.0006762424],"genre_scores_gemma":[0.996262,0.00009192106,0.0009343167,0.00010667982,0.000010915651,0.000045482488,0.00028689727,0.000047840567,0.0022139004],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.999589,0.000084170926,0.000039121023,0.00013007935,0.000047376412,0.00011020421],"domain_scores_gemma":[0.99880433,0.00036273868,0.0002662307,0.000113088376,0.00010947436,0.00034414945],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029453702,0.00032324967,0.0004847312,0.0002261101,0.0004700018,0.0007110254,0.00054045726,0.0004854549,0.002643265],"category_scores_gemma":[0.00087715435,0.00044180301,0.00028472228,0.00024126064,0.00047180222,0.0005044213,0.00062255416,0.0005388293,0.00023719344],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.007209535,0.00064898754,0.03670856,0.00014383567,0.0000890457,0.00030023794,0.00024589754,0.00032972073,0.94453895,0.00020037156,0.00023917225,0.009345648],"study_design_scores_gemma":[0.00020441542,0.0032958572,0.8134242,0.000029787558,0.00019231348,0.00029911642,0.00081817503,0.0020601142,0.175975,0.0005388285,0.0031145117,0.000047725927],"about_ca_topic_score_codex":0.008079467,"about_ca_topic_score_gemma":0.02551815,"teacher_disagreement_score":0.008079467,"about_ca_system_score_codex":0.0007875515,"about_ca_system_score_gemma":0.0008614464,"threshold_uncertainty_score":0.016064882},"labels":[],"label_agreement":null},{"id":"W2518666858","doi":"10.1016/j.foreco.2016.08.043","title":"A belowground perspective on the drought sensitivity of forests: Towards improved understanding and simulation","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":148,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"Oak Ridge National Laboratory; Office of Science; Division of Environmental Biology; U.S. Department of Energy; Biological and Environmental Research; U.S. Forest Service; National Science Foundation","keywords":"Biome; Temperate rainforest; Forest ecology; Temperate climate; Environmental science; Ecosystem; Ecology; Temperate forest; Perspective (graphical); Agroforestry; Soil water; Biology; Computer science","score_opus":0.012476738001978212,"score_gpt":0.22128360430237526,"score_spread":0.20880686630039705,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2518666858","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.49448827,0.0022185605,0.4576508,0.004964226,0.0002029357,0.000036431516,0.0007014578,0.00031170194,0.03942554],"genre_scores_gemma":[0.98736507,0.0008387769,0.009456654,0.00015629572,0.00006365193,0.00001544332,0.000099906836,0.00004571574,0.0019584105],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999095,0.000035370012,0.000005404422,0.000019964762,0.00001339365,0.000016471911],"domain_scores_gemma":[0.999736,0.00015165789,0.00002010002,0.000025371928,0.000027028298,0.00003978776],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027311378,0.0003283669,0.00056652515,0.00038936717,0.00043150704,0.0014740524,0.000994684,0.001016611,0.0034562112],"category_scores_gemma":[0.0009535908,0.00025109676,0.00040667038,0.00047175118,0.0007743189,0.0024656397,0.00079476903,0.0013009909,0.0001489532],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000019747013,0.00006062245,0.0020739494,0.000042658143,0.000025754567,0.000062323714,0.000081159094,0.92868096,0.0025933431,0.05682513,0.00045007304,0.009084307],"study_design_scores_gemma":[0.00000431119,0.000010900857,0.001104667,0.000011487563,0.00000893014,0.0000108218865,0.00004931087,0.94157207,0.0003747081,0.05577468,0.0010683712,0.000009586947],"about_ca_topic_score_codex":0.015525708,"about_ca_topic_score_gemma":0.009887093,"teacher_disagreement_score":0.015525708,"about_ca_system_score_codex":0.0005797609,"about_ca_system_score_gemma":0.00069385464,"threshold_uncertainty_score":0.030870676},"labels":[],"label_agreement":null},{"id":"W2542754535","doi":"10.1016/j.foreco.2016.10.044","title":"Assessing the long-term ecological effects of riparian management practices on headwater streams in a coastal temperate rainforest","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Hydrology and Sediment Transport Processes","field":"Environmental Science","cited_by":32,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Riparian zone; Logging; Basal area; Riparian forest; Environmental science; Species richness; Temperate rainforest; Thinning; STREAMS; Forest management; Ecology; Litter; Temperate climate; Rainforest; Temperate forest; Clearcutting; Agroforestry; Ecosystem; Biology; Habitat","score_opus":0.010255051479209824,"score_gpt":0.2590432514979744,"score_spread":0.2487882000187646,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2542754535","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998964,0.000011689151,0.000016937898,0.0000054768134,5.7955543e-7,0.0000015062027,0.000018484721,4.0454972e-7,0.000048507747],"genre_scores_gemma":[0.99963427,0.000022684573,0.00008187342,0.000009360949,0.0000020387204,0.0000044086783,0.0000842442,5.319035e-7,0.00016068072],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995747,0.00013664088,0.000036613175,0.000090092595,0.000059234073,0.000102698694],"domain_scores_gemma":[0.9981863,0.0005488809,0.0004999333,0.00010743118,0.00024492005,0.00041256484],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010499195,0.00022984264,0.0001909921,0.00034021618,0.0004299296,0.0007715961,0.0005071169,0.0004762636,0.0004972426],"category_scores_gemma":[0.0022527012,0.00014042627,0.00034559946,0.00046761034,0.00056940835,0.0005846652,0.0006717898,0.0003254641,0.00008146306],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002866966,0.00041970913,0.9916215,0.000012158539,0.00012509602,0.0001298313,0.00030807464,0.0007400062,0.0022289532,0.000030808977,0.000041215488,0.004056027],"study_design_scores_gemma":[0.0000029099044,0.00020114708,0.99854434,0.0000020075934,0.000019613693,0.000016079148,0.0004313474,0.00058051915,0.00013742098,0.000016792521,0.000045466888,0.000002287066],"about_ca_topic_score_codex":0.04059442,"about_ca_topic_score_gemma":0.16981679,"teacher_disagreement_score":0.04059442,"about_ca_system_score_codex":0.0013906128,"about_ca_system_score_gemma":0.0009848662,"threshold_uncertainty_score":0.08071631},"labels":[],"label_agreement":null},{"id":"W2558146934","doi":"10.1016/j.foreco.2016.11.032","title":"Combinations of aggregated and dispersed retention improve conservation of saproxylic beetles in boreal white spruce stands","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":24,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Natural Resources Canada; University of Alberta","funders":"Natural Resources Canada; University of Alberta; Government of Alberta; Natural Sciences and Engineering Research Council of Canada; Northwestern University","keywords":"Biodiversity; Taiga; Silviculture; Ecology; Forest management; Boreal; Biology; Endangered species; Ecosystem; Agroforestry; Environmental science; Habitat","score_opus":0.010680211918355038,"score_gpt":0.18999811794264487,"score_spread":0.17931790602428985,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2558146934","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996464,0.000066664055,0.00007633252,0.0000090282565,0.0000018310695,0.0000020252903,0.000007546823,0.000004075887,0.00018616261],"genre_scores_gemma":[0.9994863,0.000024787643,0.0003152237,0.000011804413,0.000004442484,0.0000032918008,0.00002140971,0.0000013257554,0.00013142696],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99947494,0.00012216019,0.00003617311,0.00013445017,0.000112972695,0.00011932591],"domain_scores_gemma":[0.9992005,0.00012943667,0.00019046743,0.00006866742,0.000071606504,0.00033936786],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00073925377,0.00030437147,0.00043834926,0.000368947,0.00049428485,0.00063999,0.0004938493,0.0002765697,0.0010923201],"category_scores_gemma":[0.00084710034,0.00015845285,0.0002051512,0.00019086721,0.00031243704,0.00063017104,0.00060919113,0.00031021895,0.00010845483],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0058204327,0.005658459,0.66374326,0.00037687257,0.0019410158,0.0002156496,0.0008477757,0.0095563745,0.14378819,0.0004221441,0.001025571,0.16660416],"study_design_scores_gemma":[0.00013484106,0.004831145,0.9819708,0.000028025419,0.00043875354,0.00016937152,0.0007368425,0.0068388632,0.0038462756,0.00034976413,0.00062846864,0.000026897193],"about_ca_topic_score_codex":0.0035521176,"about_ca_topic_score_gemma":0.027131667,"teacher_disagreement_score":0.0035521176,"about_ca_system_score_codex":0.00032854264,"about_ca_system_score_gemma":0.00030831163,"threshold_uncertainty_score":0.0070628524},"labels":[],"label_agreement":null},{"id":"W2561710113","doi":"10.1016/j.foreco.2016.11.019","title":"Survival and growth as measures of shade tolerance of planted western redcedar, western hemlock and amabilis fir seedlings in hemlock-fir forests of northern Vancouver Island","year":2016,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":11,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"","keywords":"Tsuga; Western Hemlock; Thuja; Shade tolerance; Sowing; Canopy; Biology; Seedling; Biomass (ecology); Botany; Agronomy; Forestry; Horticulture; Geography","score_opus":0.006770725276994356,"score_gpt":0.20474838990392802,"score_spread":0.19797766462693367,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2561710113","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99972504,0.000018797535,0.000011693079,0.0000027919664,5.931217e-7,0.0000010149492,0.0000744811,9.507208e-7,0.00016460213],"genre_scores_gemma":[0.99914753,0.00001667343,0.000033381944,0.000007817184,5.589373e-7,0.0000024700073,0.00019576856,0.000001018639,0.00059473066],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998838,0.000019403527,0.0000066599837,0.000030630577,0.000027364245,0.000032137636],"domain_scores_gemma":[0.9991073,0.00020608197,0.00013575552,0.000036223442,0.00016270383,0.00035187908],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002552139,0.00020915832,0.0001608167,0.00035767682,0.0004406046,0.000534634,0.0003079726,0.00022316856,0.00083894894],"category_scores_gemma":[0.0006723208,0.00018894026,0.000109311506,0.00025948806,0.00034462215,0.00027155175,0.0002531028,0.00043153233,0.00017174782],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00075595675,0.00013192426,0.9753693,0.00001755076,0.000053887296,0.00013920339,0.0010491572,0.0003452813,0.018613346,0.00006445246,0.00014274743,0.0033172132],"study_design_scores_gemma":[0.0000025196891,0.000032981072,0.9992561,0.0000011846319,0.000004838456,0.000025117468,0.00027317627,0.00014878408,0.00020494289,0.00000663913,0.00004201,0.0000017180591],"about_ca_topic_score_codex":0.27977246,"about_ca_topic_score_gemma":0.6772916,"teacher_disagreement_score":0.72022754,"about_ca_system_score_codex":0.0014774842,"about_ca_system_score_gemma":0.0005067139,"threshold_uncertainty_score":0.556288},"labels":[],"label_agreement":null},{"id":"W2583693170","doi":"10.1016/j.foreco.2015.07.030","title":"Conflict over habitat models and statistics for the northern spotted owl: Whither the future?","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Provenance; Biology; Trait; Bark (sound); Ecology; Habitat; Ecosystem; Tree (set theory); Mathematics","score_opus":0.027949490063668793,"score_gpt":0.24585969357401427,"score_spread":0.21791020351034548,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2583693170","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.7063739,0.006780263,0.17963322,0.093013845,0.0011611118,0.000079350684,0.004118254,0.00065426034,0.008185838],"genre_scores_gemma":[0.96308357,0.0010292669,0.03058467,0.0015221504,0.0006889706,0.00007493837,0.0015488894,0.00021891503,0.0012486967],"study_design_codex":"observational","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.9878735,0.009567737,0.000517277,0.00057426264,0.001134658,0.00033262724],"domain_scores_gemma":[0.81021464,0.15936737,0.008220072,0.011200233,0.007050808,0.0039469306],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.04406834,0.0005393578,0.0009434578,0.0009488965,0.000846548,0.0036276267,0.0032412214,0.0013799992,0.0049139066],"category_scores_gemma":[0.19250126,0.00045266462,0.0006810393,0.0020370423,0.0021649522,0.009457073,0.0018820749,0.0037092965,0.00044315867],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0024177374,0.0005218126,0.34552726,0.00020578351,0.0006867004,0.00036972688,0.0013480845,0.30960244,0.0003558478,0.09366398,0.045478877,0.19982176],"study_design_scores_gemma":[0.00021652163,0.00018553293,0.030645726,0.00018536545,0.00012967823,0.00023725475,0.0016384705,0.7514003,0.00038763898,0.20728748,0.007565644,0.00012047761],"about_ca_topic_score_codex":0.02596168,"about_ca_topic_score_gemma":0.024660273,"teacher_disagreement_score":0.04406834,"about_ca_system_score_codex":0.0018619851,"about_ca_system_score_gemma":0.0024663212,"threshold_uncertainty_score":0.23305845},"labels":[],"label_agreement":null},{"id":"W2591149264","doi":"10.1016/j.foreco.2017.02.021","title":"Old-growth characteristics 20 years after thinning and repeated fertilization of lodgepole pine forest: Tree growth, structural attributes, and red-backed voles","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Thinning; Seral community; Pinus contorta; Stand development; Crown (dentistry); Old-growth forest; Human fertilization; Silviculture; Crop; Biology; Forestry; Basal area; Agronomy; Ecology; Geography; Ecological succession","score_opus":0.010759598411938498,"score_gpt":0.19521128788515468,"score_spread":0.1844516894732162,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2591149264","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99966,0.00004389412,0.000014199502,0.0000046598248,0.000003960305,0.0000019068899,0.00015663526,0.0000014230717,0.000113378315],"genre_scores_gemma":[0.9988335,0.0000319646,0.000016093332,0.00001176107,0.0000054631705,0.0000036892409,0.0005758121,0.0000013280178,0.00052039884],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981374,0.000025862835,0.000014982228,0.000049780185,0.000028842505,0.000066728324],"domain_scores_gemma":[0.9992054,0.00012598198,0.00021484752,0.000057549085,0.00009468011,0.00030144906],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00058669713,0.00033962022,0.0002802922,0.00071833056,0.00037274038,0.0004522857,0.00037447168,0.0005829467,0.0008871817],"category_scores_gemma":[0.0007175756,0.00016624712,0.0004892451,0.00035932774,0.0003770262,0.00057842326,0.00027310778,0.00049596315,0.00028526734],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00343299,0.0017777019,0.9709401,0.00001712347,0.00014595217,0.0011582706,0.00041308295,0.00032676445,0.016878974,0.000045931232,0.00021173205,0.004651325],"study_design_scores_gemma":[0.0000062164368,0.00027527194,0.9989287,0.0000014935321,0.000018924658,0.00012286515,0.00009282073,0.00007465279,0.0003714589,0.000011640645,0.00009127141,0.000004776787],"about_ca_topic_score_codex":0.0073303874,"about_ca_topic_score_gemma":0.01578282,"teacher_disagreement_score":0.0073303874,"about_ca_system_score_codex":0.00043491318,"about_ca_system_score_gemma":0.0002672651,"threshold_uncertainty_score":0.014575422},"labels":[],"label_agreement":null},{"id":"W2593191959","doi":"10.1016/j.foreco.2017.02.006","title":"Uneven-aged silviculture can reduce negative effects of forest management on beetles","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":37,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"Sveriges Lantbruksuniversitet; Svenska Forskningsrådet Formas; Stiftelsen Oscar och Lili Lamms Minne","keywords":"Silviculture; Chronosequence; Species richness; Felling; Clearcutting; Forest management; Ecology; Biodiversity; Thinning; Stand development; Agroforestry; Geography; Ecological succession; Biology; Forestry","score_opus":0.010061252520803676,"score_gpt":0.20666351529621452,"score_spread":0.19660226277541085,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2593191959","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990343,0.00014688197,0.00006856837,0.000011363389,0.0000058146543,0.0000042570546,0.000018169832,0.0000056324784,0.00070504827],"genre_scores_gemma":[0.99931455,0.00008515093,0.00020434948,0.000023287428,0.000005703636,0.0000051211678,0.00004470962,0.0000021634978,0.00031502018],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981433,0.000036950987,0.000010124485,0.000031653817,0.000031304528,0.00007564582],"domain_scores_gemma":[0.99938524,0.000058552247,0.00017336302,0.00004135489,0.000054249773,0.0002872614],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031303873,0.0002954626,0.00023143737,0.00039791007,0.0004616567,0.0004959695,0.00029995388,0.00015921965,0.0022583941],"category_scores_gemma":[0.0008616089,0.00008933273,0.00014392241,0.00020948364,0.0002176409,0.0003079321,0.0004985865,0.0001639067,0.00022734707],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.006062645,0.00560413,0.6678579,0.00042658782,0.0006587196,0.00050741964,0.00087625603,0.005645989,0.14052646,0.0007354333,0.0016407989,0.1694577],"study_design_scores_gemma":[0.000029379951,0.0009437765,0.9948671,0.000021418691,0.00008666433,0.000050092076,0.0004345116,0.0009958779,0.0013503466,0.00029351626,0.0009214173,0.0000059418535],"about_ca_topic_score_codex":0.0043478236,"about_ca_topic_score_gemma":0.03663814,"teacher_disagreement_score":0.0043478236,"about_ca_system_score_codex":0.00042157248,"about_ca_system_score_gemma":0.0004738848,"threshold_uncertainty_score":0.008645058},"labels":[],"label_agreement":null},{"id":"W2594319027","doi":"10.1016/j.foreco.2017.02.008","title":"Selective breeding of lodgepole pine increases growth and maintains climatic adaptation","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":38,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta; University of British Columbia","funders":"Genome Alberta; Alberta Innovates; Genome British Columbia","keywords":"Biology; Local adaptation; Temperate climate; Pinus contorta; Adaptation (eye); Range (aeronautics); Phenology; Ecology; Tree breeding; Woody plant; Population","score_opus":0.017757176602924838,"score_gpt":0.23727999187600116,"score_spread":0.21952281527307632,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2594319027","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99816173,0.00023793956,0.0002696769,0.00004977952,0.0000070432357,0.0000025283523,0.00003374044,0.000022174883,0.0012153633],"genre_scores_gemma":[0.999025,0.000096893,0.00022622876,0.00006480401,0.000010732193,0.000002629528,0.000067391156,0.0000120987825,0.00049435225],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99985766,0.00003408039,0.0000051809056,0.00004533679,0.000021858843,0.000035917612],"domain_scores_gemma":[0.99959093,0.00006845842,0.00011766999,0.00004410323,0.00005200433,0.00012691808],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030701075,0.00013915624,0.0001697568,0.000465278,0.00033729462,0.00048649023,0.0003313415,0.00018308076,0.0011432574],"category_scores_gemma":[0.0005223505,0.0001413325,0.00009386004,0.00022096529,0.0002612212,0.00022463259,0.0003663466,0.00023600887,0.00016856562],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005128577,0.0004329803,0.43601888,0.00010978126,0.00016857052,0.00034676382,0.0003742391,0.0008853172,0.49866065,0.0005974475,0.0013987635,0.060493734],"study_design_scores_gemma":[0.000009951643,0.00008705532,0.9953891,0.0000032848163,0.000026333357,0.00013920786,0.00010848726,0.00039258166,0.0025867259,0.00013836553,0.0011147311,0.000004304973],"about_ca_topic_score_codex":0.0035307673,"about_ca_topic_score_gemma":0.024584474,"teacher_disagreement_score":0.0035307673,"about_ca_system_score_codex":0.00039057835,"about_ca_system_score_gemma":0.0002464374,"threshold_uncertainty_score":0.007020414},"labels":[],"label_agreement":null},{"id":"W2607155652","doi":"10.1016/j.foreco.2017.04.008","title":"Predicting the risk of mountain pine beetle spread to eastern pine forests: Considering uncertainty in uncertain times","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":100,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia; Natural Resources Canada","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Mountain pine beetle; Pine forest; Ecology; Environmental science; Forestry; Geography; Agroforestry; Biology","score_opus":0.010231123394588823,"score_gpt":0.23632240344920435,"score_spread":0.22609128005461554,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2607155652","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9747756,0.00059613737,0.021531196,0.0012426414,0.000033013275,0.000015261101,0.00043603138,0.000037497775,0.001332651],"genre_scores_gemma":[0.9983291,0.00013972278,0.0009850508,0.00002284166,0.000028304468,0.00000460594,0.00012832398,0.000004872206,0.00035715598],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9991404,0.0003533177,0.000067396766,0.00018356332,0.00007982502,0.00017555636],"domain_scores_gemma":[0.98458904,0.012485667,0.0018065383,0.00021597082,0.00031699523,0.0005857046],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00385993,0.00069691375,0.00086115865,0.0013946831,0.0005706773,0.002365506,0.0010528904,0.0017685782,0.0012167871],"category_scores_gemma":[0.013799387,0.00084280374,0.0008651014,0.0009505343,0.00086287374,0.0028224036,0.0012039033,0.0015432304,0.00012438763],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016825912,0.000037805214,0.046340324,0.000019131581,0.00011389022,0.00016702204,0.00006075402,0.9473302,0.00014327561,0.0017491486,0.00024239089,0.003627837],"study_design_scores_gemma":[0.0000062737217,0.0000407962,0.008074397,0.000007336011,0.00003869467,0.000049194776,0.0001007829,0.9881485,0.00008108821,0.0033504143,0.00008589416,0.000016721566],"about_ca_topic_score_codex":0.021709148,"about_ca_topic_score_gemma":0.021141078,"teacher_disagreement_score":0.021709148,"about_ca_system_score_codex":0.0014948843,"about_ca_system_score_gemma":0.00073767744,"threshold_uncertainty_score":0.043165565},"labels":[],"label_agreement":null},{"id":"W2623955537","doi":"10.1016/j.foreco.2017.05.057","title":"Five decades of balsam fir stand development after spruce budworm-related mortality","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"Canadian Forest Service; Northwestern University","keywords":"Spruce budworm; Balsam; Choristoneura fumiferana; Abies balsamea; Thinning; Stand development; Stocking; Forestry; Outbreak; Competition (biology); Biology; Ecology; Geography; Tortricidae; Botany; Lepidoptera genitalia","score_opus":0.006307930074054839,"score_gpt":0.22802106835706337,"score_spread":0.22171313828300854,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2623955537","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9976847,0.00049913133,0.00008594076,0.00012660188,0.000033178614,0.0000047590465,0.0005962417,0.000011693031,0.0009576387],"genre_scores_gemma":[0.9986084,0.000096482,0.000022902848,0.000037194,0.000010570972,0.0000024343908,0.0006012754,0.0000014527792,0.0006193156],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977833,0.000020762827,0.000017502889,0.000042969954,0.000028449875,0.00011189554],"domain_scores_gemma":[0.99905795,0.00012799597,0.00032085486,0.0000580928,0.00019984708,0.00023526822],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007453258,0.00017448727,0.00019583224,0.0006106031,0.0004728436,0.00069928286,0.00027276663,0.0007126752,0.0026606242],"category_scores_gemma":[0.0011884329,0.00010919077,0.0003883187,0.00028183998,0.00020051298,0.0004469414,0.000542401,0.0004942693,0.00042376234],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016423239,0.00031557286,0.9751848,0.00004376699,0.00018889147,0.00058931415,0.0002950025,0.0003496411,0.0059005986,0.00022646706,0.00082725007,0.014436285],"study_design_scores_gemma":[0.0000064957717,0.00015702898,0.99834085,0.000011956763,0.00004158497,0.000078726334,0.0002017219,0.00012712242,0.000496349,0.000040373823,0.0004934487,0.000004299536],"about_ca_topic_score_codex":0.011722229,"about_ca_topic_score_gemma":0.024079327,"teacher_disagreement_score":0.011722229,"about_ca_system_score_codex":0.0008342989,"about_ca_system_score_gemma":0.0004712487,"threshold_uncertainty_score":0.023308039},"labels":[],"label_agreement":null},{"id":"W2637988653","doi":"10.1016/j.foreco.2017.06.015","title":"Population dynamics and the influence of blight on American chestnut at its northern range limit: Lessons for conservation","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant and Fungal Interactions Research","field":"Biochemistry, Genetics and Molecular Biology","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Guelph","funders":"","keywords":"Chestnut blight; Blight; Population; Range (aeronautics); Biology; Ecology; Geography; Demography; Agronomy; Botany","score_opus":0.016372514560236917,"score_gpt":0.29546979546600194,"score_spread":0.279097280905765,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2637988653","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99559814,0.00037286335,0.00027905355,0.00076551584,0.0000060479283,0.0000020782481,0.000045040655,0.000008365361,0.0029228628],"genre_scores_gemma":[0.99949694,0.00013730858,0.000053843116,0.000043373424,0.000007899137,0.00000101287,0.000016838543,0.0000019111937,0.00024091007],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998276,0.00005386047,0.000005684989,0.000045295965,0.000021590846,0.000045893674],"domain_scores_gemma":[0.9991467,0.00028044696,0.00020311798,0.00007396283,0.00012310004,0.00017264098],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000646637,0.00010308876,0.00018323863,0.00044975211,0.0004860038,0.00081671745,0.00042710933,0.00033921868,0.0024585568],"category_scores_gemma":[0.0016901499,0.00012766261,0.00013117668,0.000274133,0.0011064316,0.0008274608,0.00041906445,0.0005534788,0.00017941331],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022594984,0.00014039422,0.93064,0.000042857486,0.00007353196,0.00030273403,0.0017788652,0.0022200104,0.015071363,0.0038665822,0.0016826955,0.043955084],"study_design_scores_gemma":[0.000003949607,0.00003328288,0.9931062,0.000012667295,0.000013844667,0.00008235415,0.0018234635,0.0023974096,0.00024507777,0.0010935188,0.0011780848,0.000010114631],"about_ca_topic_score_codex":0.060731485,"about_ca_topic_score_gemma":0.12799491,"teacher_disagreement_score":0.060731485,"about_ca_system_score_codex":0.0009755619,"about_ca_system_score_gemma":0.00047443033,"threshold_uncertainty_score":0.12075597},"labels":[],"label_agreement":null},{"id":"W264682433","doi":"","title":"Special Issue: Ecology of northern forest soils. Selected papers from the International forest soils conference, held Prince George, BC, Canada, 13-18 June 1998.","year":2000,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"George (robot); Soil water; Ecology; Forestry; Geography; Forest ecology; Environmental science; Biology; Ecosystem; History","score_opus":0.008294207801974159,"score_gpt":0.1772643150454782,"score_spread":0.16897010724350406,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W264682433","genre_codex":"editorial","genre_gemma":"editorial","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"editorial","genre_consensus":"editorial","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0030144702,0.14286083,0.0011901365,0.042982403,0.67613894,0.0005547995,0.0087473085,0.0006488206,0.1238623],"genre_scores_gemma":[0.0067381114,0.08611775,0.00073230953,0.003724142,0.21786502,0.00019094328,0.0087709315,0.00026462562,0.6755962],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.9996635,0.000024174093,0.000030305957,0.000049867816,0.00016365162,0.00006859219],"domain_scores_gemma":[0.99662054,0.00035530358,0.0002083146,0.000098353186,0.0018121528,0.0009053167],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010760209,0.002611065,0.0029348163,0.0033119284,0.0016067305,0.0038808417,0.0020587496,0.0016846121,0.17652439],"category_scores_gemma":[0.0017568106,0.0005114916,0.0007492561,0.003904178,0.00082460314,0.0022472132,0.001124804,0.0018186537,0.041168567],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00005385599,0.00003501503,0.00019433186,0.0002632725,0.000005949209,0.000040395094,0.000020337553,0.00004649766,0.00022692584,0.00013439066,0.9818749,0.017104106],"study_design_scores_gemma":[0.000027325814,0.00006175869,0.005485049,0.0002687951,0.000021379414,0.00012676544,0.00013429421,0.00007143653,0.00017548072,0.0003955447,0.99322176,0.000010422854],"about_ca_topic_score_codex":0.034327827,"about_ca_topic_score_gemma":0.088982694,"teacher_disagreement_score":0.9656722,"about_ca_system_score_codex":0.002657057,"about_ca_system_score_gemma":0.0034132963,"threshold_uncertainty_score":0.5905329},"labels":[],"label_agreement":null},{"id":"W2677628723","doi":"10.1016/j.foreco.2017.06.008","title":"Boreal small mammals show evidence of density-dependent patterns with area-sensitivity","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Animal Ecology and Behavior Studies","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval; Université du Québec à Montréal; Université du Québec en Abitibi-Témiscamingue","funders":"Fonds de recherche du Québec – Nature et technologies; Natural Sciences and Engineering Research Council of Canada; Université du Québec en Abitibi-Témiscamingue","keywords":"Habitat; Ecology; Occupancy; Taiga; Colonisation; Extinction (optical mineralogy); Local extinction; Black spruce; Geography; Population; Boreal; Biology; Biological dispersal; Colonization","score_opus":0.028515851746950607,"score_gpt":0.24964308558882303,"score_spread":0.22112723384187244,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2677628723","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99773395,0.00014041575,0.00053439103,0.00001602356,0.000003904341,0.0000052666674,0.00011602858,0.000012090558,0.0014379148],"genre_scores_gemma":[0.9994368,0.000031474683,0.00018438004,0.00001714187,0.000005180676,0.0000050443605,0.000110719586,0.000004335475,0.00020493695],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997099,0.00006528902,0.000023351025,0.00010969636,0.000060374645,0.000031272793],"domain_scores_gemma":[0.9982158,0.0004918734,0.0007128671,0.00023068466,0.00017018575,0.00017864868],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004203137,0.0001895404,0.000323799,0.0007520316,0.00025733255,0.0004564364,0.0003197601,0.0002953967,0.0019536028],"category_scores_gemma":[0.0018315694,0.00032508295,0.00030489746,0.0005086256,0.00062798,0.0003303744,0.00049102656,0.00028156282,0.00019291477],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021812838,0.000082315164,0.9578672,0.00005515496,0.00023455113,0.00005985913,0.00043458305,0.0004066519,0.033663053,0.00018233758,0.00019118874,0.006605039],"study_design_scores_gemma":[7.895069e-7,0.000020240066,0.99959165,5.411715e-7,0.0000046285036,0.000060363935,0.000026298192,0.00009582241,0.00013311353,0.000027980106,0.000036967358,0.0000015310931],"about_ca_topic_score_codex":0.0024290935,"about_ca_topic_score_gemma":0.0063637486,"teacher_disagreement_score":0.0024290935,"about_ca_system_score_codex":0.00018350335,"about_ca_system_score_gemma":0.000078322635,"threshold_uncertainty_score":0.0065354705},"labels":[],"label_agreement":null},{"id":"W2714639922","doi":"10.1016/j.foreco.2017.06.026","title":"Long-term changes in stand growth dominance as related to resource acquisition and utilization in the boreal forest","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":26,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Forêts, de la Faune et des Parcs; Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada; Université Laval","keywords":"Dominance (genetics); Chronosequence; Biomass partitioning; Specific leaf area; Relative growth rate; Stand development; Taiga; Growth rate; Biology; Boreal; Biomass (ecology); Ecology; Agronomy; Ecosystem; Photosynthesis; Botany; Mathematics","score_opus":0.007761446300220072,"score_gpt":0.23632196773251055,"score_spread":0.22856052143229047,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2714639922","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99981874,0.000052528198,0.000012423254,0.000010237222,0.0000017196038,7.5233766e-7,0.000027606151,5.902947e-7,0.00007544025],"genre_scores_gemma":[0.9997336,0.000021134898,0.000023017627,0.000010368685,0.0000029757962,0.000002009042,0.000069966576,8.147712e-7,0.00013607153],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998667,0.000028122226,0.000010870286,0.000030755597,0.000018356253,0.00004516807],"domain_scores_gemma":[0.9988071,0.0002580226,0.0004312213,0.00006859456,0.000090103626,0.00034495152],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005576794,0.00014537145,0.00020199342,0.0003505203,0.00038468558,0.0005075877,0.00021002922,0.0003982742,0.00073763204],"category_scores_gemma":[0.00119757,0.00014763899,0.00019577751,0.00025500107,0.00054367015,0.00038668938,0.00034401487,0.00053690036,0.00011681135],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0008260312,0.00021197642,0.98801464,0.0000109716575,0.00007210753,0.00010064535,0.00032573382,0.00018591942,0.0068913577,0.000047841408,0.00007762494,0.003235027],"study_design_scores_gemma":[0.0000012444979,0.000030086421,0.9997392,6.2454586e-7,0.0000038280255,0.000026966696,0.000061164596,0.000054918433,0.000046587473,0.000009453967,0.000024610048,0.0000014496884],"about_ca_topic_score_codex":0.014696886,"about_ca_topic_score_gemma":0.04953985,"teacher_disagreement_score":0.014696886,"about_ca_system_score_codex":0.00049182214,"about_ca_system_score_gemma":0.0002453405,"threshold_uncertainty_score":0.029222727},"labels":[],"label_agreement":null},{"id":"W2727562567","doi":"10.1016/j.foreco.2017.06.039","title":"Incorporating uncertainty into forest management planning: Timber harvest, wildfire and climate change in the boreal forest","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":73,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; University of Toronto; Centre For Cold Ocean Resources Engineering; Canadian Forest Service; Ontario Forest Research Institute; Ministry of Natural Resources and Forestry","funders":"Natural Sciences and Engineering Research Council of Canada; U.S. Forest Service; U.S. Geological Survey; Nature Conservancy; Ontario Ministry of Natural Resources and Forestry","keywords":"Taiga; Forest management; Climate change; Environmental science; Forest ecology; Boreal; Environmental resource management; Ecology; Geography; Ecosystem; Agroforestry; Forestry","score_opus":0.012826248967032633,"score_gpt":0.24961786255402155,"score_spread":0.2367916135869889,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2727562567","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98591596,0.001059645,0.007289386,0.002987437,0.00006385518,0.000020477617,0.00016197453,0.000023912009,0.0024774421],"genre_scores_gemma":[0.99863225,0.00017302948,0.0008021774,0.00004406652,0.000021930653,0.000003732788,0.000032398057,0.000005344698,0.0002850022],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99900144,0.0006236938,0.000045131263,0.00009934679,0.0000713434,0.00015902075],"domain_scores_gemma":[0.9936847,0.0050553824,0.0005800376,0.00007816184,0.00026398466,0.000337653],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0039731753,0.00054222735,0.00051727047,0.0005594658,0.0009669173,0.002797247,0.00085699745,0.0015984883,0.0012773655],"category_scores_gemma":[0.010763325,0.00055912544,0.000715661,0.0007271605,0.0014145122,0.002573021,0.0008908992,0.0012394299,0.00004887451],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005877513,0.00031977924,0.18554713,0.00010893842,0.0006481754,0.0005066129,0.0004511941,0.7777376,0.00043049717,0.009073183,0.0014515693,0.023137493],"study_design_scores_gemma":[0.00004363834,0.00016592504,0.10494617,0.00004725252,0.00032541488,0.00010808074,0.0014248731,0.86687124,0.00036966626,0.024553945,0.0010577424,0.000086010776],"about_ca_topic_score_codex":0.1294154,"about_ca_topic_score_gemma":0.30588275,"teacher_disagreement_score":0.1294154,"about_ca_system_score_codex":0.0034102434,"about_ca_system_score_gemma":0.0023329451,"threshold_uncertainty_score":0.25732422},"labels":[],"label_agreement":null},{"id":"W2730562529","doi":"10.1016/j.foreco.2017.06.065","title":"Responses of key understory plants in the boreal forests of western North America to natural versus anthropogenic nitrogen levels","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia; University of Toronto; The Scarborough Hospital","funders":"Natural Sciences and Engineering Research Council of Canada; U.S. Forest Service","keywords":"Shrub; Understory; Evergreen; Deciduous; Boreal; Taiga; Herb; Botany; Nitrogen; Environmental science; Ecology; Agronomy; Biology; Chemistry; Canopy","score_opus":0.01802451941713973,"score_gpt":0.2621338779777176,"score_spread":0.24410935856057786,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2730562529","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99979645,0.000029057102,0.000014412031,0.0000075838375,7.445452e-7,7.017793e-7,0.000026688285,6.6172106e-7,0.00012368888],"genre_scores_gemma":[0.99964976,0.000032572938,0.000038489896,0.000015534366,0.0000013570232,0.0000023388254,0.000073735544,9.3724697e-7,0.00018532677],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999318,0.000016730497,0.00000333383,0.000023356699,0.000006500895,0.000018148457],"domain_scores_gemma":[0.99975926,0.00005378862,0.000065739725,0.000009299137,0.00003045681,0.00008135227],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015842036,0.00016085534,0.00013466968,0.00019263703,0.0003289497,0.00028899495,0.00016639286,0.00022945135,0.00079152244],"category_scores_gemma":[0.0003252358,0.00012352431,0.000083782135,0.00015430908,0.00032278034,0.0003057999,0.00023695405,0.00018612227,0.000058641574],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012011377,0.00016115261,0.9388465,0.000055144894,0.000089459674,0.00013389702,0.0011289113,0.0005400902,0.051820774,0.00010622777,0.00021649913,0.0057001584],"study_design_scores_gemma":[0.0000019886372,0.00001726632,0.9994293,7.834022e-7,0.000003360538,0.000017410806,0.00020553943,0.00013832719,0.00011775883,0.000015603522,0.000051682735,9.474124e-7],"about_ca_topic_score_codex":0.03212525,"about_ca_topic_score_gemma":0.121528715,"teacher_disagreement_score":0.03212525,"about_ca_system_score_codex":0.00033737742,"about_ca_system_score_gemma":0.00015442727,"threshold_uncertainty_score":0.06387651},"labels":[],"label_agreement":null},{"id":"W2735182220","doi":"10.1016/j.foreco.2017.06.029","title":"Variation in stand density, black spruce individual growth and plant community following 20 years of drainage in post-harvest boreal peatlands","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"","keywords":"Peat; Black spruce; Boreal; Taiga; Environmental science; Drainage; Ecology; Variation (astronomy); Forestry; Geography; Biology","score_opus":0.009798102804290117,"score_gpt":0.22118427483708536,"score_spread":0.21138617203279525,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2735182220","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999039,0.000009911186,0.000008167169,0.0000024596957,6.609382e-7,4.252501e-7,0.000029153854,6.0784504e-7,0.000044654582],"genre_scores_gemma":[0.999749,0.000006451235,0.000013424209,0.0000030687745,0.0000013038572,0.00000158261,0.00009374401,5.1883836e-7,0.00013087032],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983156,0.000037285576,0.000014054713,0.000044832304,0.00002240148,0.000049851285],"domain_scores_gemma":[0.99907047,0.00021719799,0.0002972226,0.000048019232,0.000110785346,0.0002563258],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00045833734,0.00013939966,0.00017090538,0.00059129146,0.00039792902,0.00046607995,0.00031165493,0.0003612994,0.0008133007],"category_scores_gemma":[0.0011787236,0.00012649182,0.00023629687,0.00031045298,0.0004911113,0.00049756694,0.0004318702,0.000271951,0.00014905806],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003468038,0.00012612098,0.9952324,0.0000042727015,0.000029535277,0.00008767411,0.00041844376,0.00007631067,0.0022781333,0.00001837886,0.00004682749,0.0013351041],"study_design_scores_gemma":[7.926167e-7,0.000032186366,0.99967194,5.5956986e-7,0.000003233671,0.0000219671,0.00014351054,0.000055092456,0.0000450767,0.000004385278,0.000020259615,0.0000010716017],"about_ca_topic_score_codex":0.018295323,"about_ca_topic_score_gemma":0.064641304,"teacher_disagreement_score":0.018295323,"about_ca_system_score_codex":0.0004571174,"about_ca_system_score_gemma":0.00023889335,"threshold_uncertainty_score":0.03637767},"labels":[],"label_agreement":null},{"id":"W2736286283","doi":"10.1016/j.foreco.2017.07.012","title":"Demographic disequilibrium caused by canopy gap expansion and recruitment failure triggers forest cover loss","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":15,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Université Laval; Natural Sciences and Engineering Research Council","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Abies balsamea; Understory; Ecology; Canopy; Forest dynamics; Disequilibrium; Balsam; Black spruce; Old-growth forest; Forest ecology; Taiga; Ecosystem; Geography; Agroforestry; Biology","score_opus":0.016941856466220744,"score_gpt":0.23569737273658803,"score_spread":0.2187555162703673,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2736286283","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99712,0.00008013443,0.00062056904,0.00012414233,0.000020396634,0.00001140684,0.00010250728,0.00002009248,0.0019006614],"genre_scores_gemma":[0.99937516,0.000023527793,0.00014760779,0.000044570606,0.000012886193,0.0000069790876,0.00009698605,0.000004774726,0.00028764724],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99972826,0.000052249266,0.000018315872,0.000077489334,0.000036316236,0.00008725074],"domain_scores_gemma":[0.99884796,0.0002472903,0.0003892586,0.00008545684,0.00009346181,0.00033661412],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007158219,0.00019530731,0.00035740517,0.0005772573,0.0006766159,0.00093274744,0.00044147403,0.00062112784,0.007108625],"category_scores_gemma":[0.0027038378,0.0002315632,0.00020013232,0.00026820475,0.00044542196,0.00048732405,0.0008261191,0.00066964875,0.00054242095],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00076472113,0.00067157426,0.9265601,0.00006407769,0.000104846906,0.003069125,0.0005380947,0.0011396018,0.036836922,0.0028140782,0.0021215146,0.025315303],"study_design_scores_gemma":[0.000028032347,0.00041052973,0.98556894,0.000020422247,0.000039170143,0.0031279894,0.0011989613,0.0043393616,0.0012211155,0.0024395585,0.0015880733,0.000017841927],"about_ca_topic_score_codex":0.0009473947,"about_ca_topic_score_gemma":0.0019157742,"teacher_disagreement_score":0.007108625,"about_ca_system_score_codex":0.0003507869,"about_ca_system_score_gemma":0.0005402718,"threshold_uncertainty_score":0.023780704},"labels":[],"label_agreement":null},{"id":"W2739634379","doi":"10.1016/j.foreco.2017.07.024","title":"Skid trail use influences soil carbon flux and nutrient pools in a temperate hardwood forest","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute; Laurentian University; University of Toronto; Ministry of Natural Resources and Forestry","funders":"Natural Sciences and Engineering Research Council of Canada; University of Toronto; Ontario Ministry of Natural Resources and Forestry","keywords":"Environmental science; Hardwood; Soil respiration; Biogeochemistry; Nutrient; Skid (aerodynamics); Soil water; Ecology; Soil carbon; Experimental forest; Agronomy; Soil science; Biology","score_opus":0.015471940207680982,"score_gpt":0.21928602962801405,"score_spread":0.20381408942033308,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2739634379","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99989676,0.00000523092,0.0000060260427,0.0000016970574,2.2884507e-7,4.4263842e-7,0.000010014535,5.083172e-7,0.00007908279],"genre_scores_gemma":[0.9997814,0.00000832628,0.000016540349,0.000003385821,5.2548927e-7,8.813425e-7,0.000025747077,9.1019217e-7,0.00016228222],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989307,0.000020820118,0.000007502659,0.000026193695,0.000010960953,0.00004140283],"domain_scores_gemma":[0.9996331,0.00009180621,0.00007988259,0.000017355218,0.000032109972,0.0001458086],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020877158,0.00018863066,0.00023454626,0.00056380563,0.00058505405,0.00068731286,0.00028833444,0.00027873856,0.0015108753],"category_scores_gemma":[0.00037053193,0.00020920418,0.00019052865,0.0003916632,0.0005941007,0.0003852678,0.00062551774,0.0001796355,0.00020383783],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016380554,0.00036693414,0.96365047,0.00003092116,0.00009482616,0.00060288806,0.0007196935,0.00094741775,0.028072758,0.00011915958,0.00012137464,0.0036355022],"study_design_scores_gemma":[0.000009681994,0.00009791728,0.9980123,0.000002184716,0.000019802965,0.00007871544,0.00046690693,0.00089953706,0.00030750874,0.00003873119,0.000062896725,0.0000036128904],"about_ca_topic_score_codex":0.040608045,"about_ca_topic_score_gemma":0.12672906,"teacher_disagreement_score":0.040608045,"about_ca_system_score_codex":0.0008302321,"about_ca_system_score_gemma":0.00048358348,"threshold_uncertainty_score":0.08074337},"labels":[],"label_agreement":null},{"id":"W2739951468","doi":"10.1016/j.foreco.2017.07.037","title":"Do large carnivores use riparian zones? Ecological implications for forest management","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Université de Fribourg; Deutscher Akademischer Austauschdienst","keywords":"Riparian zone; Grizzly Bears; Ursus; Riparian buffer; Wildlife; Habitat; STREAMS; Geography; Ecology; Biodiversity; Riparian forest; Forest management; Environmental science; Forestry; Biology; Population","score_opus":0.021636929012741196,"score_gpt":0.2592205047730951,"score_spread":0.2375835757603539,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2739951468","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9914119,0.0014934115,0.000088781635,0.002732924,0.0000125028155,0.0000060223724,0.00008485721,0.0000014085937,0.004168168],"genre_scores_gemma":[0.99846244,0.0007713506,0.00010891847,0.0002800083,0.000017050621,0.000003929793,0.00003355051,9.651021e-7,0.00032184928],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997297,0.0001088104,0.000009843169,0.000045881607,0.00003344359,0.00007224098],"domain_scores_gemma":[0.9981318,0.0006246667,0.0006430753,0.000093647104,0.00015646192,0.00035030753],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010834133,0.00014954522,0.00016830495,0.0004432793,0.00064876355,0.0010808422,0.00043453233,0.00066602504,0.004205136],"category_scores_gemma":[0.003796125,0.00021583003,0.000114034265,0.0004974564,0.0012814264,0.0014300749,0.00045089782,0.0003473031,0.00021446342],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013102552,0.00010397791,0.97055167,0.00004671765,0.0000934014,0.00017222077,0.0018172719,0.00011051894,0.0005928035,0.00097236043,0.0006758089,0.024732336],"study_design_scores_gemma":[0.0000062691365,0.000035730194,0.98995894,0.000041757172,0.000028741988,0.00024158522,0.0074795275,0.00014121475,0.00004344905,0.0008561061,0.0011610283,0.0000057397856],"about_ca_topic_score_codex":0.021315932,"about_ca_topic_score_gemma":0.08827708,"teacher_disagreement_score":0.021315932,"about_ca_system_score_codex":0.00044515773,"about_ca_system_score_gemma":0.0005508623,"threshold_uncertainty_score":0.04238373},"labels":[],"label_agreement":null},{"id":"W2765099895","doi":"10.1016/j.foreco.2017.10.042","title":"Comparison of wood density in roots and stems of black spruce before and after commercial thinning","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval; Université du Québec à Chicoutimi","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Tracheid; Xylem; Thinning; Black spruce; Botany; Biology; Woody plant; Horticulture; Taiga; Ecology","score_opus":0.014084129679571263,"score_gpt":0.2595712638966623,"score_spread":0.24548713421709104,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2765099895","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997596,0.000017414352,0.000024777117,0.0000013071616,8.491299e-7,0.000001027852,0.000033222008,8.3433736e-7,0.00016086202],"genre_scores_gemma":[0.99889106,0.00001859,0.00005188616,0.0000040502096,0.0000017026126,0.0000023374114,0.00015395207,0.0000012547994,0.0008751645],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999343,0.000008608982,0.0000040889795,0.000019100446,0.000014527472,0.00001938028],"domain_scores_gemma":[0.9996593,0.000076794095,0.00005661988,0.0000181863,0.000089108114,0.00009998326],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001590952,0.00014517116,0.00012829964,0.00037814243,0.00024877457,0.0002110005,0.00012960561,0.00019434524,0.0010759968],"category_scores_gemma":[0.0002976016,0.00008399716,0.00012906495,0.00017567253,0.00015955628,0.00016956445,0.0001124729,0.00017436319,0.00012570784],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.004669839,0.00089504436,0.73801154,0.000047541245,0.00009554841,0.0005357388,0.0010820493,0.00036162385,0.23418851,0.000106172636,0.00016163461,0.019844735],"study_design_scores_gemma":[0.000002341762,0.00019396421,0.9977361,7.4007323e-7,0.000007783781,0.000035228302,0.000114210576,0.00006856704,0.0017657282,0.0000068553404,0.00006688702,0.0000016430691],"about_ca_topic_score_codex":0.011516581,"about_ca_topic_score_gemma":0.032839365,"teacher_disagreement_score":0.011516581,"about_ca_system_score_codex":0.00018803842,"about_ca_system_score_gemma":0.0001734009,"threshold_uncertainty_score":0.022899091},"labels":[],"label_agreement":null},{"id":"W2765381014","doi":"10.1016/j.foreco.2017.09.002","title":"Bird community response in mountain pine forests of the Pyrenees managed under a shelterwood system","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":24,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"European Commission","keywords":"Guild; Abundance (ecology); Ecology; Canopy; Forest management; Habitat; Shrub; Geography; Foraging; Biodiversity; Snag; Forest ecology; Forestry; Environmental science; Agroforestry; Ecosystem; Biology","score_opus":0.011312669433936736,"score_gpt":0.23943112003677225,"score_spread":0.2281184506028355,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2765381014","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99991953,0.000007428888,0.0000043243854,0.0000016889907,2.580774e-7,8.9263835e-7,0.000008411164,2.4692847e-7,0.000057257035],"genre_scores_gemma":[0.9998135,0.0000086537975,0.000015898004,0.0000036022964,6.7973644e-7,0.0000015091575,0.000030639967,2.0751936e-7,0.00012538148],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998418,0.00004628212,0.000007651542,0.000034152865,0.000018839464,0.000051298328],"domain_scores_gemma":[0.99977416,0.000028420714,0.000060078986,0.00001154421,0.000028298711,0.00009760518],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016688877,0.00012206315,0.00015998849,0.00045487322,0.00055200385,0.00046924056,0.0001840699,0.00015221462,0.0005977508],"category_scores_gemma":[0.0003370932,0.00012566123,0.00011043581,0.0003111799,0.00038993047,0.00022733927,0.0003419469,0.00013532606,0.000069063324],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009016326,0.0003336739,0.97855765,0.00002195951,0.00012982548,0.00039029837,0.0028668556,0.00030618455,0.011216607,0.00010175563,0.00010361386,0.005069942],"study_design_scores_gemma":[0.0000049834275,0.00007660474,0.9988581,9.426121e-7,0.000006255329,0.000036537975,0.00073053024,0.0001282082,0.000071748254,0.0000088402585,0.00007579672,0.0000013620554],"about_ca_topic_score_codex":0.06530649,"about_ca_topic_score_gemma":0.2193267,"teacher_disagreement_score":0.06530649,"about_ca_system_score_codex":0.00084914046,"about_ca_system_score_gemma":0.00025197066,"threshold_uncertainty_score":0.12985271},"labels":[],"label_agreement":null},{"id":"W2767374319","doi":"10.1016/j.foreco.2017.11.017","title":"Using airborne laser scanning to predict plant species richness and assess conservation threats in the oil sands region of Alberta’s boreal forest","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":29,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Alberta Biodiversity Monitoring Institute; University of British Columbia; Alberta Ministry of Agriculture and Forestry; Government of Alberta; University of Alberta","funders":"Alberta Agriculture and Forestry","keywords":"Species richness; Vascular plant; Biodiversity; Forb; Taiga; Vegetation (pathology); Boreal; Ecology; Geography; Woody plant; Environmental science; Species diversity; Forestry; Biology; Grassland","score_opus":0.03551250054502366,"score_gpt":0.263935649633407,"score_spread":0.22842314908838332,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2767374319","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99939334,0.000027508695,0.000115007504,0.000017904893,0.0000011468003,0.0000031645422,0.000064704065,0.0000062783374,0.00037099078],"genre_scores_gemma":[0.99916005,0.000032532396,0.00040005348,0.0000068115824,9.3296654e-7,0.0000020234365,0.00013012263,0.0000013279086,0.00026620895],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983144,0.000025540461,0.0000074287223,0.000028369239,0.000052277785,0.000054944772],"domain_scores_gemma":[0.99967265,0.00008877503,0.00006196041,0.000013595524,0.00009418462,0.00006882958],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00045547867,0.00028312652,0.00011590619,0.00090481737,0.0006464349,0.00070765516,0.00052987534,0.00025753994,0.0003619356],"category_scores_gemma":[0.0006588265,0.00017639865,0.00016666723,0.0007383287,0.0004129435,0.00029705223,0.00033103488,0.00019105784,0.00007939921],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014262834,0.000112985406,0.97502875,0.000013565834,0.000048100886,0.00010025448,0.0002923004,0.008850765,0.0014817105,0.00008557966,0.00028239848,0.013560913],"study_design_scores_gemma":[0.00001625387,0.000040331823,0.9639387,0.000010884229,0.000028613784,0.00004328595,0.0015194702,0.033446886,0.00044519917,0.000107937456,0.00039044092,0.000011951684],"about_ca_topic_score_codex":0.84955275,"about_ca_topic_score_gemma":0.9552999,"teacher_disagreement_score":0.15044725,"about_ca_system_score_codex":0.0030722327,"about_ca_system_score_gemma":0.0025507705,"threshold_uncertainty_score":0.3026665},"labels":[],"label_agreement":null},{"id":"W2767790641","doi":"10.1016/j.foreco.2017.11.008","title":"The response of the net primary production of Moso bamboo forest to the On and Off-year management: A case study in Anji County, Zhejiang, China","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":53,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal","funders":"","keywords":"Bamboo; Primary production; Environmental science; Carbon sequestration; China; Agroforestry; Forestry; Ecosystem; Agronomy; Geography; Ecology; Biology","score_opus":0.004994541930786724,"score_gpt":0.20631605327032337,"score_spread":0.20132151133953666,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2767790641","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997781,0.000007075913,0.000010767246,0.000008182809,4.2013312e-7,0.0000012090795,0.000027649978,6.5846694e-7,0.00016587344],"genre_scores_gemma":[0.9998198,0.000007674379,0.000014238104,0.000002327647,5.1550984e-7,9.097012e-7,0.000024747034,3.2695786e-7,0.00012950081],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998306,0.00003653001,0.000007985095,0.000028044935,0.000020930856,0.00007583847],"domain_scores_gemma":[0.99968994,0.00009167021,0.000059774466,0.000018624041,0.00004545797,0.00009455155],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003009378,0.00022157162,0.00016567062,0.0005114709,0.0006063857,0.00048579957,0.00052572915,0.00035969377,0.0007165932],"category_scores_gemma":[0.000492895,0.00014221227,0.0002531313,0.00063330197,0.00051432085,0.0002776548,0.0003996146,0.00016473273,0.00005851337],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00035063384,0.00020900757,0.97845614,0.000031802338,0.000077879675,0.0031047056,0.0028226867,0.0030631984,0.006251783,0.0002701096,0.00022006338,0.0051419414],"study_design_scores_gemma":[0.0000043236823,0.000061081104,0.99372476,0.0000024999893,0.000015953769,0.00010385461,0.002923379,0.0026436166,0.0002863203,0.00005817554,0.00017014498,0.0000059404106],"about_ca_topic_score_codex":0.13812734,"about_ca_topic_score_gemma":0.26206487,"teacher_disagreement_score":0.13812734,"about_ca_system_score_codex":0.0019772057,"about_ca_system_score_gemma":0.00072899455,"threshold_uncertainty_score":0.2746467},"labels":[],"label_agreement":null},{"id":"W2768490244","doi":"10.1016/j.foreco.2017.11.044","title":"Not dead yet: Beech trees can survive nearly three decades in the aftermath phase of a deadly forest disease complex","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Western Canada Research Grid","keywords":"Beech; Wildlife; Forest management; Bark (sound); Ecology; Biology; Biota; Geography; Agroforestry","score_opus":0.02538795400431045,"score_gpt":0.2733413607796691,"score_spread":0.24795340677535863,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2768490244","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97014344,0.0036737148,0.0008290082,0.0027081298,0.00019373216,0.000024755891,0.0005457092,0.000065321066,0.02181625],"genre_scores_gemma":[0.9933334,0.00069533545,0.00031663675,0.0005314235,0.00004630477,0.000006339384,0.00027831178,0.0000074032396,0.004784881],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997826,0.00002971239,0.000009098882,0.000042882166,0.000047039117,0.00008864477],"domain_scores_gemma":[0.9991848,0.00008772111,0.00018339614,0.000111681926,0.00012797987,0.0003044577],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00051160477,0.0002540176,0.00023435916,0.00024791434,0.0012157978,0.0020192973,0.0003496224,0.0007791162,0.00637857],"category_scores_gemma":[0.0012201709,0.00010317776,0.00013596346,0.00018499242,0.0007854264,0.0017803243,0.000861123,0.0010051008,0.0013405023],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009807975,0.0006633902,0.5812566,0.00039761356,0.00023381205,0.0040508844,0.0029214344,0.0009048516,0.09864213,0.0068037575,0.0265441,0.27660057],"study_design_scores_gemma":[0.000030251314,0.0006880356,0.92390794,0.00025257908,0.00013082814,0.0037726075,0.004495156,0.0008212787,0.004969315,0.0063533145,0.054512892,0.00006582306],"about_ca_topic_score_codex":0.0055923904,"about_ca_topic_score_gemma":0.027116857,"teacher_disagreement_score":0.00637857,"about_ca_system_score_codex":0.0004032631,"about_ca_system_score_gemma":0.00040790663,"threshold_uncertainty_score":0.021338403},"labels":[],"label_agreement":null},{"id":"W2776565796","doi":"10.1016/j.foreco.2017.12.036","title":"Novel climates: Trajectories of climate change beyond the boundaries of British Columbia’s forest management knowledge system","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":27,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Forests; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Climate change; Ecosystem; Geography; Forest management; Environmental resource management; Forest ecology; Ecology; Physical geography; Environmental science; Forestry","score_opus":0.019037952993098975,"score_gpt":0.23519566133811848,"score_spread":0.21615770834501952,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2776565796","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.93184537,0.00053181674,0.0025455474,0.01127907,0.0000533242,0.00004194451,0.0020375734,0.000034629098,0.051630683],"genre_scores_gemma":[0.99681574,0.0001658634,0.0007483963,0.0001032366,0.0000030173187,0.000011533136,0.00035873862,0.000008163334,0.0017854423],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9995301,0.00012397165,0.00002444352,0.00008705708,0.00009592137,0.00013855463],"domain_scores_gemma":[0.9968605,0.0005747103,0.00037195763,0.0003471726,0.0010294524,0.00081620505],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011314153,0.000120547054,0.00015633495,0.001346231,0.0040123886,0.005323846,0.0006299582,0.0007263429,0.007856431],"category_scores_gemma":[0.006808438,0.00017575144,0.0001250237,0.0028369438,0.0022466348,0.004295638,0.002525326,0.0012313372,0.00025360184],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00055913406,0.0003741671,0.57235867,0.00015816052,0.0001475861,0.0011823965,0.08046056,0.009357591,0.0027046674,0.13712406,0.03095454,0.16461843],"study_design_scores_gemma":[0.00003042202,0.00003261239,0.74405384,0.00028251155,0.000057186004,0.00029894535,0.077901036,0.016654987,0.0006341548,0.06378837,0.096160956,0.0001051265],"about_ca_topic_score_codex":0.8135803,"about_ca_topic_score_gemma":0.9189627,"teacher_disagreement_score":0.18641973,"about_ca_system_score_codex":0.014547469,"about_ca_system_score_gemma":0.019314641,"threshold_uncertainty_score":0.37503517},"labels":[],"label_agreement":null},{"id":"W2778737423","doi":"10.1016/j.foreco.2017.12.003","title":"Effects of partial harvesting on species and structural diversity in aspen-dominated boreal mixedwood stands","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute; Ministry of Natural Resources and Forestry","funders":"Ontario Ministry of Natural Resources and Forestry","keywords":"Boreal; Environmental science; Taiga; Ecology; Agroforestry; Biology","score_opus":0.016385701021480438,"score_gpt":0.20750326270027278,"score_spread":0.19111756167879235,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2778737423","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99976593,0.000033479013,0.000013331607,0.0000043815935,0.0000010554686,7.214549e-7,0.000018136589,7.015585e-7,0.00016221455],"genre_scores_gemma":[0.9998035,0.000012108371,0.000019654202,0.00000737164,0.0000018646336,0.0000011034027,0.00004282625,5.650569e-7,0.00011111515],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99970156,0.00008668757,0.000023107681,0.0000599522,0.000037476006,0.00009124146],"domain_scores_gemma":[0.9983814,0.0005519438,0.00026725788,0.0001145874,0.000105530846,0.0005791654],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006407211,0.00024879188,0.00026113255,0.0003876638,0.0005528429,0.0006734726,0.00035569252,0.00021860049,0.0020467658],"category_scores_gemma":[0.001252761,0.00016274308,0.00030691887,0.00028759427,0.0009458691,0.00049877376,0.00069095194,0.00023859311,0.0001176216],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.004277633,0.00038991144,0.9649975,0.00003774877,0.00031632747,0.00025420098,0.0003224554,0.0011828261,0.018176813,0.00022013532,0.00015928896,0.009665189],"study_design_scores_gemma":[0.000004046531,0.00012069363,0.9992791,0.0000011466462,0.00001508697,0.000037162266,0.00015404286,0.00016700305,0.00015337722,0.000029157374,0.00003733854,0.0000019807658],"about_ca_topic_score_codex":0.0067523923,"about_ca_topic_score_gemma":0.02667974,"teacher_disagreement_score":0.0067523923,"about_ca_system_score_codex":0.00038070732,"about_ca_system_score_gemma":0.00033116335,"threshold_uncertainty_score":0.013426185},"labels":[],"label_agreement":null},{"id":"W2779330334","doi":"10.1016/j.foreco.2017.12.010","title":"Divergent patterns of understory forage growth after seismic line exploration: Implications for caribou habitat restoration","year":2017,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":73,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Forest Resource Improvement Association of Alberta; Government of Canada; Alberta Parks; Canadian Natural Resources Limited; Tolko Industries","keywords":"Understory; Forb; Ecology; Habitat; Wildlife; Boreal; Woodland caribou; Taiga; Geography; Biology; Grassland; Canopy","score_opus":0.022524855610371364,"score_gpt":0.24082492810934558,"score_spread":0.2183000724989742,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2779330334","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999151,0.00006984749,0.00014671152,0.000046450295,0.000002930817,0.0000021970177,0.000060001923,0.0000024980304,0.0005181889],"genre_scores_gemma":[0.9991905,0.00005416575,0.00014961278,0.000023444993,0.0000027363758,0.0000052397827,0.00012524637,0.000003885567,0.0004450875],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999811,0.00005512288,0.000012087742,0.000036387053,0.000034789577,0.0000506364],"domain_scores_gemma":[0.99898833,0.00030569793,0.00022338159,0.00009138443,0.00019841292,0.00019272571],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048528513,0.00013067058,0.000184578,0.0005938007,0.00034583494,0.00066732307,0.0002115767,0.00048399135,0.002043926],"category_scores_gemma":[0.0032602872,0.00012099042,0.00013772001,0.0004535083,0.00044102417,0.00046331875,0.00046643527,0.00037023463,0.000227997],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009574816,0.00020866582,0.9581202,0.000027393482,0.000055873643,0.00014285235,0.0017074164,0.0002429298,0.020354722,0.00022640634,0.00024021618,0.017715903],"study_design_scores_gemma":[0.0000017989097,0.000029339968,0.9987828,0.000004146872,0.0000040262144,0.00003819336,0.0006479587,0.00010126301,0.00019518343,0.000078858524,0.000114565606,0.0000018856367],"about_ca_topic_score_codex":0.009869398,"about_ca_topic_score_gemma":0.039663307,"teacher_disagreement_score":0.009869398,"about_ca_system_score_codex":0.00029716044,"about_ca_system_score_gemma":0.00039490263,"threshold_uncertainty_score":0.019623876},"labels":[],"label_agreement":null},{"id":"W2784171960","doi":"10.1016/j.foreco.2017.12.033","title":"Retention level affects dynamics of understory plant community recovery in northern temperate hemlock-cedar forests","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":20,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia; University of Alberta; Ministry of Forests","funders":"","keywords":"Understory; Clearcutting; Vascular plant; Species richness; Logging; Plant community; Ecology; Vegetation (pathology); Environmental science; Seral community; Silviculture; Biology; Temperate forest; Temperate rainforest; Forestry; Ecological succession; Canopy; Temperate climate; Ecosystem; Geography","score_opus":0.031622088098686094,"score_gpt":0.20292073642700953,"score_spread":0.17129864832832342,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2784171960","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99991786,0.0000108443655,0.0000112504895,0.000003068751,2.3372036e-7,2.762e-7,0.000005919078,6.674043e-7,0.000049799233],"genre_scores_gemma":[0.9998462,0.0000059110725,0.000016063395,0.000005387531,7.940397e-7,6.004138e-7,0.000022095912,7.132253e-7,0.00010212351],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998591,0.000025803303,0.000008590047,0.000036377944,0.000013831773,0.000056323755],"domain_scores_gemma":[0.99928457,0.0002516308,0.00016728514,0.00004753216,0.000059927075,0.00018909469],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004118793,0.00010262952,0.00021132367,0.00031144434,0.00050099014,0.0005935432,0.0002789425,0.0003422476,0.0011741549],"category_scores_gemma":[0.0009753714,0.00014085823,0.00013524685,0.00016267714,0.00039223823,0.0004888209,0.0003961316,0.00024858606,0.00013622585],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00067078404,0.00026788627,0.95124733,0.000020063093,0.00007145606,0.00018320474,0.00072699785,0.0004367211,0.040540684,0.000088951405,0.000102739934,0.0056431466],"study_design_scores_gemma":[0.000001963755,0.000037297752,0.9992275,9.976599e-7,0.0000053749013,0.00003585378,0.00014420043,0.00034965944,0.0001504096,0.000016864711,0.00002828445,0.0000016202039],"about_ca_topic_score_codex":0.008486061,"about_ca_topic_score_gemma":0.027515747,"teacher_disagreement_score":0.008486061,"about_ca_system_score_codex":0.00032229268,"about_ca_system_score_gemma":0.0001918717,"threshold_uncertainty_score":0.01687336},"labels":[],"label_agreement":null},{"id":"W2788668978","doi":"10.1016/j.foreco.2018.01.010","title":"Promoting and maintaining diversity in contemporary hardwood forests: Confronting contemporary drivers of change and the loss of ecological memory","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":116,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Parks Canada; Ministère des Forêts, de la Faune et des Parcs","funders":"","keywords":"Understory; Ecology; Forest management; Psychological resilience; Forest dynamics; Geography; Disturbance (geology); Environmental resource management; Agroforestry; Forest restoration; Forest ecology; Ecosystem; Environmental science; Biology; Canopy","score_opus":0.047131630401851796,"score_gpt":0.24283815909754072,"score_spread":0.19570652869568894,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2788668978","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.65306836,0.007694459,0.005300756,0.24781667,0.00054854475,0.00002666689,0.00007027304,0.000039972845,0.08543425],"genre_scores_gemma":[0.9955771,0.0011854324,0.00035269684,0.001684456,0.00015168608,0.000009790203,0.0000067888786,0.000006440184,0.0010255991],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"observational","domain_scores_codex":[0.998302,0.0005376882,0.00004147705,0.00019218086,0.00026087114,0.0006657684],"domain_scores_gemma":[0.99352926,0.0023733214,0.0009200427,0.00046899205,0.00078918296,0.0019192726],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.006117262,0.00016858394,0.00030643234,0.00081500865,0.005336347,0.008871812,0.0016758763,0.0030771818,0.005083543],"category_scores_gemma":[0.009185532,0.00019498056,0.00013892449,0.0007872922,0.01899702,0.007863278,0.004531132,0.0034464512,0.00022970988],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023851328,0.00043885165,0.07873264,0.0004687231,0.00008476764,0.000840077,0.09791279,0.0024108752,0.0025798907,0.42880392,0.023955924,0.3635331],"study_design_scores_gemma":[0.00003438296,0.00022170483,0.12059197,0.0007015927,0.000045945733,0.0005695263,0.16092591,0.0020196284,0.0011735816,0.5388924,0.17472935,0.00009401039],"about_ca_topic_score_codex":0.010190232,"about_ca_topic_score_gemma":0.040836256,"teacher_disagreement_score":0.010190232,"about_ca_system_score_codex":0.0034162628,"about_ca_system_score_gemma":0.0062097316,"threshold_uncertainty_score":0.032351613},"labels":[],"label_agreement":null},{"id":"W2792528230","doi":"10.1016/j.foreco.2018.01.034","title":"Simulation of net ecosystem productivity of a lodgepole pine forest after mountain pine beetle attack using a modified version of 3-PG","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Forests; University of Northern British Columbia; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; Ministry of Forests, Lands and Natural Resource Operations","keywords":"Mountain pine beetle; Primary production; Dendroctonus; Environmental science; Ecosystem respiration; Eddy covariance; Pinus contorta; Ecosystem; Coarse woody debris; Atmospheric sciences; Productivity; Ecology; Carbon cycle; Forestry; Hydrology (agriculture); Biology; Bark beetle; Geography; Habitat; Geology","score_opus":0.010169154398063776,"score_gpt":0.23581143579972177,"score_spread":0.22564228140165798,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2792528230","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98672813,0.000051424315,0.0066145346,0.00016636853,0.00006768888,0.000029593904,0.0008822567,0.00031264298,0.005147341],"genre_scores_gemma":[0.99519426,0.000021976146,0.0033286335,0.000036690137,0.000009642224,0.000026746127,0.00036663256,0.000032438427,0.0009829742],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99984944,0.00004091139,0.000007829327,0.000034366803,0.000019456429,0.000047915222],"domain_scores_gemma":[0.99862516,0.0009025607,0.00008540339,0.00006414708,0.00011516321,0.00020768796],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00047185645,0.0005990912,0.00060561317,0.00046511798,0.00057638483,0.00073334115,0.0015021753,0.0017144457,0.005094752],"category_scores_gemma":[0.0016102347,0.00048239477,0.0009466111,0.00039083665,0.0006894765,0.00045713744,0.00049781764,0.0010662336,0.0002575203],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008953829,0.00008118208,0.002635859,0.000015010602,0.000025226502,0.000071819086,0.000022889177,0.99553216,0.0003983499,0.00028947508,0.00019179792,0.0006467553],"study_design_scores_gemma":[0.000028334734,0.000028961784,0.0008809282,0.0000016899777,0.000008094906,0.0000071426807,0.000014689874,0.9987697,0.00012375844,0.00006987952,0.000061952174,0.00000488876],"about_ca_topic_score_codex":0.087056704,"about_ca_topic_score_gemma":0.053333554,"teacher_disagreement_score":0.087056704,"about_ca_system_score_codex":0.0010136666,"about_ca_system_score_gemma":0.0010986814,"threshold_uncertainty_score":0.17309994},"labels":[],"label_agreement":null},{"id":"W2794217710","doi":"10.1016/j.foreco.2018.02.005","title":"Permanent site characteristics exert a larger influence than atmospheric conditions on leaf mass, foliar nutrients and ultimately aboveground biomass productivity of Salix miyabeana ‘SX67’","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Outaouais; Université TÉLUQ; Espace pour la vie; Université du Québec à Montréal","funders":"Fonds de recherche du Québec – Nature et technologies","keywords":"Nutrient; Short rotation coppice; Short rotation forestry; Biomass (ecology); Productivity; Agronomy; Coppicing; Salicaceae; Environmental science; Growing season; Willow; Biology; Woody plant; Botany; Ecology","score_opus":0.005162134076331022,"score_gpt":0.21634589475149196,"score_spread":0.21118376067516095,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2794217710","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99942446,0.00004594557,0.00005968535,0.000010611958,0.0000013131208,0.0000015349713,0.00013676257,0.000007151911,0.00031255328],"genre_scores_gemma":[0.9987274,0.000026900176,0.000101182675,0.000028118806,0.0000031390175,0.000004568773,0.00048140073,0.000011251485,0.00061614474],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998592,0.000024216626,0.000014429399,0.00005485849,0.000023953424,0.000023277977],"domain_scores_gemma":[0.9996728,0.00008201294,0.00007116987,0.000026834326,0.00003448173,0.0001128062],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023525917,0.0003050655,0.00038907476,0.00056617614,0.000489309,0.00053053914,0.00038377751,0.00025785543,0.001891863],"category_scores_gemma":[0.00018825279,0.00022950255,0.0003087034,0.00044109605,0.00042248835,0.00042900516,0.00078575354,0.00045693942,0.00026619423],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011366241,0.00013122507,0.17664002,0.00014024763,0.00022045983,0.00041345207,0.0009667738,0.0003287854,0.80903274,0.00026696484,0.00025067452,0.010471982],"study_design_scores_gemma":[0.0000050637473,0.00010680273,0.99719393,0.0000019318388,0.000023854287,0.00006871374,0.00025083465,0.00018587227,0.0018085437,0.000027138982,0.00032121848,0.0000061581236],"about_ca_topic_score_codex":0.009362588,"about_ca_topic_score_gemma":0.02528958,"teacher_disagreement_score":0.009362588,"about_ca_system_score_codex":0.0005869525,"about_ca_system_score_gemma":0.00025061457,"threshold_uncertainty_score":0.01861614},"labels":[],"label_agreement":null},{"id":"W2800726963","doi":"10.1016/j.foreco.2018.04.020","title":"Ecological legacies of fire detected using plot-level measurements and LiDAR in an old growth coastal temperate rainforest","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Waterloo; Tula Foundation; University of Victoria","funders":"Natural Sciences and Engineering Research Council of Canada; Hakai Institute","keywords":"Temperate rainforest; Rainforest; Canopy; Ecology; Temperate climate; Ecological succession; Lidar; Physical geography; Vegetation (pathology); Fire regime; Environmental science; Fire ecology; Ecosystem; Temperate forest; Geography; Remote sensing; Biology","score_opus":0.02756590155428322,"score_gpt":0.23420881568089646,"score_spread":0.20664291412661323,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2800726963","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998946,0.0000060322513,0.000012020121,0.0000030966407,2.5109463e-7,3.721613e-7,0.000021516626,3.8907805e-7,0.00006177525],"genre_scores_gemma":[0.9998104,0.00000709938,0.00003398829,0.0000038929716,5.409225e-7,7.4930534e-7,0.000048021127,5.1698146e-7,0.00009474249],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989593,0.000028099454,0.000009339105,0.00002695205,0.000013233783,0.000026519272],"domain_scores_gemma":[0.99934393,0.00026042666,0.00011807172,0.00004890953,0.00009127957,0.00013738761],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037009484,0.0001351423,0.00013137585,0.0005015203,0.00037198374,0.0005141459,0.00029247024,0.00034595467,0.00071050815],"category_scores_gemma":[0.0009496919,0.00018658534,0.00012244306,0.0003475005,0.00039327028,0.00027709152,0.0004475769,0.00023203659,0.00012931712],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001937779,0.00009295969,0.99469334,0.000003552664,0.000022730188,0.00013932136,0.00037500536,0.00018231773,0.0025889825,0.000020190693,0.000024140289,0.0016634893],"study_design_scores_gemma":[0.00000223741,0.000025727306,0.9989318,0.0000012393846,0.000005255309,0.0000629611,0.00040540853,0.00045257158,0.00007485413,0.000009823783,0.000026294972,0.0000017680305],"about_ca_topic_score_codex":0.032087635,"about_ca_topic_score_gemma":0.08970699,"teacher_disagreement_score":0.032087635,"about_ca_system_score_codex":0.0004472886,"about_ca_system_score_gemma":0.00018362781,"threshold_uncertainty_score":0.063801706},"labels":[],"label_agreement":null},{"id":"W2801155156","doi":"10.1016/j.foreco.2018.04.034","title":"Oribatid mite recovery along a chronosequence of afforested boreal sites following oil sands mining","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Study of Mite Species","field":"Agricultural and Biological Sciences","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Royal Alberta Museum; Mount Royal University; University of Alberta","funders":"","keywords":"Environmental science; Species richness; Oil sands; Land reclamation; Forest floor; Chronosequence; Ecology; Peat; Revegetation; Ecological succession; Soil water; Geography; Biology; Soil science; Asphalt","score_opus":0.014039153044495187,"score_gpt":0.21795644102538028,"score_spread":0.2039172879808851,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2801155156","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999688,0.000028009505,0.000011955896,0.000008065522,0.000002313973,0.0000023957236,0.00011012928,9.91979e-7,0.00014824476],"genre_scores_gemma":[0.99945885,0.000030934276,0.000031973264,0.000008929682,0.0000031834356,0.0000040754567,0.0001886681,5.424228e-7,0.00027282396],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999021,0.000013735539,0.000008031998,0.000020527134,0.00001720811,0.000038390208],"domain_scores_gemma":[0.99940014,0.000044680073,0.00027174695,0.000025229105,0.000113372625,0.00014474799],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019388381,0.0001536393,0.00017451555,0.0008328517,0.00074596185,0.00051638106,0.0002719738,0.0003743259,0.00087050465],"category_scores_gemma":[0.0004883687,0.0001418968,0.00017892182,0.0005051286,0.0003440695,0.00036182007,0.00048550163,0.00029444575,0.00017713555],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023325213,0.000072880655,0.9944436,0.0000088267925,0.000025501911,0.0002429156,0.00053483876,0.000035847792,0.002809738,0.000018215229,0.000089804314,0.0014844758],"study_design_scores_gemma":[6.231491e-7,0.00002101285,0.99964046,9.651246e-7,0.0000022256572,0.00004034496,0.00019226829,0.000014015489,0.00003718195,0.0000018814388,0.00004825046,7.66108e-7],"about_ca_topic_score_codex":0.03582066,"about_ca_topic_score_gemma":0.16862836,"teacher_disagreement_score":0.96417934,"about_ca_system_score_codex":0.00041007067,"about_ca_system_score_gemma":0.00036761374,"threshold_uncertainty_score":0.07122433},"labels":[],"label_agreement":null},{"id":"W2806156465","doi":"10.1016/j.foreco.2018.05.043","title":"Hydraulic limitations in dominant trees as a contributing mechanism to the age-related growth decline of boreal forest stands","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":23,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada; Université Laval","keywords":"Chronosequence; Dominance (genetics); Taiga; Transpiration; Stand development; Boreal; Ecology; Environmental science; Biology; Botany; Ecosystem; Photosynthesis","score_opus":0.008336447281877346,"score_gpt":0.20972911526026014,"score_spread":0.2013926679783828,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2806156465","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99805945,0.00058965693,0.00029142972,0.0002108801,0.0000118433145,0.00000342474,0.00010656452,0.000012030646,0.00071467937],"genre_scores_gemma":[0.999509,0.000103309605,0.00009505217,0.000022945726,0.000018262708,0.000001606169,0.000046673635,0.0000021295457,0.0002011326],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984765,0.000023814273,0.000013587041,0.000033374956,0.00003179283,0.00004977456],"domain_scores_gemma":[0.99914205,0.000146484,0.0003620984,0.000058086996,0.000116791016,0.00017448292],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007884007,0.0002110301,0.00022026524,0.0006276243,0.0004823382,0.0009374696,0.0005090114,0.00049213826,0.001253169],"category_scores_gemma":[0.0012938331,0.00017618583,0.00019227131,0.00029964405,0.0007313566,0.0008837707,0.00036926704,0.0004720096,0.00008488613],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031737264,0.00013712264,0.9371987,0.00011406417,0.000090235626,0.00040531674,0.00051778613,0.00140261,0.03399467,0.0016547027,0.00070499006,0.02346241],"study_design_scores_gemma":[0.0000032517114,0.000038853457,0.99727875,0.0000051702195,0.000018979814,0.00020704215,0.00020132327,0.0008787638,0.00043011227,0.00037495795,0.0005571589,0.000005678386],"about_ca_topic_score_codex":0.01108325,"about_ca_topic_score_gemma":0.033578895,"teacher_disagreement_score":0.01108325,"about_ca_system_score_codex":0.00054174557,"about_ca_system_score_gemma":0.00061364967,"threshold_uncertainty_score":0.022037446},"labels":[],"label_agreement":null},{"id":"W2806627963","doi":"10.1016/j.foreco.2018.05.062","title":"Phenological variation decreased carbon uptake in European forests during 1999–2013","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":32,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Lawrence Berkeley National Laboratory; Startup Foundation for Introducing Talent of Nanjing University of Information Science and Technology; Max Planck Institute for Dynamics of Complex Technical Systems Magdeburg; Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences; Environment Canada; Natural Sciences and Engineering Research Council of Canada; U.S. Department of Energy; State Key Laboratory of Desert and Oasis Ecology; BIOCAP Canada; Università degli Studi della Tuscia; Université Laval; Oak Ridge National Laboratory; Biological and Environmental Research; National Natural Science Foundation of China; Canadian Foundation for Climate and Atmospheric Sciences; Microsoft Research; Natural Resources Canada; National Office for Philosophy and Social Sciences; National Science Foundation","keywords":"Phenology; Biome; Atmospheric sciences; Ecosystem; Environmental science; Growing season; Carbon cycle; Carbon sink; Climate change; Forest ecology; Seasonality; Respiration; Ecology; Biology; Botany","score_opus":0.005230101192738441,"score_gpt":0.1809487815886569,"score_spread":0.17571868039591845,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2806627963","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99867463,0.00035827796,0.00008178975,0.00004335081,0.000008409758,0.0000013688051,0.0005665211,0.000005927955,0.00025959584],"genre_scores_gemma":[0.99897695,0.000073253614,0.000054428485,0.000026935395,0.000006855205,0.0000018709371,0.0005937828,0.000003542217,0.00026230127],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99967444,0.000047990332,0.000031186177,0.000116700015,0.000031480453,0.00009817571],"domain_scores_gemma":[0.99936193,0.00010614508,0.0002721738,0.000045704222,0.000104602346,0.00010936053],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00068583345,0.00024630918,0.00021426516,0.00081624405,0.00024692333,0.000736418,0.00039053592,0.00061259023,0.0009916022],"category_scores_gemma":[0.00070945744,0.00018150047,0.00044292238,0.0009290949,0.0003249869,0.0005039544,0.00047787756,0.0002268867,0.00015171574],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003225737,0.00004241124,0.9891852,0.0000359932,0.00032089412,0.00018591988,0.00026044386,0.00051949196,0.0032254297,0.00010571768,0.0004349207,0.005361018],"study_design_scores_gemma":[9.290019e-7,0.0000042306283,0.9995685,0.000002573289,0.0000090050935,0.000032331533,0.000041005536,0.000108975306,0.00006545634,0.0000060002126,0.0001594429,0.0000014934172],"about_ca_topic_score_codex":0.037334897,"about_ca_topic_score_gemma":0.07566134,"teacher_disagreement_score":0.037334897,"about_ca_system_score_codex":0.0007707469,"about_ca_system_score_gemma":0.00034964885,"threshold_uncertainty_score":0.07423514},"labels":[],"label_agreement":null},{"id":"W2883422812","doi":"10.1016/j.foreco.2018.07.002","title":"Leaf and bark functional traits predict resprouting strategies of understory woody species after prescribed fires","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":15,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université de Sherbrooke","funders":"","keywords":"Evergreen; Deciduous; Understory; Biology; Basal area; Woody plant; Growing season; Temperate rainforest; Botany; Ecology; Ecosystem; Canopy","score_opus":0.007660288585941576,"score_gpt":0.18517670371959638,"score_spread":0.1775164151336548,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2883422812","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998739,0.00001099591,0.000029803592,0.0000029644352,8.295531e-7,3.3160148e-7,0.000018544426,5.427578e-7,0.00006213374],"genre_scores_gemma":[0.9997459,0.00001269418,0.000037269197,0.000005075786,0.0000014004507,6.096874e-7,0.00006384073,0.0000011717194,0.0001320096],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999232,0.00001722956,0.0000056147783,0.000022688037,0.000007460303,0.000023708795],"domain_scores_gemma":[0.9992673,0.0002761613,0.00019622999,0.000054794287,0.000040921077,0.00016463363],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038387356,0.00020205602,0.00012030223,0.00019681649,0.00016298129,0.0004202482,0.00014700669,0.0002796721,0.0009377711],"category_scores_gemma":[0.001100742,0.000121172736,0.00016004173,0.00014506101,0.00016051781,0.00024411804,0.00016273081,0.00024009697,0.00016816026],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002144555,0.00008269944,0.99018794,0.000005415129,0.000057188485,0.00003560439,0.000080736114,0.0004257362,0.0061571496,0.00001864216,0.000038532016,0.0026959253],"study_design_scores_gemma":[8.841663e-7,0.000014478728,0.9993069,6.800072e-7,0.000006652099,0.000026818572,0.00004073937,0.00044797608,0.0001205993,0.000017077935,0.000016195518,8.901445e-7],"about_ca_topic_score_codex":0.0020367098,"about_ca_topic_score_gemma":0.010514189,"teacher_disagreement_score":0.0020367098,"about_ca_system_score_codex":0.00014175616,"about_ca_system_score_gemma":0.00008978553,"threshold_uncertainty_score":0.004049659},"labels":[],"label_agreement":null},{"id":"W2886827977","doi":"10.1016/j.foreco.2018.07.044","title":"Dynamics of detrital carbon pools following harvesting of a humid eastern Canadian balsam fir boreal forest","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":30,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Natural Sciences and Engineering Research Council; Natural Resources Canada; Université Laval; Canadian Forest Service; Kruger (Canada); Université du Québec à Montréal","funders":"","keywords":"Chronosequence; Coarse woody debris; Taiga; Snag; Environmental science; Balsam; Abies balsamea; Forest floor; Carbon sequestration; Biomass (ecology); Forest management; Clearcutting; Boreal; Debris; Forestry; Agroforestry; Ecology; Geology; Biology; Botany; Soil water; Soil science; Carbon dioxide; Geography","score_opus":0.01185089800386919,"score_gpt":0.19515066102323614,"score_spread":0.18329976301936696,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2886827977","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99958175,0.000029244693,0.000013178575,0.000012688271,0.0000011170573,0.0000032641415,0.00010259907,0.0000010858149,0.0002551764],"genre_scores_gemma":[0.9991345,0.000028093054,0.000035671328,0.000017975626,0.0000011664354,0.0000048619086,0.00024869817,0.0000010422875,0.0005279609],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998958,0.000006143009,0.0000032798666,0.000021535434,0.000022655979,0.00005047541],"domain_scores_gemma":[0.99957484,0.000047130095,0.000094252144,0.000014231655,0.00012737825,0.00014216661],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020061605,0.00018762327,0.00022886491,0.00042988345,0.0014011121,0.0007878904,0.000551678,0.000384747,0.0010908081],"category_scores_gemma":[0.0006490363,0.00016995908,0.00013635881,0.0005259108,0.00062682026,0.00036735763,0.0004992473,0.0003418905,0.00013203417],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011626818,0.00025287695,0.9735082,0.00004164903,0.00011028545,0.0003957901,0.0021669604,0.00052553695,0.013491565,0.00011816937,0.0005195609,0.0077068317],"study_design_scores_gemma":[0.0000015304756,0.000009651452,0.9994535,0.0000013353451,0.000003351015,0.0000120465875,0.00029196177,0.00006983093,0.00006559915,0.000005298687,0.000083852115,0.0000020086666],"about_ca_topic_score_codex":0.8096243,"about_ca_topic_score_gemma":0.9411143,"teacher_disagreement_score":0.19037569,"about_ca_system_score_codex":0.0034212924,"about_ca_system_score_gemma":0.0024023203,"threshold_uncertainty_score":0.38299364},"labels":[],"label_agreement":null},{"id":"W2887320226","doi":"10.1016/j.foreco.2018.07.003","title":"Early recruitment of boreal forest trees in hybrid poplar plantations of different densities on mine waste rock slopes","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue","funders":"Fonds de recherche du Québec – Nature et technologies; Natural Sciences and Engineering Research Council of Canada","keywords":"Understory; Environmental science; Growing season; Taiga; Edaphic; Agronomy; Sowing; Woody plant; Seedling; Pioneer species; Agroforestry; Ecological succession; Ecology; Biology; Soil water; Canopy","score_opus":0.018576289327535297,"score_gpt":0.23166574387341995,"score_spread":0.21308945454588465,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2887320226","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99976414,0.000016626731,0.000020589488,0.000001776897,6.500955e-7,0.0000015147222,0.000027547652,0.000001138017,0.00016604095],"genre_scores_gemma":[0.9991769,0.000013181229,0.00006872338,0.0000075478906,0.0000013468684,0.0000072342573,0.00010543863,0.0000018362692,0.0006177904],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998828,0.000024951025,0.000006975224,0.000035950798,0.000013413886,0.00003574206],"domain_scores_gemma":[0.99935216,0.00015178049,0.000098728255,0.000027071543,0.00006158649,0.00030863044],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023720136,0.00018169022,0.000196556,0.00033118422,0.00048723552,0.00038516312,0.00026801202,0.0002724612,0.0011279607],"category_scores_gemma":[0.00035388398,0.00018670956,0.00014462568,0.00010889722,0.00027746215,0.00036410795,0.00039199524,0.00046358645,0.00030660914],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0021648349,0.0006027146,0.69804406,0.00006963298,0.000032733136,0.0003682468,0.0021262772,0.00021929627,0.28652316,0.00017852582,0.00016636327,0.009504105],"study_design_scores_gemma":[0.0000041140593,0.00021215208,0.9980478,0.0000021338576,0.000003769981,0.00009248927,0.00034331015,0.00010200333,0.0011088144,0.000011568565,0.0000682137,0.0000035448368],"about_ca_topic_score_codex":0.0032779532,"about_ca_topic_score_gemma":0.017538989,"teacher_disagreement_score":0.0032779532,"about_ca_system_score_codex":0.00025403165,"about_ca_system_score_gemma":0.00019648216,"threshold_uncertainty_score":0.006517768},"labels":[],"label_agreement":null},{"id":"W2888905193","doi":"10.1016/j.foreco.2018.08.036","title":"Retention trees slow post-harvest fine-root decomposition in a coastal temperate rainforest","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Temperate rainforest; Decomposition; Environmental science; Soil water; Temperate climate; Rainforest; Clearcutting; Ecosystem; Botany; Ecology; Agronomy; Biology; Soil science","score_opus":0.008791299409907614,"score_gpt":0.21759150787605377,"score_spread":0.20880020846614616,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2888905193","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999329,0.0000049259966,0.000013129265,0.0000024901296,1.9785406e-7,6.0134835e-7,0.000005289613,8.0406403e-7,0.00003958514],"genre_scores_gemma":[0.999482,0.000017897295,0.00008563447,0.000012503637,6.987375e-7,0.0000023990112,0.000029244926,0.0000019657168,0.00036768772],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999546,0.000006463808,0.0000027619474,0.000013040166,0.000005101102,0.00001800341],"domain_scores_gemma":[0.9996427,0.0000722522,0.00009215824,0.000039648523,0.000035208515,0.00011814285],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002345807,0.00014618295,0.00015328093,0.00010163846,0.00032252443,0.00033937147,0.00033105383,0.00019847597,0.0009012819],"category_scores_gemma":[0.00039685296,0.00014332205,0.000073092815,0.00011171624,0.00026874125,0.0001821789,0.0002254615,0.00019348675,0.00012184498],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018535316,0.0008804551,0.80622363,0.0000417516,0.00006891406,0.0008858526,0.0011756044,0.00030839135,0.1732096,0.00007159671,0.00018849141,0.015092171],"study_design_scores_gemma":[0.000016833563,0.00027107482,0.9973144,0.0000024981894,0.000012392963,0.00012078349,0.00042819482,0.00041879038,0.0012796496,0.000024077644,0.00010878836,0.0000024398348],"about_ca_topic_score_codex":0.014041944,"about_ca_topic_score_gemma":0.055475637,"teacher_disagreement_score":0.014041944,"about_ca_system_score_codex":0.00026193398,"about_ca_system_score_gemma":0.0003666107,"threshold_uncertainty_score":0.027920365},"labels":[],"label_agreement":null},{"id":"W2892632187","doi":"10.1016/j.foreco.2018.09.024","title":"Tamm Review: Seedling-based ecology, management, and restoration in aspen (Populus tremuloides)","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":54,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Utah Agricultural Experiment Station; U.S. Department of Agriculture","keywords":"Seedling; Ecology; Regeneration (biology); Biology; Context (archaeology); Plant ecology; Natural regeneration; Adaptation (eye); Evolutionary ecology; Disturbance (geology); Agroforestry; Botany","score_opus":0.010726041103732252,"score_gpt":0.23666069999881548,"score_spread":0.2259346588950832,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2892632187","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0001938143,0.9984883,0.000044181477,0.00031814518,0.00038949007,0.000008914793,0.000035302364,0.0000030324577,0.00051884167],"genre_scores_gemma":[0.0011846345,0.9977761,0.00013175604,0.00026179364,0.00030042196,0.000012891797,0.000040856816,8.8992255e-7,0.00029079875],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.9996177,0.00009536197,0.00011225355,0.00006639446,0.00008263381,0.000025746102],"domain_scores_gemma":[0.9987174,0.0006635573,0.00030208818,0.000021360622,0.00020928771,0.00008636388],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007693674,0.000759181,0.0011952803,0.0026688348,0.00032054263,0.0013665473,0.0007181304,0.001111972,0.0046924646],"category_scores_gemma":[0.002027831,0.00017466472,0.0005798308,0.003187749,0.00030885116,0.00097706,0.00054493395,0.0006846834,0.00084952364],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015413652,0.000118360476,0.0010648868,0.16893925,0.0005168649,0.0002812984,0.00024420628,0.00033543445,0.0009345006,0.001276581,0.055363886,0.7707706],"study_design_scores_gemma":[0.000037397745,0.00029443053,0.009578823,0.072340615,0.0013110003,0.001025208,0.00034572007,0.00011542101,0.00034348242,0.0005534209,0.9140261,0.00002843085],"about_ca_topic_score_codex":0.0031392241,"about_ca_topic_score_gemma":0.0072224922,"teacher_disagreement_score":0.0046924646,"about_ca_system_score_codex":0.00062538276,"about_ca_system_score_gemma":0.0027239139,"threshold_uncertainty_score":0.015697837},"labels":[],"label_agreement":null},{"id":"W2895876865","doi":"10.1016/j.foreco.2018.09.038","title":"Managing conservation values and tree performance: Lessons learned from 10 year experiments in regenerating eastern white pine (Pinus strobus L.)","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Environment and Climate Change Canada; Natural Resources Canada; Canadian Forest Service","funders":"U.S. Forest Service; Forest Protection Limited; Canada Foundation for Innovation; Ontario Innovation Trust; Canadian Forest Service; Ontario Ministry of Natural Resources and Forestry; Natural Resources Canada; Canadian Natural Resources Limited; Ministry of Natural Resources; Domtar Corporation","keywords":"Understory; Basal area; Vegetation (pathology); Biodiversity; Silviculture; Canopy; Woody plant; Agroforestry; Herbaceous plant; Ecology; Forest management; Plant community; Forestry; Geography; Environmental science; Biology; Species richness","score_opus":0.02574370993914245,"score_gpt":0.2622327253487014,"score_spread":0.23648901540955894,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2895876865","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992624,0.000087009284,0.0002561143,0.00007662888,0.000004181104,0.000010814182,0.000011180916,0.0000031101713,0.00028854585],"genre_scores_gemma":[0.99834335,0.00009817093,0.00094365684,0.00009242291,0.000005577489,0.00003218537,0.000028622027,0.0000049471714,0.0004510263],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99890685,0.0006738606,0.00005363431,0.00016536166,0.000108529915,0.000091840884],"domain_scores_gemma":[0.9933576,0.004983809,0.0006294243,0.00036031977,0.00020823977,0.00046054693],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0046538487,0.00037365593,0.00028826436,0.00012368555,0.00050754927,0.000881282,0.0010139627,0.0009343561,0.0006347274],"category_scores_gemma":[0.006010862,0.00023388903,0.00024470923,0.0001204803,0.0017500228,0.0014306689,0.0004346098,0.0011363514,0.00007025662],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.011074998,0.049098723,0.5222066,0.0007188524,0.001189919,0.0011791702,0.0088175405,0.052952778,0.16260934,0.0077916137,0.0031020606,0.17925836],"study_design_scores_gemma":[0.0006427653,0.02781265,0.8708338,0.00012846419,0.0005164552,0.0003050108,0.00657907,0.047773805,0.03224186,0.008889905,0.0040521678,0.00022407353],"about_ca_topic_score_codex":0.015103283,"about_ca_topic_score_gemma":0.024960618,"teacher_disagreement_score":0.015103283,"about_ca_system_score_codex":0.0011605739,"about_ca_system_score_gemma":0.000852721,"threshold_uncertainty_score":0.030030727},"labels":[],"label_agreement":null},{"id":"W2897285640","doi":"10.1016/j.foreco.2018.10.010","title":"Managing the invasion of guava trees to enhance carbon storage in tropical forests","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Conservation, Biodiversity, and Resource Management","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan; Western University","funders":"Fonds National de la Recherche Luxembourg; Government of the Republic of Kenya","keywords":"Agroforestry; Logging; Biomass (ecology); Environmental science; Disturbance (geology); Forest management; Tropical and subtropical dry broadleaf forests; Carbon sequestration; Soil carbon; Soil water; Ecology; Biology; Carbon dioxide; Soil science","score_opus":0.007420622788939834,"score_gpt":0.2116304359246642,"score_spread":0.20420981313572437,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2897285640","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98721504,0.0005027845,0.0019784162,0.0005412995,0.000025918214,0.000032503704,0.000035357145,0.00004328558,0.009625333],"genre_scores_gemma":[0.9976234,0.0002537915,0.0015299981,0.00005551513,0.000006020369,0.000015029257,0.00001398406,0.0000054355537,0.00049676077],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997515,0.00007588493,0.000011939267,0.000029349274,0.000023956214,0.000107441425],"domain_scores_gemma":[0.999624,0.00006244167,0.00010236923,0.00002393989,0.00005542159,0.00013185902],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00054264715,0.00020331799,0.00014632814,0.00036378458,0.000790966,0.0010037281,0.0006164317,0.0003840624,0.0010833447],"category_scores_gemma":[0.0009965166,0.000070652066,0.00013584281,0.00044186032,0.00046956431,0.0005511356,0.000993962,0.00036058953,0.000103925435],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009120587,0.00080373685,0.40319943,0.00085236464,0.00041166003,0.0022833466,0.0048548724,0.109168515,0.1377884,0.022502579,0.005591114,0.31163195],"study_design_scores_gemma":[0.00016280179,0.002443039,0.6903621,0.00039792617,0.00077630545,0.0021613846,0.023810005,0.15019812,0.037799045,0.030627444,0.0610828,0.00017896759],"about_ca_topic_score_codex":0.010247848,"about_ca_topic_score_gemma":0.052433226,"teacher_disagreement_score":0.010247848,"about_ca_system_score_codex":0.0008223852,"about_ca_system_score_gemma":0.0014714488,"threshold_uncertainty_score":0.020376444},"labels":[],"label_agreement":null},{"id":"W2898237478","doi":"10.1016/j.foreco.2018.10.034","title":"Comparing the efficacy of various aerial spraying scenarios using Bacillus thuringiensis to protect trees from spruce budworm defoliation","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":29,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service; Société de Protection des Forêts contre les Insectes et Maladies; Natural Resources Canada; Centre de Géomatique du Québec; Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada; Natural Resources Canada; Department of Natural Resources, Government of Newfoundland and Labrador","keywords":"Spruce budworm; Choristoneura fumiferana; Abies balsamea; Balsam; Black spruce; Bacillus thuringiensis; Biology; Forestry; Horticulture; Tortricidae; Ecology; PEST analysis; Geography; Taiga","score_opus":0.0162237860380954,"score_gpt":0.22953163200467336,"score_spread":0.21330784596657795,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2898237478","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99891543,0.00041454594,0.00017766809,0.000026887798,0.000012003083,0.00002794401,0.0000572941,0.000008056905,0.00036024538],"genre_scores_gemma":[0.9989188,0.00033883692,0.00039021767,0.000013053357,0.0000050036842,0.000010553858,0.000048964637,0.0000011059931,0.0002735363],"study_design_codex":"bench_or_experimental","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998592,0.000032982352,0.000015826767,0.000030225523,0.000029008337,0.000032758217],"domain_scores_gemma":[0.9997571,0.000087462206,0.00006085464,0.00001112689,0.000028405975,0.000055035656],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025877776,0.00027556825,0.00026150426,0.00014200983,0.00012016111,0.00017961307,0.00022626214,0.00025186138,0.0011378878],"category_scores_gemma":[0.0004248747,0.00007548099,0.00026116942,0.000092236856,0.000174458,0.00024857043,0.0000987083,0.0003043181,0.000058691694],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.038290195,0.007940358,0.016669763,0.0013923035,0.0005220013,0.00019133944,0.00030731215,0.0134229595,0.81543475,0.00046089085,0.00046333583,0.1049048],"study_design_scores_gemma":[0.003703089,0.40316188,0.09651328,0.00013738307,0.0014448703,0.0004170805,0.00040686282,0.014771362,0.476239,0.00035160678,0.0027982572,0.00005538547],"about_ca_topic_score_codex":0.001842106,"about_ca_topic_score_gemma":0.0043609906,"teacher_disagreement_score":0.001842106,"about_ca_system_score_codex":0.00021398302,"about_ca_system_score_gemma":0.00022196786,"threshold_uncertainty_score":0.003806591},"labels":[],"label_agreement":null},{"id":"W2898257821","doi":"10.1016/j.foreco.2018.10.045","title":"Concept for gene conservation strategy for the endangered Chinese yellowhorn, Xanthoceras sorbifolium, based on simulation of pairwise kinship coefficients","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Genetic and phenotypic traits in livestock","field":"Biochemistry, Genetics and Molecular Biology","cited_by":8,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Genetic diversity; Biology; Kinship; Population; Evolutionary biology; Endangered species; Effective population size; Mating; Genetics; Ecology; Demography","score_opus":0.01940609323988075,"score_gpt":0.2776382681814377,"score_spread":0.258232174941557,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2898257821","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.042228177,0.00014943893,0.95174617,0.00020822507,0.00003324606,0.00013969642,0.000077438555,0.00026954242,0.0051480103],"genre_scores_gemma":[0.5895397,0.00027785893,0.40444246,0.00010040243,0.000026730952,0.00079619273,0.00017814663,0.00008157657,0.004556965],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.999907,0.000034860874,0.0000043673926,0.000017995206,0.000025985806,0.000009756114],"domain_scores_gemma":[0.9997669,0.000106802836,0.000039620867,0.000013534707,0.000047603382,0.000025666046],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048066548,0.00035101053,0.00031071328,0.0004316313,0.0004137807,0.00046454062,0.0011599046,0.0005597147,0.0035122377],"category_scores_gemma":[0.0007992648,0.00018914539,0.000464383,0.00022917522,0.00039373318,0.00056804204,0.00045321506,0.0003806879,0.000234843],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0000214603,0.000031023963,0.0026052084,0.00006288176,0.000027739055,0.00011475129,0.00011492334,0.95459807,0.0022163908,0.022016216,0.00065176905,0.017539568],"study_design_scores_gemma":[0.0000067201477,0.000014714144,0.00016853197,0.0000062602708,0.0000050963445,0.000029195417,0.000015643507,0.99607855,0.00015850621,0.0029953965,0.0005178225,0.000003549532],"about_ca_topic_score_codex":0.007037653,"about_ca_topic_score_gemma":0.0056437626,"teacher_disagreement_score":0.007037653,"about_ca_system_score_codex":0.0007049668,"about_ca_system_score_gemma":0.0011772116,"threshold_uncertainty_score":0.013993323},"labels":[],"label_agreement":null},{"id":"W2898945366","doi":"10.1016/j.foreco.2018.10.037","title":"Resilience of southern Yukon boreal forests to spruce beetle outbreaks","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":25,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Victoria; Natural Resources Canada","funders":"","keywords":"Taiga; Geography; Outbreak; Resilience (materials science); Ecology; Boreal; Forestry; Environmental science; Biology","score_opus":0.004131827070079179,"score_gpt":0.20942433958525117,"score_spread":0.205292512515172,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2898945366","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997476,0.000020861944,0.000017318265,0.000019416877,0.0000012179468,0.0000012867921,0.000043481105,0.0000017407674,0.00014717015],"genre_scores_gemma":[0.9998784,0.000011731053,0.0000058283094,0.000004730846,8.153743e-7,7.878572e-7,0.000046338846,4.85732e-7,0.00005077561],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976414,0.00002699418,0.000017335524,0.000053440424,0.000018744207,0.000119375116],"domain_scores_gemma":[0.9990534,0.0001005884,0.0003841464,0.000099649165,0.00012049009,0.00024163823],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004013574,0.00019914267,0.0002520269,0.0006282155,0.00063068897,0.0009308153,0.0003504082,0.00043033515,0.001171032],"category_scores_gemma":[0.0014462336,0.00017963756,0.0003095808,0.0004707946,0.00061606313,0.0006052476,0.0009779754,0.0002796897,0.00010060601],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023328254,0.000048507827,0.9910039,0.000018509043,0.0001847352,0.00021216931,0.00063568354,0.0028234567,0.0019941607,0.00019080611,0.00014873891,0.0025059925],"study_design_scores_gemma":[0.0000030567232,0.000026698019,0.9980629,0.0000037852772,0.000019661906,0.000044171753,0.00077464164,0.0008241976,0.000056034747,0.00009038251,0.0000907379,0.0000036915096],"about_ca_topic_score_codex":0.077564634,"about_ca_topic_score_gemma":0.16893359,"teacher_disagreement_score":0.92243534,"about_ca_system_score_codex":0.0010791036,"about_ca_system_score_gemma":0.0006363613,"threshold_uncertainty_score":0.1542263},"labels":[],"label_agreement":null},{"id":"W2899778267","doi":"10.1016/j.foreco.2018.10.063","title":"Eucalyptus plantations as hybrid ecosystems: Implications for species conservation in the Brazilian Atlantic forest","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":34,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Dalhousie University","funders":"Universidade Federal de Lavras; Conselho Nacional de Desenvolvimento Científico e Tecnológico","keywords":"Eucalyptus; Biome; Biodiversity; Threatened species; Agroforestry; Ecology; Ecosystem; Forest ecology; Dung beetle; Habitat; Geography; Environmental science; Biology; Scarabaeidae","score_opus":0.012499418134013373,"score_gpt":0.24839499362297027,"score_spread":0.2358955754889569,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2899778267","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99627763,0.00043961362,0.00016202763,0.00009163454,0.000002195604,0.0000061797678,0.000044207773,0.0000027963788,0.002973721],"genre_scores_gemma":[0.9995548,0.00010987638,0.00014368405,0.000007674276,9.946914e-7,0.0000013706322,0.000017905104,8.273845e-7,0.00016282934],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99968135,0.00009755405,0.000015640671,0.0000701528,0.000055997833,0.000079381556],"domain_scores_gemma":[0.9993104,0.00015241322,0.00020641499,0.00006679989,0.00011932708,0.0001445882],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005255921,0.00017762044,0.00015244515,0.00086287083,0.0008762935,0.0009487764,0.00033219802,0.00017313506,0.0013032561],"category_scores_gemma":[0.001135231,0.00009923767,0.00010136068,0.0008739217,0.00096492725,0.0007050326,0.00077211467,0.00016708876,0.0000558634],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019680783,0.00007368654,0.9252498,0.00011354574,0.00006673851,0.00028775344,0.005786184,0.00042225694,0.011222679,0.0075617316,0.0002208962,0.048797864],"study_design_scores_gemma":[0.000004391165,0.000023588434,0.9892707,0.000029544823,0.000041117153,0.00021045427,0.0065957597,0.00093910046,0.0003555135,0.0008130826,0.0017102135,0.000006460119],"about_ca_topic_score_codex":0.086496696,"about_ca_topic_score_gemma":0.40914163,"teacher_disagreement_score":0.086496696,"about_ca_system_score_codex":0.0015846187,"about_ca_system_score_gemma":0.000894256,"threshold_uncertainty_score":0.17198646},"labels":[],"label_agreement":null},{"id":"W2900842636","doi":"10.1016/j.foreco.2018.11.018","title":"Mixed Eucalyptus plantations induce changes in microbial communities and increase biological functions in the soil and litter layers","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":103,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Institut National de la Recherche Scientifique","funders":"Australian Research Council; Conselho Nacional de Desenvolvimento Científico e Tecnológico; Universidade de São Paulo; Fundação de Amparo à Pesquisa do Estado de São Paulo; Centre de Coopération Internationale en Recherche Agronomique pour le Développement; Agence Nationale de la Recherche","keywords":"Acacia mangium; Litter; Plant litter; Eucalyptus; Microbial population biology; Agronomy; Soil organic matter; Ecosystem; Nutrient cycle; Soil biology; Soil carbon; Biology; Species richness; Nitrogen cycle; Cycling; Environmental science; Soil water; Ecology; Nitrogen; Botany; Chemistry; Forestry; Bacteria","score_opus":0.028510001492816964,"score_gpt":0.2144751925088135,"score_spread":0.18596519101599654,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2900842636","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99936336,0.00012714829,0.0001861605,0.000006125403,0.0000034136049,0.0000030344381,0.00005828194,0.000012766888,0.00023967965],"genre_scores_gemma":[0.9990552,0.000043677708,0.00030090494,0.000022404547,0.0000027334127,0.000005282753,0.00015165596,0.000008347492,0.00040975277],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9997999,0.000026592901,0.000014474617,0.00006313329,0.000044640863,0.000051244104],"domain_scores_gemma":[0.9996044,0.00003411087,0.000120089964,0.000030250603,0.000044708646,0.00016650087],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012953383,0.00037293977,0.00030944298,0.000369863,0.00023020252,0.00041873244,0.00016765881,0.0001731539,0.00060398073],"category_scores_gemma":[0.00013456545,0.00019393096,0.00017968431,0.00019744785,0.0002190242,0.00023364657,0.00033125968,0.00035064545,0.00010620361],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004602558,0.000049421793,0.0073159956,0.000021375903,0.000038759248,0.000036378737,0.000026239855,0.000045997647,0.9908772,0.000029855208,0.000014464239,0.0010841008],"study_design_scores_gemma":[0.000024750281,0.00068071263,0.82540226,0.000004719315,0.000073668205,0.00036189216,0.00022337583,0.00067886856,0.17182934,0.00015770984,0.00055111595,0.0000116353],"about_ca_topic_score_codex":0.0017152253,"about_ca_topic_score_gemma":0.0059191105,"teacher_disagreement_score":0.0017152253,"about_ca_system_score_codex":0.00046450496,"about_ca_system_score_gemma":0.00023837462,"threshold_uncertainty_score":0.0034105182},"labels":[],"label_agreement":null},{"id":"W2902482932","doi":"10.1016/j.foreco.2018.11.033","title":"Impacts of forests and forestation on hydrological services in the Andes: A systematic review","year":2018,"lang":"en","type":"review","venue":"Forest Ecology and Management","topic":"Soil erosion and sediment transport","field":"Agricultural and Biological Sciences","cited_by":196,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Horizon 2020 Framework Programme; Direktoratet for Utviklingssamarbeid; Consortium of International Agricultural Research Centers; Government of Canada; Bundesministerium für Umwelt, Naturschutz, Bau und Reaktorsicherheit; European Commission; United States Agency for International Development","keywords":"Afforestation; Ecosystem services; Environmental science; Surface runoff; Agroforestry; Forest ecology; Hydrology (agriculture); Ecosystem; Ecology; Geology","score_opus":0.026254957175517037,"score_gpt":0.2761935573165721,"score_spread":0.24993860014105504,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2902482932","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0012800251,0.9979639,0.000050796065,0.00014981053,0.00004404564,0.000024226938,0.00031457157,0.0000022969202,0.00017018859],"genre_scores_gemma":[0.008808037,0.9906001,0.000182991,0.00018258327,0.000027021359,0.000026297894,0.000115029354,0.0000012445267,0.000056606124],"study_design_codex":"systematic_review","study_design_gemma":"systematic_review","domain_scores_codex":[0.9985933,0.00033742253,0.00049340475,0.00020766983,0.0002682951,0.00009989245],"domain_scores_gemma":[0.9927181,0.005358336,0.0012853263,0.00008336141,0.00042070154,0.00013420999],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0028599196,0.001209993,0.0031409676,0.008219927,0.00035925236,0.002184943,0.0011026106,0.0015040925,0.004088689],"category_scores_gemma":[0.012435468,0.00069321494,0.004149468,0.012535243,0.0006923553,0.0019773073,0.0014972242,0.00089824264,0.00021900624],"study_design_candidate":"systematic_review","study_design_consensus":"systematic_review","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014163034,0.000049187307,0.005884461,0.8365226,0.011720575,0.00028528678,0.00060269143,0.00033911841,0.00020797673,0.0009047142,0.0037528968,0.13958888],"study_design_scores_gemma":[0.00013525161,0.00017809475,0.038427997,0.7684287,0.097313,0.0010713348,0.0020607405,0.00016764297,0.00019680156,0.0013580713,0.090529785,0.0001326375],"about_ca_topic_score_codex":0.021230267,"about_ca_topic_score_gemma":0.078665346,"teacher_disagreement_score":0.021230267,"about_ca_system_score_codex":0.0019197388,"about_ca_system_score_gemma":0.007989216,"threshold_uncertainty_score":0.04221344},"labels":[],"label_agreement":null},{"id":"W2902572429","doi":"10.1016/j.foreco.2018.11.043","title":"Root system origin and structure influence planting shock of black spruce seedlings in boreal microsites","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Université du Québec en Abitibi-Témiscamingue","funders":"Natural Sciences and Engineering Research Council of Canada; Ministère des Forêts, de la Faune et des Parcs; Université du Québec à Chicoutimi","keywords":"Seedling; Biology; Black spruce; Sowing; Botany; Root system; Growing season; Taiga; Agronomy; Horticulture; Ecology","score_opus":0.004616976315458059,"score_gpt":0.20342773708097153,"score_spread":0.19881076076551346,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2902572429","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998684,0.000009502539,0.000016776376,0.000002587803,5.261207e-7,6.3325217e-7,0.000014027618,8.0157145e-7,0.00008687676],"genre_scores_gemma":[0.9996567,0.000009274378,0.00004624214,0.0000049420155,8.036028e-7,0.0000013897065,0.000035507055,0.000001113033,0.00024409541],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999168,0.000016043967,0.0000050723274,0.000027910895,0.000011839335,0.000022262548],"domain_scores_gemma":[0.9994733,0.00012542612,0.00012372273,0.000020877615,0.000050342525,0.00020638348],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016293715,0.00017003981,0.00012591563,0.00019228048,0.00030115765,0.00031475408,0.00017177386,0.00015226254,0.00078766636],"category_scores_gemma":[0.00038090063,0.00009857671,0.00010348153,0.000097665565,0.00019298965,0.00023396844,0.00024294245,0.000312883,0.00009989917],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0015673013,0.00042056185,0.7772851,0.00003192975,0.000038679424,0.00027851816,0.0010648748,0.00025910538,0.21018106,0.000110566376,0.00011948978,0.008642798],"study_design_scores_gemma":[0.0000022067284,0.00011947056,0.9985845,6.70389e-7,0.0000040503032,0.00002823419,0.00023613429,0.00012731773,0.00083898305,0.00001262687,0.000043907068,0.0000019522097],"about_ca_topic_score_codex":0.011844863,"about_ca_topic_score_gemma":0.062220164,"teacher_disagreement_score":0.011844863,"about_ca_system_score_codex":0.00040206837,"about_ca_system_score_gemma":0.000251494,"threshold_uncertainty_score":0.023551881},"labels":[],"label_agreement":null},{"id":"W2904883688","doi":"10.1016/j.foreco.2018.12.004","title":"Post-fire dynamics of terrestrial lichens: Implications for the recovery of woodland caribou winter range","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia","funders":"Canadian Network for Research and Innovation in Machining Technology, Natural Sciences and Engineering Research Council of Canada; Times Higher Education; Association of Canadian Universities for Northern Studies; W. Garfield Weston Foundation; Instituto Nacional del Cáncer; Natural Sciences and Engineering Research Council of Canada; University of Northern British Columbia","keywords":"Lichen; Woodland caribou; Basal area; Ecology; Environmental science; Range (aeronautics); Wildlife; Geography; Habitat; Woodland; Cladonia; Physical geography; Forestry; Biology","score_opus":0.006958095945476308,"score_gpt":0.22214614304814093,"score_spread":0.21518804710266462,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2904883688","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99940526,0.00014313876,0.00005549884,0.00004170115,0.0000015302412,0.0000010829552,0.000031845237,0.0000010822181,0.00031879044],"genre_scores_gemma":[0.99961334,0.00010298444,0.000035846086,0.0000073396845,0.0000019887054,0.0000012863727,0.000042938085,6.9629147e-7,0.00019358186],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991226,0.00002031336,0.000003579276,0.000011700835,0.000011600615,0.000040572144],"domain_scores_gemma":[0.99962425,0.00006951705,0.00007783476,0.000022346612,0.00010275375,0.00010334724],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029554067,0.00011168951,0.00015360238,0.00039797093,0.00049365626,0.00080038136,0.00026433106,0.00030170337,0.0016677823],"category_scores_gemma":[0.0010311175,0.000067923196,0.000113489914,0.00042229408,0.00038545992,0.00052018766,0.00032845492,0.00020929279,0.00013428397],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018186908,0.00011074472,0.98223567,0.00001770086,0.000035620043,0.00016041305,0.001015436,0.000630372,0.0039277803,0.00025445636,0.00011917601,0.011310703],"study_design_scores_gemma":[0.000001364694,0.000032272255,0.99732685,0.0000071114227,0.0000066735333,0.000049751496,0.0014064615,0.0006709884,0.00014782355,0.00010736438,0.00024110703,0.0000021482676],"about_ca_topic_score_codex":0.06196621,"about_ca_topic_score_gemma":0.141972,"teacher_disagreement_score":0.06196621,"about_ca_system_score_codex":0.00064849807,"about_ca_system_score_gemma":0.00055945304,"threshold_uncertainty_score":0.123211026},"labels":[],"label_agreement":null},{"id":"W2906459626","doi":"10.1016/j.foreco.2018.12.023","title":"Effects of red alder on growth of Douglas-fir and western redcedar in southwestern British Columbia","year":2018,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Forests; University of Alberta","funders":"","keywords":"Alder; Thuja; Competition (biology); Juvenile; Botany; Ecology; Biology; Forestry; Geography","score_opus":0.0029272124823190382,"score_gpt":0.18257712129692777,"score_spread":0.17964990881460874,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2906459626","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990895,0.00012987605,0.000011047351,0.000059579772,0.0000033766826,0.0000015507169,0.00019216358,0.000003313134,0.0005096052],"genre_scores_gemma":[0.9980343,0.000095349125,0.00002682829,0.000051000607,0.0000015896863,0.0000025260438,0.0002794455,0.000003774513,0.0015052422],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995152,0.00011773706,0.000020154002,0.00009560278,0.00007999239,0.0001713868],"domain_scores_gemma":[0.9981552,0.00035391448,0.00022642921,0.00009192602,0.00054048846,0.0006320469],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00056628516,0.0003208227,0.00033246572,0.0006420185,0.0010888604,0.0009216444,0.0006487555,0.00047915606,0.0019389966],"category_scores_gemma":[0.0015086383,0.00023684655,0.00027989806,0.00066843757,0.00081836386,0.00027970012,0.00056656834,0.0005393316,0.00030704762],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00055022043,0.00014068825,0.9888015,0.000016895532,0.00011608414,0.000336674,0.0009635432,0.00033401465,0.0028516636,0.00008190418,0.0008537725,0.004953084],"study_design_scores_gemma":[0.0000026821124,0.000008222212,0.9991386,0.0000031829347,0.000010460854,0.000013884255,0.00053272565,0.00007099602,0.000046432975,0.0000061341257,0.00016409505,0.0000025179588],"about_ca_topic_score_codex":0.9457157,"about_ca_topic_score_gemma":0.986586,"teacher_disagreement_score":0.054284275,"about_ca_system_score_codex":0.007706684,"about_ca_system_score_gemma":0.004520996,"threshold_uncertainty_score":0.10920787},"labels":[],"label_agreement":null},{"id":"W2910797458","doi":"10.1016/j.foreco.2018.12.035","title":"Competition increased fine root biomass in Chinese fir (Cunninghamia lanceolata) plantations in Subtropical China","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":37,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia, Okanagan Campus; University of British Columbia","funders":"Jiangxi Provincial Department of Science and Technology; Education Department of Jiangxi Province; National Natural Science Foundation of China","keywords":"Cunninghamia; Biomass (ecology); Subtropics; Competition (biology); China; Pinus massoniana; Environmental science; Botany; Agroforestry; Biology; Agronomy; Ecology; Geography","score_opus":0.003652454910161112,"score_gpt":0.2042484184867909,"score_spread":0.2005959635766298,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2910797458","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9999163,0.000012346921,0.000004304831,0.0000031840211,4.00302e-7,3.431951e-7,0.000006631831,5.1333365e-7,0.000056068173],"genre_scores_gemma":[0.9998161,0.000008570988,0.000010095616,0.000006451884,6.1085933e-7,9.577157e-7,0.000018143086,4.5338405e-7,0.0001386436],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998462,0.000022298138,0.000008295716,0.000043010554,0.000024933748,0.00005525003],"domain_scores_gemma":[0.9996151,0.00006173361,0.000098224016,0.000014777386,0.00004152337,0.00016878439],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022192788,0.00028729747,0.00024211692,0.0007274547,0.0006230922,0.00033361797,0.00037386405,0.0002450653,0.00077402155],"category_scores_gemma":[0.00023899885,0.00020052464,0.00016589889,0.00039357372,0.00044019255,0.00028105135,0.0003977667,0.0002669562,0.000061578976],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006139369,0.00022512556,0.9030622,0.00003790052,0.00008372917,0.0004875956,0.0013654758,0.0002253928,0.0900126,0.00014670703,0.00011914827,0.0036201477],"study_design_scores_gemma":[0.0000026376422,0.000026061332,0.9992467,5.1366357e-7,0.000005956491,0.000027167971,0.00026711784,0.00013269401,0.00025260777,0.000009728004,0.000026562755,0.0000022548172],"about_ca_topic_score_codex":0.058184758,"about_ca_topic_score_gemma":0.19700672,"teacher_disagreement_score":0.058184758,"about_ca_system_score_codex":0.0010407026,"about_ca_system_score_gemma":0.00064340257,"threshold_uncertainty_score":0.11569214},"labels":[],"label_agreement":null},{"id":"W2910819248","doi":"10.1016/j.foreco.2019.01.007","title":"Multiple abiotic and biotic drivers of aboveground biomass shift with forest stratum","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":72,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"National Natural Science Foundation of China","keywords":"Abiotic component; Biotic component; Biomass (ecology); Environmental science; Ecology; Stratum; Agroforestry; Biology","score_opus":0.0032824667489607206,"score_gpt":0.17956506009259396,"score_spread":0.17628259334363325,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2910819248","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99907637,0.00006526738,0.00027702746,0.000015047128,0.0000023393059,0.0000047121707,0.00005061705,0.0000035259427,0.00050493795],"genre_scores_gemma":[0.9994677,0.000010769734,0.000082782615,0.0000066988055,0.0000015480895,0.0000025017123,0.00002876046,0.000002539413,0.00039677118],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996642,0.000113272225,0.000017126684,0.00008387068,0.000048215177,0.000073247335],"domain_scores_gemma":[0.99854505,0.0007207331,0.0002560347,0.00015457257,0.000093891955,0.00022975063],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008009467,0.00020387591,0.0002511322,0.00049737346,0.00037178467,0.0010635377,0.0003471659,0.00034881537,0.00370695],"category_scores_gemma":[0.0019768567,0.00020917068,0.0004301922,0.00045005875,0.0005184564,0.0004998387,0.00076879974,0.00039556314,0.00031005254],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00030093605,0.000110371904,0.9831767,0.000018424287,0.00014220909,0.000062535044,0.00034836843,0.00045158993,0.01060373,0.0003439411,0.000054118125,0.0043871044],"study_design_scores_gemma":[0.0000016194673,0.000029201736,0.99856853,0.0000019841996,0.000018248707,0.00003270271,0.00019685726,0.0006765898,0.00026978605,0.00010929727,0.00009228811,0.000002901152],"about_ca_topic_score_codex":0.003277715,"about_ca_topic_score_gemma":0.008865022,"teacher_disagreement_score":0.00370695,"about_ca_system_score_codex":0.00035169802,"about_ca_system_score_gemma":0.0002893382,"threshold_uncertainty_score":0.012401044},"labels":[],"label_agreement":null},{"id":"W2912386613","doi":"10.1016/j.foreco.2019.01.031","title":"A dendrochronological reconstruction of sugar maple growth and mortality dynamics in partially cut northern hardwood forests","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":29,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"Fonds de recherche du Québec – Nature et technologies; Natural Sciences and Engineering Research Council of Canada; Domtar Corporation","keywords":"Yellow birch; Hardwood; Maple; Stand development; Disturbance (geology); Dead tree; Dendrochronology; Ecology; Biology; Sugar","score_opus":0.009435955920319658,"score_gpt":0.211526214799135,"score_spread":0.20209025887881535,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2912386613","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99928147,0.000024107563,0.000054058946,0.0000040642776,3.0952685e-7,0.000001809266,0.00021637442,0.0000027593221,0.00041502525],"genre_scores_gemma":[0.9993994,0.000021914979,0.00009452723,0.0000012863674,4.7311528e-7,0.0000018839528,0.00031323472,7.621416e-7,0.0001664472],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99994886,0.000009476515,0.0000031930192,0.000014302821,0.000006758036,0.000017288467],"domain_scores_gemma":[0.9997644,0.000047294383,0.000042670883,0.0000242458,0.00006330722,0.000058143025],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015114811,0.00010988233,0.0001075748,0.0011719313,0.00044623073,0.0004215337,0.00015563292,0.00013761777,0.0009957094],"category_scores_gemma":[0.00040673185,0.000093822004,0.00010735039,0.0011321149,0.00017336338,0.00021553761,0.0002838682,0.000103052975,0.00013199427],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00029675313,0.000047402,0.97576356,0.000030890136,0.000043982527,0.0001876764,0.0011848015,0.0027258815,0.0062223165,0.00029672368,0.00023851401,0.01296159],"study_design_scores_gemma":[0.000001811032,0.000012713707,0.99791485,0.000003911031,0.000007777065,0.000035254543,0.00059266156,0.00095452945,0.00012321062,0.00003514531,0.00031509923,0.0000030386461],"about_ca_topic_score_codex":0.06751551,"about_ca_topic_score_gemma":0.18413487,"teacher_disagreement_score":0.06751551,"about_ca_system_score_codex":0.0005214742,"about_ca_system_score_gemma":0.00047241314,"threshold_uncertainty_score":0.13424504},"labels":[],"label_agreement":null},{"id":"W2913379467","doi":"10.1016/j.foreco.2019.01.019","title":"Relationship between gross primary production and canopy colour indices from digital camera images in a rubber (Hevea brasiliensis) plantation, Southwest China","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing in Agriculture","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada","funders":"National Key Research and Development Program of China; National Natural Science Foundation of China","keywords":"Canopy; Environmental science; Primary production; Hevea brasiliensis; Photosynthetically active radiation; Phenology; Atmospheric sciences; Remote sensing; Hue; Crown (dentistry); Natural rubber; Growing season; Geography; Ecology; Botany; Photosynthesis; Ecosystem; Biology; Computer science; Physics","score_opus":0.0043503932661090716,"score_gpt":0.1898750937794465,"score_spread":0.18552470051333744,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2913379467","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998198,0.000009363589,0.000020455993,0.0000026652574,2.5561044e-7,8.1492533e-7,0.000043649736,8.7896393e-7,0.0001021102],"genre_scores_gemma":[0.9997553,0.00000949948,0.000029225375,0.0000021801677,3.4547645e-7,9.4603286e-7,0.00007096766,3.9734792e-7,0.00013114589],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999069,0.000011720071,0.000008674751,0.00003426497,0.00001832166,0.000020026073],"domain_scores_gemma":[0.9998235,0.000041543753,0.000041332645,0.00001137204,0.00003277555,0.000049519487],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013017301,0.00016550042,0.00013770662,0.00066865515,0.00027193726,0.00024815768,0.00018826482,0.00012371539,0.00049797044],"category_scores_gemma":[0.0002183068,0.0001462669,0.00017449126,0.00048308683,0.00029615947,0.00013672713,0.00016170746,0.00012689074,0.00008279127],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001247106,0.000069267015,0.9832548,0.000010499997,0.000048296948,0.00022719665,0.00047221116,0.00024707703,0.012274728,0.000042885546,0.00007025047,0.0031581358],"study_design_scores_gemma":[0.000001138092,0.000007697503,0.99949646,3.7663168e-7,0.000005714018,0.000026071402,0.0001222458,0.00020554855,0.00011078587,0.0000042916217,0.000018471126,0.0000011910107],"about_ca_topic_score_codex":0.11536352,"about_ca_topic_score_gemma":0.2668092,"teacher_disagreement_score":0.11536352,"about_ca_system_score_codex":0.00073009485,"about_ca_system_score_gemma":0.00032978028,"threshold_uncertainty_score":0.22938412},"labels":[],"label_agreement":null},{"id":"W2914799397","doi":"10.1016/j.foreco.2019.01.011","title":"Management of forests and forest carnivores: Relating landscape mosaics to habitat quality of Canada lynx at their range periphery","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"U.S. Forest Service; U.S. Department of Agriculture","keywords":"Habitat; Ecology; Carnivore; Threatened species; Forest management; Geography; Range (aeronautics); Snowshoe hare; Home range; Expansive; Litter; Biology; Predation","score_opus":0.006949152132936667,"score_gpt":0.20002925946747627,"score_spread":0.1930801073345396,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2914799397","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994116,0.00007651062,0.000012134404,0.000043430024,7.2556054e-7,0.000002682789,0.00009708861,6.2322636e-7,0.0003553154],"genre_scores_gemma":[0.9994266,0.000057131958,0.000046767895,0.000014586396,0.0000010234901,0.000002714705,0.0001186167,8.6711754e-7,0.00033170823],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99965537,0.000056844132,0.00001900412,0.00006349306,0.000085765634,0.00011956709],"domain_scores_gemma":[0.9980915,0.00018304354,0.0004913761,0.000054008688,0.00035420692,0.00082581374],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005280778,0.00012602661,0.0001640587,0.0009047648,0.001581918,0.0010435887,0.0007676851,0.00034235432,0.0015008142],"category_scores_gemma":[0.0019202442,0.00015226427,0.00015890312,0.0010328385,0.0008791822,0.00041025542,0.0007283394,0.00034177973,0.000083576255],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000057837893,0.00002663982,0.9964611,0.0000051561856,0.000033232584,0.000052944655,0.00095213624,0.00015602373,0.0002738098,0.000066101406,0.00014764692,0.0017674251],"study_design_scores_gemma":[6.6091513e-7,0.000008694556,0.9985482,0.0000030488325,0.000004192933,0.000020421954,0.0011970423,0.00008507232,0.000013395955,0.00001263518,0.00010512396,0.0000015489385],"about_ca_topic_score_codex":0.91112643,"about_ca_topic_score_gemma":0.98230976,"teacher_disagreement_score":0.088873565,"about_ca_system_score_codex":0.00625092,"about_ca_system_score_gemma":0.0043074256,"threshold_uncertainty_score":0.17879385},"labels":[],"label_agreement":null},{"id":"W2926176442","doi":"10.1016/j.foreco.2019.03.038","title":"Long-term tree-ring derived carbon dynamics of an experimental plantation in relation to species and density in Northwestern Ontario, Canada","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"Ontario Ministry of Natural Resources and Forestry; Ministry of Natural Resources","keywords":"Term (time); Ecology; Relation (database); Dendrochronology; Environmental science; Forest dynamics; Tree (set theory); Carbon fibers; Forestry; Agroforestry; Geography; Biology; Mathematics; Physics; Computer science; Archaeology","score_opus":0.004553187612240733,"score_gpt":0.18561934510687006,"score_spread":0.18106615749462932,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2926176442","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993223,0.000035976624,0.0000374158,0.000022381042,0.000001427847,0.0000061147452,0.00028303338,0.0000028542113,0.0002885728],"genre_scores_gemma":[0.9977447,0.00004919965,0.00013020365,0.000025565201,0.0000011875171,0.000009551787,0.00047821243,0.0000033158956,0.001558081],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997695,0.000023736731,0.000008925543,0.00006515744,0.00006323134,0.000069422],"domain_scores_gemma":[0.9989943,0.000113887916,0.00011106144,0.000043897737,0.00040472538,0.00033203434],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027804766,0.00019989355,0.00031419017,0.00041415798,0.0018730904,0.00067022245,0.0007555316,0.00022059963,0.0008980467],"category_scores_gemma":[0.0004940209,0.00018521339,0.00015393624,0.00062718807,0.0010509879,0.0002871217,0.00036124498,0.00035943993,0.00017832486],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016904215,0.0005546243,0.9358019,0.0000523153,0.000104429986,0.00039034302,0.00410604,0.0009170276,0.042881817,0.0002836136,0.0016909754,0.011526514],"study_design_scores_gemma":[0.000008538753,0.000038938233,0.9977576,0.0000030148287,0.000010345804,0.000030292,0.000861679,0.0003417588,0.000514623,0.000011057082,0.0004150996,0.00000701182],"about_ca_topic_score_codex":0.9750289,"about_ca_topic_score_gemma":0.9938443,"teacher_disagreement_score":0.024971128,"about_ca_system_score_codex":0.017121935,"about_ca_system_score_gemma":0.0072356337,"threshold_uncertainty_score":0.124228895},"labels":[],"label_agreement":null},{"id":"W2930742584","doi":"10.1016/j.foreco.2019.03.056","title":"Interactive effects of CO2 and soil water treatments on growth and biomass allocation in pines and spruces","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant responses to elevated CO2","field":"Agricultural and Biological Sciences","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"Canadian Forest Service; Natural Resources Canada; Canadian Natural Resources Limited","keywords":"Biomass (ecology); Productivity; Biology; Moisture; Animal science; Reforestation; Botany; Water content; Agronomy; Horticulture; Ecology; Chemistry","score_opus":0.004195732636216665,"score_gpt":0.18865402352829738,"score_spread":0.1844582908920807,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2930742584","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996588,0.000074500735,0.00003926366,0.000007530158,0.0000024189558,0.0000016342581,0.000052581836,0.000005043398,0.00015819907],"genre_scores_gemma":[0.99927443,0.000028919576,0.00008363466,0.000022845896,0.0000033170104,0.0000064610936,0.00012497875,0.000010096423,0.00044532702],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99977666,0.00006482767,0.000016016862,0.00005249714,0.000026310285,0.000063744745],"domain_scores_gemma":[0.99888295,0.00049696973,0.00011112375,0.000043169723,0.000084732696,0.00038104397],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028947616,0.0005112664,0.0005287996,0.00047299397,0.00044705434,0.00065830833,0.00037368928,0.00039724473,0.0011010923],"category_scores_gemma":[0.00042164765,0.00036824966,0.00023538279,0.00028069763,0.00061898236,0.00044536887,0.00045659218,0.0005055175,0.00014879067],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.010451947,0.00057222566,0.07054767,0.00010896067,0.0002147783,0.0004423346,0.00038836323,0.0011916396,0.91072017,0.00014741703,0.0001476965,0.005066869],"study_design_scores_gemma":[0.00005533445,0.0005491337,0.962339,0.000004412015,0.00007730235,0.0001574155,0.00035627853,0.00271129,0.033269808,0.00012597228,0.00032867835,0.00002531891],"about_ca_topic_score_codex":0.016293693,"about_ca_topic_score_gemma":0.03954536,"teacher_disagreement_score":0.016293693,"about_ca_system_score_codex":0.0009511871,"about_ca_system_score_gemma":0.00041817097,"threshold_uncertainty_score":0.032397747},"labels":[],"label_agreement":null},{"id":"W2930779510","doi":"10.1016/j.foreco.2019.03.020","title":"A mixture of human and climatic effects shapes the 250-year long fire history of a semi-natural pine dominated landscape of Northern Latvia","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue","funders":"","keywords":"Fire regime; Disturbance (geology); Fire ecology; Ecology; National park; Geography; Vegetation (pathology); Physical geography; Fire history; Natural (archaeology); Climate change; Environmental science; Ecosystem; Archaeology; Biology","score_opus":0.002023965457583593,"score_gpt":0.17325154136456447,"score_spread":0.17122757590698087,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2930779510","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99960953,0.000015156071,0.000028462087,0.000008332481,5.550414e-7,5.653688e-7,0.00002426138,9.2926507e-7,0.00031221815],"genre_scores_gemma":[0.99982685,0.000010691487,0.000017683822,0.000003602626,6.4568496e-7,9.2981645e-7,0.000038629107,0.0000015909173,0.000099540644],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998938,0.00003213051,0.0000058723194,0.000027097505,0.0000075236435,0.000033580513],"domain_scores_gemma":[0.9997024,0.00006863799,0.000091977156,0.000017823988,0.000028409624,0.00009071178],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019036794,0.00008298247,0.00014359727,0.0005015858,0.0004861713,0.0008754027,0.00019622082,0.00030878725,0.0014216406],"category_scores_gemma":[0.0005692941,0.00019122096,0.00013523304,0.00044689007,0.0004658801,0.00029667243,0.00039915467,0.00014459342,0.00017014718],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016560376,0.00004876028,0.9854049,0.000012005258,0.000055118326,0.00021379361,0.00095581915,0.00062472466,0.009186616,0.0001380795,0.0001225423,0.0030721126],"study_design_scores_gemma":[0.0000011648466,0.00000749974,0.99906665,0.0000018499553,0.0000041866806,0.000032336724,0.00042624213,0.00033469274,0.000032387896,0.000021630118,0.00006954615,0.0000018453916],"about_ca_topic_score_codex":0.026813941,"about_ca_topic_score_gemma":0.17428246,"teacher_disagreement_score":0.026813941,"about_ca_system_score_codex":0.0005524676,"about_ca_system_score_gemma":0.00031763868,"threshold_uncertainty_score":0.05331576},"labels":[],"label_agreement":null},{"id":"W2936418432","doi":"10.1016/j.foreco.2019.04.019","title":"Quantifying wind damage associated with variable retention harvesting in coastal British Columbia","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Vancouver Island University","funders":"","keywords":"Environmental science; Windthrow; Ecology; Physical geography; Hydrology (agriculture); Geography; Forestry; Biology; Geology","score_opus":0.011383379773210809,"score_gpt":0.18916241265675565,"score_spread":0.17777903288354485,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2936418432","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99953115,0.000021357586,0.00002660452,0.000005711873,4.2898122e-7,0.0000030938886,0.000086226355,0.0000011341841,0.00032422287],"genre_scores_gemma":[0.9990458,0.000043517266,0.000070671405,0.00000767306,3.8484802e-7,0.000004286468,0.00013269049,0.0000013321273,0.0006936567],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977785,0.000030757325,0.000014571261,0.000045902285,0.00005789708,0.0000730654],"domain_scores_gemma":[0.99872655,0.00029813845,0.0002784378,0.00007712908,0.0004193374,0.00020037402],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038248548,0.00020705147,0.0001761106,0.0008564889,0.0010634672,0.0007831749,0.00056213874,0.00031045594,0.0009805262],"category_scores_gemma":[0.0016547242,0.00016355622,0.000102525635,0.0015118474,0.00050168665,0.00021159746,0.0004899141,0.00028387335,0.00011534862],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013702788,0.00005406665,0.9883031,0.000011138094,0.000040788032,0.00014428503,0.00041445723,0.001242722,0.0019824223,0.000034618726,0.00018082368,0.0074545336],"study_design_scores_gemma":[0.0000012169928,0.000009895521,0.9987979,0.000003571409,0.0000055823702,0.000015237857,0.00048429737,0.00047401758,0.00010051646,0.000007036818,0.00009838494,0.0000025042448],"about_ca_topic_score_codex":0.89971286,"about_ca_topic_score_gemma":0.97693926,"teacher_disagreement_score":0.10028714,"about_ca_system_score_codex":0.0051513254,"about_ca_system_score_gemma":0.00287402,"threshold_uncertainty_score":0.20175546},"labels":[],"label_agreement":null},{"id":"W2937631008","doi":"10.1016/j.foreco.2019.04.010","title":"Riparian vegetation recovery in a 23 year chronosequence of clear-cuts along boreal headwater streams","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Hydrology and Sediment Transport Processes","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Forestry; Lakehead University","funders":"Lakehead University","keywords":"Chronosequence; Riparian zone; Boreal; Taiga; STREAMS; Ecology; Vegetation (pathology); Environmental science; Riparian forest; Forestry; Geography; Ecological succession; Biology; Habitat","score_opus":0.0039116734696613325,"score_gpt":0.19289341570238658,"score_spread":0.18898174223272524,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2937631008","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994541,0.000077925484,0.000022945625,0.000009624178,0.0000036673525,0.0000028491183,0.00030201653,0.0000020027878,0.00012481277],"genre_scores_gemma":[0.9990802,0.000051669216,0.000065375774,0.000015057751,0.0000042554034,0.0000060713382,0.0005270529,0.0000016844006,0.00024867797],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998078,0.000030740237,0.000018111317,0.000054132986,0.000028121265,0.000061153216],"domain_scores_gemma":[0.999154,0.00008729289,0.00032559343,0.000051443945,0.00015670102,0.00022493357],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00049479847,0.0001912062,0.00021455565,0.0008448762,0.00071645086,0.00079761795,0.00037681026,0.0004720121,0.00092574646],"category_scores_gemma":[0.0008456829,0.00020621848,0.00026148782,0.0006918032,0.0004886327,0.000518078,0.00059773406,0.000328547,0.00018864684],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00027069484,0.00006730581,0.995116,0.000012056154,0.00007836884,0.00033632564,0.00051248114,0.00008790295,0.001260061,0.00002172856,0.00016347834,0.002073591],"study_design_scores_gemma":[0.0000010866319,0.00001126519,0.9996816,0.000001240666,0.000004903389,0.000046295274,0.00013486648,0.000028461043,0.00002200967,0.0000018381763,0.00006518272,0.0000012103079],"about_ca_topic_score_codex":0.08736524,"about_ca_topic_score_gemma":0.29782674,"teacher_disagreement_score":0.08736524,"about_ca_system_score_codex":0.0007436497,"about_ca_system_score_gemma":0.00060162204,"threshold_uncertainty_score":0.17371345},"labels":[],"label_agreement":null},{"id":"W2943604010","doi":"10.1016/j.foreco.2019.04.008","title":"RETRACTED: Nonstationary frequency pairing reveals a highly sensitive peak flow regime to harvesting across a wide range of return periods","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Hydrology and Sediment Transport Processes","field":"Environmental Science","cited_by":8,"is_retracted":true,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Science and Engineering Research Council; Natural Sciences and Engineering Research Council of Canada","keywords":"Pairing; Range (aeronautics); Environmental science; Flow (mathematics); Atmospheric sciences; Ecology; Physics; Biology; Mechanics; Engineering; Aerospace engineering","score_opus":0.006243336276963004,"score_gpt":0.21754013723039967,"score_spread":0.21129680095343667,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2943604010","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.998178,0.00003986458,0.0007462077,0.000009599744,0.0000048916263,0.0000040097984,0.00015379304,0.000027780348,0.0008358398],"genre_scores_gemma":[0.9985985,0.00001687383,0.00031820123,0.000026658114,0.000008763007,0.000007836021,0.00037420788,0.000029166818,0.0006196631],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998599,0.00001826466,0.00000812841,0.000058228103,0.000023386045,0.00003212832],"domain_scores_gemma":[0.99950993,0.000108704546,0.00013782083,0.00009196822,0.000050582403,0.00010094108],"candidate_categories":["research_integrity"],"consensus_categories":[],"category_scores_codex":[0.00020848773,0.00012946864,0.0003719775,0.0006886747,0.000430677,0.00060983654,0.00036413383,0.00028219222,0.0033737028],"category_scores_gemma":[0.00068813376,0.00021450494,0.00016084644,0.00043407406,0.00030303985,0.00036178797,0.00050586386,0.00039382442,0.0006497759],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014478425,0.00039818633,0.63078594,0.00004064511,0.00012094369,0.00032120885,0.000440509,0.0009829939,0.3251004,0.00044359342,0.000873801,0.039044026],"study_design_scores_gemma":[0.000005078037,0.00008288142,0.99577975,0.0000019243473,0.000007716948,0.00021424716,0.000062117426,0.001540221,0.0019964369,0.000102873215,0.00020012968,0.0000066297075],"about_ca_topic_score_codex":0.001147711,"about_ca_topic_score_gemma":0.002119127,"teacher_disagreement_score":0.99971783,"about_ca_system_score_codex":0.00014614074,"about_ca_system_score_gemma":0.000110508496,"threshold_uncertainty_score":0.011286199},"labels":[],"label_agreement":null},{"id":"W2944428838","doi":"10.1016/j.foreco.2019.04.056","title":"A decision framework for hemlock woolly adelgid management: Review of the most suitable strategies and tactics for eastern Canada","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Canadian Forest Service; Natural Resources Canada","funders":"","keywords":"Nova scotia; Forest management; Geography; Forest ecology; Environmental resource management; Adaptive management; Invasive species; Ecosystem management; Ecosystem; Ecology; Forestry; Environmental planning; Biology; Environmental science; Archaeology","score_opus":0.005494535418956501,"score_gpt":0.21857424530062022,"score_spread":0.21307970988166372,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2944428838","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0032681336,0.9174209,0.021504194,0.03143409,0.0010160168,0.00043161566,0.00050974166,0.0000821513,0.024333023],"genre_scores_gemma":[0.07335185,0.8708697,0.046549596,0.0046784817,0.0004380843,0.00034685442,0.0005144257,0.0000320229,0.0032189756],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.9968548,0.0010397623,0.0003641474,0.00018977653,0.0012243679,0.0003271448],"domain_scores_gemma":[0.9944325,0.002193053,0.00061290327,0.00006351197,0.0022468225,0.00045124348],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.008421864,0.0018253217,0.0015120647,0.0070278393,0.0030165364,0.0063776486,0.003733318,0.00189758,0.0026154772],"category_scores_gemma":[0.008135148,0.0005655788,0.0012111235,0.0061477628,0.0036470748,0.0021407797,0.001470194,0.0031973377,0.000424804],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000091927504,0.00021456396,0.0041101156,0.028745018,0.0004003998,0.00067377125,0.0026002792,0.042334348,0.00071284146,0.1841789,0.064628676,0.6713091],"study_design_scores_gemma":[0.000051621406,0.0001677468,0.009290822,0.07119727,0.000591763,0.0004934883,0.0046066125,0.014605073,0.0004623202,0.05946913,0.8388026,0.00026158],"about_ca_topic_score_codex":0.69678044,"about_ca_topic_score_gemma":0.8576905,"teacher_disagreement_score":0.30321956,"about_ca_system_score_codex":0.05451206,"about_ca_system_score_gemma":0.08938312,"threshold_uncertainty_score":0.6100105},"labels":[],"label_agreement":null},{"id":"W2947818298","doi":"10.1016/j.foreco.2019.05.054","title":"Utilizing a topographic moisture index to characterize understory vegetation patterns in the boreal forest","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":20,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; Forest Resource Improvement Association of Alberta; Alberta Innovates; University of Alberta; Alberta Conservation Association","keywords":"Understory; Environmental science; Deciduous; Abundance (ecology); Boreal; Vegetation (pathology); Taiga; Biodiversity; Diversity index; Water content; Ecology; Geography; Forestry; Species richness; Geology; Canopy; Biology","score_opus":0.009082502046033608,"score_gpt":0.2126972537031697,"score_spread":0.20361475165713608,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2947818298","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99944085,0.000046206103,0.0001806172,0.0000039725196,5.800598e-7,0.0000038248113,0.00008988925,0.000004398579,0.00022968912],"genre_scores_gemma":[0.999226,0.000031161282,0.00049029867,0.000004147043,0.000001283566,0.0000024592148,0.0001403595,8.6985364e-7,0.000103538936],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999926,0.000012665966,0.0000045663405,0.000016973005,0.000021885411,0.000017924653],"domain_scores_gemma":[0.99979335,0.000034111756,0.00008551961,0.000009243148,0.00003745129,0.000040336163],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020468599,0.00019790132,0.000092206516,0.0007012923,0.00021795115,0.00040426422,0.00019013483,0.000091615526,0.00031280395],"category_scores_gemma":[0.00043332652,0.00007052686,0.000060351907,0.0006599957,0.00021307053,0.00027281916,0.00019223812,0.000096773176,0.000043908174],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000033169374,0.00002717573,0.98994887,0.000008145018,0.000012427797,0.00002876802,0.0001577295,0.0002180016,0.002810917,0.00001847686,0.000039456037,0.0066968524],"study_design_scores_gemma":[7.4809276e-7,0.000011774513,0.9991648,0.0000010629896,0.0000026548282,0.00001864238,0.000117074036,0.00051106245,0.000101433696,0.000010828068,0.000058572507,0.0000013795178],"about_ca_topic_score_codex":0.1584156,"about_ca_topic_score_gemma":0.4736146,"teacher_disagreement_score":0.1584156,"about_ca_system_score_codex":0.00048173533,"about_ca_system_score_gemma":0.00034968555,"threshold_uncertainty_score":0.31498706},"labels":[],"label_agreement":null},{"id":"W2949713642","doi":"10.1016/j.foreco.2019.06.016","title":"Rainforest conservation in Mexico’s lowland Maya area: Integrating local meanings of conservation and land-use dynamics","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Conservation, Biodiversity, and Resource Management","field":"Environmental Science","cited_by":20,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Social Sciences and Humanities Research Council of Canada; Saint Mary’s University","keywords":"Maya; Rainforest; Geography; Agroforestry; Ecology; Land use; Deforestation (computer science); Biodiversity conservation; Nature Conservation; Environmental resource management; Biodiversity; Archaeology; Environmental science; Biology","score_opus":0.006435171041205755,"score_gpt":0.17610679472380394,"score_spread":0.1696716236825982,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2949713642","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9539293,0.0029238025,0.0010073939,0.012423896,0.000040234885,0.000028745037,0.00018670435,0.000019327754,0.02944065],"genre_scores_gemma":[0.9978607,0.0006220243,0.00044941404,0.00019478893,0.000016146343,0.000015869056,0.000031920496,0.0000034074253,0.0008056505],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99962914,0.00020377498,0.000012527572,0.00003507281,0.000041402123,0.000078118326],"domain_scores_gemma":[0.9992385,0.0002846223,0.00022212749,0.000039786963,0.00011420826,0.0001007156],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010694539,0.00014153938,0.0001601515,0.0014625577,0.0037683235,0.0032769844,0.00052380917,0.00040136106,0.0012979846],"category_scores_gemma":[0.0017195246,0.00010278074,0.00009335063,0.0018242898,0.0048155445,0.0016951666,0.0014330066,0.0007182097,0.00001999462],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022635747,0.00026326324,0.3991886,0.00041750344,0.00014478693,0.0010394177,0.16694593,0.0013619411,0.0013923411,0.30522755,0.008719116,0.11507322],"study_design_scores_gemma":[0.00004618239,0.00006954413,0.61767715,0.0006582243,0.00014942803,0.00033178562,0.26319027,0.0019237207,0.00061234116,0.024435671,0.090868145,0.000037456717],"about_ca_topic_score_codex":0.16787419,"about_ca_topic_score_gemma":0.5046141,"teacher_disagreement_score":0.16787419,"about_ca_system_score_codex":0.007658405,"about_ca_system_score_gemma":0.0033658466,"threshold_uncertainty_score":0.33379412},"labels":[],"label_agreement":null},{"id":"W2957366499","doi":"10.1016/j.foreco.2019.117459","title":"Grizzly bear selection of recently harvested forests is dependent on forest recovery rate and landscape composition","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; University of Alberta; University of Saskatchewan; Canadian Forest Service; Alberta Ministry of Agriculture and Forestry; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; fRI Research; Shell Canada; Cenovus Energy","keywords":"Grizzly Bears; Habitat; Ursus; Threatened species; Disturbance (geology); Ecology; Seral community; Forest management; Geography; Old-growth forest; Forest restoration; Home range; Environmental science; Forest ecology; Population; Biology; Ecosystem","score_opus":0.0052666776941202075,"score_gpt":0.19293612077464356,"score_spread":0.18766944308052336,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2957366499","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9988655,0.000057197278,0.000097305776,0.000031714084,0.000004294942,0.0000041244457,0.000050053673,0.00000650605,0.0008832922],"genre_scores_gemma":[0.9986332,0.000037762038,0.00011839172,0.00004061306,0.0000096922495,0.000004866686,0.00012393792,0.000021828246,0.0010096672],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99954385,0.00015832017,0.000020947975,0.000120733894,0.000071405695,0.00008470082],"domain_scores_gemma":[0.99843615,0.00036739078,0.0005199984,0.00021404817,0.00009589629,0.00036645107],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010370604,0.00026649566,0.0005090551,0.000673213,0.0005421462,0.0007308773,0.0005549103,0.00029067334,0.00476825],"category_scores_gemma":[0.0016798979,0.00026195197,0.0004751255,0.000290408,0.00075256213,0.00041395111,0.00046256787,0.0005351201,0.0006191469],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007110729,0.00024689868,0.97384304,0.000019049423,0.00039190493,0.00035288755,0.00052282354,0.000130891,0.01814236,0.00023553843,0.0003674104,0.005036019],"study_design_scores_gemma":[0.0000033438932,0.00005900532,0.99922955,0.0000013174565,0.000019562645,0.0002080427,0.000114175775,0.000105471736,0.00013926851,0.000027965623,0.00008833546,0.000003939306],"about_ca_topic_score_codex":0.003802019,"about_ca_topic_score_gemma":0.015023404,"teacher_disagreement_score":0.00476825,"about_ca_system_score_codex":0.00016068901,"about_ca_system_score_gemma":0.00026452646,"threshold_uncertainty_score":0.015951395},"labels":[],"label_agreement":null},{"id":"W2967853296","doi":"10.1016/j.foreco.2019.117500","title":"Drivers of lodgepole pine recruitment across a gradient of bark beetle outbreak and wildfire in British Columbia","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":23,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Simon Fraser University","funders":"Canadian Forest Service; Natural Sciences and Engineering Research Council of Canada; Simon Fraser University; Ministry of Environment; Oregon State University","keywords":"Mountain pine beetle; Pinus contorta; Ecology; Dendroctonus; Outbreak; Bark beetle; Snag; Disturbance (geology); Environmental science; Biology; Geography; Habitat; Bark (sound)","score_opus":0.005410438916446189,"score_gpt":0.2065786952486326,"score_spread":0.2011682563321864,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2967853296","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9988232,0.00012618782,0.000035118006,0.00012839178,0.0000035629605,0.000004342846,0.00026270997,0.0000034838583,0.000612965],"genre_scores_gemma":[0.998874,0.00008378736,0.00002853188,0.000041265677,0.0000014343016,0.000004559188,0.00016588948,0.0000028478041,0.00079764746],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995283,0.00008477385,0.000024890614,0.00009245507,0.00006150167,0.00020806341],"domain_scores_gemma":[0.9973942,0.0005001826,0.00037495705,0.00009153405,0.00062148366,0.0010175436],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048496277,0.00019263153,0.000341082,0.0011727018,0.0017629798,0.0014352014,0.0009740141,0.0005295577,0.0028811838],"category_scores_gemma":[0.0019884894,0.00038536623,0.00024920568,0.0015700706,0.0009558198,0.00041420103,0.0011611737,0.000832524,0.00027154604],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008249296,0.00004456502,0.99507695,0.000009849457,0.00005108089,0.00011335255,0.00094002235,0.0002399518,0.0006239863,0.00008719393,0.00051719695,0.002213436],"study_design_scores_gemma":[0.000002386173,0.0000035107437,0.9978796,0.0000088957495,0.000008918965,0.0000185133,0.001598106,0.00023914357,0.000022478585,0.000018674755,0.00019490335,0.000004983733],"about_ca_topic_score_codex":0.9657088,"about_ca_topic_score_gemma":0.9923768,"teacher_disagreement_score":0.034291208,"about_ca_system_score_codex":0.007439276,"about_ca_system_score_gemma":0.007180083,"threshold_uncertainty_score":0.06898624},"labels":[],"label_agreement":null},{"id":"W2971536801","doi":"10.1016/j.foreco.2019.117577","title":"Understory plant communities vary with tree productivity in two reclaimed boreal upland forest types in Canada","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Understory; Species richness; Pinus contorta; Forb; Productivity; Shrub; Environmental science; Plant community; Agronomy; Species diversity; Ecology; Biology; Forestry; Canopy; Geography; Grassland","score_opus":0.006209684711028266,"score_gpt":0.18489671970845675,"score_spread":0.1786870349974285,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2971536801","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99929404,0.00006424211,0.000031046675,0.000019579698,0.0000011648584,0.000005368773,0.00025084228,0.0000030183428,0.00033064038],"genre_scores_gemma":[0.99867344,0.00006676126,0.00012518502,0.00002690406,9.119675e-7,0.0000061514,0.00033687564,0.0000036600666,0.00076011475],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995123,0.000048853013,0.00001945308,0.00009710079,0.00009774363,0.00022456895],"domain_scores_gemma":[0.99846494,0.00013923548,0.00020173428,0.000046556233,0.0006325579,0.00051506254],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004443039,0.0002747408,0.00035183318,0.0016323569,0.0030057458,0.0013850051,0.0011197232,0.0003321043,0.0011234964],"category_scores_gemma":[0.0012064289,0.00031061762,0.00026781432,0.0020862531,0.0012616761,0.00044144562,0.0008387839,0.00041791372,0.00014925518],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022008104,0.00007097826,0.98440903,0.000024512568,0.00006469568,0.00015128443,0.0046416754,0.00017968814,0.0025884076,0.00014198189,0.0005435616,0.0069641066],"study_design_scores_gemma":[0.0000028002055,0.000008239702,0.9970446,0.0000049717473,0.000008856068,0.00003382804,0.002365051,0.00014784544,0.00007856469,0.000010802464,0.00028915744,0.0000052735595],"about_ca_topic_score_codex":0.9926461,"about_ca_topic_score_gemma":0.9986908,"teacher_disagreement_score":0.017772973,"about_ca_system_score_codex":0.017772973,"about_ca_system_score_gemma":0.00970722,"threshold_uncertainty_score":0.12895256},"labels":[],"label_agreement":null},{"id":"W2981346950","doi":"10.1016/j.foreco.2019.117667","title":"Juvenile thinning can effectively mitigate the effects of drought on tree growth and water consumption in a young Pinus contorta stand in the interior of British Columbia, Canada","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":51,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Forests; University of Waterloo; University of British Columbia, Okanagan Campus; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Thinning; Pinus contorta; Transpiration; Diameter at breast height; Environmental science; Infestation; Growing season; Water-use efficiency; Forestry; Juvenile; Geography; Ecology; Agronomy; Biology; Irrigation; Botany; Photosynthesis","score_opus":0.0018419417806553164,"score_gpt":0.15687382204470085,"score_spread":0.15503188026404555,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2981346950","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99899286,0.0000496291,0.00004949534,0.000038810158,0.00000220641,0.00000594091,0.000064848544,0.0000062488807,0.0007899578],"genre_scores_gemma":[0.99887353,0.000052409516,0.00013911829,0.000026402868,9.417155e-7,0.0000035853473,0.000070684764,0.0000025229028,0.00083079364],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998795,0.000012081816,0.000004068362,0.000016673319,0.000025989748,0.000061706494],"domain_scores_gemma":[0.99971694,0.000025536585,0.000029843737,0.000008050846,0.000112442234,0.000107138636],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022187922,0.0001888493,0.00017865094,0.000309325,0.0016486321,0.0005442742,0.00062009983,0.00020059082,0.00070999516],"category_scores_gemma":[0.00039931052,0.0001256381,0.000089386405,0.0003688849,0.0003098873,0.00017012737,0.00027173926,0.00023974036,0.000085493935],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006133587,0.00040995204,0.89878005,0.00006886441,0.000094017574,0.0015975764,0.0019461777,0.0024582702,0.038144488,0.00026500938,0.003465766,0.05215654],"study_design_scores_gemma":[0.000009025943,0.000034826215,0.9957333,0.000009490299,0.00001829146,0.00007928599,0.0014172941,0.001211498,0.0005211174,0.0000414959,0.0009162038,0.00000820293],"about_ca_topic_score_codex":0.93613017,"about_ca_topic_score_gemma":0.9947673,"teacher_disagreement_score":0.063869834,"about_ca_system_score_codex":0.006189408,"about_ca_system_score_gemma":0.005038238,"threshold_uncertainty_score":0.12849188},"labels":[],"label_agreement":null},{"id":"W2985507095","doi":"10.1016/j.foreco.2019.117645","title":"Long-term impact of nitrogen fertilization on carbon and water fluxes in a Douglas-fir stand in the Pacific Northwest","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; Agrium","keywords":"Primary production; Environmental science; Human fertilization; Evapotranspiration; Carbon sequestration; Fertilizer; Ecosystem respiration; Eddy covariance; Ecosystem; Nitrogen; Forestry; Agronomy; Hydrology (agriculture); Animal science; Ecology; Biology; Geography; Chemistry; Carbon dioxide; Geology","score_opus":0.0039310744507254835,"score_gpt":0.19638876289976484,"score_spread":0.19245768844903935,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2985507095","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99980754,0.000022247952,0.00001268499,0.00001819715,0.00000150973,8.0554656e-7,0.0000431848,0.000001040241,0.00009271731],"genre_scores_gemma":[0.99948347,0.000025812336,0.00003610566,0.000019170906,0.0000012620742,0.000002516684,0.00012240857,0.0000013501577,0.00030788896],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999894,0.000013098228,0.0000085461,0.000029757899,0.000016839338,0.00003769116],"domain_scores_gemma":[0.9995005,0.0001277504,0.000087895736,0.000022193659,0.00009889812,0.000162651],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036807975,0.00024981445,0.0003416427,0.00024906197,0.0010150882,0.00061756634,0.00056820264,0.00067655527,0.0007562116],"category_scores_gemma":[0.00052569556,0.0002657687,0.00025416707,0.00026948072,0.00073219556,0.0006388866,0.00050340634,0.00063215615,0.000103064966],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0020531926,0.0013289236,0.93395644,0.000057308218,0.00030256633,0.0012025029,0.0006101659,0.0030932203,0.048682034,0.00020909584,0.00039900764,0.008105535],"study_design_scores_gemma":[0.000011851111,0.000073077405,0.9964218,0.0000040567493,0.00003349986,0.00006251875,0.0005007251,0.0018452517,0.00085993996,0.000052624982,0.00012611649,0.0000086260525],"about_ca_topic_score_codex":0.20642897,"about_ca_topic_score_gemma":0.46207055,"teacher_disagreement_score":0.20642897,"about_ca_system_score_codex":0.0028825374,"about_ca_system_score_gemma":0.0014663279,"threshold_uncertainty_score":0.41045487},"labels":[],"label_agreement":null},{"id":"W2991045608","doi":"10.1016/j.foreco.2019.117685","title":"Harvested forests as a surrogate to wildfires in relation to grizzly bear food-supply in west-central Alberta","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Foothills Medical Centre; University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Grizzly Bears; Forb; Geography; Disturbance (geology); Productivity; Ursus; Vegetation (pathology); Ecology; Agroforestry; Environmental science; Grassland; Biology; Demography; Population","score_opus":0.0034317820946039536,"score_gpt":0.19293593151657404,"score_spread":0.18950414942197008,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2991045608","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9988815,0.00008118369,0.000032180338,0.00004816534,0.0000026849461,0.0000033118633,0.00020216635,0.0000015712824,0.0007471899],"genre_scores_gemma":[0.9979558,0.000085844586,0.000064002685,0.000026330854,0.0000022242684,0.0000034645022,0.00027749292,0.0000022070642,0.001582439],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997738,0.000045767036,0.0000114981685,0.00004124294,0.00004778205,0.00007997067],"domain_scores_gemma":[0.9988456,0.0002006245,0.00027712146,0.000043048967,0.0002771796,0.00035646852],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000441953,0.00014575289,0.00019758873,0.0006735191,0.0010488429,0.0010139613,0.0008018016,0.0002770033,0.001633502],"category_scores_gemma":[0.0012458361,0.00015689735,0.00012646987,0.0011310768,0.0007831006,0.00029314889,0.00061663793,0.00043031745,0.000117451695],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000526909,0.00010811569,0.9900462,0.000021101901,0.000062289335,0.00031893127,0.0021049536,0.0006737509,0.0007694428,0.00029979713,0.0006138048,0.00445471],"study_design_scores_gemma":[0.000003684623,0.000010568665,0.99565095,0.000006310212,0.000008188027,0.000025465759,0.0036257727,0.0002319284,0.00006089095,0.000036462086,0.00033676182,0.0000030574809],"about_ca_topic_score_codex":0.9450559,"about_ca_topic_score_gemma":0.99068403,"teacher_disagreement_score":0.054944098,"about_ca_system_score_codex":0.006933803,"about_ca_system_score_gemma":0.0042481394,"threshold_uncertainty_score":0.11053532},"labels":[],"label_agreement":null},{"id":"W2993868100","doi":"10.1016/j.foreco.2019.117737","title":"Previous year outbreak conditions and spring climate predict spruce budworm population changes in the following year","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":14,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"Atlantic Canada Opportunities Agency","keywords":"Spruce budworm; Population; Choristoneura fumiferana; Geography; Environmental science; Outbreak; Forestry; Ecology; Demography; Statistics; Physical geography; Biology; Mathematics; Tortricidae","score_opus":0.003929603354947682,"score_gpt":0.20438466178830014,"score_spread":0.20045505843335246,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2993868100","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995178,0.000039245133,0.00004825328,0.000020789452,0.0000065587697,0.000001507851,0.00013822313,0.00000429105,0.00022323841],"genre_scores_gemma":[0.99929523,0.000035062567,0.000045703964,0.000015076886,0.0000064283454,0.0000015574618,0.0002930656,0.0000025280247,0.00030533958],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998908,0.000018275645,0.000007938816,0.000031326275,0.000009691932,0.000041985248],"domain_scores_gemma":[0.9988901,0.00021854162,0.0003785343,0.000050482817,0.000066534,0.00039584062],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004002017,0.00021638369,0.00016032139,0.00044521058,0.00030386407,0.0007165195,0.00022083007,0.00046225844,0.0030041158],"category_scores_gemma":[0.0011055476,0.0002014445,0.0004565983,0.00027003107,0.00015964394,0.0003937441,0.00029166188,0.00043701104,0.00033736601],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000059236387,0.00004770711,0.9986143,0.0000022440572,0.000038398724,0.000022218435,0.000020973011,0.00013466559,0.00041653906,0.0000066003827,0.00008768667,0.00054940855],"study_design_scores_gemma":[0.0000010942143,0.000018183538,0.9994618,0.0000012449193,0.000009128359,0.000022242615,0.000055120134,0.0003470833,0.000034301003,0.0000063146053,0.000042494823,8.0183486e-7],"about_ca_topic_score_codex":0.017262455,"about_ca_topic_score_gemma":0.055750825,"teacher_disagreement_score":0.017262455,"about_ca_system_score_codex":0.00033691942,"about_ca_system_score_gemma":0.0002317927,"threshold_uncertainty_score":0.03432393},"labels":[],"label_agreement":null},{"id":"W2994833323","doi":"10.1016/j.foreco.2019.117758","title":"Linking leaf-level morphological and physiological plasticity to seedling survival and growth of introduced Canadian sugar maple to elevated precipitation under warming","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Forestry; Ministry of Education and Child Care; Lakehead University","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Maple; Sugar; Seedling; Biology; Botany; Precipitation; Aceraceae; Horticulture; Agronomy; Geography; Food science; Meteorology","score_opus":0.015299089195170049,"score_gpt":0.2080622223046229,"score_spread":0.19276313310945287,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2994833323","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99952996,0.00002176763,0.000044706594,0.000012220704,0.000001342222,0.0000028669836,0.00008942423,0.0000041222247,0.00029364115],"genre_scores_gemma":[0.9985297,0.000027034277,0.00010383559,0.00003068976,0.0000010177741,0.0000061827363,0.00023331569,0.000007716534,0.0010605097],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998565,0.000012693333,0.0000047183385,0.000041330026,0.00003632127,0.000048412963],"domain_scores_gemma":[0.99935967,0.00009289239,0.0000866671,0.000027077504,0.00021953821,0.00021422918],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002837459,0.00023581991,0.0002279131,0.00054352795,0.0007956522,0.0005467896,0.00057367457,0.00026303687,0.0010618662],"category_scores_gemma":[0.0004786434,0.0001745029,0.00015388912,0.00047718885,0.00051234994,0.00023029056,0.0003632587,0.0005602596,0.00009456699],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0017707135,0.00032752534,0.43150756,0.00008786017,0.00023916159,0.00038892834,0.0028821472,0.0012721986,0.5493999,0.0003999369,0.00078851334,0.010935549],"study_design_scores_gemma":[0.0000039568836,0.000023796043,0.99797374,0.0000013963919,0.000014032451,0.000018639897,0.00026836936,0.0002556272,0.0012100941,0.00000940186,0.0002129272,0.000007922697],"about_ca_topic_score_codex":0.73292226,"about_ca_topic_score_gemma":0.92996514,"teacher_disagreement_score":0.26707774,"about_ca_system_score_codex":0.005043454,"about_ca_system_score_gemma":0.0025910768,"threshold_uncertainty_score":0.5373012},"labels":[],"label_agreement":null},{"id":"W2995073496","doi":"10.1016/j.foreco.2019.117801","title":"Pre-commercial thinning enhances competitive traits of boreal ericaceous shrubs and reduces soil fertility","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Forêts, de la Faune et des Parcs; Cegep de Sainte Foy; Université de Sherbrooke","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Ericaceae; Vaccinium; Shrub; Biology; Thinning; Agronomy; Boreal; Botany; Environmental science; Ecology","score_opus":0.004514228207330569,"score_gpt":0.21115598731245255,"score_spread":0.20664175910512197,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995073496","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994153,0.000087837885,0.000054799635,0.000011046465,0.0000040081427,0.0000032126204,0.000022173785,0.0000064810506,0.00039524108],"genre_scores_gemma":[0.9983296,0.00007661381,0.00033199097,0.00003857472,0.000007783154,0.0000053868234,0.00014756309,0.000010055257,0.0010524116],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998821,0.000023025084,0.0000075363237,0.000024841507,0.000028982013,0.000033530643],"domain_scores_gemma":[0.99932444,0.00009810615,0.00015978845,0.000046321125,0.000051759187,0.00031974015],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024121256,0.00028581888,0.0002130811,0.00016832567,0.00021566689,0.00030894394,0.00035084793,0.00021337181,0.001572847],"category_scores_gemma":[0.00036161952,0.0001426832,0.00013760554,0.00010132724,0.00018233585,0.00028997968,0.00020375542,0.00037551715,0.0001500566],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002522855,0.0020580245,0.036113333,0.00007572546,0.000070730726,0.00022573496,0.00007964347,0.00016769502,0.9436492,0.00007835138,0.00021515718,0.014743512],"study_design_scores_gemma":[0.00007859649,0.0022658382,0.9551462,0.000008535878,0.000047133097,0.00047821377,0.00012485689,0.00061395846,0.040313132,0.000082605125,0.00083041564,0.000010459414],"about_ca_topic_score_codex":0.0022142406,"about_ca_topic_score_gemma":0.009719086,"teacher_disagreement_score":0.0022142406,"about_ca_system_score_codex":0.00022831045,"about_ca_system_score_gemma":0.0002695691,"threshold_uncertainty_score":0.005261719},"labels":[],"label_agreement":null},{"id":"W2997883342","doi":"10.1016/j.foreco.2019.117662","title":"The “sweet spot” for maple syrup production proposed by is not that sweet","year":2019,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant-Derived Bioactive Compounds","field":"Chemistry","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Forêts, de la Faune et des Parcs; Ouranos","funders":"","keywords":"Maple; Yield (engineering); Production (economics); Climate change; Environmental science; Horticulture; Botany; Biology; Economics; Ecology; Physics","score_opus":0.011499044954063056,"score_gpt":0.21941855299025936,"score_spread":0.2079195080361963,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2997883342","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.68422097,0.0055910745,0.03194625,0.031714056,0.0011801961,0.00017234773,0.0004556431,0.00065653946,0.24406295],"genre_scores_gemma":[0.9736276,0.0010990885,0.008884275,0.0027077969,0.000110848065,0.000036411373,0.00007428217,0.000030179583,0.013429583],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.999721,0.000054584987,0.000011688917,0.00007132564,0.000080878286,0.000060508813],"domain_scores_gemma":[0.9997477,0.000021281143,0.00006791714,0.000035132147,0.000055793807,0.00007219546],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00049044745,0.00039567286,0.00027549206,0.00047071333,0.0009827118,0.0016922179,0.0005267223,0.001061533,0.0033536702],"category_scores_gemma":[0.000351577,0.00012274303,0.00024204099,0.00041421974,0.0022134832,0.0019099233,0.0010383333,0.0011120621,0.0005168646],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001517859,0.00028253952,0.035450872,0.0009037907,0.00017174805,0.0021239703,0.0014500036,0.0014921878,0.38674566,0.26900515,0.02108927,0.27976695],"study_design_scores_gemma":[0.00014009232,0.002021612,0.18112956,0.00039249775,0.00017337238,0.004828307,0.008869349,0.002899672,0.10922735,0.17965738,0.51044726,0.00021356651],"about_ca_topic_score_codex":0.0009533205,"about_ca_topic_score_gemma":0.0039553866,"teacher_disagreement_score":0.9990467,"about_ca_system_score_codex":0.00071644265,"about_ca_system_score_gemma":0.0008937653,"threshold_uncertainty_score":0.0112192035},"labels":[],"label_agreement":null},{"id":"W2999602819","doi":"10.1016/j.foreco.2019.117823","title":"Comparing strategies for representing individual-tree secondary growth in mixed-species stands in the Acadian Forest region","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":25,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"National Institute of Food and Agriculture; National Science Foundation","keywords":"Basal area; Mathematics; Statistics; Tree (set theory); Forestry; Ecology; Biology; Geography; Combinatorics","score_opus":0.029273336533770625,"score_gpt":0.22617869201395824,"score_spread":0.19690535548018762,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2999602819","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9882217,0.000096376185,0.010504215,0.00002763864,0.000003952094,0.000036924885,0.00010524239,0.00006377213,0.00094023324],"genre_scores_gemma":[0.9853102,0.000035027595,0.014272545,0.000007364799,0.0000014091654,0.0000240594,0.0001459234,0.000011979733,0.00019147294],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9994203,0.000327181,0.00003855011,0.000093203475,0.000057431727,0.00006333573],"domain_scores_gemma":[0.9971891,0.0019936343,0.00013803608,0.00011682605,0.0004353088,0.0001271483],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0026877502,0.0004634762,0.00043770976,0.0011208225,0.00040516222,0.0013465431,0.0006084275,0.00038340542,0.0007692259],"category_scores_gemma":[0.006691716,0.0001666221,0.00040792412,0.00071305217,0.00026492146,0.00070921,0.0006854338,0.00023640637,0.000077696124],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0020884986,0.00034358844,0.2222802,0.00013506014,0.00030533696,0.000118679854,0.0013474758,0.58857185,0.0048570214,0.004599149,0.0004918177,0.17486136],"study_design_scores_gemma":[0.00004069415,0.0001771609,0.035931963,0.000025351665,0.00008772928,0.00003714337,0.0011693507,0.9578869,0.0026081637,0.0017220171,0.00029149285,0.000022056305],"about_ca_topic_score_codex":0.06486123,"about_ca_topic_score_gemma":0.12153857,"teacher_disagreement_score":0.06486123,"about_ca_system_score_codex":0.0017211321,"about_ca_system_score_gemma":0.0012463026,"threshold_uncertainty_score":0.1289674},"labels":[],"label_agreement":null},{"id":"W3000585128","doi":"10.1016/j.foreco.2020.117869","title":"Water quality benefits of Acer rubrum and Betula alleghaniensis in the boreal-temperate ecotone on Eastern Cape Breton Island, Canada","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Cape Breton Regional Hospital; Cape Breton University","funders":"","keywords":"Environmental science; Deciduous; Ecology; Soil water; Evergreen; Temperate climate; Water quality; Temperate deciduous forest; Hydrology (agriculture); Biology; Geology","score_opus":0.008556377666557247,"score_gpt":0.1986481145614466,"score_spread":0.19009173689488934,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3000585128","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999373,0.00006588803,0.000010699177,0.000028280261,0.0000014564062,0.0000021555202,0.00007605496,0.0000013499556,0.00044113555],"genre_scores_gemma":[0.99940026,0.000048013102,0.000032055777,0.00002059281,9.0668874e-7,0.0000016887336,0.0000710115,9.587635e-7,0.00042446682],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998342,0.000021475904,0.0000045305965,0.000027573187,0.00002905756,0.000083125524],"domain_scores_gemma":[0.9995994,0.000028659379,0.000058833837,0.00001085288,0.00008350601,0.0002186916],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019144098,0.00018152228,0.00025009326,0.00034275092,0.000969994,0.00046139603,0.00042803236,0.00017337891,0.0008606616],"category_scores_gemma":[0.00037941962,0.0000860946,0.00012100197,0.00040449863,0.0004468264,0.00028863313,0.00032750092,0.0002513981,0.000061656836],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016394008,0.00047937964,0.9460473,0.00006329884,0.00016021337,0.00052544166,0.0018823844,0.0008845321,0.029230861,0.00031495743,0.0010849003,0.01768742],"study_design_scores_gemma":[0.000005348647,0.000019325467,0.99856025,0.000002765985,0.000007187939,0.0000208942,0.0008278338,0.00013528798,0.00011719125,0.000013834964,0.00028728964,0.0000028625584],"about_ca_topic_score_codex":0.8943043,"about_ca_topic_score_gemma":0.9848823,"teacher_disagreement_score":0.105695724,"about_ca_system_score_codex":0.0043415637,"about_ca_system_score_gemma":0.0022108983,"threshold_uncertainty_score":0.21263635},"labels":[],"label_agreement":null},{"id":"W3002807011","doi":"10.1016/j.foreco.2019.117819","title":"Burn probability simulation and subsequent wildland fire activity in Alberta, Canada – Implications for risk assessment and strategic planning: Reply to Parisien et al.","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Alberta Ministry of Agriculture and Forestry; University of Alberta","funders":"","keywords":"Environmental science; Environmental resource management","score_opus":0.020128860388795654,"score_gpt":0.27880921916163404,"score_spread":0.2586803587728384,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3002807011","genre_codex":"commentary","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0032600262,0.01003953,0.00058733975,0.97195363,0.012205046,0.0000138834685,0.0005981918,0.00005612128,0.0012862023],"genre_scores_gemma":[0.100436896,0.037194166,0.0037611376,0.79072106,0.04408701,0.000116113,0.0009998046,0.0002630922,0.022420624],"study_design_codex":"not_applicable","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99888855,0.0002845582,0.00016842592,0.0001548951,0.00038964098,0.00011399397],"domain_scores_gemma":[0.97545403,0.014515001,0.0006308261,0.0006802963,0.007415241,0.0013046387],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.005636163,0.00051807554,0.0007793568,0.0006826847,0.0021541314,0.0021850003,0.0027973945,0.010566739,0.0030406206],"category_scores_gemma":[0.034938328,0.00043792283,0.0009008487,0.00148021,0.0023936068,0.0016273251,0.0009956772,0.012921044,0.0012293925],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020786069,0.000037127393,0.0057623954,0.00011132446,0.000082952654,0.00020793387,0.00041056066,0.0018418354,0.00010297479,0.0011462372,0.9638512,0.026237713],"study_design_scores_gemma":[0.00037002467,0.00017925848,0.04279806,0.0019509469,0.00059151294,0.0011818418,0.0054324297,0.011110316,0.0010799036,0.023194,0.9115865,0.0005250947],"about_ca_topic_score_codex":0.69671804,"about_ca_topic_score_gemma":0.73918164,"teacher_disagreement_score":0.30328196,"about_ca_system_score_codex":0.00791414,"about_ca_system_score_gemma":0.016276453,"threshold_uncertainty_score":0.6101361},"labels":[],"label_agreement":null},{"id":"W3005157661","doi":"10.1016/j.foreco.2020.117965","title":"Spatial genetic structure at the leading edge of a spruce budworm outbreak: The role of dispersal in outbreak spread","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Université de Montréal","funders":"Natural Sciences and Engineering Research Council of Canada; Atlantic Canada Opportunities Agency","keywords":"Biological dispersal; Outbreak; Biology; Spruce budworm; Population; Ecology; Isolation by distance; Population genetics; Genetic structure; Genetic variation; Demography; Genetics; Lepidoptera genitalia; Virology","score_opus":0.004745273570560246,"score_gpt":0.19259973789306836,"score_spread":0.18785446432250813,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3005157661","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994344,0.00003894996,0.00015073789,0.000023795694,0.000001585317,0.0000017507575,0.00002282825,0.0000026205598,0.00032333095],"genre_scores_gemma":[0.9998441,0.000011961618,0.00006417524,0.0000042873085,0.0000021330368,6.589325e-7,0.000021632091,7.567448e-7,0.000050343344],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997116,0.00008458006,0.000016562744,0.00008865597,0.000027671536,0.000071011746],"domain_scores_gemma":[0.99817586,0.0007409706,0.00049713114,0.00012341561,0.00016266256,0.00029999335],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00058630167,0.00011104554,0.00019785453,0.0008233904,0.0004185572,0.0007570765,0.00034404095,0.00037176162,0.001240152],"category_scores_gemma":[0.0023226065,0.00014292134,0.00029864442,0.00041532665,0.00059352623,0.00039555802,0.00051540224,0.00044049206,0.000109883804],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00032337254,0.00010201993,0.9753667,0.00001646785,0.00012914152,0.00025773863,0.00045360098,0.002146831,0.015483651,0.0007224138,0.00013740975,0.004860753],"study_design_scores_gemma":[0.000005556488,0.00003992793,0.9946696,0.0000052472183,0.000033624867,0.00008325069,0.00043889674,0.0042049047,0.00020533378,0.00022925848,0.00007831418,0.0000061465544],"about_ca_topic_score_codex":0.011551179,"about_ca_topic_score_gemma":0.021401014,"teacher_disagreement_score":0.011551179,"about_ca_system_score_codex":0.00044765434,"about_ca_system_score_gemma":0.00033858977,"threshold_uncertainty_score":0.022967875},"labels":[],"label_agreement":null},{"id":"W3007551773","doi":"10.1016/j.foreco.2020.117990","title":"Afforestation promotes the enhancement of forest LAI and NPP in China","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing in Agriculture","field":"Environmental Science","cited_by":97,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"National Key Research and Development Program of China; Priority Academic Program Development of Jiangsu Higher Education Institutions; National Natural Science Foundation of China","keywords":"Primary production; Afforestation; Leaf area index; Greening; Biogeochemical cycle; Environmental science; China; Ecosystem; Terrestrial ecosystem; Sustainability; Global change; Agroforestry; Climate change; Physical geography; Geography; Forestry; Ecology; Biology","score_opus":0.004507887870029767,"score_gpt":0.18672050469053417,"score_spread":0.1822126168205044,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3007551773","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9985014,0.000129166,0.00008884505,0.00009220423,0.000004248612,0.0000032048868,0.00003551269,0.0000080390555,0.0011373521],"genre_scores_gemma":[0.99938846,0.00009481637,0.0000492551,0.000019549212,0.0000060177144,0.0000014941439,0.00003686234,0.0000017091215,0.00040174206],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979395,0.00002626674,0.000018737597,0.00004549857,0.000033489214,0.000082126986],"domain_scores_gemma":[0.99976665,0.00001893618,0.000063198066,0.000018328667,0.00004033655,0.00009269928],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005162125,0.000284845,0.00023808976,0.0007416458,0.0006096,0.0006110193,0.00029359836,0.00023161639,0.0011421655],"category_scores_gemma":[0.00026318186,0.0001932362,0.00037265953,0.0009714165,0.00038172505,0.0005399542,0.00054316723,0.00019389305,0.00008016686],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020067989,0.00017255101,0.9381599,0.000106562904,0.00017089923,0.0008265622,0.0012305209,0.0020913777,0.031977933,0.001887245,0.0007025021,0.022473298],"study_design_scores_gemma":[0.0000058324367,0.00001768437,0.9976708,0.0000024454973,0.000022528602,0.00003423255,0.00023598394,0.00099937,0.00032678715,0.00020518248,0.0004740126,0.0000050673234],"about_ca_topic_score_codex":0.04465311,"about_ca_topic_score_gemma":0.08773793,"teacher_disagreement_score":0.04465311,"about_ca_system_score_codex":0.0010494295,"about_ca_system_score_gemma":0.0017004391,"threshold_uncertainty_score":0.08878642},"labels":[],"label_agreement":null},{"id":"W3009948482","doi":"10.1016/j.foreco.2020.118012","title":"Tree restoration and ecosystem carbon storage in an acid and metal impacted landscape: Chronosequence and resampling approaches","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Collège Boréal; Laurentian University","funders":"Natural Sciences and Engineering Research Council of Canada; City, University of London; Vale Canada Limited; Ontario Centres of Excellence","keywords":"Chronosequence; Carbon sequestration; Soil carbon; Environmental science; Carbon fibers; Ecosystem; Forestry; Ecology; Soil science; Biology; Soil water; Geography; Carbon dioxide; Mathematics","score_opus":0.022593625802149492,"score_gpt":0.21213509616416432,"score_spread":0.18954147036201482,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3009948482","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9769344,0.0010558076,0.018544484,0.00006639608,0.000066049484,0.00012621832,0.001049168,0.000096312004,0.002061223],"genre_scores_gemma":[0.9853495,0.00012439683,0.0124530485,0.000053228705,0.000026705336,0.00015132518,0.0011628425,0.000041058665,0.0006379868],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99635196,0.002334927,0.00021710791,0.0006026092,0.0003464666,0.00014689975],"domain_scores_gemma":[0.9773976,0.0136098545,0.0025976102,0.0037710788,0.0021792697,0.0004445362],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.022226226,0.0004467195,0.00071116665,0.002320567,0.0012239984,0.0014620821,0.0015108788,0.0011059048,0.001203059],"category_scores_gemma":[0.028944945,0.00042953406,0.0009895199,0.0022760828,0.0011756211,0.001355747,0.00081221457,0.0006287816,0.00014728156],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0019921006,0.00029260392,0.9251395,0.00018693032,0.0022739638,0.00026499605,0.0018791124,0.015498718,0.0043208953,0.0036619254,0.0013927452,0.043096513],"study_design_scores_gemma":[0.00009461067,0.0005821276,0.95085216,0.000060195584,0.0007305155,0.00033219752,0.000785398,0.039575122,0.0016624259,0.0018907371,0.0033725582,0.00006192683],"about_ca_topic_score_codex":0.043688163,"about_ca_topic_score_gemma":0.10095392,"teacher_disagreement_score":0.043688163,"about_ca_system_score_codex":0.0007523538,"about_ca_system_score_gemma":0.00087061373,"threshold_uncertainty_score":0.11754495},"labels":[],"label_agreement":null},{"id":"W3010286024","doi":"10.1016/j.foreco.2020.118035","title":"Hardwood-softwood composition influences early-instar larval dispersal mortality during a spruce budworm outbreak","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Forest Protection Limited (Canada); Natural Resources Canada; Canadian Forest Service; University of New Brunswick","funders":"Natural Resources Canada","keywords":"Spruce budworm; Abies balsamea; Choristoneura fumiferana; Balsam; Hardwood; Biological dispersal; Biology; Softwood; Ecology; Tortricidae; Botany; Forestry; Larva; Geography; Population","score_opus":0.0072596267571048085,"score_gpt":0.20630331494608203,"score_spread":0.19904368818897722,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010286024","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998847,0.0000066627217,0.000008296051,0.0000030373824,5.0127056e-7,9.0139014e-7,0.000012085762,7.88987e-7,0.00008290907],"genre_scores_gemma":[0.9998425,0.0000070055894,0.0000134813135,0.0000045455913,9.011045e-7,8.9750756e-7,0.000028342916,5.0664653e-7,0.00010164558],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999125,0.000020440906,0.0000053419026,0.00001893179,0.000008590506,0.000034121254],"domain_scores_gemma":[0.999363,0.00019749376,0.00015494147,0.000021054853,0.000047526464,0.00021589776],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028786366,0.00016799022,0.00014791024,0.00027995408,0.00037255406,0.0004563681,0.00017176813,0.00020912342,0.0009445952],"category_scores_gemma":[0.00077250437,0.00013348376,0.0001533014,0.000089708505,0.00018709984,0.00017617627,0.00022727772,0.00033896166,0.000117579206],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010581311,0.00026827326,0.9721925,0.000010635912,0.00006421921,0.0003600721,0.0002898179,0.00033782976,0.02282596,0.000029990717,0.00010979588,0.002452774],"study_design_scores_gemma":[0.0000016962318,0.000054328226,0.9992912,0.0000011527188,0.0000058774,0.000033490956,0.00013819903,0.00019987315,0.00024774144,0.00000421713,0.000021075599,0.0000011422702],"about_ca_topic_score_codex":0.010751243,"about_ca_topic_score_gemma":0.042911783,"teacher_disagreement_score":0.010751243,"about_ca_system_score_codex":0.00042911764,"about_ca_system_score_gemma":0.0001908814,"threshold_uncertainty_score":0.021377325},"labels":[],"label_agreement":null},{"id":"W3011936522","doi":"10.1016/j.foreco.2020.118044","title":"Liming improves sap characteristics of sugar maple over the long term","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant-Derived Bioactive Compounds","field":"Chemistry","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Cegep de Thetford; Ministère des Forêts, de la Faune et des Parcs","funders":"","keywords":"Maple; Sugar; Yield (engineering); Horticulture; Chemistry; Agronomy; Botany; Biology; Food science","score_opus":0.012288467515351216,"score_gpt":0.2158447617276525,"score_spread":0.2035562942123013,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3011936522","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990754,0.0002868428,0.00012017337,0.000015025188,0.0000047922963,0.0000032363027,0.000041383373,0.000013712592,0.00043945413],"genre_scores_gemma":[0.9971411,0.0002397834,0.00032369755,0.00003515847,0.000004195939,0.0000038246453,0.00015822829,0.00001139537,0.0020826673],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9999579,0.0000054979423,0.0000018519994,0.000009672212,0.000010358735,0.000014612895],"domain_scores_gemma":[0.9998325,0.00002028431,0.000037050253,0.0000097993525,0.000021385938,0.00007894275],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00008566817,0.0002261711,0.0002026302,0.00018250734,0.0001866204,0.0003758805,0.00017667556,0.00012931724,0.0012008414],"category_scores_gemma":[0.00015441711,0.00006487165,0.000108955704,0.00016427018,0.00013403386,0.00029977036,0.00016218709,0.00037189224,0.00013898146],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016584893,0.0004719701,0.0046252385,0.00010669907,0.000035700676,0.00007806234,0.00008652001,0.00012958475,0.9765037,0.000038938237,0.0001336323,0.01613142],"study_design_scores_gemma":[0.00007150801,0.0048386264,0.6471508,0.000032689455,0.0002199581,0.00025486865,0.000732724,0.0016184979,0.33983067,0.0002565168,0.0049618534,0.000031201896],"about_ca_topic_score_codex":0.0028201526,"about_ca_topic_score_gemma":0.008053344,"teacher_disagreement_score":0.0028201526,"about_ca_system_score_codex":0.00019701832,"about_ca_system_score_gemma":0.00023607392,"threshold_uncertainty_score":0.005607426},"labels":[],"label_agreement":null},{"id":"W3014693433","doi":"10.1016/j.foreco.2020.118094","title":"Tree breeding and silviculture: Douglas-fir volume gains with minimal wood quality loss under variable planting densities","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":37,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Forests; Natural Resources Canada; Canadian Forest Service","funders":"Forest Genetics Council of British Columbia","keywords":"Sowing; Genetic gain; Silviculture; Tree breeding; Selection (genetic algorithm); Stocking; Biology; Population; Volume (thermodynamics); Forest management; Tree (set theory); Agroforestry; Forestry; Agronomy; Mathematics; Ecology; Genetic variation; Woody plant; Geography; Demography; Animal science; Computer science","score_opus":0.013738774458360973,"score_gpt":0.21269777596139897,"score_spread":0.198959001503038,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3014693433","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99940765,0.000009383663,0.0003344253,0.0000029757823,5.9824464e-7,0.0000074818076,0.000022298687,0.000005578964,0.00020971576],"genre_scores_gemma":[0.9988176,0.000010592545,0.0007942084,0.000010268047,9.4896694e-7,0.000015800513,0.000075928074,0.0000034594777,0.00027112506],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9996972,0.00009424202,0.000014620125,0.00009560705,0.00006422275,0.00003408864],"domain_scores_gemma":[0.99958223,0.00012190549,0.00011641148,0.00004421571,0.00004071874,0.000094485484],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007013485,0.00018343513,0.00021449367,0.00012497054,0.00018099272,0.00027851833,0.00032797773,0.00014833536,0.00056912214],"category_scores_gemma":[0.00074204133,0.000076679346,0.00011726447,0.00010378254,0.0002303156,0.00021125417,0.00018201569,0.00013187803,0.00010047917],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0059360433,0.0029740697,0.25391927,0.00016936586,0.00019273873,0.00028572464,0.00052770216,0.036922827,0.64226747,0.00072933186,0.00031495365,0.055760566],"study_design_scores_gemma":[0.00026720917,0.014839185,0.89769983,0.000013798452,0.000106229374,0.00013516277,0.00019138784,0.030033179,0.055286482,0.0003829095,0.0010179068,0.000026861298],"about_ca_topic_score_codex":0.0066451244,"about_ca_topic_score_gemma":0.0175496,"teacher_disagreement_score":0.0066451244,"about_ca_system_score_codex":0.00059778785,"about_ca_system_score_gemma":0.00031724284,"threshold_uncertainty_score":0.01321286},"labels":[],"label_agreement":null},{"id":"W3015410999","doi":"10.1016/j.foreco.2020.118115","title":"Changes in growth dominance after partial cuts in even- and uneven-aged northern hardwood stands","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Yellow birch; Hardwood; Maple; Dominance (genetics); Aceraceae; Mathematics; Liquidambar styraciflua; Horticulture; Sugar; Residual; Forestry; Biology; Botany; Geography","score_opus":0.005220530625284679,"score_gpt":0.1873929110897451,"score_spread":0.1821723804644604,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015410999","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99973494,0.000028025861,0.0000073507276,0.0000030650986,0.0000015495079,7.1409124e-7,0.000036687736,5.543012e-7,0.0001870203],"genre_scores_gemma":[0.9992415,0.000018240817,0.000011237209,0.0000068273566,0.0000027796116,0.0000019259978,0.000104633335,9.201746e-7,0.00061205256],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999795,0.000028102917,0.000010225456,0.0000351389,0.00002545054,0.00010595183],"domain_scores_gemma":[0.99892056,0.00018440998,0.00018391207,0.000044534616,0.0001271082,0.00053962204],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040643028,0.00020364278,0.00037007406,0.00049858313,0.00063105935,0.00068723684,0.00027085387,0.00032294443,0.0020128395],"category_scores_gemma":[0.0012005594,0.00015558663,0.00021186635,0.00026180214,0.00038847048,0.00043827386,0.00052231865,0.00032684745,0.00037856464],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.007525805,0.0004242249,0.94948834,0.000033406035,0.00011495273,0.0007411873,0.0011154406,0.00052218616,0.029101258,0.00014956418,0.00027821443,0.010505402],"study_design_scores_gemma":[0.00000456202,0.00013844919,0.99910945,0.0000014724926,0.0000066422344,0.00006599043,0.00032347871,0.00008063172,0.00017390709,0.000028491235,0.00006443209,0.000002488397],"about_ca_topic_score_codex":0.019190345,"about_ca_topic_score_gemma":0.070278846,"teacher_disagreement_score":0.019190345,"about_ca_system_score_codex":0.00048991526,"about_ca_system_score_gemma":0.00043761506,"threshold_uncertainty_score":0.038157284},"labels":[],"label_agreement":null},{"id":"W3015561920","doi":"10.1016/j.foreco.2020.118137","title":"Silvicultural options for rehabilitating high-graded mixedwood stands in northeastern North America","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Wood Council; Ministère des Forêts, de la Faune et des Parcs","funders":"Ministère des Forêts, de la Faune et des Parcs","keywords":"Scarification; Clearcutting; Abies balsamea; Understory; Silviculture; Environmental science; Forestry; Thinning; Hardwood; Yellow birch; Triclopyr; Agroforestry; Balsam; Agronomy; Biology; Horticulture; Botany; Geography; Canopy; Weed control; Germination","score_opus":0.00766539074424878,"score_gpt":0.20466851601353578,"score_spread":0.197003125269287,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015561920","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9979874,0.00013576391,0.000072675975,0.00008796856,0.000005633395,0.000023830888,0.00005556659,0.0000057756893,0.0016254914],"genre_scores_gemma":[0.99775606,0.00013085357,0.0005501349,0.000055822704,0.0000055760693,0.000032329866,0.000102484366,0.0000016078678,0.0013651206],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997968,0.000037266866,0.000011618207,0.000025692429,0.000033790362,0.00009481514],"domain_scores_gemma":[0.99973506,0.000020234014,0.000055441124,0.000006554417,0.00004887844,0.00013386416],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027093934,0.0002797932,0.00014804104,0.000577007,0.0017944964,0.00071677763,0.0008353652,0.0002590414,0.0027045812],"category_scores_gemma":[0.0005926111,0.00010249904,0.000113163354,0.00036748635,0.0003265628,0.00037557053,0.0009907669,0.00026277493,0.00017136341],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010783718,0.003051608,0.6980733,0.0004377574,0.00014920147,0.0017802522,0.008594505,0.00634905,0.01946957,0.0014163146,0.0067402613,0.25285992],"study_design_scores_gemma":[0.00004951125,0.00054826203,0.96699935,0.00015169685,0.00006340907,0.0002719452,0.020718927,0.0034886382,0.0009653037,0.0006237664,0.0061015976,0.000017636681],"about_ca_topic_score_codex":0.07134981,"about_ca_topic_score_gemma":0.6973447,"teacher_disagreement_score":0.9286502,"about_ca_system_score_codex":0.0013221987,"about_ca_system_score_gemma":0.0020328222,"threshold_uncertainty_score":0.14186901},"labels":[],"label_agreement":null},{"id":"W3015945573","doi":"10.1016/j.foreco.2020.118127","title":"Tamm Review: Influence of forest management activities on soil organic carbon stocks: A knowledge synthesis","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":732,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of British Columbia","funders":"Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement; Ministère de l'Agriculture et de l'Alimentation","keywords":"Environmental science; Forest floor; Agroforestry; Soil carbon; Afforestation; Reforestation; Soil biodiversity; Soil water; Agronomy; Secondary forest; Forest ecology; Ecosystem; Forest management; Soil organic matter; Ecology; Soil science; Biology","score_opus":0.009863880987569263,"score_gpt":0.20409260170921056,"score_spread":0.1942287207216413,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015945573","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.00016159414,0.9986405,0.00004782129,0.000316507,0.00017070251,0.000017826225,0.00025843512,0.000007244696,0.00037926546],"genre_scores_gemma":[0.0009816887,0.9982153,0.00009249086,0.00030026684,0.00012218786,0.000025280457,0.00014716886,0.0000020667997,0.00011357956],"study_design_codex":"systematic_review","study_design_gemma":"systematic_review","domain_scores_codex":[0.99921,0.00015867928,0.0002748096,0.00013523614,0.00016337285,0.000057810856],"domain_scores_gemma":[0.99386036,0.004061203,0.0010843253,0.00009634412,0.00076800183,0.00012984664],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0015830526,0.0010325187,0.0033796257,0.0062806276,0.00034774156,0.0024306967,0.0012986801,0.0013544391,0.0105221635],"category_scores_gemma":[0.0074379593,0.000504341,0.002499381,0.007307135,0.00043986892,0.0017152776,0.0011792369,0.0010727319,0.0012316692],"study_design_candidate":"systematic_review","study_design_consensus":"systematic_review","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017618167,0.000034216577,0.00058681314,0.6632292,0.0015033106,0.00014591799,0.00015130616,0.00022465464,0.00049435894,0.00077719794,0.020946225,0.31173065],"study_design_scores_gemma":[0.00006844438,0.00022410204,0.007466183,0.5353666,0.011980533,0.0009179153,0.00023443745,0.0001152824,0.0003354786,0.001100077,0.4421351,0.000055840203],"about_ca_topic_score_codex":0.0037944845,"about_ca_topic_score_gemma":0.0064991964,"teacher_disagreement_score":0.0105221635,"about_ca_system_score_codex":0.0012475864,"about_ca_system_score_gemma":0.0052448087,"threshold_uncertainty_score":0.03520012},"labels":[],"label_agreement":null},{"id":"W3020842538","doi":"10.1016/j.foreco.2020.118175","title":"A comparison of five methods to assess embolism resistance in trees","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":74,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Trois-Rivières; GDG Environnement","funders":"Horizon 2020 Framework Programme; European Commission","keywords":"Xylem; Embolism; Tracheid; Vulnerability (computing); Resistance (ecology); Trait; Environmental science; Biology; Ecology; Computer science; Botany; Medicine; Surgery; Computer security","score_opus":0.023735948220039327,"score_gpt":0.3060382191636405,"score_spread":0.28230227094360116,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3020842538","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.61516505,0.010771219,0.36277443,0.00021024137,0.0003881388,0.0011320194,0.0019319826,0.002373342,0.005253549],"genre_scores_gemma":[0.6236543,0.0026712497,0.36850035,0.00016317076,0.00007135727,0.0010203649,0.0016267969,0.00021313528,0.0020792289],"study_design_codex":"design_other","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9941812,0.0014303823,0.00056049146,0.0012517,0.002329049,0.00024715622],"domain_scores_gemma":[0.99227047,0.0034060015,0.0010349914,0.00057155365,0.0024904038,0.00022653976],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0060404977,0.0012295529,0.0010864276,0.0047241547,0.0006269126,0.0012575333,0.0011639688,0.0014228264,0.0011794632],"category_scores_gemma":[0.008002208,0.0005975691,0.001412904,0.0020355405,0.00047612793,0.0010698182,0.0012306847,0.0007702689,0.00042831278],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.003013603,0.0007887556,0.1663454,0.0034736674,0.0017305327,0.00030948265,0.0011801213,0.012337102,0.38243192,0.0017591757,0.0018458046,0.4247844],"study_design_scores_gemma":[0.00028243207,0.005851384,0.42102292,0.0006145648,0.0029539804,0.002724445,0.0013001901,0.20906898,0.3348653,0.0033469151,0.017124267,0.0008446318],"about_ca_topic_score_codex":0.0019995312,"about_ca_topic_score_gemma":0.0037088823,"teacher_disagreement_score":0.0060404977,"about_ca_system_score_codex":0.0007391794,"about_ca_system_score_gemma":0.00060205534,"threshold_uncertainty_score":0.031945586},"labels":[],"label_agreement":null},{"id":"W3027519916","doi":"10.1016/j.foreco.2020.118214","title":"Ecological issues related to second-growth boreal forest management in eastern Quebec, Canada: Expert perspectives from a Delphi process","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval; Ministère des Ressources naturelles et des Forêts; Natural Resources Canada; Canadian Forest Service","funders":"Fonds de recherche du Québec – Nature et technologies","keywords":"Woodland caribou; Forest management; Geography; Delphi method; Environmental resource management; Context (archaeology); Woodland; Population; Forest ecology; Ecology; Habitat; Ecosystem; Forestry; Environmental science; Biology; Computer science","score_opus":0.008941423979997051,"score_gpt":0.2356124826018362,"score_spread":0.22667105862183914,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3027519916","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.7849873,0.007107001,0.001455831,0.14927824,0.00036288647,0.0008245253,0.0005077394,0.000026347238,0.055450205],"genre_scores_gemma":[0.9720035,0.0027972038,0.0015173287,0.013814578,0.00005899981,0.0001908528,0.000109391,0.000013178995,0.009495014],"study_design_codex":"qualitative","study_design_gemma":"qualitative","domain_scores_codex":[0.9917093,0.0032738138,0.00036061407,0.00030977745,0.0011127114,0.0032339129],"domain_scores_gemma":[0.97126424,0.012938233,0.0008911337,0.00020890021,0.00865105,0.0060464833],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.016084103,0.00035164016,0.00031109506,0.0012375396,0.021820147,0.006382122,0.0021174941,0.0033340014,0.002740839],"category_scores_gemma":[0.017563935,0.00031234592,0.00035415738,0.0021195859,0.0043439656,0.0016444777,0.0032681483,0.0035638157,0.00008339872],"study_design_candidate":"qualitative","study_design_consensus":"qualitative","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00035449545,0.00037113143,0.12572823,0.0011591363,0.00010193869,0.0055331793,0.6800225,0.0031085187,0.00363318,0.018971317,0.06971145,0.09130491],"study_design_scores_gemma":[0.000025754267,0.000072037976,0.09084946,0.0010053039,0.00004213133,0.00028943174,0.8230512,0.0009122895,0.0004321322,0.0014683859,0.08175428,0.00009756986],"about_ca_topic_score_codex":0.9877021,"about_ca_topic_score_gemma":0.99593925,"teacher_disagreement_score":0.10603391,"about_ca_system_score_codex":0.10603391,"about_ca_system_score_gemma":0.21559721,"threshold_uncertainty_score":0.7693334},"labels":[],"label_agreement":null},{"id":"W3028303527","doi":"10.1016/j.foreco.2020.118154","title":"Modeling salt redistribution and plant growth in reclaimed saline-sodic overburden upland forests: A case study from the Athabasca Oil Sands Region, Canada","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil and Unsaturated Flow","field":"Engineering","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Overburden; Land reclamation; Environmental science; Soil salinity; Salinity; Dryland salinity; Hydrology (agriculture); Sodic soil; Revegetation; Soil water; Soil science; Geology; Ecology; Mining engineering; Geotechnical engineering; Soil organic matter; Oceanography","score_opus":0.01054875506442074,"score_gpt":0.18444048379116404,"score_spread":0.1738917287267433,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3028303527","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9979061,0.0000421773,0.00039333405,0.00007069278,0.0000029644502,0.000016559972,0.00028512377,0.00003388605,0.0012491663],"genre_scores_gemma":[0.9976029,0.000058804642,0.0007507358,0.000017270273,0.0000019776508,0.000010114719,0.00024207335,0.000013380262,0.0013028419],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.99980944,0.00002189568,0.0000059569816,0.0000400136,0.000024715173,0.00009802066],"domain_scores_gemma":[0.99951136,0.00020763668,0.000036043086,0.000016876484,0.0001308431,0.000097285345],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003661186,0.00077166373,0.0006802288,0.0006226066,0.0015724105,0.001817739,0.0021767437,0.0012606778,0.0013369725],"category_scores_gemma":[0.00090821355,0.00055240496,0.00077415875,0.001153621,0.0013730701,0.0005503818,0.0005512462,0.0006958211,0.000105987805],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015426918,0.00021564205,0.039267696,0.00002700802,0.000055897217,0.00026961145,0.00013999069,0.95495147,0.0013663739,0.00060863426,0.00042222475,0.0025211507],"study_design_scores_gemma":[0.000051827607,0.000042314703,0.017587984,0.000006110364,0.000032808344,0.000019388664,0.00061975274,0.9806691,0.00045026248,0.00016746567,0.00033226406,0.000020796617],"about_ca_topic_score_codex":0.9709315,"about_ca_topic_score_gemma":0.9731048,"teacher_disagreement_score":0.02906853,"about_ca_system_score_codex":0.016808989,"about_ca_system_score_gemma":0.010175924,"threshold_uncertainty_score":0.121958315},"labels":[],"label_agreement":null},{"id":"W3035314378","doi":"10.1016/j.foreco.2020.118257","title":"Density-dependent responses of mountain pine beetle to its pheromones and host volatiles in naïve lodgepole pine stands","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Alberta Ministry of Agriculture and Forestry; University of Alberta","funders":"Ministry of Environment - Saskatchewan; fRI Research; Alberta Agriculture and Forestry; Ontario Ministry of Natural Resources and Forestry","keywords":"Mountain pine beetle; Bark beetle; Dendroctonus; Attraction; Biology; Population; Host (biology); Population density; Pinus contorta; Sex pheromone; Ecology; Range (aeronautics); Bark (sound); Pheromone; Botany","score_opus":0.009996442156309526,"score_gpt":0.22273291623626962,"score_spread":0.2127364740799601,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3035314378","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998317,0.000016298374,0.000009004234,0.000002234116,8.358749e-7,9.4224407e-7,0.000021101683,5.769239e-7,0.00011732435],"genre_scores_gemma":[0.9994842,0.00001532365,0.000022827668,0.000008453256,0.0000015467044,0.0000023934952,0.0000722311,5.06867e-7,0.0003924621],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99992967,0.000015964044,0.0000043501905,0.00001530718,0.000012807557,0.000022060678],"domain_scores_gemma":[0.9994531,0.00016835662,0.0001048725,0.000021244621,0.000064508924,0.00018802326],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013865755,0.00009524873,0.00013160906,0.00023966425,0.00025232718,0.00035447252,0.00011906786,0.00013999216,0.0012176052],"category_scores_gemma":[0.00044768717,0.00016673305,0.00008175458,0.0000723735,0.00018028791,0.00018239686,0.00017332601,0.0002633297,0.00010612535],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.005482648,0.00081656664,0.6016856,0.00006151627,0.000095293886,0.0003516026,0.0010561486,0.00037257545,0.38324058,0.000111478716,0.00027989125,0.006446054],"study_design_scores_gemma":[0.000004077909,0.0001646429,0.9980463,0.0000012407588,0.0000064144238,0.00006113561,0.00017865274,0.00013094318,0.001349495,0.00001077566,0.000043669985,0.0000026457583],"about_ca_topic_score_codex":0.0067997533,"about_ca_topic_score_gemma":0.025506806,"teacher_disagreement_score":0.0067997533,"about_ca_system_score_codex":0.00020614456,"about_ca_system_score_gemma":0.00012874401,"threshold_uncertainty_score":0.01352036},"labels":[],"label_agreement":null},{"id":"W3036356856","doi":"10.1016/j.foreco.2020.118284","title":"Modeling realized gains in Douglas-fir (Pseudotsuga menziesii) using laser scanning data from unmanned aircraft systems (UAS)","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":15,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Forests; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Canopy; Reforestation; Bivariate analysis; Forest inventory; Environmental science; Point cloud; Tree canopy; Genetic gain; Forest management; Forestry; Statistics; Geography; Ecology; Remote sensing; Mathematics; Computer science; Biology","score_opus":0.05761898502100265,"score_gpt":0.2775335774139582,"score_spread":0.21991459239295552,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3036356856","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990194,0.000011794397,0.00058000133,0.000014235635,0.0000014041467,0.0000021004091,0.000032956697,0.000012052764,0.00032601654],"genre_scores_gemma":[0.9994479,0.000008879236,0.00033887223,0.0000029254875,4.0513834e-7,0.0000014867276,0.000026375077,0.0000028243687,0.000170408],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999558,0.0000059384643,0.0000017906402,0.000016866526,0.0000071548193,0.00001245623],"domain_scores_gemma":[0.9997671,0.0001308319,0.000025443886,0.000009750285,0.000041658564,0.000025196545],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023425775,0.00027833466,0.00016892717,0.00018294726,0.0003222334,0.00044831025,0.0004213427,0.0004390803,0.00054395606],"category_scores_gemma":[0.00052669866,0.00030941586,0.0003260672,0.00015946868,0.00025919333,0.00041699383,0.0001495264,0.00027351375,0.00009271844],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015624662,0.00019082837,0.042235836,0.00002447285,0.00004172527,0.00012711716,0.00007424981,0.9401395,0.01229724,0.0005558695,0.0001530741,0.0040037506],"study_design_scores_gemma":[0.000009009482,0.000032973578,0.02270856,0.0000016971927,0.000014875615,0.000013753589,0.000035626905,0.9759135,0.0011130902,0.000102245285,0.000047650476,0.000006948536],"about_ca_topic_score_codex":0.14825597,"about_ca_topic_score_gemma":0.16516127,"teacher_disagreement_score":0.14825597,"about_ca_system_score_codex":0.0017004504,"about_ca_system_score_gemma":0.00079719286,"threshold_uncertainty_score":0.29478604},"labels":[],"label_agreement":null},{"id":"W3036623600","doi":"10.1016/j.foreco.2020.118311","title":"Long-term tree and stand growth dynamics after thinning of various intensities in a temperate mixed forest","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":40,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"Research and Development; National Natural Science Foundation of China","keywords":"Thinning; Larch; Dominance (genetics); Allometry; Competition (biology); Temperate rainforest; Productivity; Temperate climate; Ecology; Forest dynamics; Tree (set theory); Biology; Agroforestry; Environmental science; Forestry; Mathematics; Geography; Ecosystem","score_opus":0.0049352912587913925,"score_gpt":0.18482356858491353,"score_spread":0.17988827732612214,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3036623600","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998776,0.000015461632,0.0000120670065,0.0000016964957,6.938317e-7,7.993299e-7,0.00002989816,6.506295e-7,0.00006117417],"genre_scores_gemma":[0.9994653,0.000015252082,0.00003242576,0.000006402487,0.000002017356,0.000004106448,0.00017485507,0.0000011910009,0.0002984492],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999105,0.000014768099,0.0000065868007,0.000021463333,0.000014151494,0.000032503718],"domain_scores_gemma":[0.9994979,0.00013688822,0.00010205766,0.000027337073,0.00006482454,0.00017098973],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003341661,0.00019612654,0.0002652609,0.00033812172,0.0004384853,0.0003864342,0.00024324864,0.00033686543,0.0007505782],"category_scores_gemma":[0.00058065285,0.0001287973,0.00026320745,0.00021713866,0.00029421735,0.00036191076,0.00029032107,0.0003322417,0.00020617955],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0091686845,0.0014067371,0.8664241,0.000049487782,0.00018336439,0.0008641966,0.00078167644,0.0011364017,0.11021124,0.00011366944,0.00018725682,0.009473199],"study_design_scores_gemma":[0.000006983107,0.00020687748,0.9985128,0.0000019859858,0.000016929243,0.0000842659,0.000120349796,0.0003630283,0.00061641575,0.000015094908,0.00005114627,0.000004187453],"about_ca_topic_score_codex":0.0061127236,"about_ca_topic_score_gemma":0.017099656,"teacher_disagreement_score":0.0061127236,"about_ca_system_score_codex":0.00031729275,"about_ca_system_score_gemma":0.00017877329,"threshold_uncertainty_score":0.012154281},"labels":[],"label_agreement":null},{"id":"W3039001488","doi":"10.1016/j.foreco.2020.118358","title":"A topographic moisture index explains understory vegetation response to retention harvesting","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; Alberta Innovates; Alberta Agriculture and Forestry; Alberta Conservation Association; University of Alberta; University of New Brunswick","keywords":"Understory; Environmental science; Deciduous; Vegetation (pathology); Boreal; Biodiversity; Water content; Abundance (ecology); Ecology; Canopy; Geology; Biology","score_opus":0.010465747840250287,"score_gpt":0.19990848128369348,"score_spread":0.1894427334434432,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3039001488","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99961865,0.00004258889,0.00007599114,0.0000052799082,5.6920214e-7,0.0000015231898,0.00008051671,0.000003396601,0.00017152603],"genre_scores_gemma":[0.9996346,0.00001912501,0.00007345432,0.000003683116,8.222611e-7,9.235317e-7,0.00013967964,0.0000011538344,0.00012640553],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99992776,0.000009061509,0.0000031413372,0.000017055156,0.000014638524,0.00002832285],"domain_scores_gemma":[0.99963546,0.00006868649,0.000115464565,0.000022601054,0.00005825407,0.00009948914],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019648985,0.00016134552,0.00014817294,0.00029839537,0.0001952066,0.00045528272,0.00021561592,0.00013083141,0.00079789275],"category_scores_gemma":[0.0006256987,0.00009119305,0.00012690597,0.00043082313,0.0002123386,0.00016843033,0.00017964885,0.00012992103,0.00009780042],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00007521893,0.00002264756,0.99315053,0.000005054891,0.000022547694,0.000023230357,0.00007168205,0.0003848927,0.002443978,0.000013337426,0.00006422604,0.0037228048],"study_design_scores_gemma":[5.30538e-7,0.0000067229166,0.99946135,6.505956e-7,0.000002493607,0.0000066702996,0.00004627519,0.00039436467,0.00004319513,0.000005970648,0.000031122672,7.5158687e-7],"about_ca_topic_score_codex":0.24384332,"about_ca_topic_score_gemma":0.51780194,"teacher_disagreement_score":0.24384332,"about_ca_system_score_codex":0.00073369837,"about_ca_system_score_gemma":0.0005264314,"threshold_uncertainty_score":0.48484796},"labels":[],"label_agreement":null},{"id":"W3041154524","doi":"10.1016/j.foreco.2020.118376","title":"Field and laboratory responses of earthworms to use of wood ash as a forest soil amendment","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Invertebrate Taxonomy and Ecology","field":"Agricultural and Biological Sciences","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Laurentian University; University of Waterloo; University of Toronto","funders":"University of Waterloo","keywords":"Amendment; Wood ash; Environmental science; Soil biology; Agroforestry; Soil water; Ecology; Agronomy; Soil science; Biology","score_opus":0.021452343671074733,"score_gpt":0.20144497669706163,"score_spread":0.1799926330259869,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041154524","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99935573,0.00003844512,0.00010758454,0.000014416247,0.000011470803,0.000030882038,0.0001974833,0.0000078695475,0.00023611302],"genre_scores_gemma":[0.99597603,0.00013151446,0.00055228267,0.0000864475,0.000015940277,0.00011153411,0.00076366775,0.000009084923,0.002353504],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99967265,0.00006415041,0.000032891585,0.00010283421,0.00003652633,0.000090917536],"domain_scores_gemma":[0.9985494,0.000583872,0.00025889924,0.00015890076,0.00015729172,0.00029164788],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00041235506,0.0008039307,0.00042910824,0.00038945215,0.00039729834,0.0005531945,0.00040261765,0.00081420527,0.0021712657],"category_scores_gemma":[0.0015034511,0.0004786781,0.0005376237,0.00022673768,0.0009348084,0.00045091158,0.00038538643,0.0011188206,0.0003468435],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.021892985,0.0046780435,0.017823113,0.00012727838,0.0001015627,0.00013430128,0.0003524828,0.0006769952,0.9486533,0.00009759889,0.00022651815,0.0052358634],"study_design_scores_gemma":[0.0016246948,0.08699601,0.29678398,0.00005688308,0.000410991,0.00037528548,0.0011083699,0.0028776266,0.60813427,0.00035561656,0.0011833498,0.00009291067],"about_ca_topic_score_codex":0.008111466,"about_ca_topic_score_gemma":0.0085394485,"teacher_disagreement_score":0.008111466,"about_ca_system_score_codex":0.0006102081,"about_ca_system_score_gemma":0.0006367405,"threshold_uncertainty_score":0.01612854},"labels":[],"label_agreement":null},{"id":"W3043357351","doi":"10.1016/j.foreco.2020.118388","title":"Ecological drivers of root grafting in balsam fir natural stands","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":11,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Balsam; Abies balsamea; Grafting; Biology; Botany; Range (aeronautics); Tree (set theory); Natural regeneration; Horticulture; Ecology; Mathematics; Chemistry","score_opus":0.008853455929626611,"score_gpt":0.1999662773858985,"score_spread":0.1911128214562719,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3043357351","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997501,0.00002039757,0.000019436899,0.000008190263,2.8696928e-7,6.234683e-7,0.000006878074,5.636441e-7,0.00019350738],"genre_scores_gemma":[0.9998698,0.000009319974,0.0000129624505,0.000002154756,6.81543e-7,5.0019156e-7,0.000008152433,3.5917122e-7,0.000096080985],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976283,0.00007050098,0.000010632106,0.000052388386,0.000028944141,0.00007473586],"domain_scores_gemma":[0.9987174,0.0005169454,0.00036811654,0.00005394225,0.00010764016,0.0002359397],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00069049705,0.00014106107,0.0001358397,0.0005996044,0.0004855794,0.0007599743,0.0003879664,0.00027881697,0.0015637968],"category_scores_gemma":[0.0015565539,0.00013428088,0.0001103738,0.0003495334,0.00073994725,0.0004811142,0.0005318928,0.00027442406,0.000075333286],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022877294,0.00016371728,0.98391694,0.000013605718,0.00004232447,0.00011785784,0.00065472175,0.0006257502,0.007694849,0.0010358773,0.000056977977,0.0054486617],"study_design_scores_gemma":[0.000001751054,0.000028695164,0.9979644,0.0000019686784,0.0000075777702,0.000030118395,0.00076479255,0.00067053107,0.00022703543,0.00021795006,0.00008288877,0.00000218271],"about_ca_topic_score_codex":0.012207373,"about_ca_topic_score_gemma":0.06014723,"teacher_disagreement_score":0.012207373,"about_ca_system_score_codex":0.0008500411,"about_ca_system_score_gemma":0.0006023079,"threshold_uncertainty_score":0.02427262},"labels":[],"label_agreement":null},{"id":"W3045069169","doi":"10.1016/j.foreco.2020.11840","title":"A specialized forest carnivore navigates landscape-level disturbance: Canada lynx in spruce-beetle impacted forests","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Picea engelmannii; Abies lasiocarpa; Subalpine forest; Ecology; Taiga; Disturbance (geology); Geography; Canopy; Range (aeronautics); Montane ecology; Vegetation (pathology); Forestry; Biology","score_opus":0.010320304937147376,"score_gpt":0.20206012756395778,"score_spread":0.19173982262681039,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3045069169","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994716,0.000027268658,0.00003338815,0.00002651535,0.0000011300366,0.000003891162,0.00007103242,0.0000016889555,0.0003635797],"genre_scores_gemma":[0.99847955,0.000031918124,0.00022753552,0.00006155161,0.0000012052807,0.000010286778,0.00015029458,0.0000020639466,0.0010356312],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99988043,0.000014046101,0.0000031546679,0.000039566,0.000019346626,0.000043578013],"domain_scores_gemma":[0.9996687,0.000023589871,0.00007390972,0.00001403156,0.000058851045,0.00016087775],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021219772,0.00016756612,0.00018187222,0.00032845023,0.0011223081,0.00057784107,0.00027988284,0.00020862852,0.0017970641],"category_scores_gemma":[0.0004193376,0.00012813201,0.00008791836,0.00022301817,0.0004657588,0.00023016434,0.00044988503,0.00023193705,0.00012750688],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022425775,0.00010830195,0.98038083,0.000018546241,0.000022731349,0.00021132665,0.0025404948,0.00020707012,0.008789425,0.00009765585,0.00071863976,0.006680647],"study_design_scores_gemma":[0.0000032368048,0.000046975267,0.9969783,0.0000066039383,0.000005868636,0.00005001965,0.0019911304,0.00029163697,0.00012961865,0.00002242774,0.00047023047,0.000003975624],"about_ca_topic_score_codex":0.58544344,"about_ca_topic_score_gemma":0.88915753,"teacher_disagreement_score":0.41455656,"about_ca_system_score_codex":0.0022964003,"about_ca_system_score_gemma":0.0013639196,"threshold_uncertainty_score":0.83399594},"labels":[],"label_agreement":null},{"id":"W3045915964","doi":"10.1016/j.foreco.2020.118440","title":"Conserving nest trees used by cavity-nesting birds from endangered primary Atlantic forest to open farmland: Increased relevance of excavated cavities in large dead trees on farms","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Avian ecology and behavior","field":"Environmental Science","cited_by":30,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Agencia Nacional de Promoción Científica y Tecnológica; Neotropical Bird Club; Association of Field Ornithologists; International Conservation Fund of Canada; Columbus Zoo and Aquarium; Rufford Foundation","keywords":"Nest (protein structural motif); Ecology; Canopy; Threatened species; Secondary forest; Snag; Biology; Geography; Habitat","score_opus":0.015423151760697942,"score_gpt":0.23411344498115738,"score_spread":0.21869029322045944,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3045915964","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99975866,0.000027660279,0.000024505976,0.000010570288,0.0000010032895,0.0000010761509,0.000019644887,4.790443e-7,0.00015653438],"genre_scores_gemma":[0.9996213,0.000027005151,0.00009992617,0.00000960643,0.0000012031105,0.0000010924765,0.000033857228,6.1181237e-7,0.00020534224],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998229,0.0000331038,0.000011192822,0.00004366265,0.000029968947,0.000059198228],"domain_scores_gemma":[0.9989894,0.00014862895,0.00045798274,0.000056498146,0.000118618875,0.00022878956],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024261816,0.00011117257,0.00010961211,0.00039280512,0.0005602978,0.00044490088,0.00038111658,0.00025352713,0.0013971732],"category_scores_gemma":[0.0009752259,0.00008179155,0.000095109055,0.00020181572,0.0004181773,0.00035305484,0.00038689017,0.00018420212,0.00011165947],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00003571796,0.000025744332,0.99163896,0.00001294926,0.000010714214,0.00007344235,0.00082893047,0.000026956859,0.002165206,0.000031531483,0.000048914062,0.0051009567],"study_design_scores_gemma":[4.8191185e-7,0.000017897197,0.9986952,0.000007217563,0.000004637633,0.000062899264,0.00094617327,0.000067985486,0.00007123744,0.000009304401,0.00011629764,7.6198967e-7],"about_ca_topic_score_codex":0.0363808,"about_ca_topic_score_gemma":0.3047218,"teacher_disagreement_score":0.0363808,"about_ca_system_score_codex":0.00031687194,"about_ca_system_score_gemma":0.0004158629,"threshold_uncertainty_score":0.072338104},"labels":[],"label_agreement":null},{"id":"W3047823739","doi":"10.1016/j.foreco.2020.118483","title":"Bioclimatic distance and performance of apical shoot extension: Disentangling the role of growth rate and duration in ecotypic differentiation","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Chicoutimi","funders":"Ministère des Forêts, de la Faune et des Parcs; Université du Québec à Chicoutimi","keywords":"Shoot; Phenology; Biology; Boreal; Taiga; Temperate climate; Growing season; Black spruce; Context (archaeology); Growth rate; Ecology; Horticulture; Botany","score_opus":0.003700383213142554,"score_gpt":0.1628285348714543,"score_spread":0.15912815165831173,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3047823739","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993642,0.00006222621,0.0001353738,0.000006404038,0.0000014055747,0.0000011217917,0.00006228124,0.000003315629,0.00036373327],"genre_scores_gemma":[0.99952257,0.000014484132,0.00009019346,0.000008464665,0.0000016502125,0.000001824159,0.000078370176,0.000009071748,0.0002733651],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984944,0.000046601097,0.000010299261,0.000048083173,0.000019833118,0.000025856263],"domain_scores_gemma":[0.9990772,0.00032988144,0.0001915892,0.00010845602,0.00007955588,0.0002132529],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039030347,0.00015577814,0.0002267833,0.0003793484,0.0001669123,0.0004154023,0.00021612944,0.00024345882,0.0014468513],"category_scores_gemma":[0.00068748416,0.00014739762,0.00015614978,0.00028076614,0.00027510125,0.00029746373,0.0003731014,0.00026964673,0.0002691233],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0028586118,0.00022227844,0.60488003,0.000054865875,0.00018000246,0.000115125455,0.0005398866,0.00061887474,0.3757247,0.00024268245,0.00015715207,0.014405848],"study_design_scores_gemma":[0.0000025996933,0.000082087834,0.9976605,0.0000013526965,0.000009726159,0.000054032545,0.00006911823,0.00037400864,0.0016496701,0.000032630716,0.000060998664,0.0000032054054],"about_ca_topic_score_codex":0.0015995076,"about_ca_topic_score_gemma":0.0040607797,"teacher_disagreement_score":0.0015995076,"about_ca_system_score_codex":0.00014937563,"about_ca_system_score_gemma":0.00011756508,"threshold_uncertainty_score":0.004840195},"labels":[],"label_agreement":null},{"id":"W3087560420","doi":"10.1016/j.foreco.2020.118430","title":"Predicting effects of selection cutting on avian diversity and abundance in shade-tolerant hardwood forests of central Ontario","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Environment and Climate Change Canada; Ministry of Natural Resources and Forestry; University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; Environment and Climate Change Canada; Ontario Ministry of Natural Resources and Forestry; Ministry of Natural Resources","keywords":"Snag; Basal area; Forestry; Biology; Diameter at breast height; Ecology; Forest management; Habitat; Biodiversity; Woodpecker; Geography","score_opus":0.0047373976141456015,"score_gpt":0.17135421202429307,"score_spread":0.16661681441014747,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3087560420","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996556,0.000021784968,0.00002895404,0.000008699924,5.4672887e-7,0.0000024250066,0.00010176681,0.0000011448575,0.00017895258],"genre_scores_gemma":[0.99931943,0.000025785246,0.00008580488,0.00000619876,7.230754e-7,0.000002621858,0.00019197077,0.0000010944112,0.0003663411],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997975,0.00003403245,0.000009597929,0.000049712107,0.00003418374,0.00007490207],"domain_scores_gemma":[0.9990538,0.00028007315,0.00016806672,0.000034280754,0.00016617049,0.00029768262],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033752446,0.00018589845,0.00016545277,0.00037926127,0.00093291857,0.0006297373,0.0004381794,0.00021658845,0.00094725256],"category_scores_gemma":[0.0011395497,0.00018455408,0.0002258042,0.00039481907,0.00041877292,0.00020755452,0.00032710994,0.00020386075,0.000100139514],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012794831,0.000022342998,0.9956838,0.000008680321,0.00003838332,0.00004639535,0.000360022,0.00087705266,0.00084912014,0.000030436624,0.00014913862,0.0018068117],"study_design_scores_gemma":[0.0000047509334,0.000012477903,0.99785787,0.0000025215347,0.000010874228,0.000013057825,0.0005148122,0.0013038202,0.00007567137,0.000017408913,0.00018476906,0.000002029475],"about_ca_topic_score_codex":0.9238248,"about_ca_topic_score_gemma":0.98423,"teacher_disagreement_score":0.07617521,"about_ca_system_score_codex":0.005957882,"about_ca_system_score_gemma":0.00316885,"threshold_uncertainty_score":0.1532476},"labels":[],"label_agreement":null},{"id":"W3089017006","doi":"10.1016/j.foreco.2020.118594","title":"Effect of thinning and fertilizer on growth and allometry of Eucalyptus marginata","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":27,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Western University; University of Western Australia","keywords":"Thinning; Allometry; Basal area; Fertilizer; Eucalyptus; Diameter at breast height; Crown (dentistry); Forest management; Firewood; Forestry; Environmental science; Biology; Agronomy; Geography; Ecology","score_opus":0.004364508366021628,"score_gpt":0.2035675006052232,"score_spread":0.19920299223920157,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3089017006","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995233,0.00008908869,0.00004477482,0.000017883447,0.000004621805,0.0000020349723,0.000072747855,0.0000044320313,0.00024113848],"genre_scores_gemma":[0.9986866,0.00004119161,0.00014245375,0.000049307382,0.000004481777,0.0000066927664,0.0001700648,0.000011476151,0.0008876302],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99978477,0.000051874275,0.000023224136,0.000065985376,0.000037876787,0.00003629128],"domain_scores_gemma":[0.9988285,0.0004564416,0.00020150599,0.0000801813,0.000076290075,0.00035707487],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026729418,0.0003831166,0.00036769192,0.00030482654,0.00032659454,0.00027102488,0.00052642165,0.00044413432,0.0011177304],"category_scores_gemma":[0.0007349314,0.0002795748,0.00020150866,0.00015555281,0.00053613714,0.00046358554,0.00043560631,0.00067453337,0.00021027909],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.010592445,0.000778053,0.05727927,0.000100723984,0.000105571926,0.00032295552,0.00025299052,0.0015430992,0.9196354,0.00017201196,0.00023147027,0.008985963],"study_design_scores_gemma":[0.00016452973,0.0020639733,0.93484735,0.000011322017,0.00008417529,0.00032078358,0.00027129755,0.0041435063,0.057045616,0.00025321642,0.0007585761,0.000035656136],"about_ca_topic_score_codex":0.00844407,"about_ca_topic_score_gemma":0.016060682,"teacher_disagreement_score":0.00844407,"about_ca_system_score_codex":0.0008825959,"about_ca_system_score_gemma":0.00046347178,"threshold_uncertainty_score":0.016789854},"labels":[],"label_agreement":null},{"id":"W3091890149","doi":"10.1016/j.foreco.2020.118659","title":"Continuous-cover forestry maintains soil fungal communities in Norway spruce dominated boreal forests","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":53,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"Kungl. Skogs- och Lantbruksakademien; Svenska Forskningsrådet Formas","keywords":"Taiga; Agroforestry; Biodiversity; Forestry; Species richness; Forest floor; Ecology; Forest management; Environmental science; Felling; Forest ecology; Ecosystem; Geography; Biology","score_opus":0.013229295379606388,"score_gpt":0.19545557837303218,"score_spread":0.1822262829934258,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3091890149","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997403,0.00009300456,0.000034449775,0.0000023250793,6.6688625e-7,0.000001901312,0.00002626974,0.0000018111501,0.000099272664],"genre_scores_gemma":[0.99964607,0.000059520135,0.00013326648,0.0000077409295,0.0000015008193,0.0000030734138,0.00009215232,0.0000010026274,0.00005550247],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996928,0.00005580612,0.000028773276,0.000103281214,0.00004983638,0.00006964126],"domain_scores_gemma":[0.99952674,0.00006600761,0.00017433266,0.0000351289,0.00006536851,0.00013243394],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004255573,0.00025714884,0.00026104393,0.0005058687,0.0005168003,0.0005644958,0.00022091724,0.00017888327,0.00027950126],"category_scores_gemma":[0.00039291842,0.00017369445,0.00019281013,0.00024010704,0.0004551805,0.00038030924,0.0003931511,0.00016511093,0.00006868089],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000481225,0.00020996793,0.82868433,0.000089352354,0.00012567098,0.00029168263,0.0010184667,0.0003879552,0.15800409,0.00006655826,0.00006800713,0.010572744],"study_design_scores_gemma":[0.0000020601708,0.00007780519,0.99918824,0.0000032931737,0.000006231789,0.000040953248,0.00018418042,0.00008956869,0.00030484196,0.000012156139,0.00008832617,0.000002295632],"about_ca_topic_score_codex":0.014312758,"about_ca_topic_score_gemma":0.04997968,"teacher_disagreement_score":0.014312758,"about_ca_system_score_codex":0.00041826285,"about_ca_system_score_gemma":0.00038239034,"threshold_uncertainty_score":0.028458893},"labels":[],"label_agreement":null},{"id":"W3095434763","doi":"10.1016/j.foreco.2020.118734","title":"The effect of ecological restoration methods on carbon stocks in the Brazilian Atlantic Forest","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Conservation, Biodiversity, and Resource Management","field":"Environmental Science","cited_by":75,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan","funders":"","keywords":"Restoration ecology; Environmental science; Carbon sequestration; Carbon stock; Forest restoration; Threatened species; Climate change mitigation; Agroforestry; Global warming; Ecosystem; Soil carbon; Greenhouse gas; Forest ecology; Ecology; Forestry; Climate change; Geography; Biology; Habitat; Carbon dioxide; Soil water; Soil science","score_opus":0.010752728078646879,"score_gpt":0.24096226810725155,"score_spread":0.23020954002860466,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3095434763","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.997735,0.00033066556,0.00010596621,0.00016761836,0.000010568932,0.000008622903,0.000068528,0.0000056709805,0.0015672303],"genre_scores_gemma":[0.999395,0.00011388787,0.0001406172,0.000020176923,0.000004517055,0.000003916791,0.000043729084,0.0000023375026,0.00027580364],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999542,0.00012316626,0.000039515588,0.000054370375,0.00012806579,0.00011279811],"domain_scores_gemma":[0.9982147,0.0003438248,0.0004589716,0.00016507368,0.00046792335,0.00034955665],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00084318646,0.0002935628,0.00027664276,0.0005113832,0.0007713763,0.00066843984,0.00044855135,0.0003295502,0.0011543923],"category_scores_gemma":[0.0045876796,0.00009183139,0.00030895867,0.000505472,0.00080041913,0.00046820397,0.00067044474,0.00033236464,0.000088876775],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0020765834,0.0008851787,0.8497656,0.0002735443,0.00039362253,0.00045057744,0.0022490371,0.007475936,0.013022525,0.0026625847,0.00092503685,0.119819716],"study_design_scores_gemma":[0.00002007419,0.0002259258,0.99334633,0.00003716135,0.00008662615,0.000083986895,0.0011518226,0.0020534426,0.00084087637,0.00041594094,0.001729404,0.000008511263],"about_ca_topic_score_codex":0.10133246,"about_ca_topic_score_gemma":0.28831375,"teacher_disagreement_score":0.10133246,"about_ca_system_score_codex":0.0020148444,"about_ca_system_score_gemma":0.0020202643,"threshold_uncertainty_score":0.20148528},"labels":[],"label_agreement":null},{"id":"W3096106932","doi":"10.1016/j.foreco.2020.118682","title":"Chlorophyll fluorescence and water content parameters are good biomarkers for selecting drought tolerant eucalyptus clones","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Guelph","funders":"","keywords":"Eucalyptus; Chlorophyll fluorescence; Drought tolerance; Photosynthesis; Biology; Photosynthetic capacity; Water content; Sowing; Agronomy; Soil water; Chlorophyll; Botany; Water-use efficiency; Horticulture; Ecology","score_opus":0.01476382039409762,"score_gpt":0.1890372880546963,"score_spread":0.17427346766059867,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3096106932","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9986389,0.000049965827,0.0008767407,0.0000063941498,0.0000018224957,0.000015381482,0.00011472741,0.000022691247,0.00027339763],"genre_scores_gemma":[0.9932533,0.00007032097,0.004722526,0.00002489955,0.0000023316652,0.00002539123,0.0006572645,0.00003493809,0.0012090714],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998448,0.00002073945,0.000018241179,0.000058613037,0.000031267828,0.00002639343],"domain_scores_gemma":[0.9997024,0.00007247239,0.00006934641,0.00002177637,0.000050437262,0.00008353111],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001944316,0.00024864863,0.0003438578,0.0004567855,0.0002974311,0.00029206174,0.00024270004,0.00023646477,0.0005500205],"category_scores_gemma":[0.00027917713,0.00015098894,0.00015636209,0.00031343204,0.00012332352,0.00022314706,0.00023305652,0.00025588003,0.00018958667],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017074353,0.000051480118,0.015937619,0.000021133985,0.000009316436,0.00009127032,0.0000717071,0.00009082618,0.9803389,0.00002138331,0.000012635395,0.0031830065],"study_design_scores_gemma":[0.000029045726,0.0007432876,0.7296235,0.000010402393,0.0000850352,0.00082576886,0.00036726712,0.0014069487,0.26568776,0.00007194332,0.001124137,0.000024959114],"about_ca_topic_score_codex":0.0022296645,"about_ca_topic_score_gemma":0.0071483334,"teacher_disagreement_score":0.0022296645,"about_ca_system_score_codex":0.00028063447,"about_ca_system_score_gemma":0.0002474675,"threshold_uncertainty_score":0.004433453},"labels":[],"label_agreement":null},{"id":"W3096981123","doi":"10.1016/j.foreco.2020.118716","title":"Spatiotemporal variation in mating system and genetic diversity of Araucaria angustifolia: Implications for conservation and seed collection","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant and animal studies","field":"Agricultural and Biological Sciences","cited_by":11,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Universidade do Estado de Santa Catarina; Fundação de Amparo à Pesquisa e Inovação do Estado de Santa Catarina; Coordenação de Aperfeiçoamento de Pessoal de Nível Superior","keywords":"Biology; Araucaria; Genetic diversity; Mating system; Population; Ecology; Genetic variation; Genetic structure; Mating; Demography","score_opus":0.03449082630510959,"score_gpt":0.19621308340484336,"score_spread":0.16172225709973376,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3096981123","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99956495,0.00003802657,0.00008139496,0.000012925481,6.411824e-7,0.0000012669963,0.000076552875,0.000003532535,0.00022065389],"genre_scores_gemma":[0.99968314,0.000018300938,0.000097626646,0.0000037203204,8.827717e-7,0.0000024901822,0.000064279935,0.0000018354554,0.00012773],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99987316,0.000047658184,0.00000743259,0.000042563996,0.000010316177,0.000018844405],"domain_scores_gemma":[0.99958235,0.00012657877,0.00015576999,0.000038806993,0.000055678807,0.000040859795],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002933471,0.00008854221,0.00012893099,0.0008536128,0.00019599474,0.00023309718,0.00031741345,0.00013059448,0.00089167536],"category_scores_gemma":[0.00048865343,0.000095170384,0.00013497501,0.00052668486,0.00027893635,0.0001729478,0.0001998846,0.00016733923,0.00012044205],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00037717444,0.00011702286,0.9223643,0.000027669392,0.00009699232,0.00011752008,0.00088068395,0.00040330456,0.058423035,0.00032662402,0.00020189522,0.01666381],"study_design_scores_gemma":[0.000002264141,0.000012240391,0.99921525,0.0000017999048,0.0000054864345,0.00003222921,0.00013131878,0.00033659086,0.00013386272,0.000023722077,0.00010320313,0.0000021344779],"about_ca_topic_score_codex":0.014156398,"about_ca_topic_score_gemma":0.036822945,"teacher_disagreement_score":0.014156398,"about_ca_system_score_codex":0.0005774697,"about_ca_system_score_gemma":0.00015832779,"threshold_uncertainty_score":0.028147995},"labels":[],"label_agreement":null},{"id":"W3116056746","doi":"10.1016/j.foreco.2020.118861","title":"Carbon and water balance of an afforested shallow drained peatland in Iceland","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":22,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"SNS Nordic Forest Research; Landsvirkjun","keywords":"Peat; Environmental science; Carbon sink; Eddy covariance; Hydrology (agriculture); Sink (geography); Ecosystem; Carbon dioxide; Growing season; Soil water; Groundwater; Agronomy; Ecology; Soil science; Geology; Biology","score_opus":0.005624574168146459,"score_gpt":0.1906334408456456,"score_spread":0.18500886667749913,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3116056746","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997365,0.000012883797,0.000010304247,0.0000041492526,7.82431e-7,0.0000010160813,0.00011288517,0.0000012874973,0.000120115124],"genre_scores_gemma":[0.9994235,0.000025978294,0.000065750246,0.000008048928,0.0000017699671,0.0000037967034,0.00031567767,0.0000014785414,0.00015410421],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99996924,0.0000035976454,0.00000422376,0.000008549009,0.0000044351164,0.000010054326],"domain_scores_gemma":[0.99992657,0.0000075537914,0.00001818145,0.0000042840857,0.000011666528,0.000031682892],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000110706475,0.00023423227,0.00020735772,0.00035973833,0.00036508412,0.00039128217,0.00014327133,0.00020525274,0.0005865163],"category_scores_gemma":[0.00013665324,0.00010616168,0.0001629409,0.00024724985,0.00035294937,0.0002552475,0.00024997073,0.00012599946,0.00011892058],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004860419,0.000198878,0.94724846,0.00005216565,0.000085445456,0.00096343743,0.00046906414,0.0039936383,0.0411516,0.0001268031,0.00025791762,0.0049665337],"study_design_scores_gemma":[0.0000052152814,0.00003036243,0.99785763,0.0000031565112,0.0000067927135,0.000043829103,0.00013443732,0.0013069578,0.00047641832,0.000017607083,0.000115067676,0.0000025631339],"about_ca_topic_score_codex":0.043901786,"about_ca_topic_score_gemma":0.061549168,"teacher_disagreement_score":0.043901786,"about_ca_system_score_codex":0.00077024184,"about_ca_system_score_gemma":0.00039400524,"threshold_uncertainty_score":0.08729255},"labels":[],"label_agreement":null},{"id":"W3117716020","doi":"10.1016/j.foreco.2020.118872","title":"Resilience of natural forests can jeopardize or enhance plantation productivity","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Université Laval; Ministère des Ressources naturelles et des Forêts","funders":"Ministère des Forêts, de la Faune et des Parcs","keywords":"Balsam; Black spruce; Productivity; Agroforestry; Forest restoration; Geography; Ecology; Forest management; Forest ecology; Silviculture; Sustainability; Forestry; Environmental science; Ecosystem; Taiga; Biology","score_opus":0.007588816874852315,"score_gpt":0.23438928910162532,"score_spread":0.226800472226773,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3117716020","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9491104,0.00066400046,0.0041584736,0.0050035105,0.00007103228,0.000024532443,0.00023001227,0.00010642432,0.040631652],"genre_scores_gemma":[0.9990024,0.00014869908,0.00022107468,0.00010695113,0.000013026693,0.0000045089423,0.00002191624,0.0000054603283,0.00047617932],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99948585,0.0001278191,0.000017820501,0.00004964081,0.000053172516,0.00026570697],"domain_scores_gemma":[0.99752396,0.0007336963,0.0005348585,0.00040964363,0.00016695505,0.00063088594],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0014891374,0.00021385695,0.0001803823,0.0006423337,0.00080129097,0.0017825474,0.0005592414,0.00065605383,0.0055641965],"category_scores_gemma":[0.003962041,0.0001482289,0.00028513084,0.00039424832,0.0022730096,0.0018787455,0.002423548,0.000662633,0.0003498156],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00079942524,0.0006064817,0.44402164,0.0005022566,0.0005041873,0.0013651358,0.0029447365,0.049043186,0.04476297,0.24892686,0.007981443,0.19854172],"study_design_scores_gemma":[0.000043347987,0.00048128705,0.69337046,0.00026718617,0.00018152579,0.0006429602,0.0063332897,0.01292685,0.004413867,0.23092188,0.050335005,0.000082304985],"about_ca_topic_score_codex":0.0026739482,"about_ca_topic_score_gemma":0.013623361,"teacher_disagreement_score":0.0055641965,"about_ca_system_score_codex":0.0014266417,"about_ca_system_score_gemma":0.0010797936,"threshold_uncertainty_score":0.018614054},"labels":[],"label_agreement":null},{"id":"W3120077089","doi":"10.1016/j.foreco.2020.118896","title":"Soil amendment improves carbon sequestration by trees on severely damaged acid and metal impacted landscape, but total storage remains low","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Forestry; Ontario Forest Research Institute; Canadian Forest Service; Natural Resources Canada; Laurentian University","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Carbon sequestration; Environmental science; Soil carbon; Sowing; Amendment; Agronomy; Carbon fibers; Tree planting; Agroforestry; Soil water; Ecology; Biology; Carbon dioxide; Soil science","score_opus":0.0033222455432347746,"score_gpt":0.1859770219115287,"score_spread":0.18265477636829394,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3120077089","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9971871,0.00053205166,0.00035827572,0.00007511744,0.000024527566,0.000010240087,0.00022849531,0.00005208927,0.0015321888],"genre_scores_gemma":[0.9970137,0.0002860102,0.0005637165,0.00005010383,0.000007523825,0.0000042192637,0.00026908508,0.000010786431,0.0017949255],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998976,0.0000108079375,0.000007819875,0.000028201679,0.000021182497,0.00003431907],"domain_scores_gemma":[0.99976975,0.00001971955,0.000045189667,0.000020285688,0.000050097075,0.00009498434],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00010369558,0.0002852026,0.00030294913,0.00024563586,0.00036091713,0.0005385076,0.00029730666,0.00033931198,0.0033263653],"category_scores_gemma":[0.00020014528,0.00007084178,0.00020772757,0.00030540716,0.00017151968,0.00029961893,0.00024070987,0.00022234448,0.0003870219],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0021184953,0.00033969915,0.019848585,0.00045153094,0.000118339805,0.0003184526,0.00009273887,0.00075559283,0.9447732,0.00019115121,0.00040105166,0.030591186],"study_design_scores_gemma":[0.00012424905,0.0059175207,0.45326522,0.00018207551,0.0006381838,0.00136082,0.0014437734,0.0037544398,0.50521034,0.0014999202,0.026541246,0.000062234496],"about_ca_topic_score_codex":0.005019173,"about_ca_topic_score_gemma":0.021261606,"teacher_disagreement_score":0.005019173,"about_ca_system_score_codex":0.00032013128,"about_ca_system_score_gemma":0.0004937612,"threshold_uncertainty_score":0.01112777},"labels":[],"label_agreement":null},{"id":"W3121829212","doi":"10.1016/j.foreco.2021.118934","title":"Corrigendum to “Carbon and water balance of an afforested shallow drained peatland in Iceland” [For. Ecol. Manage. 482 (2021) 118861]","year":2021,"lang":"en","type":"erratum","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Peat; Environmental science; Ecology; Water balance; Carbon fibers; Balance (ability); Geography; Geology; Biology","score_opus":0.006620197993885993,"score_gpt":0.21151024998154225,"score_spread":0.20489005198765625,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3121829212","genre_codex":"editorial","genre_gemma":"other","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"other","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0002864267,0.0020600252,0.0006149457,0.05279109,0.9016023,0.00009812312,0.008906573,0.00070858496,0.032931868],"genre_scores_gemma":[0.004679319,0.005339192,0.002406792,0.067603834,0.10456125,0.0003807301,0.011438861,0.0014077332,0.8021823],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.99843484,0.00019487721,0.0002494886,0.00025973257,0.0007000732,0.00016099348],"domain_scores_gemma":[0.99090624,0.0012161898,0.00044539667,0.00040245103,0.006535578,0.00049399846],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0015856366,0.002026278,0.001820494,0.002638903,0.0031111357,0.0027087645,0.0025051855,0.0034129932,0.119453475],"category_scores_gemma":[0.010996527,0.00096765184,0.0012004342,0.0020774265,0.0010035129,0.0015891417,0.0018414941,0.0051019043,0.079056725],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000012066657,0.0000043970635,0.00003827191,0.000033175478,0.0000017645941,0.000030438858,0.000004014017,0.000023910492,0.00001791845,0.000116569616,0.9975961,0.0021212737],"study_design_scores_gemma":[0.000025988413,0.000021439715,0.0029941336,0.00020642093,0.000012227404,0.00007131954,0.000053945463,0.0001912323,0.00018544949,0.00057567185,0.99563193,0.00003022395],"about_ca_topic_score_codex":0.11096497,"about_ca_topic_score_gemma":0.14841606,"teacher_disagreement_score":0.119453475,"about_ca_system_score_codex":0.0029935217,"about_ca_system_score_gemma":0.0043015624,"threshold_uncertainty_score":0.3996117},"labels":[],"label_agreement":null},{"id":"W3122659541","doi":"10.1016/j.foreco.2021.118947","title":"Physiological and growth responses to defoliation of older needles in Abies alba trees grown under two light regimes","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Swiss Federal Institute for Forest, Snow and Landscape Research","keywords":"Biology; Botany; Picea abies","score_opus":0.0069375986812141395,"score_gpt":0.21095519948429922,"score_spread":0.2040176008030851,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3122659541","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99979824,0.00004066156,0.000048789923,0.0000035903367,0.0000016204151,0.0000027239496,0.000035623274,0.0000032248367,0.000065557855],"genre_scores_gemma":[0.9987238,0.00007095051,0.00029790914,0.00003364473,0.0000040685227,0.00001624582,0.0002768811,0.0000047091917,0.0005716888],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9999051,0.000012502655,0.000009530769,0.00003040344,0.000021903623,0.000020552034],"domain_scores_gemma":[0.9996363,0.000061900464,0.000075821066,0.000022467104,0.0000387667,0.00016477583],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014067863,0.0002922475,0.00028531958,0.000267554,0.00026082475,0.00027313436,0.0001970155,0.00024010245,0.00045713744],"category_scores_gemma":[0.00015899845,0.00020235681,0.00021582139,0.000134847,0.0002463268,0.00025451212,0.00021824519,0.0005787947,0.00007567449],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007515793,0.00014363075,0.012963019,0.0000302766,0.000013378915,0.00006642523,0.00010957614,0.00013389121,0.9845649,0.000018892917,0.000012377523,0.0011919386],"study_design_scores_gemma":[0.000059200065,0.001714238,0.8965334,0.000006022803,0.000041283478,0.00017701354,0.00025732262,0.0018883334,0.098811164,0.000057223253,0.000429021,0.000025722975],"about_ca_topic_score_codex":0.0053203143,"about_ca_topic_score_gemma":0.0067403815,"teacher_disagreement_score":0.0053203143,"about_ca_system_score_codex":0.0005687886,"about_ca_system_score_gemma":0.00022053234,"threshold_uncertainty_score":0.010578692},"labels":[],"label_agreement":null},{"id":"W3126779343","doi":"10.1016/j.foreco.2021.118952","title":"Integrating hotspots for endemic, threatened and rare species supports the identification of priority areas for vascular plants in SW China","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":23,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Shanxi Scholarship Council of China","keywords":"Threatened species; Species richness; Endemism; Geography; Biodiversity hotspot; China; Vascular plant; Ecology; Hotspot (geology); Biodiversity; Near-threatened species; Endangered species; Rare species; Biology; Habitat","score_opus":0.007668595812842762,"score_gpt":0.22564883648439804,"score_spread":0.21798024067155528,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3126779343","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991696,0.0000571504,0.00018930603,0.000027034013,0.0000018389966,0.0000052973837,0.00008272006,0.0000044510025,0.0004625976],"genre_scores_gemma":[0.9996062,0.000017374094,0.000176651,0.0000059276426,0.000001987531,0.0000029712062,0.00009024196,9.396135e-7,0.00009776409],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996836,0.00005953395,0.00002541906,0.000097118274,0.000046353507,0.00008800764],"domain_scores_gemma":[0.99928683,0.0001247098,0.00021525985,0.000050435385,0.00013264784,0.00019004804],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00065210764,0.00028446395,0.0002595101,0.0032121802,0.00072122493,0.0006227357,0.0003893089,0.00019860415,0.0013093799],"category_scores_gemma":[0.0008179686,0.00015834681,0.00025393645,0.0020218608,0.00050005526,0.00068942364,0.0010354172,0.00014440795,0.00007429667],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000042933993,0.000019762268,0.9846162,0.00004100026,0.000057538993,0.000090258196,0.000914461,0.00021859292,0.0024259314,0.00030037842,0.0001623235,0.011110665],"study_design_scores_gemma":[0.0000024268927,0.000010486572,0.9974865,0.0000072037897,0.000029988096,0.000040484952,0.0011888788,0.0006576294,0.00010503542,0.00021865848,0.00024827727,0.0000044981775],"about_ca_topic_score_codex":0.02668163,"about_ca_topic_score_gemma":0.08292,"teacher_disagreement_score":0.02668163,"about_ca_system_score_codex":0.00047288687,"about_ca_system_score_gemma":0.0008730033,"threshold_uncertainty_score":0.053052664},"labels":[],"label_agreement":null},{"id":"W3127178112","doi":"10.1016/j.foreco.2021.118954","title":"Precarious resilience of the boreal forest of eastern North America during the Holocene","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Center for Northern Studies; Université Laval; Ministère des Ressources naturelles et des Forêts; Government of Quebec","funders":"","keywords":"Taiga; Ecology; Disturbance (geology); Forest dynamics; Holocene; Balsam; Boreal; Dominance (genetics); Abiotic component; Forest ecology; Abies balsamea; Geography; Environmental science; Ecological succession; Fire regime; Ecosystem; Secondary forest; Fire ecology; Biology","score_opus":0.002741664693717182,"score_gpt":0.1764590873783516,"score_spread":0.17371742268463441,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3127178112","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99915767,0.00013750016,0.000020562657,0.000071230206,0.0000039445863,0.0000016228122,0.000098162964,0.0000015643146,0.00050772907],"genre_scores_gemma":[0.9997478,0.000047064674,0.000018233915,0.000009972313,0.0000034480586,0.0000015379885,0.000070226204,0.00000109743,0.00010061705],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998733,0.000016200167,0.000005876574,0.000035155226,0.000012361765,0.000057059024],"domain_scores_gemma":[0.9996414,0.000035903475,0.00012256297,0.000022799795,0.000046460198,0.00013073075],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039236352,0.00018176438,0.00018216067,0.0006993639,0.000989042,0.00069145754,0.0003749804,0.0003014452,0.0012893295],"category_scores_gemma":[0.0008678036,0.000132045,0.00015194998,0.0004960697,0.0007579008,0.000647014,0.0007377512,0.00038948987,0.00007113741],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002238122,0.000055151384,0.98355883,0.000038490274,0.0001071143,0.00023761693,0.0040905625,0.00047193392,0.0023665386,0.0005443391,0.000412712,0.00789288],"study_design_scores_gemma":[7.4976066e-7,0.0000066489597,0.9990897,0.0000032636674,0.0000032628025,0.00003042901,0.00053172203,0.000059498132,0.000018528875,0.000039024184,0.00021595691,0.0000013766859],"about_ca_topic_score_codex":0.07068463,"about_ca_topic_score_gemma":0.29589206,"teacher_disagreement_score":0.07068463,"about_ca_system_score_codex":0.0010402878,"about_ca_system_score_gemma":0.0005710046,"threshold_uncertainty_score":0.14054638},"labels":[],"label_agreement":null},{"id":"W3135002042","doi":"10.1016/j.foreco.2021.119062","title":"Wood ash application in sugar maple stands rapidly improves nutritional status and growth at various developmental stages","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Outaouais; Ministère des Forêts, de la Faune et des Parcs; Université TÉLUQ; Cegep de Sainte Foy; Government of New Brunswick","funders":"Natural Sciences and Engineering Research Council of Canada; Université du Québec en Outaouais","keywords":"Maple; Wood ash; Sugar; Aceraceae; Hardwood; Yellow birch; Soil water; Nutrient; Soil acidification; Soil pH; Temperate climate; Chemistry; Horticulture; Environmental science; Botany; Agronomy; Biology; Ecology; Soil science; Food science","score_opus":0.006290508073535684,"score_gpt":0.2008172996830129,"score_spread":0.19452679160947722,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3135002042","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99901223,0.00012829917,0.000187672,0.000023022176,0.0000097882785,0.000013079041,0.00006724277,0.000016424956,0.0005423933],"genre_scores_gemma":[0.9935603,0.00022105534,0.0007640295,0.00006012584,0.0000071935306,0.000024966035,0.00025213818,0.000015652695,0.0050945748],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9999031,0.0000151874665,0.0000039593906,0.000022692904,0.000023731887,0.000031421718],"domain_scores_gemma":[0.9996158,0.00006848414,0.000059542745,0.000016936487,0.000048483867,0.00019073095],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017934405,0.00025367632,0.0003076316,0.00022112291,0.00039016604,0.00040595655,0.00028207575,0.00021191062,0.0009899895],"category_scores_gemma":[0.00027543347,0.00014519911,0.00013903633,0.00015818654,0.0002005931,0.00028022382,0.00024327368,0.00052672706,0.00016707856],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0046646507,0.0013619488,0.0124947755,0.000115618466,0.000058409754,0.00020901964,0.00032063326,0.00020020238,0.96092445,0.000085083666,0.00026651792,0.019298706],"study_design_scores_gemma":[0.00012130717,0.011768043,0.52790546,0.00004308235,0.00017263864,0.00019710991,0.0011465412,0.0014462746,0.45289227,0.00020121915,0.0040687183,0.000037328216],"about_ca_topic_score_codex":0.010550399,"about_ca_topic_score_gemma":0.05437124,"teacher_disagreement_score":0.010550399,"about_ca_system_score_codex":0.0003689264,"about_ca_system_score_gemma":0.0008774453,"threshold_uncertainty_score":0.020977974},"labels":[],"label_agreement":null},{"id":"W3139260709","doi":"10.1016/j.foreco.2021.119094","title":"Spatial and temporal variations of overstory and understory fuels in Mediterranean landscapes","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick; Université du Québec à Montréal","funders":"Ministerio de Asuntos Económicos y Transformación Digital, Gobierno de España; Ministerio de Economía y Competitividad","keywords":"Understory; Environmental science; Mediterranean climate; Fire regime; Spatial variability; Vegetation (pathology); Physical geography; Spatial heterogeneity; Flammability; Common spatial pattern; Climate change; Spatial distribution; Spatial ecology; Ecology; Geography; Canopy; Ecosystem; Remote sensing","score_opus":0.0067387808017554075,"score_gpt":0.19659990720431475,"score_spread":0.18986112640255934,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3139260709","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99970466,0.000056698427,0.00001955592,0.000009116604,9.875178e-7,5.476069e-7,0.00005181326,9.864616e-7,0.00015565481],"genre_scores_gemma":[0.99968815,0.000033601922,0.00003293749,0.0000047994176,0.0000024508,0.0000013940645,0.00007732951,0.0000016000567,0.00015777837],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989223,0.000025036023,0.0000101981295,0.000028473938,0.000013254245,0.00003080276],"domain_scores_gemma":[0.9993343,0.00019801274,0.00024978528,0.000051553827,0.00006687671,0.00009947775],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00032999602,0.00009058696,0.00014888802,0.00054694596,0.00015673184,0.00045709976,0.00020206545,0.0002662775,0.0009188263],"category_scores_gemma":[0.0012836484,0.00013016904,0.0001423056,0.00049783045,0.0002285106,0.0002686964,0.0002821976,0.000114965165,0.000104721585],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018132261,0.000034715176,0.9912777,0.000010522825,0.00007794002,0.0000738271,0.0004462387,0.00046290277,0.0019052303,0.000060303984,0.0001281142,0.0053412546],"study_design_scores_gemma":[7.234248e-7,0.000003779819,0.9997366,8.4961096e-7,0.0000031654117,0.000012776723,0.00006147619,0.00011441502,0.000013599429,0.0000070235164,0.00004493287,6.122343e-7],"about_ca_topic_score_codex":0.018981406,"about_ca_topic_score_gemma":0.051206596,"teacher_disagreement_score":0.018981406,"about_ca_system_score_codex":0.0003672144,"about_ca_system_score_gemma":0.00012520493,"threshold_uncertainty_score":0.03774184},"labels":[],"label_agreement":null},{"id":"W3139278885","doi":"10.1016/j.foreco.2021.119095","title":"Trade-offs across densities and mixture proportions in lodgepole pine-hybrid spruce plantations","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"","keywords":"Weevil; Hectare; Curculionidae; Monoculture; PEST analysis; Biology; Thinning; Sowing; Environmental science; Agronomy; Agroforestry; Ecology; Botany","score_opus":0.006278139152915553,"score_gpt":0.22423220888232062,"score_spread":0.21795406972940506,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3139278885","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99966085,0.00007712332,0.00007299242,0.0000038888643,9.894861e-7,0.0000054284274,0.00002153635,0.0000043098466,0.00015293354],"genre_scores_gemma":[0.9993511,0.00003319966,0.0002479246,0.00001578298,0.0000019174665,0.000011427785,0.00008595526,0.0000034635907,0.00024924218],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99922585,0.00018521497,0.00007916671,0.00024508656,0.00016013435,0.00010453356],"domain_scores_gemma":[0.9985065,0.000420867,0.0003447826,0.00010669363,0.0001170104,0.0005040497],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008226697,0.0003258394,0.0003253003,0.00076310756,0.0005400566,0.0010690128,0.0005025046,0.00032187474,0.0006800341],"category_scores_gemma":[0.00096846576,0.000395773,0.0002851602,0.00024951523,0.00048771716,0.00057359115,0.0006745141,0.00035656168,0.00013867434],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0035096197,0.00067516847,0.5678169,0.000140843,0.000346074,0.0004759634,0.0007501904,0.0014416574,0.4082227,0.0002575414,0.000145425,0.016217874],"study_design_scores_gemma":[0.000014945266,0.00058984914,0.9942398,0.000005060976,0.00004029519,0.000110733126,0.00030918134,0.0009646546,0.0034530063,0.000055306005,0.00020688915,0.00001019027],"about_ca_topic_score_codex":0.010761187,"about_ca_topic_score_gemma":0.068195835,"teacher_disagreement_score":0.010761187,"about_ca_system_score_codex":0.0012387154,"about_ca_system_score_gemma":0.00035785077,"threshold_uncertainty_score":0.021397114},"labels":[],"label_agreement":null},{"id":"W31543701","doi":"10.1016/j.foreco.2006.11.020","title":"Long-term responses of ecosystem components to stand thinning in young lodgepole pine forest","year":2007,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":55,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"University of Alberta","keywords":"Understory; Odocoileus; Thinning; Abundance (ecology); Ecology; Biology; Canopy; Habitat; Pinus contorta; Vegetation (pathology); Geography","score_opus":0.011357813337432408,"score_gpt":0.2367201268522643,"score_spread":0.22536231351483188,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W31543701","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998072,0.00004428969,0.000013107411,0.000004970526,0.000001556565,0.0000012308253,0.000046929057,9.05674e-7,0.00007980368],"genre_scores_gemma":[0.9993954,0.000026536094,0.000023005869,0.000014589696,0.0000025124718,0.0000036493202,0.00021664317,0.0000010923692,0.00031653215],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998752,0.000017930379,0.000008619276,0.000027576476,0.000025093632,0.00004552888],"domain_scores_gemma":[0.99892277,0.00031250183,0.0002555942,0.000049878607,0.00012631912,0.00033292308],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00043718124,0.00021936675,0.0002610489,0.00028337527,0.00039315448,0.000521932,0.00029949125,0.00045655717,0.0008363987],"category_scores_gemma":[0.0012390716,0.00016366247,0.00024429383,0.00023596454,0.00030034478,0.00033875136,0.00037723783,0.00047419954,0.00015948221],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0032184115,0.0006952634,0.94425666,0.000041693133,0.00021644693,0.00036158375,0.00044142033,0.001051926,0.042854983,0.000054824246,0.0002174054,0.006589465],"study_design_scores_gemma":[0.0000025387176,0.00007245778,0.9993389,0.0000016471078,0.000011778068,0.000030501022,0.000089378496,0.00014236203,0.00024857876,0.000017180222,0.00004233537,0.0000023166065],"about_ca_topic_score_codex":0.012919815,"about_ca_topic_score_gemma":0.04495987,"teacher_disagreement_score":0.012919815,"about_ca_system_score_codex":0.00057521916,"about_ca_system_score_gemma":0.00027924395,"threshold_uncertainty_score":0.025689244},"labels":[],"label_agreement":null},{"id":"W3155655761","doi":"10.1016/j.foreco.2021.119223","title":"Stand-level forest management for foraging and nesting of Williamson’s sapsuckers","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Environment and Climate Change Canada; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Foraging; Habitat; Nest (protein structural motif); Ecology; Woodpecker; Range (aeronautics); Forest management; Geography; Home range; Snag; Biology","score_opus":0.014269255731256498,"score_gpt":0.22018105178863182,"score_spread":0.2059117960573753,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3155655761","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99934644,0.000037740137,0.000043589644,0.000007856944,9.68075e-7,0.0000053231483,0.000025266347,0.0000018187241,0.0005309976],"genre_scores_gemma":[0.9992816,0.000039199615,0.00021472112,0.000010753158,0.0000011256917,0.000005983995,0.000081807935,0.0000013755458,0.0003636012],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998845,0.000017860555,0.0000075555704,0.00003097529,0.000026595202,0.000032591557],"domain_scores_gemma":[0.9997633,0.00001988254,0.00007921338,0.0000122807405,0.000041923602,0.000083304774],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016340813,0.00012466431,0.00009976445,0.00039234722,0.00043084446,0.00030926807,0.00025107161,0.000103534534,0.00084415963],"category_scores_gemma":[0.0003490607,0.00007067201,0.00009133648,0.00024138993,0.00018929568,0.00013121085,0.00022677185,0.00010218714,0.00010671056],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000070746806,0.000062257546,0.9709504,0.000014770325,0.000029085008,0.0002669465,0.00045729225,0.00016436235,0.008531192,0.000055503493,0.00034361053,0.019053757],"study_design_scores_gemma":[0.0000016553025,0.000024234238,0.999175,0.0000039096294,0.0000048131615,0.000056263543,0.00022099883,0.000116431875,0.0001233021,0.000010264182,0.0002611498,0.000002124184],"about_ca_topic_score_codex":0.094121054,"about_ca_topic_score_gemma":0.63313997,"teacher_disagreement_score":0.094121054,"about_ca_system_score_codex":0.0008070651,"about_ca_system_score_gemma":0.00052457413,"threshold_uncertainty_score":0.18714637},"labels":[],"label_agreement":null},{"id":"W3159466905","doi":"10.1016/j.foreco.2021.119259","title":"Glyphosate remains in forest plant tissues for a decade or more","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Weed Control and Herbicide Applications","field":"Agricultural and Biological Sciences","cited_by":51,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Forests; University of Northern British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Glyphosate; Agroforestry; Environmental science; Biology; Ecology","score_opus":0.017308500573878758,"score_gpt":0.24584582172591776,"score_spread":0.228537321152039,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3159466905","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9947277,0.0009539294,0.000484473,0.000034487784,0.0000059461113,0.0000139596095,0.0014631716,0.000028885454,0.0022874346],"genre_scores_gemma":[0.9911212,0.00054727774,0.0010619368,0.0000737631,0.0000051921215,0.000022082946,0.0029854148,0.000021662352,0.004161354],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9997677,0.000009274019,0.000011239589,0.00009286636,0.00006422323,0.000054697386],"domain_scores_gemma":[0.9995732,0.000028247323,0.00010616923,0.000042766722,0.00019302178,0.000056588015],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013239676,0.0002911479,0.00033618385,0.0006044734,0.0013576101,0.001025738,0.00028149062,0.00023498028,0.0011958998],"category_scores_gemma":[0.00020810064,0.00019888367,0.00013412196,0.0007406252,0.00033535686,0.00032672472,0.00027647876,0.0003294277,0.00035555926],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024754784,0.000027046854,0.12709726,0.00010190461,0.00005607387,0.0002028456,0.0005517558,0.00006482482,0.8591458,0.00006442735,0.00014823994,0.012292231],"study_design_scores_gemma":[0.0000026535108,0.00007833388,0.95931214,0.000021131124,0.000024046833,0.00022096297,0.00062714034,0.0001023165,0.035650726,0.000039137798,0.003912927,0.000008485455],"about_ca_topic_score_codex":0.14690217,"about_ca_topic_score_gemma":0.40956217,"teacher_disagreement_score":0.14690217,"about_ca_system_score_codex":0.0014957358,"about_ca_system_score_gemma":0.001128138,"threshold_uncertainty_score":0.29209423},"labels":[],"label_agreement":null},{"id":"W3159527425","doi":"10.1016/j.foreco.2021.119228","title":"Belowground effects of deer in a temperate forest are time-dependent","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":11,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; Mitacs; Centre Méditerranéen de l’Environnement et de la Biodiversité; Agence Nationale de la Recherche; Parks Canada","keywords":"Herbivore; Trampling; Ecology; Vegetation (pathology); Temperate rainforest; Temperate climate; Temperate forest; Abundance (ecology); Ecosystem; Environmental science; Community structure; Biology; Grazing","score_opus":0.003386923169162005,"score_gpt":0.18305082385640017,"score_spread":0.17966390068723817,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3159527425","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993585,0.00010793054,0.00013531004,0.0000076099086,0.0000016730467,0.0000019181577,0.000057930996,0.0000020775958,0.00032710994],"genre_scores_gemma":[0.99911314,0.00008687574,0.0000917861,0.000010453726,0.0000039609513,0.000003175365,0.00011937432,0.0000041673597,0.0005670629],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986506,0.000023480428,0.000008228771,0.000035170597,0.0000164567,0.000051592324],"domain_scores_gemma":[0.99919456,0.00029594792,0.00020581928,0.00005862723,0.0000693885,0.00017555749],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00032159992,0.0001644675,0.00027946048,0.00045764822,0.0002494353,0.0006119481,0.00022998425,0.00026895554,0.0019789152],"category_scores_gemma":[0.001212391,0.00019856023,0.00026481666,0.00024970513,0.00040671922,0.0005196245,0.00040687533,0.00021501748,0.00027462456],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0025452573,0.00079518964,0.77954656,0.00014245263,0.00023687903,0.00055284577,0.00046497353,0.0035138587,0.18723203,0.0007438282,0.00031427585,0.023911802],"study_design_scores_gemma":[0.000004234564,0.000076299286,0.9985519,0.0000025766165,0.000018708164,0.00008378215,0.0000873361,0.00047588334,0.00046459137,0.0001531842,0.00007761066,0.000003780117],"about_ca_topic_score_codex":0.003405191,"about_ca_topic_score_gemma":0.014408897,"teacher_disagreement_score":0.003405191,"about_ca_system_score_codex":0.0002591538,"about_ca_system_score_gemma":0.00014849273,"threshold_uncertainty_score":0.00677073},"labels":[],"label_agreement":null},{"id":"W3163287646","doi":"10.1016/j.foreco.2021.119268","title":"Soil compaction and organic matter removal effects on soil properties and tree growth in the Interior Douglas-fir zone of southern British Columbia","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Biomass Utilization and Management","field":"Engineering","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Forests","funders":"Ministry of Forests, Lands, Natural Resource Operations and Rural Development","keywords":"Soil compaction; Environmental science; Edaphic; Soil water; Silviculture; Organic matter; Productivity; Compaction; Calcareous; Agronomy; Forestry; Ecology; Geology; Soil science; Geography; Agroforestry; Biology; Botany","score_opus":0.00551127664307267,"score_gpt":0.16493728293328988,"score_spread":0.15942600629021722,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3163287646","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996697,0.000038899354,0.0000088965835,0.000009194043,5.283671e-7,0.0000013484325,0.00006135289,0.0000013742506,0.00020887842],"genre_scores_gemma":[0.9993469,0.000030288851,0.000020508382,0.000013355231,4.1496827e-7,0.0000018109796,0.00010396716,0.0000015248291,0.00048132028],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99971646,0.000048679594,0.000014640609,0.00004959008,0.000054377946,0.000116301715],"domain_scores_gemma":[0.9991955,0.00018036772,0.00010864859,0.000037165682,0.00018939257,0.0002889564],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002973152,0.0002555426,0.00032786487,0.000549782,0.0010245587,0.00077710085,0.0005980195,0.00029047058,0.0013370374],"category_scores_gemma":[0.00088281534,0.00023309806,0.00019577192,0.00080461014,0.00079026876,0.00018810942,0.0004899393,0.00035423486,0.0001799451],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006891257,0.00015239994,0.98214,0.000028744598,0.0001188685,0.00030587657,0.00110259,0.00053330534,0.008530546,0.00006695409,0.00033674444,0.0059948866],"study_design_scores_gemma":[0.0000030047981,0.000010899999,0.99921405,0.0000023800942,0.000009933264,0.000014267688,0.00047016493,0.00010164864,0.000091035094,0.0000049400346,0.000075413176,0.0000022105971],"about_ca_topic_score_codex":0.92395,"about_ca_topic_score_gemma":0.97533065,"teacher_disagreement_score":0.07604998,"about_ca_system_score_codex":0.005268466,"about_ca_system_score_gemma":0.0038574645,"threshold_uncertainty_score":0.15299565},"labels":[],"label_agreement":null},{"id":"W3164267369","doi":"10.1016/j.foreco.2021.119375","title":"Can understory functional traits predict post-harvest forest productivity in boreal ecosystems?","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts (Québec); Natural Resources Canada; Canadian Forest Service; Université du Québec à Montréal; Université du Québec en Abitibi-Témiscamingue","funders":"Mitacs","keywords":"Understory; Taiga; Ecosystem; Environmental science; Productivity; Boreal ecosystem; Forest ecology; Ecology; Agroforestry; Boreal; Biology; Canopy; Economics","score_opus":0.009119026270098645,"score_gpt":0.19568707621560844,"score_spread":0.1865680499455098,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3164267369","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9989347,0.00015626283,0.00013022499,0.00014092635,0.000009696147,0.0000015743029,0.00017719534,0.000002953012,0.00044649345],"genre_scores_gemma":[0.9995297,0.000058826816,0.00008581957,0.000038593113,0.000011501853,0.0000013558565,0.00015122081,0.0000017546739,0.00012120079],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99971443,0.000089738154,0.000017196091,0.00007551077,0.000023088991,0.00008001459],"domain_scores_gemma":[0.99706227,0.0010649894,0.00097517564,0.00025041838,0.000178029,0.00046916117],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0014933228,0.00036819596,0.0002526411,0.00044168744,0.000364799,0.0010581994,0.00042445288,0.0007295467,0.0013856364],"category_scores_gemma":[0.0036616272,0.00021368716,0.00038804466,0.00048289713,0.0006527154,0.0011824697,0.00029565676,0.00055197283,0.00028713673],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000038495884,0.000028886388,0.99789065,0.000003444822,0.00004617432,0.000014840452,0.000042495605,0.00008599072,0.00014575268,0.000023313625,0.0000624187,0.0016175109],"study_design_scores_gemma":[7.9865714e-7,0.000011852224,0.9995221,0.000001670492,0.000009016636,0.000015968559,0.00006902389,0.00024508603,0.000017241908,0.000057419336,0.000048312013,0.0000016730462],"about_ca_topic_score_codex":0.012961117,"about_ca_topic_score_gemma":0.052452646,"teacher_disagreement_score":0.012961117,"about_ca_system_score_codex":0.00024586314,"about_ca_system_score_gemma":0.0002621201,"threshold_uncertainty_score":0.02577138},"labels":[],"label_agreement":null},{"id":"W3166065928","doi":"10.1016/j.foreco.2021.119386","title":"Relating pre-fire canopy species, fire season, and proximity to surface waters to burn severity of boreal wildfires in Alberta, Canada","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"McMaster University","funders":"Global Water Futures","keywords":"Boreal; Taiga; Canopy; Environmental science; Fire regime; Fire ecology; Prescribed burn; Ecology; Wildfire suppression; Forestry; Geography; Ecosystem; Firefighting; Biology","score_opus":0.0033929581004262252,"score_gpt":0.18015569723069555,"score_spread":0.17676273913026933,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3166065928","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9971564,0.0004164038,0.00008468858,0.00010105146,0.000010965763,0.000010467576,0.0011089306,0.000008016644,0.0011030837],"genre_scores_gemma":[0.9964813,0.00033513288,0.00013903735,0.00005597514,0.0000053433428,0.000005886804,0.0010660149,0.000005175593,0.00190611],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995807,0.000052631607,0.000031537806,0.000065850334,0.000121167446,0.00014812738],"domain_scores_gemma":[0.99753016,0.0003474174,0.00031362116,0.00008122981,0.00096267177,0.0007650659],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008247831,0.00029749153,0.00030584566,0.00091281236,0.001517221,0.00094532495,0.00093342905,0.00037368818,0.0019819725],"category_scores_gemma":[0.0017955131,0.00023819966,0.00046746837,0.0016566545,0.00057356,0.00027373995,0.0005037937,0.0005488542,0.00018515228],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019737902,0.000046140318,0.9942985,0.00001328357,0.00006648465,0.000069450085,0.00034502163,0.00042082553,0.00022023065,0.0000520242,0.0007792241,0.0034914922],"study_design_scores_gemma":[0.0000037204472,0.0000100721245,0.9986338,0.000011322408,0.000017155611,0.000027173714,0.000770763,0.00019261599,0.000027731528,0.000012668734,0.00028876006,0.0000042983825],"about_ca_topic_score_codex":0.9936987,"about_ca_topic_score_gemma":0.9981634,"teacher_disagreement_score":0.010672268,"about_ca_system_score_codex":0.010672268,"about_ca_system_score_gemma":0.013064039,"threshold_uncertainty_score":0.07743311},"labels":[],"label_agreement":null},{"id":"W3166596181","doi":"10.1016/j.foreco.2021.119435","title":"Partitioning carbon losses from fire combustion in a montane Valley, Alberta Canada","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Parks Canada; University of Lethbridge","funders":"Western Economic Diversification Canada; Natural Sciences and Engineering Research Council of Canada; Canada Foundation for Innovation; Parks Canada","keywords":"Montane ecology; Environmental science; Carbon fibers; Fire regime; Forestry; Physical geography; Ecology; Geography; Atmospheric sciences; Ecosystem; Geology; Biology; Mathematics","score_opus":0.003341825719786619,"score_gpt":0.1700307110667546,"score_spread":0.166688885346968,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3166596181","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9979444,0.00020238872,0.00010050894,0.00003462113,0.0000017595646,0.000009402874,0.0005456253,0.000008843854,0.0011523584],"genre_scores_gemma":[0.99610174,0.00028534964,0.0005821069,0.000039962048,0.0000016289242,0.0000069378357,0.0009140062,0.000005642508,0.0020625468],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99975914,0.000012502762,0.0000068185536,0.000041665582,0.000114035676,0.00006588233],"domain_scores_gemma":[0.9996307,0.000025468862,0.00003962688,0.000009916238,0.00020889119,0.00008536719],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025460313,0.0003021251,0.0001980954,0.00095174916,0.0018468457,0.001080552,0.00066341145,0.00020865537,0.0006960691],"category_scores_gemma":[0.00035058495,0.0001861198,0.00019921636,0.0016279744,0.00049982365,0.00019354801,0.0003182904,0.00022763922,0.00009177231],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00026784308,0.00006888008,0.96691114,0.000041148418,0.00009375493,0.00035762318,0.0009494964,0.002492593,0.00792084,0.00018334646,0.0010942486,0.019619012],"study_design_scores_gemma":[0.0000063934917,0.00001575263,0.9958943,0.000007977739,0.000015147596,0.000055805383,0.00085708237,0.0016223381,0.00047651576,0.00003320915,0.0010075235,0.000007924607],"about_ca_topic_score_codex":0.99182194,"about_ca_topic_score_gemma":0.99790883,"teacher_disagreement_score":0.019673895,"about_ca_system_score_codex":0.019673895,"about_ca_system_score_gemma":0.011000038,"threshold_uncertainty_score":0.14274478},"labels":[],"label_agreement":null},{"id":"W3187213335","doi":"10.1016/j.foreco.2021.119522","title":"Decomposition and transformations along the continuum from litter to soil organic matter in forest soils","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":318,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Soil water; Environmental science; Organic matter; Decomposition; Soil science; Soil organic matter; Litter; Plant litter; Ecology; Soil biology; Environmental chemistry; Chemistry; Ecosystem; Biology","score_opus":0.005639156646922362,"score_gpt":0.1986522374400761,"score_spread":0.19301308079315374,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3187213335","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.6998364,0.292017,0.0038565344,0.00040726806,0.000036808327,0.000029859877,0.00018383308,0.00005471265,0.003577686],"genre_scores_gemma":[0.8882148,0.10692344,0.0032136932,0.00016132339,0.00007327648,0.000021767219,0.0001947311,0.000010350443,0.0011866377],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99980193,0.000030942356,0.000015240845,0.000060059854,0.000050762766,0.000041105923],"domain_scores_gemma":[0.999881,0.00002038243,0.0000562764,0.0000026930156,0.000015226142,0.00002440374],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003860093,0.00022230146,0.00016176252,0.00093395205,0.00022625524,0.0006973725,0.00018678933,0.00033311488,0.00016084092],"category_scores_gemma":[0.00016989735,0.00012141481,0.00017431813,0.00061535486,0.00040831743,0.00057266065,0.00030374184,0.0002921166,0.00013273528],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000641773,0.00017556781,0.19130918,0.0032157442,0.000258852,0.0017105086,0.001361946,0.002836473,0.44437432,0.0056588463,0.0008833869,0.3475734],"study_design_scores_gemma":[0.000014343249,0.00044058825,0.93153566,0.00034777948,0.00009505826,0.0024496228,0.0012328837,0.0023326264,0.028820511,0.007894384,0.024784245,0.000052302566],"about_ca_topic_score_codex":0.0037741386,"about_ca_topic_score_gemma":0.0044081835,"teacher_disagreement_score":0.0037741386,"about_ca_system_score_codex":0.0004980215,"about_ca_system_score_gemma":0.00041829693,"threshold_uncertainty_score":0.007504344},"labels":[],"label_agreement":null},{"id":"W3190961707","doi":"10.1016/j.foreco.2021.119527","title":"Spatial forest vulnerability profile of major forest types in Indian Western Himalaya","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Rangeland Management and Livestock Ecology","field":"Environmental Science","cited_by":21,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue","funders":"Department of Science and Technology, Ministry of Science and Technology, India; International Centre for Integrated Mountain Development","keywords":"Geography; Population; Temperate rainforest; Vulnerability (computing); Forest ecology; Forest management; Vulnerability assessment; Species richness; Forest restoration; Temperate forest; Environmental science; Physical geography; Ecology; Environmental resource management; Temperate climate; Forestry; Ecosystem; Psychological resilience","score_opus":0.005748193917363311,"score_gpt":0.21215183678473135,"score_spread":0.20640364286736804,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3190961707","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999387,0.000020522275,0.000022231852,0.00000967872,3.5019167e-7,0.0000016438162,0.00016676672,0.0000020638947,0.00038965128],"genre_scores_gemma":[0.9997043,0.000018770043,0.00001935141,0.00000224389,6.50428e-7,0.0000017640448,0.0001086262,3.9247027e-7,0.00014401754],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998853,0.000017539653,0.000009341555,0.000022534123,0.000015453468,0.000049848783],"domain_scores_gemma":[0.99963164,0.00007207467,0.00011120577,0.000024655508,0.00007130696,0.00008914185],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00009439841,0.00015337756,0.00012984102,0.0012595729,0.00055676274,0.00063521974,0.00023638067,0.00013191425,0.0014509519],"category_scores_gemma":[0.0004375971,0.00014896541,0.00019642859,0.001766385,0.00037994268,0.00026491616,0.0005082534,0.00014575927,0.00018109941],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000071087925,0.000018401852,0.9933217,0.000014827664,0.00004883635,0.00025054446,0.0018056902,0.00068737066,0.001122419,0.00019081133,0.00012765257,0.0023406234],"study_design_scores_gemma":[4.258781e-7,0.000006915015,0.998314,0.0000022175527,0.0000066142743,0.00008200651,0.0012657384,0.00020738658,0.000032436474,0.000019642823,0.000060559916,0.0000019921151],"about_ca_topic_score_codex":0.08651448,"about_ca_topic_score_gemma":0.17212342,"teacher_disagreement_score":0.08651448,"about_ca_system_score_codex":0.00070745085,"about_ca_system_score_gemma":0.00040207946,"threshold_uncertainty_score":0.1720218},"labels":[],"label_agreement":null},{"id":"W3193282142","doi":"10.1016/j.foreco.2021.119607","title":"Increased levels of harvest may favour sugar maple regeneration over American beech in northern hardwoods","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":17,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal; Ministère des Forêts, de la Faune et des Parcs; Université du Québec en Outaouais; Université Laval; Centre de Géomatique du Québec","funders":"Fonds de recherche du Québec – Nature et technologies; Natural Sciences and Engineering Research Council of Canada; Ministère des Forêts, de la Faune et des Parcs","keywords":"Beech; Maple; Yellow birch; Basal area; Hardwood; Dominance (genetics); Aceraceae; Understory; Sugar; Forestry; Botany; Biology; Environmental science; Ecology; Horticulture; Canopy; Geography","score_opus":0.015635525381812846,"score_gpt":0.21163703420162536,"score_spread":0.19600150881981251,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3193282142","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9989084,0.000016443199,0.000022696117,0.00003182045,0.0000014957325,0.0000012247998,0.000011575073,0.0000016898625,0.0010045742],"genre_scores_gemma":[0.99963725,0.00001341338,0.000019983323,0.000027649616,0.0000020937978,0.0000013173682,0.000015555699,0.000001218083,0.00028147604],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998771,0.00002646935,0.0000050643926,0.000024115147,0.000013902444,0.00005329575],"domain_scores_gemma":[0.99945396,0.00011603312,0.00013119691,0.000021896787,0.000042957283,0.00023396991],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033694523,0.00011256078,0.0001582297,0.00039529434,0.00085802865,0.0010403993,0.0001900297,0.0002670644,0.0032238325],"category_scores_gemma":[0.0007967774,0.00013554301,0.00009986563,0.00027656314,0.000693464,0.00035330807,0.00039843237,0.00030591423,0.00017474433],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007380057,0.00017959793,0.9615158,0.00003390704,0.00007512382,0.00030335912,0.00082478655,0.00043480675,0.028746119,0.00070259796,0.00032461243,0.0061213463],"study_design_scores_gemma":[0.000004693764,0.000024753024,0.99846566,0.000002610717,0.0000079336805,0.000029371296,0.0008764252,0.00009031505,0.00020567737,0.00010836473,0.00018202014,0.000002336318],"about_ca_topic_score_codex":0.02902221,"about_ca_topic_score_gemma":0.22648895,"teacher_disagreement_score":0.02902221,"about_ca_system_score_codex":0.0006796709,"about_ca_system_score_gemma":0.0005836636,"threshold_uncertainty_score":0.057706594},"labels":[],"label_agreement":null},{"id":"W3202439154","doi":"10.1016/j.foreco.2021.119727","title":"Climate, site conditions, and stand characteristics influence maximum size-density relationships in Korean red pine (Pinus densiflora) and Mongolian oak (Quercus mongolica) stands, South Korea","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":16,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Korea Forest Service; National Research Foundation of Korea","keywords":"Pinus densiflora; Environmental science; Climate change; Stocking; Thinning; Ecology; Leaf area index; Geography; Forestry; Physical geography; Biology; Botany","score_opus":0.007312009146722518,"score_gpt":0.20469553769221882,"score_spread":0.1973835285454963,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3202439154","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99988675,0.000019625588,0.000009050506,0.0000033745011,5.2871275e-7,5.8595987e-7,0.000030562886,4.7109293e-7,0.000049061844],"genre_scores_gemma":[0.9998584,0.000008135206,0.000010759066,0.0000036297984,6.6546306e-7,9.1793885e-7,0.000051695504,5.36353e-7,0.00006518374],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998266,0.00003330583,0.000022272112,0.00005752668,0.000018341832,0.00004194645],"domain_scores_gemma":[0.9993242,0.00015864958,0.00018352356,0.00003889882,0.000080106875,0.0002146844],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030326788,0.00019957531,0.00016807675,0.0005661859,0.0003145831,0.00041048837,0.00037630126,0.00016472583,0.0009680055],"category_scores_gemma":[0.0004952649,0.00022638579,0.00022675174,0.00044758883,0.00032987396,0.00037661078,0.00037687222,0.00018983377,0.0001219553],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008579184,0.00003686562,0.9977689,0.0000042086217,0.000036859783,0.00005937314,0.00018432247,0.00005673751,0.0008956398,0.000019742494,0.00004277327,0.0008087027],"study_design_scores_gemma":[0.0000016230662,0.000013939808,0.99943036,8.600988e-7,0.000008621474,0.00005536495,0.00031421738,0.000108635584,0.000030564846,0.000008579348,0.000025523423,0.0000017015979],"about_ca_topic_score_codex":0.014129001,"about_ca_topic_score_gemma":0.06591567,"teacher_disagreement_score":0.014129001,"about_ca_system_score_codex":0.00037602926,"about_ca_system_score_gemma":0.00026105464,"threshold_uncertainty_score":0.028093517},"labels":[],"label_agreement":null},{"id":"W3206701169","doi":"10.1016/j.foreco.2021.119708","title":"Habitat associations of breeding conifer-associated birds in managed and regenerating forested stands","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"U.S. Geological Survey; Cooperative Forestry Research Unit, University of Maine; Maine Agricultural and Forest Experiment Station; U.S. Fish and Wildlife Service; McGill University","keywords":"Abundance (ecology); Wildlife; Basal area; Forest management; Vegetation (pathology); Ecology; Habitat; Forestry; Geography; Shrub; Understory; Breeding bird survey; Forest inventory; Biology; Canopy","score_opus":0.009666364738058816,"score_gpt":0.21867375382953366,"score_spread":0.20900738909147484,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3206701169","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99978286,0.000024607765,0.000008768615,0.000002608585,8.1345723e-7,6.969284e-7,0.000039964292,5.995799e-7,0.00013911817],"genre_scores_gemma":[0.9996123,0.000017197317,0.000022037992,0.00000463363,0.0000016824151,0.0000014608366,0.00008526065,7.960372e-7,0.00025480334],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998105,0.000049528477,0.000014975866,0.000045264667,0.0000136201115,0.000066098735],"domain_scores_gemma":[0.9992132,0.0001680445,0.00024449138,0.000034962697,0.00008140552,0.0002578377],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026774305,0.00013935647,0.000183989,0.00081217656,0.000566506,0.00044472085,0.0002593696,0.0002140273,0.0021612707],"category_scores_gemma":[0.0006917317,0.00013240459,0.00014246066,0.0004965589,0.00031800076,0.00035709827,0.00035906237,0.00018094889,0.00019999058],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014453195,0.000044316555,0.99729013,0.0000044862363,0.000021275386,0.00006237334,0.00022177031,0.000054388838,0.0008317196,0.000017418184,0.00006139931,0.0012462545],"study_design_scores_gemma":[9.625358e-7,0.000021019376,0.99949324,8.740417e-7,0.0000033492859,0.000059810827,0.00029798062,0.000068306435,0.000018563727,0.000005841921,0.000029289888,7.637645e-7],"about_ca_topic_score_codex":0.018767988,"about_ca_topic_score_gemma":0.110580236,"teacher_disagreement_score":0.018767988,"about_ca_system_score_codex":0.00027268185,"about_ca_system_score_gemma":0.00019065148,"threshold_uncertainty_score":0.037317455},"labels":[],"label_agreement":null},{"id":"W3208456108","doi":"10.1016/j.foreco.2021.119820","title":"The effects of functional diversity and identity (acquisitive versus conservative strategies) on soil carbon stocks are dependent on environmental contexts","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":22,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick; Lakehead University","funders":"Canadian Forest Service; Natural Sciences and Engineering Research Council of Canada","keywords":"Biome; Ecology; Temperate forest; Temperate climate; Temperate rainforest; Soil carbon; Taiga; Environmental science; Boreal; Agroforestry; Soil water; Ecosystem; Biology","score_opus":0.006782545404259468,"score_gpt":0.2070683584769586,"score_spread":0.20028581307269913,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3208456108","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99906296,0.000061107196,0.000066033506,0.0000141546225,0.0000013030384,0.0000012982009,0.000026277716,0.0000012941575,0.0007655129],"genre_scores_gemma":[0.9996612,0.00003188412,0.000056595534,0.0000112880925,0.000002124563,0.0000011169468,0.000026071946,0.0000030381286,0.00020663679],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99952435,0.00020731312,0.000023246625,0.00009597967,0.000054360702,0.00009479988],"domain_scores_gemma":[0.99440056,0.0029949255,0.0007764842,0.00034656978,0.0001839869,0.0012974677],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007659777,0.0002551706,0.00031995922,0.0005397288,0.00043441635,0.0011549481,0.00033073427,0.00048255778,0.0033915879],"category_scores_gemma":[0.002810792,0.00024819034,0.00031922094,0.00034075748,0.001147801,0.00071701396,0.0009364974,0.000515043,0.00028518765],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0027720856,0.0006204187,0.92862594,0.000056645265,0.0005171586,0.00029727872,0.00049996015,0.0008740599,0.050935693,0.0010256756,0.00012616007,0.013648939],"study_design_scores_gemma":[0.000004846518,0.00010885168,0.99833846,0.0000029933399,0.000030266021,0.0000688123,0.00015385136,0.00030940486,0.0006558933,0.00025911967,0.00006139028,0.000006084132],"about_ca_topic_score_codex":0.001559408,"about_ca_topic_score_gemma":0.005237855,"teacher_disagreement_score":0.0033915879,"about_ca_system_score_codex":0.0002392307,"about_ca_system_score_gemma":0.00022490925,"threshold_uncertainty_score":0.011345983},"labels":[],"label_agreement":null},{"id":"W3211331940","doi":"10.1016/j.foreco.2021.119812","title":"Corrigendum to “An analysis of age-age correlations in white spruce and lodgepole pine and how it applies to the growth and yield projection system (GYPSY) in Alberta” [For. Ecol. Manage. 482 (2021) 1–16]","year":2021,"lang":"en","type":"erratum","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"White (mutation); Yield (engineering); Pinus contorta; Forestry; Projection (relational algebra); Biology; Geography; Mathematics; Physics","score_opus":0.009334675514407241,"score_gpt":0.21264502267439264,"score_spread":0.2033103471599854,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3211331940","genre_codex":"editorial","genre_gemma":"other","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"other","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.00033712594,0.0025090422,0.0008817512,0.08857817,0.8795162,0.00009201755,0.009628544,0.001128965,0.017328164],"genre_scores_gemma":[0.0051699625,0.0044124774,0.0027699326,0.076374605,0.07546063,0.00020098017,0.011532606,0.0013686215,0.82271016],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.9972492,0.00022940783,0.00030560204,0.00040833664,0.0014444074,0.00036303065],"domain_scores_gemma":[0.97823286,0.0019990697,0.00055884704,0.00077341555,0.017593997,0.0008418698],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0025094347,0.0021214343,0.0021389225,0.0034638105,0.005164663,0.0028647438,0.004392501,0.005124519,0.12391316],"category_scores_gemma":[0.018312356,0.0013050535,0.0020506177,0.003322586,0.0015149356,0.0017639869,0.002282902,0.0057417857,0.06305696],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000007338396,0.0000032495316,0.0000460614,0.00001820278,0.0000022158547,0.00002787976,0.000007825991,0.000022897622,0.000020598203,0.00008397188,0.99837,0.0013898122],"study_design_scores_gemma":[0.000023353648,0.000014959766,0.005196579,0.00013963472,0.000022894654,0.00006692946,0.000116550735,0.0002210867,0.00014149993,0.0005698131,0.993435,0.00005176758],"about_ca_topic_score_codex":0.64442194,"about_ca_topic_score_gemma":0.7737998,"teacher_disagreement_score":0.64442194,"about_ca_system_score_codex":0.008186953,"about_ca_system_score_gemma":0.009944194,"threshold_uncertainty_score":0.71534425},"labels":[],"label_agreement":null},{"id":"W3213319654","doi":"10.1016/j.foreco.2021.119823","title":"Balsam fir (Abies balsamea (L.) Mill.) – Red spruce (Picea rubens Sarg.) forest productivity 35 years after whole-tree and stem-only harvesting in north-central Maine, USA","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"Cooperative Forestry Research Unit, University of Maine","keywords":"Environmental science; Silviculture; Agroforestry; Agronomy; Forest management; Forestry; Productivity; Thinning; Biology; Geography","score_opus":0.0074403137328463475,"score_gpt":0.20168170723426235,"score_spread":0.194241393501416,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3213319654","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9979786,0.00025730973,0.000038961047,0.000120981436,0.000008343269,0.000003391782,0.0010135468,0.0000065464405,0.00057239877],"genre_scores_gemma":[0.9974389,0.0001537466,0.000069674155,0.00005630785,0.0000069000976,0.000004323591,0.0011934454,0.0000013292341,0.0010753821],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998703,0.000022761778,0.000007775001,0.000042293417,0.000018141733,0.000038789236],"domain_scores_gemma":[0.99973804,0.000022063034,0.00007566407,0.000012656596,0.000052805823,0.00009872324],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033053255,0.00015313397,0.00013230892,0.0005072426,0.00037452593,0.00029925435,0.00030957046,0.00018593762,0.0011424266],"category_scores_gemma":[0.00026665832,0.00008108632,0.00010637418,0.00040324256,0.0002457169,0.0002570861,0.00028619193,0.0002038518,0.00022028961],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017057342,0.00014378592,0.9836933,0.000032952106,0.00008040661,0.00022261379,0.00050690636,0.0002312249,0.0014588708,0.00016432868,0.0023290878,0.01096586],"study_design_scores_gemma":[0.000003258235,0.000010288816,0.99920136,0.0000057874095,0.000006394274,0.000020582549,0.00013820032,0.00007647118,0.000041388394,0.000014776751,0.00048048457,0.0000010062746],"about_ca_topic_score_codex":0.16910307,"about_ca_topic_score_gemma":0.4849937,"teacher_disagreement_score":0.16910307,"about_ca_system_score_codex":0.0010155109,"about_ca_system_score_gemma":0.000695251,"threshold_uncertainty_score":0.3362376},"labels":[],"label_agreement":null},{"id":"W3215231282","doi":"10.1016/j.foreco.2021.119878","title":"Effects of a selective thinning on wind loading in a naturally regenerated balsam fir stand","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval; Ministère des Ressources naturelles et des Forêts","funders":"","keywords":"Abies balsamea; Thinning; Balsam; Canopy; Environmental science; Competition (biology); Atmospheric sciences; Mathematics; Ecology; Forestry; Geography; Biology; Botany; Geology","score_opus":0.003672336751251802,"score_gpt":0.19251245982510062,"score_spread":0.18884012307384881,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3215231282","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998933,0.000005336703,0.000009331746,0.000003099928,9.778742e-7,8.927605e-7,0.000010560548,7.972002e-7,0.00007568037],"genre_scores_gemma":[0.999673,0.000008237318,0.000045896115,0.00000979535,0.0000015052948,0.0000024834214,0.00004178335,0.0000010438832,0.0002161401],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99990237,0.000025679858,0.000008468027,0.000018113999,0.000014361391,0.000031090534],"domain_scores_gemma":[0.9993772,0.00021562245,0.000070493275,0.000031476917,0.000060273793,0.00024495774],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003020096,0.00022327431,0.00023353852,0.00020706926,0.00059072283,0.00032880047,0.00034867355,0.00030794204,0.0009756971],"category_scores_gemma":[0.00057196844,0.00015987153,0.00016225316,0.00012432123,0.0004678154,0.00016554147,0.00027336463,0.00032852226,0.000107431995],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.01832328,0.0052093705,0.36471325,0.00010783027,0.00026227545,0.0026099607,0.00077586644,0.0052220924,0.58424044,0.00038026038,0.00054900185,0.017606435],"study_design_scores_gemma":[0.00008674716,0.0026780223,0.9820157,0.000004282282,0.000063853084,0.0002958938,0.0004249695,0.0035774352,0.010542208,0.000096637974,0.00020005718,0.000014228756],"about_ca_topic_score_codex":0.016748112,"about_ca_topic_score_gemma":0.046943482,"teacher_disagreement_score":0.016748112,"about_ca_system_score_codex":0.0006052119,"about_ca_system_score_gemma":0.0005519205,"threshold_uncertainty_score":0.033301234},"labels":[],"label_agreement":null},{"id":"W4200062348","doi":"10.1016/j.foreco.2021.119896","title":"Five decades of ground flora changes in a temperate forest: The good, the bad and the ambiguous in biodiversity terms","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"York University","funders":"","keywords":"Species richness; Woodland; Ecology; Biodiversity; Biomass (ecology); Vegetation (pathology); Geography; Plant community; Biology","score_opus":0.006005869836066097,"score_gpt":0.19980793632674798,"score_spread":0.19380206649068188,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4200062348","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9925063,0.0026802472,0.00011885746,0.0016703322,0.000103172424,0.000004896121,0.00040893684,0.000007978909,0.002499212],"genre_scores_gemma":[0.99842095,0.0005051243,0.000066772656,0.00023713453,0.0000519666,0.0000036385998,0.00019033773,0.0000026608814,0.00052137295],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996804,0.00005747341,0.000045223136,0.000051808445,0.000049105452,0.00011612185],"domain_scores_gemma":[0.99855703,0.00032969273,0.00047438004,0.00011405639,0.00019669773,0.00032816065],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012903394,0.00013942213,0.00025846486,0.00087087805,0.0010904975,0.0015013331,0.0003027401,0.0009323673,0.002405512],"category_scores_gemma":[0.0025945765,0.00010089154,0.00029084107,0.0011421519,0.0010665704,0.001616984,0.0015785843,0.0008468239,0.00016421943],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012794003,0.00019910652,0.9194639,0.00036479702,0.0002625095,0.00091615296,0.011474996,0.000521542,0.002791721,0.0045059933,0.0038262752,0.054393638],"study_design_scores_gemma":[0.0000051197903,0.00010613527,0.98760986,0.00005644257,0.000045357854,0.00013547088,0.0057820925,0.00011750175,0.00014564916,0.0005961376,0.0053888652,0.000011383085],"about_ca_topic_score_codex":0.017217407,"about_ca_topic_score_gemma":0.039620284,"teacher_disagreement_score":0.017217407,"about_ca_system_score_codex":0.0009950413,"about_ca_system_score_gemma":0.0007079813,"threshold_uncertainty_score":0.034234345},"labels":[],"label_agreement":null},{"id":"W4200105949","doi":"10.1016/j.foreco.2021.119960","title":"Modeling the presence and abundance of buckthorn across the forests of Wisconsin, USA using different regression techniques","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Rimouski; Ministry of Natural Resources and Forestry","funders":"National Institute of Food and Agriculture","keywords":"Negative binomial distribution; Abundance (ecology); Poisson regression; Species richness; Ecology; Regression analysis; Forestry; Geography; Poisson distribution; Biology; Statistics; Mathematics; Population; Demography","score_opus":0.01573249405877112,"score_gpt":0.2771345576729746,"score_spread":0.2614020636142035,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4200105949","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99772245,0.000054387303,0.0015576439,0.000043327153,0.0000034374948,0.000004739424,0.00032431222,0.000020543972,0.00026918008],"genre_scores_gemma":[0.9968659,0.000050137794,0.0019382702,0.000011549335,0.0000025192107,0.000010497272,0.00056138204,0.0000058988117,0.0005537161],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999726,0.00008440248,0.000013070099,0.000110603534,0.000019053534,0.000046790923],"domain_scores_gemma":[0.9994578,0.00031528986,0.00010926625,0.000022460714,0.00006575113,0.000029452875],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00085131003,0.0004299515,0.00027304894,0.0005205433,0.00033582814,0.00069945346,0.0008158548,0.00039971672,0.00077971636],"category_scores_gemma":[0.0014366241,0.0003766939,0.0006860436,0.0009257989,0.00018547794,0.00048771067,0.0002638577,0.0003738525,0.0001285551],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018392697,0.00012596781,0.71375406,0.00004468756,0.0005578634,0.00008670473,0.00022195712,0.2704945,0.0019253987,0.00053782127,0.00052792416,0.011539125],"study_design_scores_gemma":[0.000016967033,0.00007215677,0.28051665,0.000014396397,0.00017689093,0.00003788459,0.0003820999,0.71726334,0.00055277237,0.00026169277,0.00068708067,0.000017977965],"about_ca_topic_score_codex":0.26616037,"about_ca_topic_score_gemma":0.41793993,"teacher_disagreement_score":0.26616037,"about_ca_system_score_codex":0.001091096,"about_ca_system_score_gemma":0.0006760484,"threshold_uncertainty_score":0.52922225},"labels":[],"label_agreement":null},{"id":"W4200155360","doi":"10.1016/j.foreco.2021.119927","title":"Corrigendum to “Understory vegetation response to alternative silvicultural systems in coastal British Columbia montane forests”. [For. Ecol. Manage. 504 (2022) 119817]","year":2021,"lang":"en","type":"erratum","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Canadian Forest Service; Environment and Climate Change Canada; Vancouver Island University","funders":"","keywords":"Understory; Montane ecology; Vegetation (pathology); Forestry; Agroforestry; Geography; Ecology; Environmental science; Biology; Canopy; Medicine","score_opus":0.006875336438283539,"score_gpt":0.20653941121093933,"score_spread":0.1996640747726558,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4200155360","genre_codex":"editorial","genre_gemma":"other","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"other","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.00038973909,0.004048159,0.000774573,0.08774928,0.8364584,0.00017828705,0.021258796,0.0014202856,0.04772236],"genre_scores_gemma":[0.0039367615,0.0049211024,0.0015287333,0.054388512,0.05438838,0.00030641802,0.013858288,0.0008965729,0.8657752],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.9983425,0.0001767537,0.000235296,0.00027299055,0.00074566767,0.00022681538],"domain_scores_gemma":[0.9847801,0.001529271,0.00050986203,0.0006435997,0.011713247,0.0008240233],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.001707687,0.002340776,0.0018288053,0.0038575653,0.004614296,0.0028576045,0.0033753547,0.0044553434,0.17388608],"category_scores_gemma":[0.012135737,0.0011891451,0.0013795214,0.0032235398,0.0013575087,0.0018278838,0.0020370968,0.004399196,0.09312601],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000008355924,0.0000028658947,0.000035882033,0.000019719795,0.0000013266513,0.00001709331,0.0000032387127,0.000012758543,0.000008958027,0.000043562133,0.99835396,0.0014923548],"study_design_scores_gemma":[0.0000367586,0.0000151969,0.004394072,0.00024523586,0.000016813769,0.00006590231,0.00008146196,0.00016298957,0.00014380942,0.00047036447,0.9943289,0.0000386391],"about_ca_topic_score_codex":0.51256573,"about_ca_topic_score_gemma":0.6386754,"teacher_disagreement_score":0.51256573,"about_ca_system_score_codex":0.0060711973,"about_ca_system_score_gemma":0.0071594054,"threshold_uncertainty_score":0.9806097},"labels":[],"label_agreement":null},{"id":"W4200263510","doi":"10.1016/j.foreco.2021.119955","title":"Competition and climate influence in the basal area increment models for Mediterranean mixed forests","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Basal area; Competition (biology); Context (archaeology); Mediterranean climate; Mixed model; Range (aeronautics); Monoculture; Ecology; Productivity; Arid; Aridity index; Climate change; Mediterranean Basin; Environmental science; Biology; Mathematics; Statistics","score_opus":0.012921301105607299,"score_gpt":0.2211321775604848,"score_spread":0.2082108764548775,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4200263510","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9898107,0.00042162713,0.006894519,0.00048897736,0.000026100663,0.0000073946303,0.00017638096,0.00003476461,0.0021395122],"genre_scores_gemma":[0.9978421,0.00008319942,0.00061426207,0.000037529575,0.000020808664,0.0000072494804,0.00006995911,0.000021908349,0.0013030207],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9996136,0.0002285887,0.000015325591,0.000052560255,0.000016105902,0.000073888725],"domain_scores_gemma":[0.9970356,0.00222502,0.00023945229,0.00006897139,0.00012346146,0.00030737396],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0022700375,0.0006721985,0.0009805667,0.0006881177,0.00064445566,0.0013493366,0.0018117118,0.001244567,0.0024128305],"category_scores_gemma":[0.0043755053,0.0005403058,0.00092563045,0.00048547803,0.0007553102,0.0014260685,0.00064786675,0.00078220165,0.000191268],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016322978,0.000056758927,0.012271329,0.000021767188,0.000082276536,0.00007817314,0.000069573936,0.9787659,0.000327885,0.006128401,0.00046271953,0.0015718816],"study_design_scores_gemma":[0.000019462026,0.000016614287,0.0021607021,0.000003480764,0.000018208093,0.000013699071,0.000022477414,0.99578947,0.000028508299,0.0018234857,0.000095195195,0.000008662129],"about_ca_topic_score_codex":0.055430762,"about_ca_topic_score_gemma":0.05269956,"teacher_disagreement_score":0.055430762,"about_ca_system_score_codex":0.0018321449,"about_ca_system_score_gemma":0.0007984278,"threshold_uncertainty_score":0.11021626},"labels":[],"label_agreement":null},{"id":"W4205480429","doi":"10.1016/j.foreco.2021.119974","title":"Effects of silvicultural treatments on post-harvesting residual tree mortality","year":2021,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":3,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ontario Forest Research Institute","funders":"","keywords":"Silviculture; Residual; Forest management; Tree (set theory); Agroforestry; Edaphic; Environmental science; Ecology; Biology; Forestry; Geography; Mathematics","score_opus":0.007629121261441699,"score_gpt":0.23155618661597172,"score_spread":0.22392706535453002,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4205480429","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99912375,0.00010062782,0.00016510714,0.0000070261694,0.0000059261433,0.000032538508,0.00020207347,0.000012006754,0.00035087508],"genre_scores_gemma":[0.99682176,0.0001193977,0.0008597528,0.000058010715,0.0000058335395,0.00008481921,0.00076228013,0.000010227807,0.0012779501],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99949276,0.00007721955,0.000048853457,0.00015224969,0.00013314773,0.000095804804],"domain_scores_gemma":[0.99862254,0.00033465307,0.00034280177,0.00009258658,0.00027905396,0.00032831056],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006324313,0.0005243581,0.00049105793,0.00024658995,0.0004971277,0.0007772105,0.0005086205,0.00021976994,0.0008839715],"category_scores_gemma":[0.00091794954,0.00017686466,0.00038753508,0.00022881669,0.00043145052,0.00018742195,0.0003713095,0.00044084954,0.00011185322],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0065681944,0.0017498847,0.65133035,0.0003471744,0.0006328965,0.0004085605,0.0018889114,0.00204427,0.3092749,0.00012942961,0.00048757336,0.025137736],"study_design_scores_gemma":[0.000022090513,0.0014583453,0.9914995,0.000006739031,0.00006914299,0.000016040061,0.00025904042,0.00074039446,0.005392586,0.000023179866,0.00050397555,0.000008970164],"about_ca_topic_score_codex":0.11243676,"about_ca_topic_score_gemma":0.37893942,"teacher_disagreement_score":0.11243676,"about_ca_system_score_codex":0.0020905093,"about_ca_system_score_gemma":0.0017120049,"threshold_uncertainty_score":0.22356462},"labels":[],"label_agreement":null},{"id":"W4213452839","doi":"10.1016/j.foreco.2022.120073","title":"Effects of wildfire and soil compaction on recovery of narrow linear disturbances in upland mesic boreal forests","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":21,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Reforestation; Environmental science; Agroforestry; Taiga; Woodland caribou; Habitat; Soil compaction; Disturbance (geology); Coarse woody debris; Ecology; Regeneration (biology); Forestry; Geography; Soil science; Geology; Biology; Soil water","score_opus":0.0027645467910058547,"score_gpt":0.18705467226158068,"score_spread":0.18429012547057483,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4213452839","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99979895,0.000032579475,0.000013143867,0.00000314285,6.92127e-7,0.0000016532179,0.000040364175,0.0000016987874,0.00010772406],"genre_scores_gemma":[0.99973804,0.000018751423,0.000042651856,0.0000065657227,0.0000014664688,0.0000020444834,0.00011039695,7.313547e-7,0.00007933165],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99968374,0.00004695487,0.000027202204,0.000070569404,0.000070531714,0.000100977115],"domain_scores_gemma":[0.9992367,0.00007106519,0.00032822872,0.000036469683,0.000081594204,0.00024605854],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000401746,0.00027412202,0.000190987,0.0006251134,0.00058110914,0.0006062548,0.00032575463,0.0002130825,0.00060748996],"category_scores_gemma":[0.0005402363,0.000121455,0.00022861824,0.00040736957,0.00049897685,0.00028653018,0.00041120566,0.00023043246,0.00008131784],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004922895,0.00019143206,0.9901861,0.000013691991,0.000057373894,0.00011491989,0.00029356094,0.00021432915,0.0039970595,0.000018510782,0.00006935035,0.0043512913],"study_design_scores_gemma":[9.1263064e-7,0.00003637014,0.99971133,7.3495835e-7,0.0000022528448,0.000018548772,0.00010972644,0.00004090624,0.000051116964,0.000003218946,0.000023802719,9.873105e-7],"about_ca_topic_score_codex":0.049074482,"about_ca_topic_score_gemma":0.20527083,"teacher_disagreement_score":0.049074482,"about_ca_system_score_codex":0.00084228034,"about_ca_system_score_gemma":0.00038684646,"threshold_uncertainty_score":0.09757763},"labels":[],"label_agreement":null},{"id":"W4220790201","doi":"10.1016/j.foreco.2022.120132","title":"Intra-annual variation in microclimatic conditions in relation to vegetation type and structure in two tropical dry forests undergoing secondary succession","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":20,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"U.S. Department of Energy; Office of Science; National Science Foundation","keywords":"Microclimate; Ecological succession; Tropical and subtropical dry broadleaf forests; Environmental science; Vegetation (pathology); Dry season; Secondary succession; Ecosystem; Ecology; Wet season; Basal area; Agroforestry; Biology","score_opus":0.003965466116063354,"score_gpt":0.237465309757286,"score_spread":0.23349984364122264,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4220790201","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998504,0.000008840909,0.000014252966,0.0000022291883,7.8537613e-7,0.0000013334595,0.000029465793,6.754526e-7,0.00009185437],"genre_scores_gemma":[0.99974734,0.0000077921995,0.000030119048,0.000004355993,0.0000018627605,0.0000035884664,0.00010064032,7.9490667e-7,0.00010341557],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998728,0.000030444644,0.000009389024,0.000028576947,0.00001529665,0.00004347548],"domain_scores_gemma":[0.9993042,0.00020945341,0.00014524486,0.00003428202,0.000068689995,0.00023808335],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036078898,0.00019440585,0.00024089582,0.0008488913,0.00076385663,0.00050447416,0.00026820268,0.00025108884,0.0008226148],"category_scores_gemma":[0.0007906789,0.00017073989,0.00019252318,0.00056466775,0.00065174385,0.00025861696,0.00044499754,0.0003044957,0.00015543419],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012633683,0.00021473592,0.9809498,0.000021207827,0.0000679193,0.0001861217,0.0017596745,0.00016659197,0.012317413,0.000063138745,0.00008867205,0.0029014105],"study_design_scores_gemma":[0.0000032833373,0.000038919097,0.99940574,6.214268e-7,0.0000062018144,0.000037340284,0.00028116352,0.00007005719,0.00010453353,0.0000069503276,0.00004366042,0.0000015579014],"about_ca_topic_score_codex":0.010771675,"about_ca_topic_score_gemma":0.027439758,"teacher_disagreement_score":0.010771675,"about_ca_system_score_codex":0.00048245658,"about_ca_system_score_gemma":0.00021002143,"threshold_uncertainty_score":0.021417916},"labels":[],"label_agreement":null},{"id":"W4221108277","doi":"10.1016/j.foreco.2022.120129","title":"Mechanisms of forest resilience","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":228,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Forest Service","funders":"","keywords":"Disturbance (geology); Ecology; Ecosystem; Psychological resilience; Biological dispersal; Propagule; Persistence (discontinuity); Adaptation (eye); Population; Climate change; Alternative stable state; Organism; Biology; Geography; Demography","score_opus":0.004508246174692068,"score_gpt":0.1998083325487104,"score_spread":0.19530008637401833,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4221108277","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.7961385,0.002769906,0.06491817,0.0066597867,0.00015784496,0.000082512175,0.00028626889,0.0003853231,0.12860174],"genre_scores_gemma":[0.9977235,0.0001724796,0.0008265522,0.000057081565,0.000023702096,0.000022112026,0.000021494181,0.000006516411,0.0011465406],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.9994541,0.00013457758,0.000019892243,0.00013643742,0.00008912075,0.00016589244],"domain_scores_gemma":[0.9984971,0.0005252038,0.00027237463,0.00040545996,0.00012601532,0.00017383482],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012184306,0.00030640984,0.00031304767,0.0013326254,0.0006690855,0.0017373799,0.000733502,0.0009382336,0.0064092665],"category_scores_gemma":[0.0033955164,0.0002846468,0.00036379794,0.0003840496,0.0034339207,0.0032885298,0.0016309595,0.00063519453,0.00038632628],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":"theoretical_or_conceptual","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00007417062,0.000044026012,0.013162601,0.000111200236,0.00010813963,0.00024885696,0.0009042275,0.010078641,0.006545618,0.9445601,0.0014454882,0.022716975],"study_design_scores_gemma":[0.000018462606,0.000082630584,0.034923393,0.00006384978,0.0000478721,0.00040380552,0.0012481308,0.00918182,0.0016062444,0.94617265,0.006217021,0.000033977045],"about_ca_topic_score_codex":0.000445145,"about_ca_topic_score_gemma":0.0004987952,"teacher_disagreement_score":0.0064092665,"about_ca_system_score_codex":0.0007019336,"about_ca_system_score_gemma":0.00042283972,"threshold_uncertainty_score":0.021441102},"labels":[],"label_agreement":null},{"id":"W4223554284","doi":"10.1016/j.foreco.2022.120202","title":"Post-harvest recovery of soil methane oxidation on skid trails and landings in a managed northern hardwood forest","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Biomass Utilization and Management","field":"Engineering","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"","keywords":"Chronosequence; Environmental science; Soil water; Methane; Skid (aerodynamics); Flux (metallurgy); Forestry; Hydrology (agriculture); Soil science; Ecology; Geography; Geology; Chemistry; Biology","score_opus":0.00593782989636869,"score_gpt":0.18907783853806703,"score_spread":0.18314000864169835,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4223554284","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99989927,0.0000032601317,0.000004825943,0.0000018955702,3.7387306e-7,0.0000010725182,0.000021834274,5.2018686e-7,0.00006687713],"genre_scores_gemma":[0.9993389,0.0000068765958,0.00002195909,0.000005019796,6.5995147e-7,0.0000033375904,0.000104279425,5.6391707e-7,0.00051820045],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991393,0.00001192358,0.0000037667494,0.000014350892,0.00001646991,0.000039546467],"domain_scores_gemma":[0.9997218,0.00003503521,0.00005513484,0.00001337068,0.00005628279,0.00011831592],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018551668,0.00017889401,0.00019743654,0.00035644678,0.0006357627,0.00042060306,0.00022615583,0.0002542606,0.000799957],"category_scores_gemma":[0.0003486724,0.00012874426,0.00017921499,0.00025554188,0.0003148117,0.00027225245,0.00035225824,0.00026511957,0.00020785931],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.003139926,0.00096708036,0.977266,0.000017332613,0.000052449537,0.00059331715,0.0011027082,0.00029238942,0.0110605005,0.000033014585,0.0001670898,0.005308291],"study_design_scores_gemma":[0.0000035748808,0.00020691463,0.99858356,0.0000017613735,0.0000055563232,0.00003649983,0.0005819663,0.00016127535,0.00035569933,0.000010316912,0.0000506292,0.0000023003067],"about_ca_topic_score_codex":0.06514504,"about_ca_topic_score_gemma":0.20542634,"teacher_disagreement_score":0.06514504,"about_ca_system_score_codex":0.00089443114,"about_ca_system_score_gemma":0.0007273808,"threshold_uncertainty_score":0.12953174},"labels":[],"label_agreement":null},{"id":"W4230280424","doi":"10.1016/j.foreco.2007.10.056","title":"Soil solution, foliar concentrations and tree growth response to 3-year of ammonium-nitrate addition in two boreal forests of Québec, Canada","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":36,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"GDG Environnement; Ministère des Forêts, de la Faune et des Parcs","funders":"","keywords":"Black spruce; Abies balsamea; Balsam; Taiga; Boreal; Deposition (geology); Nitrate; Soil acidification; Agronomy; Picea abies; Environmental science; Chemistry; Soil pH; Soil water; Botany; Ecology; Environmental chemistry; Biology; Soil science","score_opus":0.007372192255266036,"score_gpt":0.1952788849369489,"score_spread":0.18790669268168286,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4230280424","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9985085,0.00014103587,0.00006416057,0.000060810526,0.000005784003,0.000017961025,0.00065113005,0.000007240161,0.0005433644],"genre_scores_gemma":[0.99641067,0.000080007885,0.00020805394,0.000081514656,0.0000029210955,0.00001837442,0.00078174105,0.000004443812,0.0024122323],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997844,0.000022907941,0.000008487773,0.00005576005,0.000040827657,0.00008762923],"domain_scores_gemma":[0.9989827,0.000114099574,0.00009899878,0.000023146758,0.00043963827,0.00034133333],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00035640484,0.000396291,0.0004740608,0.00048070992,0.0023698662,0.00087974116,0.00091353245,0.0005817331,0.0013407213],"category_scores_gemma":[0.00053771364,0.00022747109,0.00030567718,0.0007157984,0.0006681392,0.0003564072,0.00030744923,0.0005765384,0.0001642279],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0053827562,0.0009895226,0.9245841,0.00010915664,0.0002920804,0.00061108323,0.0038251758,0.0016960521,0.04071245,0.00024071014,0.0034193236,0.018137617],"study_design_scores_gemma":[0.00002284709,0.000073853866,0.99711156,0.000004634688,0.000023177508,0.00003092969,0.0007713527,0.0007097067,0.00053944904,0.000012501599,0.0006868301,0.000013116727],"about_ca_topic_score_codex":0.9912111,"about_ca_topic_score_gemma":0.9968759,"teacher_disagreement_score":0.021761036,"about_ca_system_score_codex":0.021761036,"about_ca_system_score_gemma":0.006984964,"threshold_uncertainty_score":0.15788811},"labels":[],"label_agreement":null},{"id":"W4236149270","doi":"10.1016/s0378-1127(04)00139-2","title":"Incidence of tomentosus root disease relative to spruce density and slope position in south-central Alaska","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Pathogens and Fungal Diseases","field":"Biochemistry, Genetics and Molecular Biology","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia","funders":"U.S. Forest Service","keywords":"Basal area; Transect; Water content; Taiga; Boreal; Site index; Environmental science; Forestry; Agronomy; Biology; Ecology; Geography; Geology","score_opus":0.00415836583563996,"score_gpt":0.2068799939230869,"score_spread":0.20272162808744693,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4236149270","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99974614,0.000018626315,0.000013439594,0.0000027445506,5.939646e-7,4.2556678e-7,0.000036582915,0.0000010372371,0.00018035613],"genre_scores_gemma":[0.9997955,0.000017905642,0.000015683983,0.0000022490224,5.863631e-7,5.373729e-7,0.000040674215,3.422777e-7,0.00012661361],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999033,0.000024760717,0.000010851562,0.00002712103,0.000013266078,0.000020654583],"domain_scores_gemma":[0.999526,0.00012073243,0.00014384526,0.000023886323,0.0000601344,0.00012534758],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025455363,0.0001250863,0.00012362753,0.0006557517,0.0004312768,0.00036938637,0.0001612128,0.00017790825,0.00087994745],"category_scores_gemma":[0.0004971412,0.00012811847,0.00012780353,0.00032924875,0.00026048775,0.0002254931,0.00029148426,0.00016373926,0.000115338604],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015401757,0.00002515383,0.9970095,0.0000042131305,0.000014378274,0.00008962671,0.00026812308,0.00014547713,0.0014118077,0.000020790885,0.000027146414,0.0008298327],"study_design_scores_gemma":[0.0000010548083,0.00003245417,0.999089,0.0000018655771,0.0000073470574,0.00009198842,0.0004943679,0.00011718299,0.00010979658,0.000013398252,0.000040120976,0.0000014506921],"about_ca_topic_score_codex":0.050436627,"about_ca_topic_score_gemma":0.13158317,"teacher_disagreement_score":0.050436627,"about_ca_system_score_codex":0.00036222313,"about_ca_system_score_gemma":0.00023775404,"threshold_uncertainty_score":0.10028607},"labels":[],"label_agreement":null},{"id":"W4245902069","doi":"10.1016/s0378-1127(04)00167-7","title":"Root plug effects on early growth and nutrition of container black spruce seedlings","year":2004,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"","keywords":"Nutrient; Black spruce; Fertilizer; Growing season; Shoot; Biology; Agronomy; Sowing; Biomass (ecology); Plant nutrition; Botany; Horticulture; Environmental science; Taiga; Ecology","score_opus":0.004110283226427114,"score_gpt":0.189316293307898,"score_spread":0.1852060100814709,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4245902069","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99911934,0.00018139738,0.000109650384,0.000015851703,0.000009817731,0.000004373564,0.000098210694,0.000021127471,0.000440357],"genre_scores_gemma":[0.99571097,0.00012840705,0.0002651261,0.00004596063,0.000007656936,0.000012682751,0.00034365422,0.000046441062,0.0034390949],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99978644,0.000042611395,0.000013818336,0.000048706454,0.000029403782,0.000079053476],"domain_scores_gemma":[0.99857175,0.00055055635,0.00015765958,0.00009172999,0.00009879286,0.00052949565],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021442927,0.0006082594,0.00045661067,0.00023078425,0.00034828787,0.00054166844,0.00045843568,0.0005701665,0.001747543],"category_scores_gemma":[0.0006110135,0.00036709278,0.00025352495,0.00017101117,0.00035627114,0.00062040455,0.000477245,0.0015899878,0.0002781752],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.008246873,0.0004851169,0.009177277,0.00009678837,0.000031046282,0.00044677046,0.00041923235,0.0002261039,0.9753644,0.0001580763,0.00016137988,0.005186935],"study_design_scores_gemma":[0.00028394954,0.012245112,0.3920469,0.000047087466,0.00013453353,0.0005708721,0.0014929116,0.002103026,0.5882276,0.00032860518,0.0024382179,0.00008122611],"about_ca_topic_score_codex":0.009777152,"about_ca_topic_score_gemma":0.020345336,"teacher_disagreement_score":0.009777152,"about_ca_system_score_codex":0.0006728422,"about_ca_system_score_gemma":0.0006068074,"threshold_uncertainty_score":0.019440472},"labels":[],"label_agreement":null},{"id":"W4254079894","doi":"10.1016/j.foreco.2020.118400","title":"A specialized forest carnivore navigates landscape-level disturbance: Canada lynx in spruce-beetle impacted forests","year":2020,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":14,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"U.S. Forest Service","keywords":"Carnivore; Disturbance (geology); Ecology; Geography; Old-growth forest; Agroforestry; Forestry; Environmental science; Biology; Predation","score_opus":0.010320304937147376,"score_gpt":0.20206012756395778,"score_spread":0.19173982262681039,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4254079894","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995629,0.000015834123,0.000025519335,0.000020900166,8.575615e-7,0.0000017274831,0.000010194819,0.000001159073,0.000360833],"genre_scores_gemma":[0.99853396,0.000030974104,0.00016957743,0.00003163183,7.639977e-7,0.0000024612082,0.000037237118,0.0000018646509,0.0011916981],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999372,0.0000075292814,0.0000013892854,0.000014754951,0.0000073399337,0.000031701],"domain_scores_gemma":[0.9998085,0.000013822884,0.00003515211,0.00000793777,0.000026783511,0.0001078034],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017067869,0.0001234646,0.00011282373,0.00024580312,0.0011866377,0.0006659082,0.0002852113,0.00033197892,0.0021010381],"category_scores_gemma":[0.0004717049,0.00014245033,0.000066874934,0.00015288754,0.00043891792,0.00032206415,0.00048178746,0.00020046387,0.00018568762],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028256583,0.00012461201,0.9592847,0.000027585847,0.000038470294,0.0010616645,0.0062889676,0.00052809453,0.014835667,0.00031648827,0.0010992312,0.016112022],"study_design_scores_gemma":[0.0000038528356,0.00008123497,0.9873007,0.0000127967805,0.000014691239,0.0004879577,0.009613136,0.0011443365,0.00035132334,0.000095784846,0.000886879,0.000007335801],"about_ca_topic_score_codex":0.34400457,"about_ca_topic_score_gemma":0.7741232,"teacher_disagreement_score":0.6559954,"about_ca_system_score_codex":0.0010185004,"about_ca_system_score_gemma":0.0011326564,"threshold_uncertainty_score":0.6840045},"labels":[],"label_agreement":null},{"id":"W4281980485","doi":"10.1016/j.foreco.2022.120324","title":"A global synthesis on the effects of thinning on hydrological processes: Implications for forest management","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":139,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia, Okanagan Campus; University of British Columbia; University of Toronto","funders":"Agencia Estatal de Investigación; Universitat Politècnica de València; Japan Society for the Promotion of Science; Natural Sciences and Engineering Research Council of Canada","keywords":"Thinning; Environmental science; Evapotranspiration; Throughfall; Transpiration; Water content; Stemflow; Forest management; Hydrology (agriculture); Forest ecology; Climate change; Precipitation; Ecosystem; Soil water; Agroforestry; Soil science; Ecology; Forestry; Geography; Geology; Meteorology; Biology","score_opus":0.008271122307471356,"score_gpt":0.22124517295321866,"score_spread":0.21297405064574731,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4281980485","genre_codex":"review","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0008337138,0.9940069,0.00074442406,0.0013466043,0.00043891024,0.000056547684,0.0019109669,0.00003141041,0.0006306519],"genre_scores_gemma":[0.015462528,0.97774017,0.0017559964,0.002465632,0.00042541864,0.00017724145,0.0016503548,0.00002729885,0.00029532993],"study_design_codex":"systematic_review","study_design_gemma":"meta_analysis","domain_scores_codex":[0.9975466,0.00096510205,0.00071509834,0.00034982292,0.0003128049,0.000110674504],"domain_scores_gemma":[0.97322005,0.021181919,0.0023955207,0.0007665611,0.0021712594,0.00026474343],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.009895237,0.0016306652,0.0052841525,0.006102771,0.00030167837,0.0022749698,0.0013477742,0.0013766066,0.008398828],"category_scores_gemma":[0.028232116,0.0006203407,0.0068401233,0.008226297,0.000631724,0.0014473447,0.0014997607,0.001858059,0.0009436224],"study_design_candidate":"meta_analysis","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000403471,0.00003288758,0.0018850463,0.7816759,0.028335799,0.00014508687,0.0003058572,0.001017987,0.0012260674,0.0022817827,0.016051818,0.1666383],"study_design_scores_gemma":[0.00024580874,0.00034986582,0.021810595,0.5129321,0.21329252,0.0003134616,0.00041525252,0.0003381576,0.00071465113,0.0067408597,0.24273895,0.000107815235],"about_ca_topic_score_codex":0.0070868125,"about_ca_topic_score_gemma":0.012124704,"teacher_disagreement_score":0.009895237,"about_ca_system_score_codex":0.0018115375,"about_ca_system_score_gemma":0.005953704,"threshold_uncertainty_score":0.052331626},"labels":[],"label_agreement":null},{"id":"W4283012757","doi":"10.1016/j.foreco.2022.120317","title":"Regional climate moderately influences species-mixing effect on tree growth-climate relationships and drought resistance for beech and pine across Europe","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":11,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Okanagan University College; University of British Columbia, Okanagan Campus; University of British Columbia","funders":"Fundação para a Ciência e a Tecnologia; U.S. Forest Service; Service Public de Wallonie; Fonds pour la Formation à la Recherche dans l’Industrie et dans l’Agriculture; Fonds De La Recherche Scientifique - FNRS","keywords":"Beech; Fagus sylvatica; Scots pine; Climate change; Environmental science; Resistance (ecology); Ecology; Geography; Biology; Pinus <genus>; Botany","score_opus":0.024777508437410806,"score_gpt":0.24414906273260042,"score_spread":0.21937155429518962,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4283012757","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99952114,0.0001097916,0.00007387935,0.000009280976,0.0000013080431,8.551597e-7,0.00006099132,0.0000036259487,0.00021913563],"genre_scores_gemma":[0.99979395,0.000020442048,0.000029718734,0.0000056688805,0.0000012567052,7.1705557e-7,0.00008592924,0.0000023432485,0.00005995511],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997141,0.000086613625,0.000022572955,0.000104852275,0.000015353158,0.00005658541],"domain_scores_gemma":[0.9993375,0.00023321557,0.00013910249,0.00007455297,0.000066250635,0.00014932959],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007523402,0.00023540233,0.00026096927,0.0006478362,0.0003070037,0.0006830208,0.00026851945,0.0003153882,0.0014990311],"category_scores_gemma":[0.001149837,0.00018476801,0.00048677507,0.0003507461,0.00029257982,0.0005293821,0.00086078054,0.00017835682,0.00013494052],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00026112492,0.000028929335,0.9860757,0.000017282437,0.00042354054,0.00009219503,0.00035875384,0.00069479615,0.008926126,0.00017787417,0.00007253882,0.0028710738],"study_design_scores_gemma":[0.000002124246,0.000006793802,0.9995559,0.0000015368079,0.000021865006,0.000017073511,0.00008875602,0.00015700432,0.000072866875,0.00001912385,0.00005524405,0.0000016232452],"about_ca_topic_score_codex":0.008705366,"about_ca_topic_score_gemma":0.019520972,"teacher_disagreement_score":0.008705366,"about_ca_system_score_codex":0.00022120138,"about_ca_system_score_gemma":0.00016064811,"threshold_uncertainty_score":0.017309427},"labels":[],"label_agreement":null},{"id":"W4283159113","doi":"10.1016/j.foreco.2022.120375","title":"Deciphering the black spruce response to climate variation across eastern Canada using a meta-analysis approach","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":18,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia; Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Black spruce; Taiga; Climate change; Boreal; Dendroclimatology; Precipitation; Environmental science; Biome; Ecology; Dendrochronology; Subarctic climate; Climatology; Physical geography; Geography; Ecosystem; Biology","score_opus":0.03841731856495357,"score_gpt":0.25524123320347164,"score_spread":0.21682391463851808,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4283159113","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.96285516,0.02096799,0.010401606,0.00112845,0.00014604363,0.000077137556,0.0029908381,0.00019062785,0.0012422076],"genre_scores_gemma":[0.9934788,0.0011249097,0.004092844,0.00017911101,0.000014368735,0.000039858034,0.0007085755,0.000045565776,0.00031593497],"study_design_codex":"observational","study_design_gemma":"meta_analysis","domain_scores_codex":[0.9965468,0.0013365677,0.0002814522,0.0010795873,0.00035464356,0.00040103955],"domain_scores_gemma":[0.9927926,0.0046210987,0.00051248673,0.0007662094,0.0008937501,0.0004138912],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0063395645,0.0012753493,0.0019812002,0.0054777265,0.0021427996,0.0023900091,0.0016297526,0.00096307,0.0013327263],"category_scores_gemma":[0.008584349,0.0006312293,0.0046907766,0.005908733,0.00092702673,0.0010159758,0.0018401886,0.001297054,0.00010960396],"study_design_candidate":"meta_analysis","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004865564,0.00008214047,0.82072675,0.0011855529,0.13563539,0.0004248437,0.0023436034,0.0061643934,0.0070567634,0.0014893796,0.0015246156,0.02287999],"study_design_scores_gemma":[0.00009081244,0.0001597326,0.90768737,0.0007017308,0.058756575,0.0001845374,0.004187629,0.017678509,0.0010469822,0.0027071324,0.0066698636,0.00012908663],"about_ca_topic_score_codex":0.6758089,"about_ca_topic_score_gemma":0.78947127,"teacher_disagreement_score":0.3241911,"about_ca_system_score_codex":0.003553868,"about_ca_system_score_gemma":0.008658754,"threshold_uncertainty_score":0.6522006},"labels":[],"label_agreement":null},{"id":"W4283273589","doi":"10.1016/j.foreco.2022.120365","title":"With increasing site quality asymmetric competition and mortality reduces Scots pine (Pinus sylvestris L.) stand structuring across Europe","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Národní Agentura pro Zemědělský Výzkum; Universidad de Valladolid; Eesti Maaülikool; Agentúra na Podporu Výskumu a Vývoja; Polska Akademia Nauk; Eesti Teadusagentuur; Junta de Castilla y León; Agence Nationale de la Recherche; Deutsche Forschungsgemeinschaft; European Regional Development Fund; European Commission; Biodiversa+","keywords":"Scots pine; Basal area; Site index; Ecology; Competition (biology); Stand development; Monoculture; Pinus <genus>; Productivity; Forestry; Chronosequence; Environmental science; Biology; Geography; Ecological succession; Botany","score_opus":0.010258300588917286,"score_gpt":0.24751666759901428,"score_spread":0.237258367010097,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4283273589","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99938047,0.00007544495,0.00029433597,0.0000069238545,7.1534345e-7,0.0000010889682,0.00005830629,0.000009047502,0.00017373708],"genre_scores_gemma":[0.9994997,0.000046229634,0.00022090563,0.000008030189,8.2099444e-7,0.0000012450898,0.00014463131,0.0000027109968,0.000075618846],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99962544,0.000102915394,0.000027339389,0.00014844869,0.000041681946,0.00005418659],"domain_scores_gemma":[0.9994338,0.00015004292,0.00019319892,0.000078254256,0.00006436903,0.00008030996],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00060496444,0.00026267022,0.0002593995,0.00044890677,0.00018963567,0.00069507974,0.00023500247,0.00023322745,0.00067199505],"category_scores_gemma":[0.0009436929,0.00014213528,0.0005247586,0.00036380868,0.00026951614,0.00028387172,0.0004669382,0.0001594854,0.00010602966],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025146687,0.00010637507,0.93922436,0.000060716382,0.00038531108,0.00023080697,0.00014082734,0.030986184,0.013717069,0.0005385844,0.00031819288,0.014040144],"study_design_scores_gemma":[0.000016386019,0.00009565855,0.9883752,0.0000074808263,0.000054606575,0.00010597953,0.00012551257,0.009971016,0.00069488655,0.00020518254,0.0003416353,0.000006521079],"about_ca_topic_score_codex":0.010688845,"about_ca_topic_score_gemma":0.014855677,"teacher_disagreement_score":0.010688845,"about_ca_system_score_codex":0.000285198,"about_ca_system_score_gemma":0.00023114495,"threshold_uncertainty_score":0.021253228},"labels":[],"label_agreement":null},{"id":"W4283525699","doi":"10.1016/j.foreco.2022.120342","title":"Forest restoration and hydrology","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":92,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Okanagan University College; University of British Columbia, Okanagan Campus; University of British Columbia","funders":"","keywords":"Forest restoration; Environmental science; Evapotranspiration; Restoration ecology; Forest management; Ecological succession; Streamflow; Hydrology (agriculture); Forest ecology; Agroforestry; Ecology; Geography; Ecosystem; Drainage basin; Geology; Biology","score_opus":0.00604302945853342,"score_gpt":0.19432285299733792,"score_spread":0.1882798235388045,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4283525699","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.94146377,0.009007469,0.0011048741,0.006163033,0.00013344729,0.000024249586,0.00041214153,0.00003656107,0.041654404],"genre_scores_gemma":[0.9942292,0.0023216323,0.00016443482,0.0001038681,0.000116121584,0.000003964658,0.00007208936,0.0000071124405,0.0029814783],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999665,0.00015720983,0.000013546886,0.000039171562,0.00003480713,0.00009020236],"domain_scores_gemma":[0.9989255,0.0003178704,0.00026809727,0.00005241469,0.000103681974,0.0003323812],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008676159,0.0001279024,0.0002071194,0.0009152601,0.00056459586,0.0014404744,0.00024678893,0.00040457695,0.0053715566],"category_scores_gemma":[0.0024123634,0.00009586828,0.00016668186,0.001198674,0.0016446257,0.0012109465,0.00047048926,0.0004993291,0.00019085757],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00075500045,0.0010364074,0.79010314,0.00020790708,0.00023863801,0.00082986156,0.0018968295,0.0074382043,0.0020346653,0.07954756,0.0075848624,0.108326964],"study_design_scores_gemma":[0.00002470275,0.00011330022,0.95162296,0.000057646885,0.000053174048,0.00034591166,0.003030409,0.0021459511,0.00047774956,0.021646548,0.02046732,0.0000142232275],"about_ca_topic_score_codex":0.027329076,"about_ca_topic_score_gemma":0.06877521,"teacher_disagreement_score":0.027329076,"about_ca_system_score_codex":0.0018771698,"about_ca_system_score_gemma":0.0020930823,"threshold_uncertainty_score":0.054340005},"labels":[],"label_agreement":null},{"id":"W4285082310","doi":"10.1016/j.foreco.2022.120416","title":"Stand openness predicts hair lichen (Bryoria) abundance in the lower canopy, with implications for the conservation of Canada’s critically imperiled Deep-Snow Mountain Caribou (Rangifer tarandus caribou)","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":14,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Royal British Columbia Museum; University of British Columbia","funders":"","keywords":"Lichen; Ecology; Snag; Abundance (ecology); Environmental science; Geography; Habitat; Biology","score_opus":0.00956209717959161,"score_gpt":0.20312159016750767,"score_spread":0.19355949298791605,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4285082310","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995307,0.000029612045,0.00004269343,0.0000076231045,7.790076e-7,0.0000014500135,0.00010496108,0.0000024988892,0.00027961397],"genre_scores_gemma":[0.99960357,0.00001998869,0.00006576028,0.0000056138233,7.717782e-7,0.0000013500289,0.00015872133,0.0000012399082,0.00014296349],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998764,0.000013301926,0.0000054484476,0.000030368255,0.000024513865,0.000049928745],"domain_scores_gemma":[0.9993123,0.000110391826,0.00016319926,0.000032528296,0.00011135083,0.00027025002],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021555918,0.00022071261,0.00013701034,0.00046135535,0.00060613896,0.00067345524,0.00019489434,0.00018607383,0.0014327304],"category_scores_gemma":[0.00059479417,0.00012237071,0.00017584079,0.0003923581,0.00038246013,0.00016793866,0.0003276455,0.000276493,0.00017023236],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000021662408,0.000013388759,0.99763584,0.000003098914,0.000012845966,0.000019473266,0.00008846817,0.00007232491,0.0011511185,0.000012734516,0.000049551807,0.0009194178],"study_design_scores_gemma":[3.333424e-7,0.0000040333416,0.9996542,0.0000013086702,0.0000028805616,0.00000892179,0.00012851317,0.00011472232,0.000034396777,0.000005830316,0.000044003926,9.0387977e-7],"about_ca_topic_score_codex":0.5087375,"about_ca_topic_score_gemma":0.84056646,"teacher_disagreement_score":0.4912625,"about_ca_system_score_codex":0.0010313395,"about_ca_system_score_gemma":0.0010605524,"threshold_uncertainty_score":0.9883113},"labels":[],"label_agreement":null},{"id":"W4289259932","doi":"10.1016/j.foreco.2022.120419","title":"Whitebark pine genecology field trials in British Columbia: Age 5 results","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Yeasts and Rust Fungi Studies","field":"Biochemistry, Genetics and Molecular Biology","cited_by":5,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Parks Canada; Ministry of Forests","funders":"","keywords":"Field trial; Field (mathematics); Geography; Biology; Ecology; Forestry; Agronomy; Mathematics","score_opus":0.01020869244727494,"score_gpt":0.23555422356485817,"score_spread":0.22534553111758324,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4289259932","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98892295,0.00034759063,0.00022274414,0.00006482428,0.000020586942,0.0007645535,0.0021852734,0.00007529343,0.0073962356],"genre_scores_gemma":[0.96025157,0.0004201688,0.0019721277,0.0003021117,0.00001267287,0.0009107518,0.006339479,0.00003714165,0.029753998],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9990244,0.00015981848,0.00005610499,0.00021037918,0.00034756408,0.00020175935],"domain_scores_gemma":[0.9972914,0.00030229564,0.00021615016,0.00012447643,0.0013227917,0.00074285787],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011136082,0.00062569906,0.0005593488,0.00055495545,0.0013744537,0.000663103,0.00085451576,0.0004372673,0.0024392318],"category_scores_gemma":[0.0010723803,0.00021414425,0.0002964708,0.00054528157,0.00041247616,0.00029282348,0.0003525347,0.000642891,0.0006134833],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.031856447,0.02496133,0.43917653,0.00093726494,0.0007139801,0.0018194749,0.0049959226,0.0034952308,0.3035603,0.0005762676,0.020352622,0.16755468],"study_design_scores_gemma":[0.0005178891,0.013910445,0.953072,0.00006327369,0.0002548899,0.00012634629,0.0010803227,0.0010654539,0.014125879,0.0000812424,0.015638435,0.000063770916],"about_ca_topic_score_codex":0.6343095,"about_ca_topic_score_gemma":0.8883348,"teacher_disagreement_score":0.36569053,"about_ca_system_score_codex":0.00562825,"about_ca_system_score_gemma":0.0044781757,"threshold_uncertainty_score":0.7356883},"labels":[],"label_agreement":null},{"id":"W4292314740","doi":"10.1016/j.foreco.2022.120468","title":"Forest harvesting and hydrology in boreal Forests: Under an increased and cumulative disturbance context","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":42,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia; University of British Columbia, Okanagan Campus; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Environmental science; Snowmelt; Disturbance (geology); Ecohydrology; Evapotranspiration; Interception; Context (archaeology); Streamflow; Hydrology (agriculture); Taiga; Snow; Climate change; Boreal; Ecology; Forest management; Surface runoff; Ecosystem; Drainage basin; Agroforestry; Geography; Geology","score_opus":0.010155568487748548,"score_gpt":0.22130345584689703,"score_spread":0.2111478873591485,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4292314740","genre_codex":"review","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.33369032,0.65053505,0.0015874895,0.0036350563,0.0004570226,0.000020585747,0.00047659557,0.000033713728,0.009564164],"genre_scores_gemma":[0.66349834,0.33326703,0.0007825748,0.0005524382,0.0006657956,0.0000144453215,0.0003476114,0.0000051208594,0.00086653867],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.99991226,0.00002110439,0.000010582101,0.000023245293,0.00001911411,0.000013754201],"domain_scores_gemma":[0.99981123,0.000046783127,0.00008065342,0.0000054850448,0.000023370014,0.000032434422],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003479198,0.00015185148,0.00023132333,0.00034449587,0.00017656306,0.0008500285,0.00015694778,0.00019817796,0.00046254095],"category_scores_gemma":[0.0003538691,0.00006656724,0.00025152924,0.0009287109,0.00034737727,0.0006289716,0.00025217087,0.00032816318,0.000041992836],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003343973,0.0001386528,0.4108724,0.006919378,0.0007592583,0.0014053916,0.002394444,0.004925108,0.008910381,0.014211008,0.0072064595,0.5419232],"study_design_scores_gemma":[0.000008691789,0.00013745221,0.9418717,0.00046824472,0.00023803285,0.00084513484,0.0010320721,0.00073263224,0.00040966153,0.0035537404,0.050672162,0.000030497187],"about_ca_topic_score_codex":0.008358608,"about_ca_topic_score_gemma":0.012217762,"teacher_disagreement_score":0.008358608,"about_ca_system_score_codex":0.00037512233,"about_ca_system_score_gemma":0.0006206639,"threshold_uncertainty_score":0.016619861},"labels":[],"label_agreement":null},{"id":"W4295745110","doi":"10.1016/j.foreco.2022.120517","title":"Changes in size inequality and growth dominance in thinned and unthinned uneven-aged interior Douglas-fir dominated stands","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Thinning; Dominance (genetics); Gini coefficient; Mathematics; Douglas fir; Statistics; Inequality; Animal science; Forestry; Biology; Geography; Economic inequality","score_opus":0.005458875492709869,"score_gpt":0.21028619804818047,"score_spread":0.2048273225554706,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4295745110","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998683,0.000012626402,0.000005965462,0.000002998656,6.432679e-7,2.1316636e-7,0.000014489279,2.8451865e-7,0.00009446143],"genre_scores_gemma":[0.99979764,0.000004993217,0.000007958391,0.0000027058425,0.0000011682897,3.3587497e-7,0.000029756278,3.3225265e-7,0.00015523714],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998197,0.000030299017,0.000011268057,0.000042791427,0.00002096855,0.000074981785],"domain_scores_gemma":[0.998536,0.0002983287,0.00042188008,0.00007516526,0.00012513103,0.0005435682],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00046302288,0.00015971277,0.00023737217,0.0005944646,0.0003904581,0.0006876149,0.00029489386,0.00024731964,0.0019224242],"category_scores_gemma":[0.0015021767,0.00013680434,0.00014872839,0.00031071357,0.00061453314,0.0003715154,0.0005512686,0.0003679598,0.00017817394],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010016949,0.00009533413,0.99243075,0.00000554146,0.000049393602,0.00016492538,0.0005636439,0.0003211601,0.0029713663,0.0001639778,0.00005960921,0.002172674],"study_design_scores_gemma":[0.0000027601798,0.00003113458,0.99925464,0.000001085121,0.000005216794,0.00003605992,0.00037072055,0.00016165375,0.00006169035,0.000036127145,0.000036982536,0.0000020186244],"about_ca_topic_score_codex":0.019472841,"about_ca_topic_score_gemma":0.049068615,"teacher_disagreement_score":0.019472841,"about_ca_system_score_codex":0.00041758915,"about_ca_system_score_gemma":0.0002210049,"threshold_uncertainty_score":0.038719},"labels":[],"label_agreement":null},{"id":"W4295955069","doi":"10.1016/j.foreco.2022.120522","title":"Functionally and phylogenetically diverse boreal forests promote sapling recruitment","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal; Lakehead University","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Crowding; Biology; Ecology; Neighbourhood (mathematics); Phylogenetic tree; Context (archaeology); Boreal; Phylogenetic diversity; Niche","score_opus":0.01607863749162971,"score_gpt":0.23391596323477323,"score_spread":0.21783732574314352,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4295955069","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99821305,0.00007969217,0.00012608862,0.000014382581,0.00000340201,0.0000024434498,0.000016126369,0.0000045500574,0.0015403087],"genre_scores_gemma":[0.9992754,0.000036241014,0.00016088426,0.000025734436,0.000004302514,0.0000028243446,0.000032096123,0.0000033706951,0.00045918286],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979514,0.00005560946,0.000008197281,0.00005121987,0.000028165568,0.00006174985],"domain_scores_gemma":[0.9990829,0.0001746159,0.00019674616,0.000050263872,0.000059744892,0.00043563376],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00047871255,0.00025638088,0.00023263092,0.00030437234,0.00069401535,0.00067605125,0.00028583227,0.00024058415,0.0031473837],"category_scores_gemma":[0.0007295492,0.00018703348,0.00013069986,0.00016985087,0.00041923506,0.00040680764,0.00083556067,0.00031920968,0.00029718707],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006155427,0.00034876476,0.768716,0.00011692778,0.00008673902,0.00041363668,0.00088963605,0.00037042474,0.20369454,0.0012086928,0.00046948012,0.023069642],"study_design_scores_gemma":[0.000006257335,0.000092578506,0.9978557,0.0000057014286,0.000009496171,0.00017403872,0.00037384074,0.00017407673,0.0007044919,0.00016358594,0.00043660376,0.0000036060796],"about_ca_topic_score_codex":0.0012994522,"about_ca_topic_score_gemma":0.013100942,"teacher_disagreement_score":0.0031473837,"about_ca_system_score_codex":0.00021025505,"about_ca_system_score_gemma":0.00032110422,"threshold_uncertainty_score":0.010529101},"labels":[],"label_agreement":null},{"id":"W4298013165","doi":"10.1016/j.foreco.2022.120555","title":"Adaptation of white spruce to climatic risk environments in spring: Implications for assisted migration","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Phenology; Frost (temperature); Population; Climate change; Growing season; Dormancy; Chilling requirement; Biology; Boreal; Ecology; Reforestation; Growing degree-day; Local adaptation; Black spruce; Range (aeronautics); Adaptation (eye); Taiga; Environmental science; Geography; Agronomy; Germination; Demography","score_opus":0.00961144247511086,"score_gpt":0.20801165838312746,"score_spread":0.1984002159080166,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4298013165","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992762,0.000027958422,0.00013263656,0.000046654488,0.000005241112,0.0000025670643,0.000037966456,0.0000055533947,0.000465122],"genre_scores_gemma":[0.99914956,0.00003154219,0.00012103921,0.000029554578,0.000004649244,0.0000044572084,0.000062694686,0.0000048619086,0.00059158617],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984133,0.00005311889,0.0000064134956,0.000040149964,0.000011677298,0.000047271147],"domain_scores_gemma":[0.99962616,0.00006204043,0.00007010479,0.00004942475,0.000059255257,0.00013303995],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004090713,0.00021371427,0.00022093159,0.0002354335,0.000567303,0.0008768619,0.00035163012,0.00037946124,0.001642883],"category_scores_gemma":[0.0006875183,0.00010854505,0.00021229424,0.00018786709,0.00040226622,0.0003079268,0.00042039723,0.00032689827,0.00017097007],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001577084,0.0009003282,0.7988693,0.00005585037,0.00018769031,0.00062124035,0.0022752022,0.0032969418,0.164822,0.0012218228,0.0008177035,0.025354896],"study_design_scores_gemma":[0.000009726238,0.00016090047,0.9966767,0.000004316638,0.0000079596175,0.000070281545,0.0008683961,0.00090726576,0.0005764655,0.000296251,0.0004152486,0.0000065182335],"about_ca_topic_score_codex":0.014425775,"about_ca_topic_score_gemma":0.030284029,"teacher_disagreement_score":0.014425775,"about_ca_system_score_codex":0.0004261642,"about_ca_system_score_gemma":0.0004589155,"threshold_uncertainty_score":0.028683662},"labels":[],"label_agreement":null},{"id":"W4308901524","doi":"10.1016/j.foreco.2022.120632","title":"Fire severity and pre-fire forest composition affect Northern Hawk Owl presence in burned forests in western North America","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Environment and Climate Change Canada","funders":"Environment and Climate Change Canada; Alberta-Pacific Forest Industries","keywords":"Deciduous; Taiga; Ecology; Boreal; Fire ecology; Habitat; Disturbance (geology); Fire regime; Geography; Range (aeronautics); Environmental science; Forestry; Ecosystem; Biology","score_opus":0.0039712139516996725,"score_gpt":0.20232805293759712,"score_spread":0.19835683898589745,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4308901524","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997824,0.000034153767,0.00000836879,0.000009499366,0.0000015805664,9.449395e-7,0.000029445811,4.0837622e-7,0.0001332032],"genre_scores_gemma":[0.9996182,0.000029350427,0.000020456706,0.00001474639,0.0000027604206,0.000002004026,0.00007402632,7.328476e-7,0.00023772974],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998534,0.000035929723,0.000011177696,0.000035606692,0.000019800087,0.000044104],"domain_scores_gemma":[0.99917233,0.00017825424,0.0002300362,0.000030436144,0.00010111603,0.00028788357],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00034417922,0.00013381039,0.00017575093,0.0004511259,0.00049542426,0.00053284224,0.00027118952,0.00029532827,0.0015217441],"category_scores_gemma":[0.00075661304,0.00021259485,0.00018471779,0.00036019649,0.0003900859,0.00047840012,0.00038912575,0.000316968,0.00011906456],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00007662687,0.000045244014,0.9979772,0.0000048466904,0.00003257176,0.000052623607,0.00031248722,0.000042568125,0.0006788651,0.000008226473,0.00004679628,0.00072203606],"study_design_scores_gemma":[5.878808e-7,0.000003984287,0.9996531,7.399989e-7,0.000002316292,0.000013127156,0.00026900537,0.000026494834,0.000009118855,0.000002902412,0.000018281635,4.2191786e-7],"about_ca_topic_score_codex":0.08852534,"about_ca_topic_score_gemma":0.38082218,"teacher_disagreement_score":0.08852534,"about_ca_system_score_codex":0.0005120265,"about_ca_system_score_gemma":0.00033505837,"threshold_uncertainty_score":0.17602015},"labels":[],"label_agreement":null},{"id":"W4309571113","doi":"10.1016/j.foreco.2022.120636","title":"Boreal forest soil biotic communities are affected by harvesting, site preparation with no additional effects of higher biomass removal 5 years post-harvest","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":12,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Forestry; Lakehead University; University of Guelph; Laurentian University; Natural Resources Canada","funders":"Natural Resources Canada","keywords":"Biomass (ecology); Environmental science; Scarification; Taiga; Biota; Ecology; Soil pH; Biodiversity; Soil water; Forest floor; Agronomy; Biology; Soil science","score_opus":0.0060987782676016605,"score_gpt":0.17834502450342263,"score_spread":0.17224624623582097,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4309571113","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993406,0.00009276508,0.00010838162,0.0000068182344,0.0000025432703,0.000006532988,0.00007957489,0.0000037444665,0.00035908932],"genre_scores_gemma":[0.9990489,0.000050824234,0.0003260352,0.000025830683,0.0000031226093,0.00001188621,0.0002609498,0.0000023755738,0.00027016434],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99966156,0.00006911758,0.000022863662,0.0001126742,0.00006167469,0.00007203821],"domain_scores_gemma":[0.9992551,0.00008967835,0.00036393743,0.000053773598,0.0000753482,0.00016203553],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030628336,0.00024210261,0.000221144,0.00022903433,0.0003752654,0.0004646925,0.00020940436,0.00018350249,0.0009437829],"category_scores_gemma":[0.00045006667,0.00014000031,0.0002453089,0.00021660786,0.00034554314,0.0002997915,0.00034586017,0.0002629501,0.0001766609],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016303674,0.00046326045,0.6836541,0.00012218824,0.00018240704,0.0003447351,0.0006087284,0.00024978243,0.28877422,0.000048554437,0.00017216243,0.023749432],"study_design_scores_gemma":[0.0000012982392,0.00017463141,0.99876,0.0000012307657,0.000006501338,0.000027607704,0.00008692905,0.000033825243,0.00077046355,0.0000076520655,0.00012805605,0.0000017304698],"about_ca_topic_score_codex":0.00288882,"about_ca_topic_score_gemma":0.013409771,"teacher_disagreement_score":0.00288882,"about_ca_system_score_codex":0.00028335364,"about_ca_system_score_gemma":0.00020781453,"threshold_uncertainty_score":0.0057439804},"labels":[],"label_agreement":null},{"id":"W4310129508","doi":"10.1016/j.foreco.2022.120623","title":"Effects of fifty years of shelterwood harvesting on genetic diversity and population structure of Oriental beech (Fagus orientalis L.) in the relict Hyrcanian forest","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Genetic diversity and population structure","field":"Biochemistry, Genetics and Molecular Biology","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"Tarbiat Modares University; Iran University of Science and Technology; Iran National Science Foundation","keywords":"Genetic diversity; Beech; Ecology; Effective population size; Population; Biology; Genetic structure; Forest management; Geography; Demography","score_opus":0.004278389882256868,"score_gpt":0.1920817467424667,"score_spread":0.18780335686020982,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4310129508","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99989116,0.000031192496,0.0000066669027,0.000004210151,9.649856e-7,2.8920675e-7,0.000012648638,4.8000555e-7,0.00005248263],"genre_scores_gemma":[0.9998467,0.0000145287195,0.000007954236,0.0000072789126,0.0000012136994,7.2807484e-7,0.000030956227,4.3677932e-7,0.0000902753],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976104,0.000070442795,0.000015351814,0.00005803801,0.00002387192,0.00007128484],"domain_scores_gemma":[0.9990565,0.0002918845,0.00027362906,0.00007818087,0.000043297216,0.0002563594],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005163082,0.0001959286,0.00015823753,0.00030249543,0.00030055532,0.00042074965,0.0002328395,0.00026513447,0.0010718876],"category_scores_gemma":[0.00078864564,0.00012699555,0.00022940016,0.0002390852,0.0006851576,0.00020318232,0.00036214513,0.00031499425,0.000111881374],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014907876,0.00029485987,0.980243,0.0000130746785,0.00021869724,0.00039444666,0.0006026481,0.00048137875,0.009940604,0.000076035496,0.00010731859,0.006137146],"study_design_scores_gemma":[0.000001966655,0.0000825722,0.99960047,0.0000010862153,0.000009994645,0.000019621617,0.00011489265,0.00006768189,0.000059861697,0.000006849182,0.00003340383,0.0000016483986],"about_ca_topic_score_codex":0.007915593,"about_ca_topic_score_gemma":0.022862155,"teacher_disagreement_score":0.007915593,"about_ca_system_score_codex":0.00041406142,"about_ca_system_score_gemma":0.00017533884,"threshold_uncertainty_score":0.015739024},"labels":[],"label_agreement":null},{"id":"W4310551537","doi":"10.1016/j.foreco.2022.120693","title":"Elevational shift of endangered European yew under climate change in Hyrcanian mountain forests: Rethinking conservation-restoration strategies and management","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Simon Fraser University","funders":"Tarbiat Modares University","keywords":"Endangered species; Climate change; Habitat; Geography; Ecology; Restoration ecology; Physical geography; Environmental science; Biology","score_opus":0.030155974625501687,"score_gpt":0.24902909230381146,"score_spread":0.21887311767830978,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4310551537","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99925464,0.00010548102,0.000034795896,0.000060628077,0.0000022129989,9.262839e-7,0.000055548455,8.746952e-7,0.00048482878],"genre_scores_gemma":[0.9996809,0.000047248286,0.00003229359,0.00001350277,0.000002029107,0.000001294264,0.000056669774,6.713106e-7,0.00016543333],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991107,0.00002254113,0.000006198882,0.000016059612,0.000006648616,0.000037456663],"domain_scores_gemma":[0.9998951,0.0000106022835,0.00004367738,0.000009199028,0.000018368753,0.00002314237],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023951667,0.00007461491,0.00009122889,0.0004124803,0.0003188,0.0004586927,0.00019624026,0.00020920321,0.001230568],"category_scores_gemma":[0.00026238887,0.000053025553,0.00009181931,0.0007321617,0.00040691896,0.0004253381,0.0004471206,0.00016127063,0.00011469142],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015572284,0.000028777742,0.9779308,0.00002560085,0.000038767324,0.0004669661,0.00445562,0.00029794683,0.0021820196,0.0006465533,0.00036237758,0.013408809],"study_design_scores_gemma":[6.819274e-7,0.0000066680655,0.99765366,0.0000033986123,0.0000024953335,0.000050789135,0.001749864,0.00007719347,0.00003324907,0.00005757858,0.00036320472,0.0000013653],"about_ca_topic_score_codex":0.013420184,"about_ca_topic_score_gemma":0.035343014,"teacher_disagreement_score":0.013420184,"about_ca_system_score_codex":0.00049033435,"about_ca_system_score_gemma":0.00031127245,"threshold_uncertainty_score":0.026684165},"labels":[],"label_agreement":null},{"id":"W4312056122","doi":"10.1016/j.foreco.2022.120717","title":"Terrestrial gastropod species-specific responses to forest management: Implications for Parelaphostrongylus tenuis transmission to moose","year":2022,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"","keywords":"Biology; Species richness; Abundance (ecology); Ecology; Understory; Odocoileus; Canopy","score_opus":0.015101699983801037,"score_gpt":0.23112914905258206,"score_spread":0.21602744906878102,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4312056122","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997509,0.000034169694,0.000018738918,0.00001147732,5.2550837e-7,0.0000020236835,0.000039523733,8.135476e-7,0.0001418295],"genre_scores_gemma":[0.99976045,0.000029604958,0.000042673804,0.000013475915,0.0000010973077,0.000002887458,0.000050780556,5.1804335e-7,0.00009851535],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999907,0.000022779726,0.000005379284,0.000029794408,0.000009808731,0.000025264828],"domain_scores_gemma":[0.9996531,0.00004318484,0.00016013609,0.000015742931,0.000035261262,0.00009254822],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015459744,0.00018073471,0.00012047168,0.00020043728,0.00019055627,0.00029389746,0.00013984114,0.00014515081,0.00089955056],"category_scores_gemma":[0.0005147571,0.000077956625,0.00017514368,0.00018152781,0.00019779154,0.00017784041,0.00017508808,0.00015949574,0.00006436734],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012673752,0.0000776901,0.9869163,0.000018322182,0.00004136732,0.000065986125,0.00017223878,0.00015590037,0.0092601385,0.000017407549,0.00004912514,0.003098807],"study_design_scores_gemma":[3.2570978e-7,0.000023751933,0.99974316,9.664452e-7,0.0000024774217,0.000011227326,0.00006461502,0.00008211444,0.00004791246,0.000002997163,0.000020029114,3.3321407e-7],"about_ca_topic_score_codex":0.01766436,"about_ca_topic_score_gemma":0.06265893,"teacher_disagreement_score":0.01766436,"about_ca_system_score_codex":0.00031474358,"about_ca_system_score_gemma":0.00021967861,"threshold_uncertainty_score":0.03512311},"labels":[],"label_agreement":null},{"id":"W4313593963","doi":"10.1016/j.foreco.2022.120755","title":"Forest hydrology modeling tools for watershed management: A review","year":2023,"lang":"en","type":"review","venue":"Forest Ecology and Management","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":64,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia, Okanagan Campus; University of British Columbia","funders":"National Natural Science Foundation of China","keywords":"Watershed; Forest management; Watershed management; Environmental science; Environmental resource management; Forest ecology; Temporal scales; Hydrological modelling; Hydrology (agriculture); Computer science; Ecosystem; Ecology; Agroforestry; Geology","score_opus":0.053620424087804146,"score_gpt":0.2954866178756573,"score_spread":0.24186619378785312,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4313593963","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.000108764754,0.9986463,0.00053385436,0.00017390474,0.00010428718,0.000008043482,0.000068150606,0.000017154747,0.00033952398],"genre_scores_gemma":[0.0006727548,0.99804306,0.00089061336,0.00009751213,0.0000911778,0.000007756367,0.000071006696,0.0000049815976,0.00012124174],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.99952555,0.00008727948,0.00010172689,0.00009917119,0.0001568321,0.000029454535],"domain_scores_gemma":[0.99732083,0.0018317959,0.00025214374,0.0000564689,0.00045778172,0.00008107989],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002041073,0.0014486809,0.0025205428,0.0038515178,0.00028933183,0.0021961713,0.0017034383,0.0016106501,0.004539578],"category_scores_gemma":[0.0037609371,0.00057604787,0.0012997041,0.006463404,0.00060802756,0.0024752214,0.0009958565,0.0015267085,0.0014506412],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006190101,0.00009915789,0.000500749,0.037725117,0.00032099045,0.00008902836,0.00006965886,0.0016777917,0.0005371289,0.0032411716,0.021640606,0.9340368],"study_design_scores_gemma":[0.00007273909,0.00012426064,0.002771209,0.032481857,0.0018769965,0.00064888486,0.00017010141,0.001758453,0.00069774437,0.006465527,0.95282227,0.000109876644],"about_ca_topic_score_codex":0.006828762,"about_ca_topic_score_gemma":0.008641677,"teacher_disagreement_score":0.006828762,"about_ca_system_score_codex":0.0008796431,"about_ca_system_score_gemma":0.0031607328,"threshold_uncertainty_score":0.015186429},"labels":[],"label_agreement":null},{"id":"W4313706692","doi":"10.1016/j.foreco.2022.120757","title":"Effects of compound disturbance on Canada lynx and snowshoe hare: Wildfire and forest management influence timing and intensity of use","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"U.S. Forest Service; U.S. Department of Agriculture","keywords":"Disturbance (geology); Snowshoe hare; Ecology; Environmental science; Forest management; Geography; Forestry; Agroforestry; Biology; Predation","score_opus":0.004472884669231274,"score_gpt":0.1796804731756877,"score_spread":0.17520758850645643,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4313706692","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99943703,0.00007499885,0.000022067814,0.000024233355,0.0000028258603,0.000002542104,0.00010390874,0.0000011212231,0.0003312312],"genre_scores_gemma":[0.9991394,0.00007846074,0.000067317815,0.00003570258,0.000004586928,0.000006219361,0.00024429042,0.0000016438024,0.0004222095],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997303,0.00004010261,0.000013621798,0.000067625704,0.00006719262,0.00008121983],"domain_scores_gemma":[0.9988979,0.00014523705,0.00033228355,0.000039257917,0.00019958463,0.00038574144],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004069504,0.00014549877,0.00018814136,0.00041793287,0.0007824058,0.00057991175,0.00022959885,0.00022984657,0.0009859232],"category_scores_gemma":[0.0010997893,0.0001020152,0.00016724273,0.0003754064,0.00046420263,0.00023785402,0.00041218215,0.00025241356,0.000084037536],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010165033,0.000026273807,0.9958259,0.000006199551,0.000035448895,0.000075384596,0.00040961686,0.00010382923,0.0005859277,0.000016996551,0.00019373174,0.0026190055],"study_design_scores_gemma":[6.9358003e-7,0.000015747468,0.99938345,0.000002257355,0.0000036920712,0.00001792667,0.00038622753,0.00005265998,0.000019875135,0.0000035293917,0.00011250006,0.0000013725959],"about_ca_topic_score_codex":0.47568014,"about_ca_topic_score_gemma":0.8383475,"teacher_disagreement_score":0.5243199,"about_ca_system_score_codex":0.0017968033,"about_ca_system_score_gemma":0.0015062102,"threshold_uncertainty_score":0.9458228},"labels":[],"label_agreement":null},{"id":"W4317514369","doi":"10.1016/j.foreco.2023.120804","title":"Bryophyte community responses 20 years after forest management in boreal mixedwood forest","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal; Université du Québec en Abitibi-Témiscamingue","funders":"Natural Sciences and Engineering Research Council of Canada; Université du Québec en Abitibi-Témiscamingue","keywords":"Bryophyte; Biodiversity; Clearcutting; Ecological succession; Logging; Ecology; Taiga; Forest management; Habitat; Coarse woody debris; Generalist and specialist species; Silviculture; Agroforestry; Snag; Boreal; Environmental science; Canopy; Biology","score_opus":0.01850981925945573,"score_gpt":0.21727764674095337,"score_spread":0.19876782748149763,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4317514369","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99976057,0.000033378034,0.00001040661,0.000010280025,0.0000046109435,0.0000019470913,0.00006264281,9.2754425e-7,0.00011520787],"genre_scores_gemma":[0.99931216,0.000023424402,0.000018859677,0.000018500685,0.0000043423156,0.0000054447914,0.00025763884,6.239029e-7,0.00035905393],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982065,0.000025992584,0.0000097270495,0.000048230722,0.000019750365,0.00007558155],"domain_scores_gemma":[0.99948335,0.00006817664,0.00013955732,0.000021119715,0.00008269981,0.00020509626],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039218998,0.000220348,0.00027492663,0.00036191664,0.00065606576,0.0006440038,0.0002981051,0.00050945044,0.0010745565],"category_scores_gemma":[0.00063054234,0.00011186368,0.00032356018,0.00021757098,0.00037996782,0.0005656508,0.00045381405,0.0003927456,0.00017163488],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.009261113,0.0031140144,0.9128348,0.000058821082,0.00022361903,0.000889974,0.0017916464,0.0004154134,0.05881993,0.00012696633,0.00054971915,0.011913906],"study_design_scores_gemma":[0.0000074413583,0.00032182774,0.99853563,0.0000025362801,0.000018192297,0.000033129352,0.00038676272,0.00008595724,0.00044731156,0.0000125649185,0.0001440823,0.0000046172204],"about_ca_topic_score_codex":0.01895827,"about_ca_topic_score_gemma":0.047069564,"teacher_disagreement_score":0.01895827,"about_ca_system_score_codex":0.00081307214,"about_ca_system_score_gemma":0.0003920562,"threshold_uncertainty_score":0.037695825},"labels":[],"label_agreement":null},{"id":"W4319349338","doi":"10.1016/j.foreco.2023.120841","title":"The impact of mountain pine beetle outbreaks and their treatment methods on the abundance of plant-foods important to caribou and grizzly bears","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"","keywords":"Threatened species; Grizzly Bears; Ecology; Forb; Woodland caribou; Geography; National park; Shrub; Understory; Habitat; Agroforestry; Biology; Environmental science; Grassland; Population; Ursus; Canopy","score_opus":0.01432419361275234,"score_gpt":0.2739546968627049,"score_spread":0.25963050324995257,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4319349338","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99880993,0.0003809431,0.00010789023,0.000053470285,0.000023136488,0.000022635344,0.000038875725,0.0000035038938,0.0005596366],"genre_scores_gemma":[0.9986259,0.00021453542,0.0003118517,0.000052714386,0.000034233475,0.000038110047,0.000057174344,0.000004850678,0.00066063507],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9978109,0.0014450934,0.00012888711,0.00019280244,0.00023987469,0.00018234056],"domain_scores_gemma":[0.99249834,0.005017354,0.001195434,0.00023026239,0.00044457248,0.0006139311],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0031493397,0.00046170907,0.00036603346,0.0005094121,0.00048045197,0.0006360157,0.000397649,0.0005198526,0.0015916411],"category_scores_gemma":[0.007523003,0.00018014596,0.0005484936,0.00029368515,0.00037501988,0.0006002266,0.00031839238,0.00051118364,0.000092725335],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.20975411,0.044911575,0.4599475,0.0007685621,0.0029331578,0.0005886513,0.0027771718,0.008918178,0.053710174,0.0006599923,0.001295814,0.2137351],"study_design_scores_gemma":[0.0008611375,0.048702776,0.9276565,0.000094720745,0.001007987,0.00017021206,0.0018879886,0.005270249,0.012451651,0.00020126507,0.0016329476,0.00006266471],"about_ca_topic_score_codex":0.0063627474,"about_ca_topic_score_gemma":0.02400278,"teacher_disagreement_score":0.0063627474,"about_ca_system_score_codex":0.0008201009,"about_ca_system_score_gemma":0.0007515352,"threshold_uncertainty_score":0.016655505},"labels":[],"label_agreement":null},{"id":"W4319723854","doi":"10.1016/j.foreco.2023.120848","title":"TAMM review: Continuous root forestry—Living roots sustain the belowground ecosystem and soil carbon in managed forests","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":52,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Environmental science; Biodiversity; Ecosystem; Soil organic matter; Agroforestry; Soil carbon; Agronomy; Ecology; Biology; Soil water; Soil science","score_opus":0.007345293698138568,"score_gpt":0.20753997788754952,"score_spread":0.20019468418941094,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4319723854","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.00008196711,0.9927126,0.00011578688,0.0018572639,0.0033599304,0.000011441452,0.000052199743,0.0000090907,0.0017997082],"genre_scores_gemma":[0.00079001166,0.99095345,0.00015885044,0.0017122945,0.004769342,0.000013933739,0.000086928296,0.0000060116245,0.0015092015],"study_design_codex":"design_other","study_design_gemma":"systematic_review","domain_scores_codex":[0.99950945,0.000091529895,0.00009585054,0.00011175157,0.0001443943,0.000047063237],"domain_scores_gemma":[0.9976762,0.0010031485,0.00039565188,0.00005805457,0.0005922656,0.00027462884],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.001001722,0.0009305825,0.0013785089,0.0028915051,0.0005161003,0.0022973642,0.0013724876,0.0024711792,0.013012343],"category_scores_gemma":[0.0031867372,0.00030930171,0.00054608827,0.004123252,0.0009015825,0.0025400864,0.0012284934,0.002259123,0.005087468],"study_design_candidate":"systematic_review","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012069397,0.00006401431,0.00028637887,0.032225832,0.00012444306,0.00015625158,0.00008435284,0.00027438859,0.000530996,0.0034569,0.24692161,0.71575415],"study_design_scores_gemma":[0.000010395958,0.00004080182,0.0009384101,0.008741265,0.000073005496,0.000414213,0.00004600265,0.000040312083,0.000064667445,0.0011325417,0.9884864,0.00001197652],"about_ca_topic_score_codex":0.0024433287,"about_ca_topic_score_gemma":0.0036770357,"teacher_disagreement_score":0.013012343,"about_ca_system_score_codex":0.001271634,"about_ca_system_score_gemma":0.0029864926,"threshold_uncertainty_score":0.043530643},"labels":[],"label_agreement":null},{"id":"W4320078090","doi":"10.1016/j.foreco.2023.120850","title":"Vegetation recovery and edge effects of low impact seismic lines over eight-year period in boreal uplands of northern Alberta","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"Canadian Forest Service; Natural Resources Canada","keywords":"Ecological succession; Taiga; Boreal; Vegetation (pathology); Tree line; Peat; Clearcutting; Disturbance (geology); Environmental science; Shrub; Herbaceous plant; Physical geography; Logging; Geology; Forestry; Ecology; Geography; Climate change; Geomorphology; Oceanography; Biology","score_opus":0.0022179329269348927,"score_gpt":0.1963311225153838,"score_spread":0.1941131895884489,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4320078090","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993994,0.000053431475,0.000017561719,0.000019289982,0.0000017155434,0.0000018480812,0.00019624509,0.0000016905432,0.00030879694],"genre_scores_gemma":[0.9989825,0.00004994604,0.000037739308,0.000012476297,0.0000016003703,0.0000020347172,0.0003336823,0.0000010539698,0.0005790205],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982244,0.000019162911,0.000010932535,0.000029146586,0.000033886492,0.00008446779],"domain_scores_gemma":[0.9994653,0.000056874098,0.00014529766,0.000020310186,0.00015277682,0.00015957307],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028250422,0.00017504483,0.00018839697,0.00082193624,0.000780347,0.00067601906,0.000563188,0.00028188084,0.0008420741],"category_scores_gemma":[0.00072216435,0.00011471209,0.00017575546,0.0010144965,0.00045664248,0.000272435,0.00053854974,0.00029334403,0.00010391515],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00035761754,0.00008737727,0.9914014,0.000015681533,0.000053096657,0.00023010398,0.00093111675,0.0005309125,0.0010886886,0.000050689883,0.00030125002,0.0049519837],"study_design_scores_gemma":[0.0000015153487,0.000008060473,0.9988937,0.000002504767,0.000005705367,0.00001615039,0.00080357207,0.000100986654,0.00003327694,0.0000048173947,0.00012820237,0.0000015778849],"about_ca_topic_score_codex":0.8839863,"about_ca_topic_score_gemma":0.9681257,"teacher_disagreement_score":0.116013706,"about_ca_system_score_codex":0.004339435,"about_ca_system_score_gemma":0.002588378,"threshold_uncertainty_score":0.23339385},"labels":[],"label_agreement":null},{"id":"W4320175973","doi":"10.1016/j.foreco.2022.120740","title":"Pioneer tree species accumulate higher neighbourhood diversity than late-successional species in a subtropical forest","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Species richness; Gamma diversity; Ecology; Phylogenetic diversity; Species diversity; Biology; Alpha diversity; Beta diversity; Ecological succession; Community; Phylogenetic tree; Habitat","score_opus":0.018427076798936844,"score_gpt":0.2282749462438417,"score_spread":0.20984786944490486,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4320175973","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99983394,0.000017185226,0.000014900996,0.0000012173797,2.867291e-7,2.9654774e-7,0.0000106158195,4.821683e-7,0.000121141864],"genre_scores_gemma":[0.9998037,0.000015591248,0.000026787775,0.000001911791,7.544638e-7,5.3191303e-7,0.00003982485,3.625191e-7,0.00011059219],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999418,0.000009252107,0.0000040921113,0.000015850068,0.0000113153,0.000017686041],"domain_scores_gemma":[0.99975413,0.000037264705,0.000057078403,0.00002063046,0.00004537262,0.00008542465],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00011433839,0.00013077729,0.00017278791,0.0008159928,0.0006589859,0.00039642683,0.00016075399,0.000121786325,0.0011992799],"category_scores_gemma":[0.0002831125,0.000086561864,0.00011727755,0.00064793834,0.00030161138,0.00025692632,0.00038836696,0.00012515073,0.00012198333],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013137063,0.000032155494,0.98179585,0.000016645818,0.000046434187,0.000101867685,0.0007088469,0.00010495348,0.012916955,0.00006846957,0.000031264415,0.0040451786],"study_design_scores_gemma":[6.625527e-7,0.000011267483,0.9993112,7.698715e-7,0.00000540529,0.000052741107,0.0003595203,0.000077538236,0.00011341195,0.000023366258,0.00004309582,9.3792903e-7],"about_ca_topic_score_codex":0.010599923,"about_ca_topic_score_gemma":0.04244221,"teacher_disagreement_score":0.010599923,"about_ca_system_score_codex":0.0002096323,"about_ca_system_score_gemma":0.00017517073,"threshold_uncertainty_score":0.02107644},"labels":[],"label_agreement":null},{"id":"W4321196237","doi":"10.1016/j.foreco.2023.120861","title":"Planning Ginkgo biloba future fruit production areas under climate change: Application of a combinatorial modeling approach","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Land Use and Ecosystem Services","field":"Environmental Science","cited_by":11,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Montréal; University of British Columbia","funders":"","keywords":"Ginkgo biloba; Ginkgo; Habitat; Climate change; Environmental science; Productivity; Agroforestry; Production (economics); Biology; Agronomy; Ecology; Horticulture; Botany","score_opus":0.018795226950959483,"score_gpt":0.23384741894408886,"score_spread":0.2150521919931294,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4321196237","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.6854832,0.00092299684,0.29693213,0.0009174339,0.0000795153,0.000172587,0.0030039444,0.0006179812,0.011870139],"genre_scores_gemma":[0.96471393,0.00028751828,0.03174337,0.000074998534,0.000021927046,0.00014652037,0.0011475537,0.00006839207,0.0017958019],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997961,0.00007228066,0.000008902224,0.000064113374,0.000017617482,0.000040974686],"domain_scores_gemma":[0.99943346,0.00036929498,0.000061086794,0.000017388476,0.000059014772,0.00005975246],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00049655704,0.0009773262,0.00081594585,0.0011673155,0.00041631842,0.0012037543,0.0009985579,0.0007890445,0.0028051788],"category_scores_gemma":[0.0010875552,0.00058640254,0.0014694765,0.0010055184,0.00031466558,0.000785154,0.00062948675,0.00051582,0.00016265636],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000010223318,0.000012178876,0.0015834942,0.000014337583,0.000021120133,0.000035938756,0.000007167216,0.99590933,0.00011877793,0.00052750175,0.0001187153,0.0016411899],"study_design_scores_gemma":[0.0000024978697,0.0000043875993,0.00039027655,0.000001919321,0.000009202818,0.00000493931,0.0000104551045,0.9989895,0.000029364097,0.00046669936,0.00008805227,0.0000026682148],"about_ca_topic_score_codex":0.043417092,"about_ca_topic_score_gemma":0.038203683,"teacher_disagreement_score":0.043417092,"about_ca_system_score_codex":0.0016945855,"about_ca_system_score_gemma":0.001383819,"threshold_uncertainty_score":0.086328745},"labels":[],"label_agreement":null},{"id":"W4321442387","doi":"10.1016/j.foreco.2023.120853","title":"Forest water-use efficiency: Effects of climate change and management on the coupling of carbon and water processes","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":120,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia, Okanagan Campus; University of British Columbia; University of Toronto","funders":"National Key Research and Development Program of China Stem Cell and Translational Research; National Key Research and Development Program of China; Beijing Municipal Commission of Education; National Natural Science Foundation of China","keywords":"Environmental science; Water-use efficiency; Climate change; Thinning; Water use; Forest management; Productivity; Carbon sequestration; Water cycle; Agroforestry; Ecology; Carbon dioxide; Biology","score_opus":0.008616500443877927,"score_gpt":0.19023609578007808,"score_spread":0.18161959533620015,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4321442387","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99778783,0.0002412815,0.00041007585,0.000098572105,0.0000031250447,0.0000028191585,0.0001047475,0.0000060736484,0.0013454591],"genre_scores_gemma":[0.99960905,0.000053429278,0.00005009953,0.000011801021,0.0000026816715,0.0000010211057,0.00004008402,0.0000042337383,0.00022744102],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998223,0.000071592665,0.000007918878,0.000027809823,0.000021601501,0.000048918617],"domain_scores_gemma":[0.9990695,0.00053740636,0.00013755176,0.0000469296,0.00006766175,0.00014101517],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006234358,0.00017006721,0.0002961273,0.00042294912,0.0001947552,0.0008286455,0.0002777557,0.00037078597,0.0027468253],"category_scores_gemma":[0.0014839804,0.00015393036,0.0002870757,0.00058689405,0.0004849198,0.001023233,0.0004431845,0.00025148393,0.0001670427],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.005647227,0.00088654814,0.76710355,0.00019856375,0.0014280292,0.0006545294,0.0005013327,0.06464247,0.105018154,0.008068869,0.0011383852,0.04471233],"study_design_scores_gemma":[0.00001920252,0.000101969184,0.98385346,0.0000035830974,0.00008062642,0.00006817026,0.00014066219,0.011635789,0.0021851962,0.0015524633,0.0003470596,0.000011821036],"about_ca_topic_score_codex":0.010119974,"about_ca_topic_score_gemma":0.01269601,"teacher_disagreement_score":0.010119974,"about_ca_system_score_codex":0.00053589395,"about_ca_system_score_gemma":0.0003400338,"threshold_uncertainty_score":0.02012211},"labels":[],"label_agreement":null},{"id":"W4321485180","doi":"10.1016/j.foreco.2023.120882","title":"The impact of planting density on forest monospecific plantations: An overview","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":53,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue","funders":"Natural Sciences and Engineering Research Council of Canada; Coordenação de Aperfeiçoamento de Pessoal de Nível Superior; Ministère des relations internationales et de la Francophonie","keywords":"Sowing; Silviculture; Transpiration; Agroforestry; Productivity; Eucalyptus; Environmental science; Tree planting; Biology; Water-use efficiency; Ecology; Agronomy; Botany; Photosynthesis","score_opus":0.02426175043113697,"score_gpt":0.2784420091074336,"score_spread":0.2541802586762966,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4321485180","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.18724604,0.75006235,0.0035346465,0.0028791719,0.00044758158,0.00006123563,0.0013258603,0.0000743016,0.054368857],"genre_scores_gemma":[0.51923054,0.4726595,0.0023904769,0.0007701064,0.00093949586,0.000035870267,0.0005504862,0.000063347485,0.0033601755],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.9989329,0.00029685764,0.000072525254,0.00019441478,0.0003452135,0.00015805675],"domain_scores_gemma":[0.99336,0.0044572633,0.00089571014,0.0001666604,0.0008028612,0.00031757817],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0015292218,0.00057957385,0.0008221712,0.0015775656,0.0003689558,0.0017996388,0.0008759884,0.0006451458,0.0055307625],"category_scores_gemma":[0.0030858228,0.00027293913,0.00090958923,0.0031121697,0.0009994931,0.0009713271,0.0011676124,0.0008112388,0.0005057375],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00034717226,0.00038799975,0.1618913,0.0062839426,0.0008107157,0.0005027631,0.0004184653,0.010502137,0.0031925596,0.008912628,0.005110778,0.80163956],"study_design_scores_gemma":[0.000018663295,0.00106884,0.8443647,0.003906807,0.0011263585,0.0019891793,0.0016278633,0.004736754,0.0036431423,0.007975687,0.12939247,0.00014943151],"about_ca_topic_score_codex":0.012064283,"about_ca_topic_score_gemma":0.03460884,"teacher_disagreement_score":0.012064283,"about_ca_system_score_codex":0.00206418,"about_ca_system_score_gemma":0.0009954756,"threshold_uncertainty_score":0.023988128},"labels":[],"label_agreement":null},{"id":"W4321781470","doi":"10.1016/j.foreco.2023.120857","title":"Comparing the influence of thinning treatments with low to high residual basal area on red maple transpiration in a temperate mixed forest","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Outaouais","funders":"","keywords":"Basal area; Transpiration; Thinning; Environmental science; Vapour Pressure Deficit; Temperate climate; Temperate rainforest; Temperate forest; Residual; Ecology; Botany; Biology; Mathematics; Photosynthesis; Ecosystem","score_opus":0.008408785176137221,"score_gpt":0.1923103258704071,"score_spread":0.1839015406942699,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4321781470","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99986637,0.000038006452,0.000013895137,0.000003051079,0.0000014976094,0.0000012126369,0.000013188803,9.2819107e-7,0.00006184572],"genre_scores_gemma":[0.9995797,0.000026474856,0.00008907417,0.000014401942,0.0000030619876,0.0000042900274,0.000063556225,0.0000019053009,0.00021743288],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996636,0.00012669462,0.000024510515,0.00006856049,0.00003775503,0.00007882989],"domain_scores_gemma":[0.99884963,0.00048175934,0.00013702938,0.000048946684,0.000088388486,0.00039430134],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007616219,0.00030849097,0.00037764315,0.00033364596,0.0003498988,0.0005293099,0.0002839548,0.00022687153,0.0008089692],"category_scores_gemma":[0.000721028,0.00011519779,0.00032730988,0.00023397023,0.00038141973,0.00028513084,0.00023778462,0.00028032533,0.00007969124],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.05207208,0.00442195,0.47648972,0.00030034894,0.0012543143,0.0006949588,0.0011453881,0.0032621587,0.43325022,0.00030115416,0.00032572873,0.026482064],"study_design_scores_gemma":[0.00006615123,0.0021821081,0.9926927,0.0000044336866,0.00013682013,0.0000384175,0.00025328484,0.0008096034,0.0036245931,0.000024245679,0.00015943868,0.0000082228335],"about_ca_topic_score_codex":0.010663814,"about_ca_topic_score_gemma":0.0279929,"teacher_disagreement_score":0.010663814,"about_ca_system_score_codex":0.0006158747,"about_ca_system_score_gemma":0.00050760846,"threshold_uncertainty_score":0.021203458},"labels":[],"label_agreement":null},{"id":"W4323051240","doi":"10.1016/j.foreco.2023.120867","title":"Spatial patterns of vigor by stand density across species groups and its drivers in a pre-harvest ponderosa pine-dominated landscape in northern California","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Edaphic; Forestry; Geography; Ecology; Environmental science; Biology; Soil water","score_opus":0.00470731467708605,"score_gpt":0.2033123497897464,"score_spread":0.19860503511266037,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4323051240","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99960834,0.00003198714,0.00001346789,0.000011361355,8.1946126e-7,0.0000014149114,0.00011326569,0.0000023729226,0.00021692277],"genre_scores_gemma":[0.9996661,0.000016794238,0.00001966905,0.0000035707178,0.0000014491261,0.0000020698035,0.00011181343,0.0000011921335,0.00017744148],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976534,0.00003220184,0.000016375408,0.00009503784,0.000029940853,0.000061222796],"domain_scores_gemma":[0.9988533,0.0002788085,0.00028225675,0.000063561965,0.00018215926,0.00033996877],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036732544,0.00015945073,0.00030771198,0.0008967693,0.0007006353,0.0008749657,0.00060156925,0.00025839833,0.0014175017],"category_scores_gemma":[0.0008259711,0.00029246465,0.0002639838,0.0008201411,0.00064907805,0.00048027345,0.0007096258,0.0002920495,0.000120580626],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014982744,0.00005473161,0.9967886,0.000009947651,0.000054965316,0.000049018297,0.0005127207,0.0002026421,0.0006864639,0.000051472547,0.00016032907,0.001279419],"study_design_scores_gemma":[0.0000018252339,0.000006627594,0.99947757,0.0000012699992,0.000005871162,0.000009147274,0.00033428802,0.00011291256,0.00000922454,0.000009367571,0.000030204103,0.0000015917013],"about_ca_topic_score_codex":0.20919277,"about_ca_topic_score_gemma":0.5009969,"teacher_disagreement_score":0.20919277,"about_ca_system_score_codex":0.001034112,"about_ca_system_score_gemma":0.0005781708,"threshold_uncertainty_score":0.41595024},"labels":[],"label_agreement":null},{"id":"W4323051270","doi":"10.1016/j.foreco.2023.120896","title":"TAMM review: On the importance of tap and tree characteristics in maple sugaring","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant-Derived Bioactive Compounds","field":"Chemistry","cited_by":12,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université TÉLUQ; Université du Québec à Chicoutimi; Université du Québec à Montréal; Université du Québec en Outaouais","funders":"Natural Sciences and Engineering Research Council of Canada; Ministère des Forêts, de la Faune et des Parcs; U.S. Geological Survey; Université du Québec à Chicoutimi; National Science Foundation","keywords":"Maple; Sugar; Tap water; Yield (engineering); Biology; Horticulture; Botany; Agronomy; Environmental science; Food science","score_opus":0.016270779252082663,"score_gpt":0.23461692848292925,"score_spread":0.21834614923084658,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4323051270","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0003152321,0.9962393,0.00010473605,0.0012804278,0.0006563588,0.000013279299,0.000334245,0.000015050202,0.0010413965],"genre_scores_gemma":[0.0024533768,0.99421495,0.00023498536,0.0013302523,0.0007582922,0.000023297831,0.00039534178,0.000009792355,0.0005796502],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.998998,0.00023501998,0.0002936887,0.00019731378,0.00021020214,0.00006582476],"domain_scores_gemma":[0.9926964,0.004611958,0.0010865077,0.00015579638,0.0012292638,0.00022008685],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0015135298,0.0006314453,0.0015202261,0.005699808,0.00045046347,0.0023385477,0.0011413487,0.0016266257,0.011959942],"category_scores_gemma":[0.010032942,0.00030556793,0.0014336469,0.0060664457,0.0005306099,0.0017486231,0.0010399206,0.0012445771,0.002396659],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019673891,0.0000669299,0.0026265362,0.2350635,0.0008423106,0.00039430126,0.00074091356,0.00027333724,0.0006751086,0.0027869302,0.11660493,0.6397286],"study_design_scores_gemma":[0.000020910084,0.000080741935,0.008836519,0.110996306,0.0016789545,0.0011350011,0.00040932247,0.00006982776,0.000191762,0.001207331,0.8753346,0.0000387051],"about_ca_topic_score_codex":0.0042068455,"about_ca_topic_score_gemma":0.007029713,"teacher_disagreement_score":0.011959942,"about_ca_system_score_codex":0.001053044,"about_ca_system_score_gemma":0.004752628,"threshold_uncertainty_score":0.040009975},"labels":[],"label_agreement":null},{"id":"W4323051669","doi":"10.1016/j.foreco.2023.120884","title":"Increasing tree productivity does not translate into greater soil organic carbon storage","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":11,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of Guelph; Université du Québec en Abitibi-Témiscamingue","funders":"U.S. Forest Service; Canadian Forest Service; Natural Sciences and Engineering Research Council of Canada; Ministère des Forêts, de la Faune et des Parcs","keywords":"Soil carbon; Productivity; Environmental science; Agronomy; Biomass (ecology); Context (archaeology); Salicaceae; Botany; Biology; Soil water; Horticulture; Forestry; Woody plant; Soil science; Geography","score_opus":0.009696877866135184,"score_gpt":0.20318843045418788,"score_spread":0.1934915525880527,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4323051669","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99883586,0.00013067613,0.00016748643,0.00001622575,0.0000026680564,0.0000017086718,0.00008378584,0.000006848069,0.00075483846],"genre_scores_gemma":[0.9990946,0.00008041006,0.00016014051,0.000031092357,0.0000019354675,0.0000024437984,0.00016269046,0.0000047609196,0.00046191487],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99975234,0.000016457108,0.000017997674,0.0001016271,0.00006316594,0.000048383226],"domain_scores_gemma":[0.999241,0.000108025044,0.0002481134,0.000087023436,0.000112553564,0.00020332866],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022905046,0.00017926662,0.00025056608,0.00020448603,0.00024000909,0.00065643253,0.00024110494,0.00020633943,0.0010259848],"category_scores_gemma":[0.00035984657,0.0001493396,0.00019004548,0.0002803649,0.00025703755,0.00036267907,0.00032545102,0.00026775812,0.00026936817],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023148512,0.00006633393,0.26923725,0.00008489476,0.0001374648,0.00016881358,0.000112388894,0.00018996048,0.7184897,0.00020343317,0.00012281202,0.010955444],"study_design_scores_gemma":[0.000006573166,0.00011402685,0.98915046,0.0000046713876,0.00002825791,0.00012960205,0.00008206258,0.0003184313,0.0093807215,0.000090861424,0.000690637,0.0000037098916],"about_ca_topic_score_codex":0.0056042457,"about_ca_topic_score_gemma":0.017302226,"teacher_disagreement_score":0.0056042457,"about_ca_system_score_codex":0.0005719706,"about_ca_system_score_gemma":0.00033856247,"threshold_uncertainty_score":0.011143208},"labels":[],"label_agreement":null},{"id":"W4323358741","doi":"10.1016/j.foreco.2023.120897","title":"Chemistry of soil and foliage in declining sugar maple stands over 13 years of nitrogen addition","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Environment and Climate Change Canada; Ministère des Ressources naturelles et des Forêts (Québec)","funders":"","keywords":"Maple; Nitrogen; Ammonium; Sugar; Chemistry; Nitrate; Deposition (geology); Temperate climate; Aceraceae; Temperate forest; Ammonium nitrate; Soil carbon; Agronomy; Animal science; Soil water; Botany; Ecology; Biology","score_opus":0.004812833095463069,"score_gpt":0.19552511016335833,"score_spread":0.19071227706789526,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4323358741","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995378,0.000095908494,0.000015573594,0.000007060241,0.0000015502992,0.0000016484539,0.00018857201,9.881875e-7,0.00015098555],"genre_scores_gemma":[0.9987815,0.00009745789,0.000059306,0.000015068819,0.0000027731621,0.000003721413,0.000519174,0.0000014285557,0.0005195962],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999424,0.00000763572,0.0000036570468,0.00001714904,0.000014489927,0.000014555589],"domain_scores_gemma":[0.9997532,0.000030260646,0.00006769675,0.000005721222,0.00007570261,0.00006741019],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014339981,0.00015049477,0.00021712066,0.00037835177,0.0004030295,0.00041618137,0.00018264173,0.0002569251,0.000640295],"category_scores_gemma":[0.00030658895,0.00011243109,0.00012007554,0.00032705412,0.00021938869,0.00023699472,0.00018664227,0.0001955171,0.000111352085],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012522812,0.00015092254,0.96570367,0.000043146403,0.00008933836,0.00022558706,0.0005032532,0.0002524365,0.026792692,0.00004259492,0.00018006684,0.0047639785],"study_design_scores_gemma":[0.0000019719741,0.000036053836,0.9992299,9.0535053e-7,0.000008849962,0.00003512289,0.00009256411,0.00014026852,0.0003367042,0.0000082418765,0.00010779096,0.0000015646292],"about_ca_topic_score_codex":0.063380115,"about_ca_topic_score_gemma":0.12228012,"teacher_disagreement_score":0.063380115,"about_ca_system_score_codex":0.0006109448,"about_ca_system_score_gemma":0.0003436753,"threshold_uncertainty_score":0.1260224},"labels":[],"label_agreement":null},{"id":"W4327629574","doi":"10.1016/j.foreco.2023.120921","title":"Impact of white-tailed deer on northern white cedar recruitment beyond the browsing vulnerability zone: A broad-scale study","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"","keywords":"Odocoileus; Understory; Abundance (ecology); Wildlife; Regeneration (biology); Ecology; Range (aeronautics); Geography; Forestry; Biology; Canopy","score_opus":0.020557833272673822,"score_gpt":0.27336121107068756,"score_spread":0.25280337779801376,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4327629574","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997639,0.000020123673,0.000008413127,0.000004072142,4.5765879e-7,0.0000010084171,0.000013664478,2.9690275e-7,0.00018808496],"genre_scores_gemma":[0.99963903,0.000028539522,0.000020832145,0.000009104111,0.0000016034915,0.0000027201336,0.00003315268,4.0774407e-7,0.00026469777],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99972457,0.000084763895,0.000008101077,0.0000606927,0.00002778632,0.000094060524],"domain_scores_gemma":[0.9992291,0.00022758302,0.00013094168,0.00004444152,0.000058179823,0.00030984188],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006151646,0.00019022297,0.00022273108,0.0003879688,0.0007850148,0.000573257,0.0002554118,0.0003538386,0.0012032791],"category_scores_gemma":[0.00083141885,0.00011470892,0.00028571344,0.00031271687,0.0005959595,0.0005376186,0.0006328365,0.00028016235,0.00015198722],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00056963007,0.00041961935,0.9894583,0.00001737334,0.00007780757,0.0004557019,0.0010025643,0.00017087125,0.0034283951,0.00010667112,0.00008836645,0.004204615],"study_design_scores_gemma":[0.0000014777708,0.00006869278,0.99934655,0.0000017733892,0.0000062939657,0.000044025892,0.00039553648,0.000039566567,0.000028660928,0.000012066166,0.000054302283,0.0000010587914],"about_ca_topic_score_codex":0.01564475,"about_ca_topic_score_gemma":0.09111107,"teacher_disagreement_score":0.01564475,"about_ca_system_score_codex":0.00042824377,"about_ca_system_score_gemma":0.00044579935,"threshold_uncertainty_score":0.031107366},"labels":[],"label_agreement":null},{"id":"W4360603204","doi":"10.1016/j.foreco.2023.120847","title":"The increasing threat to European forests from the invasive foliar pine pathogen, Lecanosticta acicola","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":29,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Nature; Regione Toscana; Ministry of Rural Affairs; Bundesamt für Umwelt; Vetenskapsrådet; Javna Agencija za Raziskovalno Dejavnost RS; Svenska Forskningsrådet Formas; Russian Academy of Sciences; Università degli Studi di Firenze; Eesti Teadusfondi; European Commission","keywords":"Range (aeronautics); Geography; Ecology; Threatened species; Invasive species; Climate change; Biology; Agroforestry; Habitat","score_opus":0.008855560845016626,"score_gpt":0.20903311681707387,"score_spread":0.20017755597205725,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4360603204","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97063816,0.011581811,0.0019773594,0.0003364335,0.000032274795,0.000030464194,0.003811747,0.00011337934,0.011478394],"genre_scores_gemma":[0.98587704,0.0059074927,0.0025779575,0.0002704232,0.000027012664,0.000018440354,0.004010153,0.00001362939,0.0012978736],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995498,0.00007869129,0.00004400798,0.00012307892,0.00013169517,0.00007275492],"domain_scores_gemma":[0.99929285,0.00011275064,0.00036194758,0.000045000772,0.00010203341,0.000085402484],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008301558,0.0002933071,0.0002079991,0.0013913229,0.000375667,0.0013134861,0.00017934336,0.0003692723,0.0015452286],"category_scores_gemma":[0.00078450603,0.00007113483,0.00018022276,0.0013413938,0.00024224324,0.0006228956,0.00069733,0.00024959445,0.00028860642],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00060958153,0.00017380231,0.6711434,0.0010866172,0.00014554821,0.0030037465,0.0015929061,0.0014399329,0.03510186,0.0012767626,0.006672338,0.27775347],"study_design_scores_gemma":[0.000015013225,0.00016107984,0.9367434,0.00041664863,0.00011481882,0.0033132483,0.0022351013,0.0008428173,0.0043813176,0.00053673185,0.05120954,0.00003027634],"about_ca_topic_score_codex":0.008944542,"about_ca_topic_score_gemma":0.011829485,"teacher_disagreement_score":0.008944542,"about_ca_system_score_codex":0.00032704568,"about_ca_system_score_gemma":0.0003933871,"threshold_uncertainty_score":0.017784953},"labels":[],"label_agreement":null},{"id":"W4361026889","doi":"10.1016/j.foreco.2023.120854","title":"Tamm Review: Provenance trials in the service of forestry assisted migration: A review of North American field trials and experiments","year":2023,"lang":"en","type":"review","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":37,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Winnipeg","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Provenance; Climate change; Phenology; Frost (temperature); Adaptation (eye); Growing season; Ecology; Geography; Environmental resource management; Environmental science; Biology; Meteorology","score_opus":0.07779526416265171,"score_gpt":0.36579358639153786,"score_spread":0.28799832222888616,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4361026889","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.000080254,0.99849355,0.000069053676,0.0005105808,0.00030341084,0.00008548079,0.00016766392,0.000006055732,0.00028406366],"genre_scores_gemma":[0.000989986,0.99648213,0.00039173747,0.0015010962,0.00015955779,0.00013040575,0.00012342376,0.000006417076,0.00021515698],"study_design_codex":"systematic_review","study_design_gemma":"systematic_review","domain_scores_codex":[0.9946267,0.0022408229,0.0014581069,0.00045769883,0.0010676536,0.00014888482],"domain_scores_gemma":[0.96049696,0.029606773,0.0049238037,0.0006056423,0.0038138796,0.00055288087],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.01354616,0.0012328799,0.0053851963,0.004578039,0.0006131475,0.002737171,0.0024150237,0.0025662722,0.008055062],"category_scores_gemma":[0.044081036,0.00060629693,0.0028936574,0.0060005663,0.0011792105,0.0016028166,0.0014420376,0.002050203,0.0014094072],"study_design_candidate":"systematic_review","study_design_consensus":"systematic_review","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00097434333,0.000101405996,0.000337972,0.4900122,0.003063917,0.00009209957,0.00015409778,0.00011798378,0.00042660593,0.00096425356,0.06175671,0.4419983],"study_design_scores_gemma":[0.00084056845,0.0005009835,0.004171146,0.54204667,0.016353223,0.0003837267,0.00018713789,0.000060288163,0.00030150812,0.0011372027,0.433936,0.000081571365],"about_ca_topic_score_codex":0.008275902,"about_ca_topic_score_gemma":0.030933129,"teacher_disagreement_score":0.01354616,"about_ca_system_score_codex":0.002940178,"about_ca_system_score_gemma":0.010483595,"threshold_uncertainty_score":0.071639776},"labels":[],"label_agreement":null},{"id":"W4367308031","doi":"10.1016/j.foreco.2023.121015","title":"Climate, landscape, and human influences on fire in southern Patagonia: A basin-scale approach","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Waterloo","funders":"","keywords":"Fire regime; Structural basin; Fire ecology; Physical geography; Fire history; Geography; Climate change; Ecosystem; Environmental science; Scale (ratio); Ecology; Spatial ecology; Climatology; Geology; Cartography","score_opus":0.005870911865543757,"score_gpt":0.2066237845502339,"score_spread":0.20075287268469014,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4367308031","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99873525,0.00012195515,0.00006646079,0.00007963726,0.0000026886062,0.0000054120446,0.00014922791,0.0000043183572,0.00083493174],"genre_scores_gemma":[0.99952495,0.00009351873,0.00009210443,0.00002055702,0.000004642093,0.000008301961,0.00009515763,0.0000025025524,0.00015827671],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997485,0.00011975455,0.000008345052,0.00004072944,0.000018420718,0.00006422176],"domain_scores_gemma":[0.9996699,0.00011078745,0.000079042606,0.000019646594,0.000055593002,0.000065017615],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00044696016,0.00019233384,0.0003534406,0.0009834114,0.0005437352,0.0009044123,0.0006286249,0.00033531754,0.0010303603],"category_scores_gemma":[0.0009777555,0.00023642913,0.00056050636,0.0017579058,0.00068285485,0.0004505891,0.00089519116,0.00035643234,0.00007915035],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016236783,0.00009737059,0.9852055,0.00004596238,0.00033920913,0.00035924348,0.0011115294,0.0032995085,0.001031357,0.00052130554,0.00042309455,0.00740362],"study_design_scores_gemma":[0.000007303734,0.000015410156,0.99749196,0.000006757272,0.000039836494,0.00005150724,0.00082560774,0.001182945,0.000027507936,0.000106223764,0.00024157921,0.0000033315362],"about_ca_topic_score_codex":0.2620102,"about_ca_topic_score_gemma":0.35521895,"teacher_disagreement_score":0.2620102,"about_ca_system_score_codex":0.0012155819,"about_ca_system_score_gemma":0.0008204999,"threshold_uncertainty_score":0.5209702},"labels":[],"label_agreement":null},{"id":"W4367853131","doi":"10.1016/j.foreco.2023.121020","title":"Nine-years effect of harvesting and mechanical site preparation on bryophyte decomposition and carbon stocks in a boreal forested peatland","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Université du Québec à Montréal; Université du Québec en Abitibi-Témiscamingue","funders":"","keywords":"Bryophyte; Environmental science; Soil carbon; Sphagnum; Peat; Taiga; Boreal; Soil water; Agronomy; Ecology; Soil science; Biology","score_opus":0.004718443914500393,"score_gpt":0.24005628552691502,"score_spread":0.23533784161241464,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4367853131","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998124,0.000032201115,0.000013785142,0.0000041140847,0.0000015752476,0.00000361484,0.00006220711,0.0000012898171,0.000068828565],"genre_scores_gemma":[0.9989491,0.000039789593,0.00007271633,0.000021081047,0.0000019306488,0.0000078027115,0.0002739553,9.977977e-7,0.0006326929],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998847,0.000013479954,0.000007274838,0.000030496296,0.000017689772,0.00004633273],"domain_scores_gemma":[0.99954337,0.000052885032,0.00006945894,0.00001834073,0.00008539555,0.00023051412],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022246366,0.0002536403,0.00024188758,0.00020425806,0.00040261395,0.00030213373,0.0002488315,0.00016824927,0.0007100526],"category_scores_gemma":[0.00021657586,0.00008602042,0.00018560639,0.00012619028,0.00031317963,0.00012325487,0.00019611944,0.00026431194,0.000075761505],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0111226,0.002986501,0.5854434,0.00014686998,0.0002873815,0.00076662767,0.0008650228,0.0013794823,0.36992082,0.0000659536,0.00046251266,0.026552841],"study_design_scores_gemma":[0.000012247163,0.0008637076,0.9960907,0.0000019439149,0.000015067932,0.000016374503,0.00014375104,0.00024502573,0.002458982,0.000003886864,0.00014273291,0.0000055632963],"about_ca_topic_score_codex":0.2407721,"about_ca_topic_score_gemma":0.5133936,"teacher_disagreement_score":0.2407721,"about_ca_system_score_codex":0.002121296,"about_ca_system_score_gemma":0.0010801109,"threshold_uncertainty_score":0.4787413},"labels":[],"label_agreement":null},{"id":"W4375843415","doi":"10.1016/j.foreco.2023.121068","title":"Root exudation patterns of Chinese fir after thinning relating to root characteristics and soil conditions","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":19,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"Priority Academic Program Development of Jiangsu Higher Education Institutions; National Natural Science Foundation of China","keywords":"Thinning; Nutrient; Biomass (ecology); Nutrient cycle; Biology; Agronomy; Tropical and subtropical moist broadleaf forests; Environmental science; Botany; Subtropics; Ecology","score_opus":0.007840844589096754,"score_gpt":0.22265836611178405,"score_spread":0.2148175215226873,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4375843415","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99983895,0.000027333028,0.000016161373,0.0000018645967,6.3246284e-7,8.819709e-7,0.000031356514,6.3518655e-7,0.000082165],"genre_scores_gemma":[0.99926037,0.0000313979,0.000050078856,0.000007578159,0.0000017177831,0.0000032995986,0.00013254392,9.636487e-7,0.000512113],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99996305,0.0000036433232,0.0000025723093,0.000011963303,0.000005755645,0.000012980373],"domain_scores_gemma":[0.99980277,0.000031941654,0.000048075286,0.000010002254,0.00003202532,0.00007520165],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014984055,0.00016943709,0.00017417227,0.00025572785,0.00017092557,0.00014311104,0.0000943778,0.00015469093,0.0004901481],"category_scores_gemma":[0.00016623981,0.00010474335,0.0001273346,0.00015855228,0.00012197577,0.00014870315,0.000098134864,0.00018870836,0.00007192862],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0027087599,0.00027820643,0.35622978,0.00005090584,0.0000442246,0.00046821946,0.0005994726,0.0002165766,0.6330196,0.000053775435,0.000082042265,0.0062483754],"study_design_scores_gemma":[0.0000026563519,0.000089122375,0.9973557,6.203496e-7,0.0000062124273,0.000047415717,0.00005780205,0.00009345496,0.0023050634,0.00000605641,0.00003372757,0.000002210399],"about_ca_topic_score_codex":0.0049898042,"about_ca_topic_score_gemma":0.010288233,"teacher_disagreement_score":0.0049898042,"about_ca_system_score_codex":0.00022561589,"about_ca_system_score_gemma":0.00019214155,"threshold_uncertainty_score":0.009921491},"labels":[],"label_agreement":null},{"id":"W4375861711","doi":"10.1016/j.foreco.2023.121059","title":"Few functionally acquisitive big-sized trees restrict but soil nutrients promote soil organic carbon storage in temperate deciduous forests","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"Hebei University; Iran National Science Foundation","keywords":"Soil carbon; Temperate deciduous forest; Topsoil; Deciduous; Environmental science; Temperate forest; Temperate rainforest; Ecology; Temperate climate; Agronomy; Soil science; Agroforestry; Soil water; Ecosystem; Biology","score_opus":0.007373807440450095,"score_gpt":0.2098555574701355,"score_spread":0.2024817500296854,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4375861711","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995541,0.00004250823,0.00003714978,0.0000032807131,5.0186287e-7,6.6536205e-7,0.000012119802,9.777904e-7,0.00034875533],"genre_scores_gemma":[0.9997143,0.000019165755,0.00004429255,0.000008388299,0.0000014148454,0.000001131736,0.000030403786,0.0000010699468,0.00017972695],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999218,0.000012366963,0.0000046651717,0.000024617219,0.000009102718,0.000027542488],"domain_scores_gemma":[0.99961346,0.0000785336,0.00006479878,0.000026258442,0.000023873361,0.00019314981],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019787945,0.0001578427,0.00019052501,0.0003171748,0.00045902733,0.00046092583,0.00027273622,0.00015899436,0.0011578299],"category_scores_gemma":[0.00034658107,0.00015751284,0.00008355953,0.0001708521,0.0004926919,0.00044000818,0.00043024958,0.00016131399,0.00014300451],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009722867,0.00029084296,0.7671032,0.00011053777,0.0000770863,0.0003551913,0.0013312321,0.00034639428,0.21488635,0.00088885264,0.00019335613,0.013444634],"study_design_scores_gemma":[0.0000040574773,0.000055819084,0.9978017,0.0000030880585,0.000010743451,0.00014600235,0.00039698434,0.00018626405,0.0010068591,0.00020369286,0.00018253304,0.000002283681],"about_ca_topic_score_codex":0.0037571087,"about_ca_topic_score_gemma":0.014828807,"teacher_disagreement_score":0.0037571087,"about_ca_system_score_codex":0.00017849362,"about_ca_system_score_gemma":0.00017884234,"threshold_uncertainty_score":0.0074704885},"labels":[],"label_agreement":null},{"id":"W4376120020","doi":"10.1016/j.foreco.2023.121021","title":"Individual response traits of understory plants vary along linked-press and compounded-pulse disturbance gradients in northern temperate and boreal forests","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Guelph; Natural Resources Canada; Canadian Forest Service; Ontario Forest Research Institute; Western University; Ministry of Natural Resources and Forestry","funders":"","keywords":"Understory; Temperate climate; Boreal; Temperate forest; Disturbance (geology); Ecology; Plant community; Biology; Taiga; Temperate rainforest; Herbaceous plant; Environmental science; Ecosystem; Species richness; Canopy","score_opus":0.013817277142761137,"score_gpt":0.22819139429325772,"score_spread":0.2143741171504966,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4376120020","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998833,0.000011320142,0.000024349469,0.0000016725434,6.227895e-7,6.6986166e-7,0.000015821444,9.560761e-7,0.00006128062],"genre_scores_gemma":[0.99976283,0.000006191482,0.000050507606,0.0000069761704,0.0000013683509,0.000001903953,0.000047213416,0.0000013814549,0.00012168567],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998167,0.00005760654,0.000009887824,0.00006381798,0.000018455596,0.000033480395],"domain_scores_gemma":[0.99927133,0.00025170762,0.00018008763,0.00004707491,0.0000478145,0.00020197307],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033280507,0.00018167913,0.0002051373,0.00043211522,0.00032209608,0.0004166446,0.00020265878,0.0002630775,0.0010703962],"category_scores_gemma":[0.00064657663,0.00018580027,0.00014796667,0.0002352255,0.00040545105,0.00031207057,0.00037313128,0.00030285673,0.000103604056],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00051622535,0.00014856887,0.95575845,0.00002068899,0.00010070203,0.00007744079,0.0007425204,0.00018909996,0.038623493,0.00005410917,0.000067132314,0.0037014976],"study_design_scores_gemma":[0.0000012698929,0.000019702102,0.99963033,5.2291347e-7,0.0000035059293,0.000028350172,0.00009997293,0.0001089119,0.000078275545,0.00000792913,0.0000199491,0.0000013362451],"about_ca_topic_score_codex":0.0035607151,"about_ca_topic_score_gemma":0.01774964,"teacher_disagreement_score":0.0035607151,"about_ca_system_score_codex":0.00018397918,"about_ca_system_score_gemma":0.00010069652,"threshold_uncertainty_score":0.0070800185},"labels":[],"label_agreement":null},{"id":"W4377018092","doi":"10.1016/j.foreco.2023.121103","title":"Investigating above- vs. below-ground competition by accounting for azimuth of competitors in native eucalypt forests","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Competition (biology); Competitor analysis; Environmental science; Ecology; Forestry; Biology; Geography","score_opus":0.008148790769820384,"score_gpt":0.2382432078402234,"score_spread":0.230094417070403,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4377018092","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995646,0.000026064205,0.00023681844,0.0000040928703,9.2890616e-7,5.3201506e-7,0.000011468375,0.0000020142613,0.00015352729],"genre_scores_gemma":[0.99968386,0.000007870135,0.00021114477,0.0000024915998,8.4272966e-7,4.8335227e-7,0.00002167457,0.0000016670826,0.000070003],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997776,0.000059731898,0.000012328113,0.00006698644,0.000031209216,0.000052162126],"domain_scores_gemma":[0.9991326,0.0004414001,0.00012244732,0.00006143044,0.00008102773,0.00016121943],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007973793,0.00028348173,0.00028366016,0.000293677,0.00034390617,0.00071698905,0.00035570355,0.00026980514,0.00079072337],"category_scores_gemma":[0.0010696719,0.00011878095,0.00031739197,0.00029175673,0.00027234046,0.00068665034,0.00035541982,0.00024255454,0.00008931432],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000778629,0.00015708312,0.8948596,0.000070436065,0.00032614253,0.0001695934,0.00043775022,0.009951734,0.079441726,0.0011662255,0.000093499875,0.01254761],"study_design_scores_gemma":[0.000009496522,0.0001307648,0.952233,0.000004966821,0.00011145455,0.00015650812,0.00056658406,0.04285524,0.0030425002,0.0006722275,0.00019850477,0.000018729523],"about_ca_topic_score_codex":0.014589741,"about_ca_topic_score_gemma":0.04908217,"teacher_disagreement_score":0.014589741,"about_ca_system_score_codex":0.0004590179,"about_ca_system_score_gemma":0.0005075998,"threshold_uncertainty_score":0.02900964},"labels":[],"label_agreement":null},{"id":"W4378637281","doi":"10.1016/j.foreco.2023.121117","title":"Woody debris structures on large clearcut openings: Oases for small mustelids and prey species?","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Species richness; Ecology; Weasel; Microtus; Clearcutting; Vole; Coarse woody debris; Deer mouse; Abundance (ecology); Peromyscus; Habitat; Biology; Debris; Predation; Geography; Population","score_opus":0.02833484681991548,"score_gpt":0.21946102078575255,"score_spread":0.1911261739658371,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4378637281","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9987789,0.00010810841,0.00002450359,0.00002457935,0.0000020871096,0.0000026370058,0.000020692067,8.011494e-7,0.0010376472],"genre_scores_gemma":[0.99964976,0.000033020795,0.00004638988,0.000007724056,0.0000026118619,0.0000012154931,0.000028325427,6.8809686e-7,0.00023019375],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998523,0.000030010471,0.0000075486864,0.000034927416,0.000020368747,0.000054903074],"domain_scores_gemma":[0.999313,0.0001465591,0.0002338767,0.000030695857,0.00006922064,0.00020672582],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025562814,0.00028473855,0.0003389491,0.0010014551,0.00079049583,0.001435619,0.00052611314,0.00058175664,0.005800142],"category_scores_gemma":[0.0012422897,0.00020324085,0.00016949559,0.00047453796,0.0008805748,0.0011815712,0.0007700444,0.00019190299,0.00032533563],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00080671505,0.00013801358,0.96807534,0.000099705685,0.000097373806,0.0006096389,0.00219804,0.00011967296,0.0098539665,0.00096831756,0.0002980309,0.01673512],"study_design_scores_gemma":[0.0000043019,0.00004502696,0.99625933,0.000013441945,0.000014115709,0.0001264777,0.0029715786,0.000086335305,0.000093533316,0.00013201637,0.00025077641,0.0000029515593],"about_ca_topic_score_codex":0.011458136,"about_ca_topic_score_gemma":0.08157988,"teacher_disagreement_score":0.011458136,"about_ca_system_score_codex":0.00044256574,"about_ca_system_score_gemma":0.0003586438,"threshold_uncertainty_score":0.022782862},"labels":[],"label_agreement":null},{"id":"W4378975275","doi":"10.1016/j.foreco.2023.121137","title":"Modelling height growth of temperate mixedwood forests using an age-independent approach and multi-temporal airborne laser scanning data","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":14,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of British Columbia","funders":"","keywords":"Site index; Environmental science; Mean squared error; Forest management; Temperate rainforest; Forest inventory; Proxy (statistics); Forest ecology; Sustainable forest management; Statistics; Physical geography; Ecology; Mathematics; Geography; Ecosystem; Agroforestry; Forestry","score_opus":0.05136962386383008,"score_gpt":0.2676266113415342,"score_spread":0.2162569874777041,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4378975275","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98171854,0.00018585446,0.01576032,0.00008448708,0.000008141444,0.000021623586,0.0008976401,0.000097785276,0.0012256685],"genre_scores_gemma":[0.9944847,0.00008806654,0.0044705947,0.0000114066215,0.0000037752657,0.000015382582,0.00042525423,0.000012081806,0.000488698],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998393,0.000022581919,0.000010611626,0.0000650895,0.000030789502,0.000031678104],"domain_scores_gemma":[0.9997334,0.00010685488,0.00005805418,0.000020585889,0.000055566376,0.00002562405],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00047093007,0.00046705527,0.00019339417,0.00052777136,0.00032406428,0.000620229,0.0010276038,0.00061093,0.00043532875],"category_scores_gemma":[0.0007294575,0.00034602048,0.0006473656,0.00056301383,0.00036620392,0.00042272624,0.00029055006,0.00035000805,0.00010983738],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00002534058,0.00004891489,0.06897357,0.00003486374,0.000048876373,0.000082005194,0.00010758222,0.92094076,0.0020531383,0.0008697477,0.00016962533,0.006645516],"study_design_scores_gemma":[0.000004002279,0.000007682006,0.021916112,0.000004376695,0.000013158435,0.000015533344,0.000030374376,0.97730994,0.00027339076,0.00016389428,0.00025175035,0.000009807882],"about_ca_topic_score_codex":0.49155396,"about_ca_topic_score_gemma":0.54718834,"teacher_disagreement_score":0.49155396,"about_ca_system_score_codex":0.003158022,"about_ca_system_score_gemma":0.002174335,"threshold_uncertainty_score":0.9773856},"labels":[],"label_agreement":null},{"id":"W4379055537","doi":"10.1016/j.foreco.2023.121136","title":"Post-fire and harvest legacy on soil carbon and microbial communities in boreal forest soils","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta; Mount Royal University; Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Environmental science; Logging; Salvage logging; Taiga; Forest floor; Biomass (ecology); Disturbance (geology); Ecosystem; Forest ecology; Organic matter; Boreal; Ecology; Agroforestry; Soil organic matter; Microbial population biology; Clearcutting; Secondary forest; Soil water; Biology; Soil science","score_opus":0.006506494469748108,"score_gpt":0.20013888667876512,"score_spread":0.193632392209017,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4379055537","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99962616,0.00013656636,0.000017204298,0.0000049445516,0.0000016858547,0.00000285588,0.00008549585,0.0000015247999,0.0001235888],"genre_scores_gemma":[0.999108,0.0001411993,0.0001172807,0.000023818387,0.0000035567678,0.0000050281024,0.00034986847,0.0000012377284,0.00025000848],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983215,0.000016283871,0.000010842495,0.000042596846,0.00004264123,0.00005546454],"domain_scores_gemma":[0.9996463,0.00003484617,0.000092428876,0.000014517444,0.00008132384,0.00013057391],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025832516,0.00028439835,0.00022432375,0.0003286535,0.00045133152,0.00051340635,0.00027423783,0.00020534986,0.00043525366],"category_scores_gemma":[0.00028945738,0.000104637635,0.00019007121,0.00030028838,0.00031551844,0.00024377821,0.00025006323,0.0002090387,0.00006743888],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018912285,0.0005711195,0.8327119,0.00009718707,0.00014999721,0.00042422413,0.00069202145,0.00037217225,0.14771481,0.000051444644,0.00014510636,0.015178734],"study_design_scores_gemma":[0.0000016093236,0.00010945482,0.99915004,0.0000013718541,0.000006787431,0.000021538775,0.00012815066,0.000051454343,0.00046190902,0.000004390477,0.00006133357,0.0000018559484],"about_ca_topic_score_codex":0.14585778,"about_ca_topic_score_gemma":0.37525374,"teacher_disagreement_score":0.14585778,"about_ca_system_score_codex":0.0012159559,"about_ca_system_score_gemma":0.0007516774,"threshold_uncertainty_score":0.2900176},"labels":[],"label_agreement":null},{"id":"W4379931306","doi":"10.1016/j.foreco.2023.121127","title":"Experimental drier climates affect hydraulics and induce high mortality of seedlings of three northern conifer species","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ouranos; Canadian Forest Service; Université Laval; Natural Resources Canada; Centre de Géomatique du Québec; Ministère des Ressources naturelles et des Forêts (Québec)","funders":"","keywords":"Environmental science; Growing season; Temperate climate; Biomass (ecology); Xylem; Climate change; Agronomy; Ecology; Biology; Horticulture","score_opus":0.012076460826388517,"score_gpt":0.21854097927372368,"score_spread":0.20646451844733515,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4379931306","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997718,0.00000858097,0.000027502478,0.000007834551,0.0000024371152,0.0000031741931,0.000029404864,0.0000045693478,0.0001447833],"genre_scores_gemma":[0.99920493,0.000018700182,0.000090445035,0.000041778087,0.0000030857698,0.000016723008,0.00015891623,0.0000113517135,0.0004541727],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99984014,0.000034718432,0.00001269821,0.000032525437,0.000020481593,0.00005928015],"domain_scores_gemma":[0.99921596,0.00021268862,0.00013530893,0.000050785584,0.000037679827,0.00034761397],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023301295,0.00031401496,0.0003752688,0.00026017727,0.000623053,0.00036416925,0.00035751794,0.00034346958,0.0017528298],"category_scores_gemma":[0.00043328563,0.0003068966,0.00017319468,0.00018041016,0.0007381626,0.00036987354,0.00048582244,0.001073428,0.00014474681],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.004013702,0.0013946258,0.04266749,0.00007208238,0.0000638832,0.00032321384,0.0006304844,0.0005893691,0.9468531,0.000270206,0.00028210873,0.0028397217],"study_design_scores_gemma":[0.00020013074,0.0022805321,0.9200851,0.0000082298575,0.000060467944,0.00023439752,0.00082687533,0.0019794286,0.07333883,0.0002464751,0.0007058947,0.000033612694],"about_ca_topic_score_codex":0.0056379642,"about_ca_topic_score_gemma":0.01428382,"teacher_disagreement_score":0.0056379642,"about_ca_system_score_codex":0.0007352711,"about_ca_system_score_gemma":0.00044491992,"threshold_uncertainty_score":0.011210322},"labels":[],"label_agreement":null},{"id":"W4380203715","doi":"10.1016/j.foreco.2023.121158","title":"Horse fly and deer fly (Diptera: Tabanidae) species and abundance following logging in northwestern Ontario","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forensic Entomology and Diptera Studies","field":"Agricultural and Biological Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Forestry; Canadian Forest Service; University of Guelph; Trent University","funders":"","keywords":"Biology; Abundance (ecology); Ecology; Species richness; Taiga; Habitat; Herbivore; Logging; Relative species abundance","score_opus":0.01367490509903866,"score_gpt":0.20573724576222238,"score_spread":0.19206234066318373,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4380203715","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99883896,0.00007238866,0.000016697319,0.000055139026,0.0000025223294,0.000005729039,0.00030930326,0.0000013952096,0.00069790526],"genre_scores_gemma":[0.99678135,0.0001467173,0.000047425216,0.000028517788,0.0000026511284,0.000007973408,0.00034252967,0.0000014495446,0.0026413193],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997985,0.000017933979,0.000010596488,0.00003054253,0.00004892459,0.00009363224],"domain_scores_gemma":[0.9991177,0.00006159424,0.00023895098,0.000021863674,0.00025980067,0.0003001828],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017205057,0.00011075334,0.00013945976,0.0005012842,0.0019617707,0.0005627871,0.00045597152,0.00025162016,0.0020164177],"category_scores_gemma":[0.00073819776,0.00018059157,0.00017531561,0.00087072334,0.0005555072,0.00035372528,0.0006030923,0.00029895292,0.00021535395],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00009263442,0.00003906437,0.99455535,0.000012144179,0.000015918999,0.000151306,0.001872262,0.000060612765,0.00037970822,0.000035102195,0.00044614464,0.0023397529],"study_design_scores_gemma":[0.0000012345081,0.000008583286,0.9979608,0.000005035878,0.0000030708054,0.00002413796,0.00165622,0.000029522202,0.00002162974,0.0000054421957,0.00028269982,0.0000016814627],"about_ca_topic_score_codex":0.96609724,"about_ca_topic_score_gemma":0.9953884,"teacher_disagreement_score":0.033902764,"about_ca_system_score_codex":0.00823067,"about_ca_system_score_gemma":0.0063596847,"threshold_uncertainty_score":0.06820482},"labels":[],"label_agreement":null},{"id":"W4380360374","doi":"10.1016/j.foreco.2023.121161","title":"Climate-mediated lodgepole pine tree growth response to thinning and fertilization in interior British Columbia","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Government of British Columbia","funders":"","keywords":"Thinning; Pinus contorta; Human fertilization; Environmental science; Agronomy; Evapotranspiration; Productivity; Forestry; Biology; Ecology; Geography","score_opus":0.0040311199011234256,"score_gpt":0.1891042517950704,"score_spread":0.18507313189394697,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4380360374","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9989561,0.000073345545,0.000020591217,0.00004201602,0.0000024884991,0.000003888651,0.00020551345,0.0000039504043,0.00069199223],"genre_scores_gemma":[0.99856997,0.00006689576,0.000030278119,0.00003563078,7.271875e-7,0.000004474788,0.00017755957,0.000004171252,0.0011102835],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981374,0.000030426156,0.000008175292,0.000041768195,0.000030919953,0.00007501695],"domain_scores_gemma":[0.9988695,0.00025180614,0.00011835989,0.000043507924,0.00035461926,0.00036224205],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002861398,0.00016944145,0.00025998682,0.00039522632,0.0010387824,0.00075998297,0.0005091594,0.00030269622,0.002071351],"category_scores_gemma":[0.0011286277,0.0001908663,0.00014878187,0.0005818068,0.0004595862,0.00018994059,0.00046089664,0.00042086918,0.00019023348],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014875983,0.00028890214,0.9543916,0.00004216741,0.00012408,0.00040091274,0.0019245446,0.0014492313,0.027032401,0.00017997717,0.0016042538,0.011074191],"study_design_scores_gemma":[0.000004795014,0.0000066293483,0.9989749,0.0000032331177,0.00001113048,0.000009961459,0.0004290047,0.00017424853,0.00017323137,0.000009522547,0.00019947613,0.0000040116224],"about_ca_topic_score_codex":0.9588998,"about_ca_topic_score_gemma":0.9895678,"teacher_disagreement_score":0.041100204,"about_ca_system_score_codex":0.008084444,"about_ca_system_score_gemma":0.005470063,"threshold_uncertainty_score":0.08268446},"labels":[],"label_agreement":null},{"id":"W4381243817","doi":"10.1016/j.foreco.2023.121194","title":"Mapping temperate forest stands using mobile terrestrial LiDAR shows the influence of forest management regimes on tree mortality","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Outaouais","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Forest management; Silviculture; Diameter at breast height; Temperate rainforest; Temperate forest; Context (archaeology); Tree (set theory); Forest ecology; Geography; Ecology; Temperate climate; Forestry; Agroforestry; Environmental science; Biology; Ecosystem; Mathematics","score_opus":0.017094024513184227,"score_gpt":0.24968060099105072,"score_spread":0.23258657647786649,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4381243817","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991474,0.000059036385,0.00028863788,0.000007571863,0.0000014060286,0.0000011945186,0.00009434275,0.0000050517424,0.0003953317],"genre_scores_gemma":[0.9995016,0.000033970664,0.00020158102,0.0000066202733,0.0000018893076,0.0000015998648,0.00009945362,0.0000030257604,0.00015020027],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984396,0.00003870928,0.000007856104,0.000052225125,0.000027880345,0.000029355038],"domain_scores_gemma":[0.9994223,0.0002999918,0.00010768574,0.000039106555,0.00007723009,0.00005376018],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003479661,0.0001448393,0.00014647654,0.00037677202,0.00023213196,0.0003687898,0.00012259342,0.00015439767,0.0009914619],"category_scores_gemma":[0.00074208126,0.00009609554,0.00016216653,0.0003705759,0.000121956815,0.00028472036,0.00018545815,0.00010772673,0.00014450961],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019990312,0.000048946153,0.9511537,0.000023805384,0.0000774732,0.00007666494,0.00020669079,0.0008112795,0.028349956,0.000051949293,0.00014928594,0.018850235],"study_design_scores_gemma":[8.302045e-7,0.000017477225,0.9991848,0.0000013134459,0.0000070521023,0.000023798735,0.000052520227,0.00040473734,0.00023444067,0.000010138839,0.00006150716,0.0000014954901],"about_ca_topic_score_codex":0.00641282,"about_ca_topic_score_gemma":0.023517484,"teacher_disagreement_score":0.00641282,"about_ca_system_score_codex":0.00011133223,"about_ca_system_score_gemma":0.00009966499,"threshold_uncertainty_score":0.012751043},"labels":[],"label_agreement":null},{"id":"W4381274038","doi":"10.1016/j.foreco.2023.121083","title":"Development and growth of young black spruce (Picea mariana) trees under two different hydrological conditions","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":8,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Chicoutimi","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Black spruce; Peat; Root system; Sowing; Taiga; Biology; Water table; Moss; Soil water; Nutrient; Botany; Environmental science; Horticulture; Agronomy; Ecology; Geology","score_opus":0.014921013886856531,"score_gpt":0.22294253760016286,"score_spread":0.20802152371330632,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4381274038","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99972457,0.00005452394,0.000026097407,0.0000013072643,5.9381074e-7,0.000001641407,0.00007578611,0.000002318723,0.00011305362],"genre_scores_gemma":[0.9989598,0.000057810546,0.00016523723,0.0000068988115,0.000001554872,0.0000073473266,0.00029224172,0.0000031044917,0.0005059578],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9999492,0.0000049624973,0.000003117939,0.000022884333,0.000008541194,0.000011238242],"domain_scores_gemma":[0.9998596,0.00002047035,0.000033395092,0.000008357384,0.000020753725,0.000057519577],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00008901597,0.00024799755,0.00012779025,0.00036655916,0.00018282974,0.00023843847,0.00015788244,0.00019216942,0.00031651082],"category_scores_gemma":[0.00011453721,0.00013444835,0.00019731329,0.00014037915,0.00013580383,0.00015933704,0.00020939717,0.00025358782,0.0001669217],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005004041,0.00020579615,0.18475947,0.00007186277,0.00004838512,0.00044467108,0.0006601981,0.0004343106,0.80421966,0.00005056713,0.000052578383,0.008551998],"study_design_scores_gemma":[0.0000017013277,0.00025079263,0.9922936,0.0000021102646,0.000010059411,0.00008696554,0.00011929583,0.00021946047,0.0068460936,0.000009955289,0.00015632434,0.000003556682],"about_ca_topic_score_codex":0.0028017343,"about_ca_topic_score_gemma":0.00474978,"teacher_disagreement_score":0.0028017343,"about_ca_system_score_codex":0.00020455956,"about_ca_system_score_gemma":0.00009381216,"threshold_uncertainty_score":0.005570829},"labels":[],"label_agreement":null},{"id":"W4381549416","doi":"10.1016/j.foreco.2023.121166","title":"Species distribution model identifies influence of climatic constraints on severe defoliation at the leading edge of a native insect outbreak","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Memorial University of Newfoundland","funders":"","keywords":"Spruce budworm; Choristoneura fumiferana; Outbreak; Precipitation; Environmental science; Ecology; Vegetation (pathology); Geography; Physical geography; Biology; Lepidoptera genitalia; Tortricidae; Meteorology","score_opus":0.028465583999686385,"score_gpt":0.25075738737094233,"score_spread":0.22229180337125595,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4381549416","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98877114,0.00007231133,0.0054212194,0.00028268862,0.000018957679,0.000010398774,0.0006482911,0.00009544531,0.0046794335],"genre_scores_gemma":[0.99818665,0.00002165088,0.0004612586,0.000027702887,0.0000051729526,0.000005682948,0.00027680295,0.000016562717,0.0009984769],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998683,0.00003376861,0.000004936466,0.000040189356,0.0000078360545,0.000044937675],"domain_scores_gemma":[0.999313,0.00036277878,0.00007810538,0.000032380558,0.000078076344,0.00013568818],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004686228,0.00031789043,0.00049520517,0.00063244184,0.00049165625,0.0009000028,0.00095917925,0.00078924786,0.0065780296],"category_scores_gemma":[0.0013877711,0.00033112295,0.0007284262,0.00045882547,0.00040279978,0.00064984744,0.0003809157,0.0005618797,0.000336039],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000109232475,0.00005851802,0.037559584,0.000014946271,0.000058643604,0.000118704804,0.000037149843,0.95628744,0.0007428559,0.002345172,0.0008198544,0.0018479431],"study_design_scores_gemma":[0.000027473272,0.00001980776,0.014700449,0.000004840551,0.000018691244,0.000038605802,0.00005557417,0.98386997,0.00008448059,0.0009696222,0.00020289839,0.000007584213],"about_ca_topic_score_codex":0.060364485,"about_ca_topic_score_gemma":0.046497915,"teacher_disagreement_score":0.060364485,"about_ca_system_score_codex":0.00097501173,"about_ca_system_score_gemma":0.00079279364,"threshold_uncertainty_score":0.12002623},"labels":[],"label_agreement":null},{"id":"W4381550279","doi":"10.1016/j.foreco.2023.121184","title":"Coupling dendroecological and remote sensing techniques to assess the biophysical traits of Juniperus virginiana and Pinus ponderosa within the Semi-Arid grasslands of the Nebraska Sandhills","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":5,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"U.S. Forest Service; U.S. Department of Agriculture","keywords":"Environmental science; Grassland; Precipitation; Vegetation (pathology); Arid; Growing season; Dendrochronology; Water content; Pinus <genus>; Woody plant; Forestry; Ecology; Agroforestry; Agronomy; Geography; Biology; Geology; Botany","score_opus":0.019222339496523834,"score_gpt":0.24531847969000625,"score_spread":0.22609614019348243,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4381550279","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99929106,0.00004309709,0.00027566738,0.0000039867546,0.0000015022205,0.0000046658984,0.00010838296,0.000006620722,0.00026492224],"genre_scores_gemma":[0.9988789,0.000036662717,0.0007327647,0.0000039781276,0.0000014076643,0.0000047165577,0.00021072339,0.0000014773539,0.0001294446],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999877,0.000025252219,0.000008259075,0.000041460837,0.000030208166,0.000017886536],"domain_scores_gemma":[0.99969137,0.00005077671,0.00010937865,0.00002013112,0.000070253125,0.000058040834],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030588912,0.00017557641,0.00010909065,0.00058644585,0.00015611925,0.00030153085,0.00014142011,0.000092588474,0.0002579358],"category_scores_gemma":[0.00043330816,0.00009387543,0.00009865457,0.0004750587,0.00007567082,0.00017331362,0.00015687296,0.00010644775,0.000093918236],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00005971964,0.000041798994,0.9775354,0.00001347185,0.00003933031,0.00002198889,0.00013719643,0.00044634732,0.013383742,0.000023320288,0.00005185915,0.008245855],"study_design_scores_gemma":[0.0000014960748,0.000038108,0.9981818,0.0000024803628,0.000006112218,0.000024052299,0.00012708508,0.0009976149,0.00044584944,0.0000092689115,0.0001641967,0.00000191258],"about_ca_topic_score_codex":0.024296883,"about_ca_topic_score_gemma":0.11183241,"teacher_disagreement_score":0.024296883,"about_ca_system_score_codex":0.00031039442,"about_ca_system_score_gemma":0.00024019039,"threshold_uncertainty_score":0.048310935},"labels":[],"label_agreement":null},{"id":"W4381683211","doi":"10.1016/j.foreco.2023.121187","title":"Quantifying long-distance dispersal of an outbreaking insect species using trap capture data and phenology","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"Natural Resources Canada; Natural Sciences and Engineering Research Council of Canada","keywords":"Biological dispersal; Phenology; Spruce budworm; Ecology; Population; Geography; Biology; Lepidoptera genitalia","score_opus":0.04545582141313226,"score_gpt":0.26963764145448793,"score_spread":0.22418182004135567,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4381683211","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99862957,0.000079167476,0.00085159054,0.0000055339187,0.0000011643615,0.000005391362,0.00020717789,0.000007635213,0.00021276377],"genre_scores_gemma":[0.99736816,0.000048344322,0.0019971523,0.000004991317,0.0000021160458,0.0000057684456,0.00043440546,0.0000021193016,0.00013692521],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997856,0.00005564994,0.000022874436,0.00007485633,0.00003095903,0.0000300428],"domain_scores_gemma":[0.99789184,0.00082637405,0.00082188,0.00015199931,0.00016446506,0.00014337798],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007197247,0.00024803774,0.00021235013,0.0011757431,0.0002540367,0.00041008883,0.00028168526,0.00028308306,0.0004974533],"category_scores_gemma":[0.0019083596,0.00020211423,0.00025215282,0.00063420343,0.00013685483,0.0006038233,0.00030224465,0.00015811551,0.000100793266],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000054662505,0.000052706415,0.98652136,0.00002443824,0.00016746199,0.000027386239,0.0000766669,0.0017689662,0.0042533847,0.000038914488,0.000050601535,0.00696358],"study_design_scores_gemma":[0.0000039141037,0.000055153218,0.9881138,0.000007451126,0.00006051737,0.00013984118,0.00010203279,0.010563838,0.00080855103,0.00003241746,0.000106395615,0.0000061701408],"about_ca_topic_score_codex":0.0101140905,"about_ca_topic_score_gemma":0.05131775,"teacher_disagreement_score":0.0101140905,"about_ca_system_score_codex":0.0003407414,"about_ca_system_score_gemma":0.00020107931,"threshold_uncertainty_score":0.020110488},"labels":[],"label_agreement":null},{"id":"W4383955934","doi":"10.1016/j.foreco.2023.121205","title":"Intraspecific trait variation as a mechanism of coexistence of congeneric blueberry (Vaccinium) species after forest harvesting","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"","keywords":"Understory; Vaccinium; Biology; Niche differentiation; Competition (biology); Intraspecific competition; Ecology; Clearcutting; Canopy; Vaccinium myrtillus; Niche","score_opus":0.011669489316786854,"score_gpt":0.21357306637076642,"score_spread":0.20190357705397957,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4383955934","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998233,0.000014077749,0.00005259751,0.0000020994266,7.990319e-7,0.0000010823095,0.000013804962,0.0000017978305,0.00009041586],"genre_scores_gemma":[0.999795,0.000004879658,0.000050821025,0.000004207174,7.879433e-7,0.0000024678486,0.0000355264,0.0000021216117,0.00010418672],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99980086,0.000063180094,0.000011384239,0.000064334294,0.000024322442,0.000035867444],"domain_scores_gemma":[0.99915576,0.00029044398,0.00026055024,0.000084083425,0.000060732487,0.00014836223],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00034766,0.00014756298,0.00024667627,0.00065425003,0.00035205128,0.0005151996,0.00026213983,0.00024647242,0.0009027408],"category_scores_gemma":[0.00085243507,0.00017698461,0.000182817,0.00030806247,0.00032878856,0.00028859184,0.0003257074,0.00034582344,0.000104787905],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016334152,0.0004665838,0.53266907,0.000045545083,0.00033017618,0.0002341611,0.0006936144,0.00037282944,0.45516494,0.00024521776,0.00008690545,0.008057438],"study_design_scores_gemma":[0.000002957665,0.00008243326,0.9978538,8.746185e-7,0.000014652489,0.000043308733,0.00008274004,0.00036993087,0.0014850028,0.000030668023,0.000030170251,0.000003294954],"about_ca_topic_score_codex":0.0013900263,"about_ca_topic_score_gemma":0.0031491707,"teacher_disagreement_score":0.0013900263,"about_ca_system_score_codex":0.00022779753,"about_ca_system_score_gemma":0.000104927094,"threshold_uncertainty_score":0.0030199885},"labels":[],"label_agreement":null},{"id":"W4385356509","doi":"10.1016/j.foreco.2023.121299","title":"Carbon sequestration potential of eight economically important tree species in Northeast China under climate change","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Carbon sequestration; Environmental science; Climate change; Global warming; Ecosystem; Forest ecology; Precipitation; Agroforestry; Climatology; Physical geography; Ecology; Atmospheric sciences; Geography; Carbon dioxide; Biology; Meteorology; Geology","score_opus":0.007656406908544336,"score_gpt":0.1868032423559898,"score_spread":0.17914683544744547,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4385356509","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997826,0.00001930338,0.000021981627,0.000008892006,4.043695e-7,9.094288e-7,0.000058088328,0.0000010883327,0.000106806554],"genre_scores_gemma":[0.999806,0.000011943346,0.00002256218,0.0000025798229,4.208402e-7,0.0000013504826,0.000069020585,3.0886258e-7,0.000085804335],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998722,0.000017774815,0.000011667985,0.000029555089,0.000022754963,0.000045969224],"domain_scores_gemma":[0.9997471,0.00004395383,0.00006795811,0.000015879174,0.000058803314,0.00006640229],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003203435,0.00028371724,0.00024817424,0.0010964266,0.0006940356,0.0003963951,0.00043737108,0.00027800974,0.0005125705],"category_scores_gemma":[0.0002593063,0.00016012586,0.00030590344,0.0011499062,0.00041099289,0.00041057274,0.00036766348,0.00012640104,0.00004316934],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021325401,0.000074938835,0.97899985,0.00004501498,0.00012159053,0.00041351683,0.0008660471,0.003953069,0.007838095,0.00038658458,0.00014018656,0.0069479267],"study_design_scores_gemma":[0.0000056343915,0.00002744448,0.9946234,0.0000021133483,0.000038514692,0.00005193995,0.0005895427,0.003998053,0.00034850504,0.00010315504,0.00020389978,0.000007697335],"about_ca_topic_score_codex":0.053792786,"about_ca_topic_score_gemma":0.123197466,"teacher_disagreement_score":0.053792786,"about_ca_system_score_codex":0.0013423318,"about_ca_system_score_gemma":0.00083163916,"threshold_uncertainty_score":0.10695934},"labels":[],"label_agreement":null},{"id":"W4385471531","doi":"10.1016/j.foreco.2023.121304","title":"Recent decline in sugar maple (Acer saccharum Marsh.) growth extends to the northern parts of its distribution range in eastern Canada","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":23,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Université Laval; Canadian Forest Service; Ministry of Natural Resources and Wildlife; Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"","keywords":"Maple; Aceraceae; Marsh; Range (aeronautics); Distribution (mathematics); Saccharum; Geography; Sugar; Ecology; Biology; Forestry; Botany; Wetland; Mathematics","score_opus":0.01408058553672603,"score_gpt":0.21979370251751934,"score_spread":0.2057131169807933,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4385471531","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9968041,0.00027066108,0.0000733894,0.00026408228,0.000006096464,0.0000032167495,0.00062100013,0.000009088522,0.0019482983],"genre_scores_gemma":[0.9982704,0.00016450704,0.000062434774,0.000046089845,0.0000029280777,0.000001294819,0.00033964077,0.0000018585831,0.0011108284],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99987864,0.000005896411,0.000004255998,0.000018817982,0.0000381036,0.000054158307],"domain_scores_gemma":[0.99929607,0.000036639813,0.000117225274,0.000014363363,0.00036875228,0.00016702036],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020779134,0.000096821735,0.00013884979,0.0005242417,0.0009736411,0.0006719352,0.0004384347,0.00023763189,0.0012629781],"category_scores_gemma":[0.0005701673,0.0000791317,0.00010122719,0.0010179965,0.0005394961,0.0003361795,0.0003108967,0.00029784854,0.000147619],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008400354,0.00004237957,0.98173404,0.00004217499,0.000029907058,0.00013124403,0.0013519267,0.00031950095,0.0029306433,0.00022216362,0.0014813077,0.011630682],"study_design_scores_gemma":[8.692794e-7,0.000003153774,0.9979589,0.0000041161065,0.000004254419,0.000029914729,0.00095830625,0.00012624828,0.00005700602,0.000014602359,0.0008413623,0.0000014021159],"about_ca_topic_score_codex":0.9666104,"about_ca_topic_score_gemma":0.9936334,"teacher_disagreement_score":0.033389628,"about_ca_system_score_codex":0.0052966718,"about_ca_system_score_gemma":0.004782618,"threshold_uncertainty_score":0.06717247},"labels":[],"label_agreement":null},{"id":"W4385697289","doi":"10.1016/j.foreco.2023.121298","title":"Desired REgeneration through Assisted Migration (DREAM): Implementing a research framework for climate-adaptive silviculture","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":40,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval; Ministry of Natural Resources and Wildlife","funders":"","keywords":"Climate change; Silviculture; Environmental resource management; Ecosystem services; Forest management; Agroforestry; Forest ecology; Ecosystem; Adaptive strategies; Environmental science; Ecology; Geography; Biology; Forestry","score_opus":0.049165802468024405,"score_gpt":0.32513754788322513,"score_spread":0.27597174541520075,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4385697289","genre_codex":"methods","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":"methods","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.13100483,0.0039396225,0.6865761,0.05415588,0.0008841629,0.0017755941,0.000303989,0.0005754941,0.120784365],"genre_scores_gemma":[0.74253064,0.0010070702,0.25089663,0.001331755,0.00010331494,0.0008091754,0.00006999444,0.000050809063,0.0032005708],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.98828053,0.00857879,0.00031365367,0.001022091,0.0011212538,0.0006837485],"domain_scores_gemma":[0.98572505,0.0073512387,0.0015264518,0.0018123487,0.0021588595,0.0014260277],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.037229992,0.00075868267,0.0006498521,0.001866251,0.0038125808,0.007919496,0.0044122348,0.0018899045,0.0037062138],"category_scores_gemma":[0.019643962,0.00027568883,0.0008500836,0.0010561328,0.011451921,0.005576746,0.007829934,0.0024326039,0.0002928723],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":"theoretical_or_conceptual","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016057784,0.00052693347,0.010493369,0.00047148904,0.00006993771,0.00007119214,0.0051534153,0.019021578,0.0007001509,0.80656356,0.002383549,0.15438421],"study_design_scores_gemma":[0.000095779316,0.0013305692,0.0075355605,0.0014495399,0.00012294004,0.00017691299,0.025082178,0.09513866,0.002547405,0.8198647,0.046531957,0.00012376811],"about_ca_topic_score_codex":0.007994939,"about_ca_topic_score_gemma":0.021776078,"teacher_disagreement_score":0.037229992,"about_ca_system_score_codex":0.0063013933,"about_ca_system_score_gemma":0.017557723,"threshold_uncertainty_score":0.1968934},"labels":[],"label_agreement":null},{"id":"W4385788459","doi":"10.1016/j.foreco.2023.121334","title":"Testing the response of northern white-cedar to simulated browsing: Evidence of apparent compensatory growth","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"","keywords":"Odocoileus; Clipping (morphology); Growing season; Biology; Environmental science; Dormancy; Agronomy; Ecology","score_opus":0.026735035787638143,"score_gpt":0.2567520733219862,"score_spread":0.23001703753434805,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4385788459","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99981016,0.0000022731374,0.000087456836,0.0000034293573,0.0000014807026,0.0000028940833,0.000019301553,0.0000033249853,0.000069774294],"genre_scores_gemma":[0.99957687,0.0000039342767,0.0001709773,0.000010433712,0.0000010838418,0.000014789369,0.00007157058,0.0000034275665,0.00014694073],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9996228,0.00016325527,0.000031344625,0.00008361133,0.00004751865,0.000051455965],"domain_scores_gemma":[0.99628204,0.0026713782,0.00028986114,0.00029814593,0.0001634852,0.00029502614],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00083098764,0.0004524586,0.00030820875,0.000149346,0.00021792622,0.00037519692,0.0004983221,0.00075615937,0.0012623112],"category_scores_gemma":[0.0038451457,0.00018298792,0.0003060694,0.00010704209,0.0003978877,0.00028322887,0.00028354037,0.000522235,0.00018453789],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.035565645,0.008731745,0.2601516,0.00019823234,0.0007321239,0.00079296227,0.0007298207,0.088033274,0.5923719,0.00046226906,0.0002753801,0.011954952],"study_design_scores_gemma":[0.0013065888,0.028494291,0.61957943,0.00002209772,0.0003722865,0.0007375787,0.0007293905,0.23350403,0.11402108,0.0005406407,0.00060283934,0.00008971805],"about_ca_topic_score_codex":0.0048594736,"about_ca_topic_score_gemma":0.004089662,"teacher_disagreement_score":0.0048594736,"about_ca_system_score_codex":0.00031948247,"about_ca_system_score_gemma":0.00025745155,"threshold_uncertainty_score":0.00966239},"labels":[],"label_agreement":null},{"id":"W4385824791","doi":"10.1016/j.foreco.2023.121330","title":"Tree-ring data reveal trees are suffering from severe drought stress in the humid subtropical forest","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":30,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Pinus massoniana; Cunninghamia; Subtropics; Biology; Growing season; Climate change; Botany; Ecology","score_opus":0.03154016529870514,"score_gpt":0.24656930823836032,"score_spread":0.2150291429396552,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4385824791","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996389,0.000017913375,0.00003539718,0.000012745405,8.57477e-7,9.587511e-7,0.00007395349,0.0000019260767,0.0002173591],"genre_scores_gemma":[0.99974746,0.000017975683,0.000039615108,0.00001224524,0.0000023942332,7.854181e-7,0.000111227346,5.9951685e-7,0.00006774305],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99992347,0.000013055961,0.000006919383,0.0000141039145,0.00001797619,0.000024454494],"domain_scores_gemma":[0.9997178,0.00004396335,0.0001060852,0.000019604913,0.000043875898,0.00006872184],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024836764,0.0000998029,0.0001382736,0.00030578562,0.0002713227,0.00031014622,0.00011364489,0.00018452153,0.00077382533],"category_scores_gemma":[0.00048248377,0.00006456006,0.00008424118,0.00038909036,0.00013610018,0.00022548212,0.00021123038,0.0001388948,0.000101445774],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000120400255,0.000029654804,0.98203385,0.0000144047535,0.000038889422,0.000102487444,0.00027366081,0.00017956599,0.012844249,0.000027688067,0.0001175235,0.004217528],"study_design_scores_gemma":[7.048231e-7,0.0000115588555,0.99938464,5.5280213e-7,0.0000047531366,0.000035238216,0.00018963682,0.00010794263,0.00018193557,0.00001077597,0.00007139091,8.100713e-7],"about_ca_topic_score_codex":0.0061061857,"about_ca_topic_score_gemma":0.023726847,"teacher_disagreement_score":0.0061061857,"about_ca_system_score_codex":0.00013603867,"about_ca_system_score_gemma":0.00011167715,"threshold_uncertainty_score":0.012141287},"labels":[],"label_agreement":null},{"id":"W4385977011","doi":"10.1016/j.foreco.2023.121327","title":"Urban forests support natural regeneration of cloud forest trees and shrubs, albeit with limited occurrence of late-successional species","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":12,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"W. Garfield Weston Foundation; Garfield Weston Foundation","keywords":"Cloud forest; Species richness; Ecology; Shrub; Urban forest; Biodiversity; Vegetation (pathology); Abundance (ecology); Regeneration (biology); Geography; Species diversity; Biology; Agroforestry","score_opus":0.007842741988786834,"score_gpt":0.21496377379383874,"score_spread":0.2071210318050519,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4385977011","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98774624,0.0002865053,0.0010724925,0.00003075787,0.0000063868347,0.00002383564,0.00045690712,0.00005117297,0.010325702],"genre_scores_gemma":[0.9981589,0.00013562909,0.00047040157,0.000012681115,0.00000557581,0.000005782215,0.00026930246,0.000008061484,0.00093361305],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981457,0.0000311487,0.000011310721,0.00002995621,0.000039507973,0.00007362767],"domain_scores_gemma":[0.9990847,0.00017456192,0.00033784623,0.000069322145,0.00013785578,0.00019574953],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028958326,0.00021317536,0.00023584352,0.00100578,0.0008060176,0.00065188645,0.0003280434,0.000097539734,0.007360423],"category_scores_gemma":[0.0004941671,0.00012321856,0.00012256655,0.0011658652,0.00036749005,0.00038093785,0.0004980673,0.00012649206,0.00075743656],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00036716764,0.0002978102,0.8702147,0.00042408827,0.00014902935,0.00035075666,0.0017403801,0.00086284854,0.023129782,0.002176954,0.0017624198,0.09852408],"study_design_scores_gemma":[0.0000054240595,0.00004427949,0.9932047,0.000016200604,0.0000140053,0.00024220448,0.0010812595,0.00022355246,0.0007914613,0.0002443002,0.0041272454,0.0000052845544],"about_ca_topic_score_codex":0.008143467,"about_ca_topic_score_gemma":0.07775803,"teacher_disagreement_score":0.008143467,"about_ca_system_score_codex":0.0003059253,"about_ca_system_score_gemma":0.00036650937,"threshold_uncertainty_score":0.024623096},"labels":[],"label_agreement":null},{"id":"W4386018701","doi":"10.1016/j.foreco.2023.121370","title":"Signs of rapid evolution in an invasive forest species: Drivers of the incipient neutral, adaptive and phenotypic divergence","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Genetic diversity and population structure","field":"Biochemistry, Genetics and Molecular Biology","cited_by":3,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Memorial University of Newfoundland","funders":"","keywords":"Biology; Range (aeronautics); Genetic diversity; Genetic drift; Inbreeding depression; Pinus radiata; Invasive species; Ecology; Genetic divergence; Selection (genetic algorithm); Evolutionary biology; Population; Inbreeding; Genetic variation; Genetics; Gene","score_opus":0.014321545719799893,"score_gpt":0.21256813606410724,"score_spread":0.19824659034430733,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4386018701","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99955195,0.000067542554,0.00012340274,0.000012200746,9.3173173e-7,0.0000015901735,0.000026987473,0.0000032244945,0.0002121363],"genre_scores_gemma":[0.9997553,0.000027600898,0.000097136355,0.0000071563873,0.0000026323137,0.0000020812615,0.000039407118,0.0000016025695,0.000066942026],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998016,0.000034908397,0.000015320655,0.0000777886,0.000040131446,0.00003021548],"domain_scores_gemma":[0.999273,0.00022487885,0.00025205323,0.000043463075,0.00006175381,0.0001449311],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037926232,0.00024606223,0.0001909149,0.00067824766,0.00026101831,0.00048865296,0.00020298734,0.00027572512,0.0011057399],"category_scores_gemma":[0.00075572025,0.00013633892,0.0001951208,0.0004031807,0.00037465146,0.00036145444,0.00040084773,0.00039785032,0.0000831305],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003376968,0.000083985666,0.8420849,0.00006996697,0.00013232612,0.00036840866,0.0005693531,0.0002901951,0.14764668,0.00025218236,0.000038917053,0.0081253685],"study_design_scores_gemma":[0.0000025179716,0.00004593143,0.9985215,0.0000017986672,0.000012481998,0.00018555754,0.00016020746,0.00029228823,0.00066291844,0.000051052273,0.000060263035,0.000003549771],"about_ca_topic_score_codex":0.00078927085,"about_ca_topic_score_gemma":0.0017355228,"teacher_disagreement_score":0.0011057399,"about_ca_system_score_codex":0.00016250923,"about_ca_system_score_gemma":0.00014769813,"threshold_uncertainty_score":0.0036990047},"labels":[],"label_agreement":null},{"id":"W4386175898","doi":"10.1016/j.foreco.2023.121362","title":"Soil disturbance, amelioration and rehabilitation affect forest growth, health, soil carbon and chemistry on five long-term soil productivity (LTSP) sites in southeastern British Columbia","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bioenergy crop production and management","field":"Agricultural and Biological Sciences","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Forest floor; Soil carbon; Environmental science; Agronomy; Tree health; Productivity; Soil organic matter; Soil water; Ecology; Biology; Soil science","score_opus":0.007330901976591086,"score_gpt":0.20605295049981856,"score_spread":0.19872204852322747,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4386175898","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999653,0.000018890272,0.000015890797,0.000008459103,5.5641436e-7,0.000003841314,0.00014989502,0.000001569781,0.00014788401],"genre_scores_gemma":[0.99889284,0.000024844658,0.000059556907,0.000012635829,4.559428e-7,0.000005722926,0.00030974176,0.0000010633308,0.0006931283],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997389,0.00005580438,0.000017395167,0.000043487984,0.000058133443,0.00008625308],"domain_scores_gemma":[0.99924433,0.00010823494,0.0000989607,0.000029390445,0.00028312983,0.00023596243],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027250667,0.00021026006,0.0002725337,0.0004544088,0.0012794561,0.0006630768,0.0006775399,0.00032609177,0.0012468855],"category_scores_gemma":[0.00065247103,0.00020796675,0.00019304559,0.0007533295,0.0006688687,0.0002286444,0.0005338297,0.00033644788,0.0001859637],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00029356816,0.00017219313,0.989007,0.000019136345,0.0000829498,0.00023868239,0.0009279043,0.0003065912,0.0031877235,0.000019983334,0.00036000306,0.005384429],"study_design_scores_gemma":[0.0000029533517,0.000022545046,0.9987828,0.000002859627,0.000011077969,0.000027879665,0.0007947232,0.00013642512,0.00011352822,0.0000033599915,0.00009962065,0.000002161883],"about_ca_topic_score_codex":0.9003308,"about_ca_topic_score_gemma":0.97786546,"teacher_disagreement_score":0.09966922,"about_ca_system_score_codex":0.004307841,"about_ca_system_score_gemma":0.0023192281,"threshold_uncertainty_score":0.20051235},"labels":[],"label_agreement":null},{"id":"W4386491393","doi":"10.1016/j.foreco.2023.121347","title":"Decadal impacts of wildfire fuel reduction treatments on ecosystem characteristics and fire behavior in alaskan boreal forests","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":14,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Yukon University","funders":"Pacific Northwest Research Station; U.S. Bureau of Land Management; Strategic Environmental Research and Development Program; U.S. Forest Service; National Science Foundation","keywords":"Understory; Environmental science; Thinning; Deciduous; Black spruce; Boreal; Taiga; Dominance (genetics); Ecosystem; Prescribed burn; Disturbance (geology); Fire regime; Vegetation (pathology); Ecology; Agroforestry; Canopy; Biology","score_opus":0.019462474953500862,"score_gpt":0.24641807968742316,"score_spread":0.2269556047339223,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4386491393","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994155,0.00007384161,0.000029147703,0.000018944265,0.000007165911,9.67422e-7,0.00018389581,0.0000027478322,0.00026783874],"genre_scores_gemma":[0.9993254,0.000033571923,0.000032977827,0.000019508365,0.0000026889638,0.0000027837395,0.00023695106,0.0000011993972,0.0003448905],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986565,0.000029483108,0.000012742339,0.000039575756,0.000017789027,0.000034780896],"domain_scores_gemma":[0.9994862,0.00013025317,0.00015683941,0.000043159143,0.000086713546,0.00009685244],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00055558374,0.00018122654,0.00016249839,0.00028396375,0.00041222555,0.00041936338,0.00018825242,0.00027604867,0.0015079445],"category_scores_gemma":[0.000706584,0.00009715163,0.00031725038,0.00017829357,0.00023517707,0.0004698112,0.0003635225,0.00036297223,0.00009644889],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018701367,0.0005445471,0.97670585,0.00002939922,0.00043930573,0.0001262403,0.00043204517,0.00272205,0.004195922,0.00012672303,0.0004660293,0.01234179],"study_design_scores_gemma":[0.000004101637,0.000088516346,0.9986761,0.0000039149736,0.00004161902,0.000016723485,0.00033828814,0.00039438758,0.00023840842,0.000038307062,0.00015524335,0.0000042690967],"about_ca_topic_score_codex":0.024276836,"about_ca_topic_score_gemma":0.09405805,"teacher_disagreement_score":0.024276836,"about_ca_system_score_codex":0.00058037654,"about_ca_system_score_gemma":0.0002701315,"threshold_uncertainty_score":0.04827106},"labels":[],"label_agreement":null},{"id":"W4386952233","doi":"10.1016/j.foreco.2023.121432","title":"A review of wildfires effects across the Gran Chaco region","year":2023,"lang":"en","type":"review","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":29,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Government of Canada","keywords":"Geography; Biodiversity hotspot; Wildlife; Biodiversity; Fire regime; Ecology; Fire ecology; Land use; Agroforestry; Physical geography; Environmental science; Ecosystem; Biology","score_opus":0.017293261808128683,"score_gpt":0.28921781919721723,"score_spread":0.27192455738908855,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4386952233","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.00014374038,0.9991689,0.000027753058,0.00010480129,0.00009676649,0.0000031148195,0.00005358993,0.0000037208115,0.0003976841],"genre_scores_gemma":[0.0006207263,0.99899536,0.00006598359,0.000067278015,0.000054597145,0.0000027915041,0.000045252615,9.626511e-7,0.00014712272],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.99978167,0.00003662746,0.00005919319,0.000041613705,0.00006346397,0.0000174149],"domain_scores_gemma":[0.9993193,0.00037068178,0.00013954533,0.000013881893,0.00012325337,0.000033373897],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00062319735,0.0007917522,0.0012695234,0.0037866803,0.00028835505,0.0009851467,0.00072786695,0.0006182666,0.0040399903],"category_scores_gemma":[0.0013216295,0.00025593126,0.001125027,0.0051525226,0.00023733411,0.00084026303,0.00047875612,0.0007324905,0.00068745145],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00011080052,0.000061631916,0.00067781244,0.12691152,0.00046932898,0.00014150454,0.00014615004,0.00041179953,0.00074329803,0.0015271548,0.032303326,0.83649564],"study_design_scores_gemma":[0.000025492816,0.00016557239,0.007362114,0.061387613,0.001504981,0.0011945543,0.00019740441,0.00009665288,0.00039727197,0.0010587496,0.9265724,0.00003719569],"about_ca_topic_score_codex":0.0048495755,"about_ca_topic_score_gemma":0.009816095,"teacher_disagreement_score":0.0048495755,"about_ca_system_score_codex":0.0006583033,"about_ca_system_score_gemma":0.0018739089,"threshold_uncertainty_score":0.013515174},"labels":[],"label_agreement":null},{"id":"W4387387939","doi":"10.1016/j.foreco.2023.121458","title":"Successful forest restoration using plantation at high deer density: How neighboring vegetation drives browsing pressure and tree growth","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Canadian Wood Council; Center for Northern Studies; Université Laval","funders":"","keywords":"Abies balsamea; Odocoileus; Fencing; Balsam; Understory; Ecology; Ungulate; Forest management; Vegetation (pathology); Forestry; Environmental science; Geography; Biology; Habitat; Canopy; Botany","score_opus":0.010299301965889091,"score_gpt":0.20500516563876342,"score_spread":0.19470586367287432,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4387387939","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99965453,0.0000514548,0.00007942336,0.0000071655472,6.7254376e-7,0.0000021255378,0.000029491279,0.0000016873954,0.00017339583],"genre_scores_gemma":[0.9995758,0.000029969227,0.000141265,0.000009121463,0.0000011283119,0.0000034856453,0.000056254394,9.533315e-7,0.00018210996],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998629,0.000024238203,0.0000062022614,0.000046881392,0.000024288369,0.000035497953],"domain_scores_gemma":[0.9997651,0.000034083707,0.000078811136,0.000010670708,0.000027193006,0.000084245024],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002157105,0.00015335476,0.00016850166,0.00022838732,0.0002817148,0.0004763045,0.00015830257,0.00016556102,0.00081259536],"category_scores_gemma":[0.00035031265,0.0000839761,0.00014023426,0.00020547461,0.00021966791,0.0002335423,0.00020286119,0.00023646228,0.000094088726],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001446436,0.0001865204,0.9694333,0.000022600598,0.000052781004,0.00009048743,0.00028497438,0.00016532546,0.023126658,0.000043756114,0.00007140466,0.006377497],"study_design_scores_gemma":[5.3471115e-7,0.000034596553,0.9992418,0.0000015971109,0.0000059353224,0.00002495318,0.00013115043,0.00023276199,0.00026537522,0.000008605884,0.000051146628,0.0000015661751],"about_ca_topic_score_codex":0.024243122,"about_ca_topic_score_gemma":0.0866156,"teacher_disagreement_score":0.024243122,"about_ca_system_score_codex":0.00046099356,"about_ca_system_score_gemma":0.00038302183,"threshold_uncertainty_score":0.048204005},"labels":[],"label_agreement":null},{"id":"W4387468656","doi":"10.1016/j.foreco.2023.121483","title":"Heavy browsing pressure by moose (Alces alces) can interfere with the objectives of ecosystem-based forest management","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; Université Laval; Center for Northern Studies","funders":"","keywords":"Ecosystem; Forest ecology; Forest management; Biodiversity; Ecosystem services; Ecology; Deciduous; Taiga; Environmental science; Regeneration (biology); Logging; Ecosystem management; Agroforestry; Biology","score_opus":0.004083972926850711,"score_gpt":0.19845430008391246,"score_spread":0.19437032715706176,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4387468656","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99849534,0.000058782472,0.00015025283,0.000016906974,0.0000022497336,0.0000035329201,0.000019428078,0.000009687493,0.0012437688],"genre_scores_gemma":[0.99897885,0.000056234687,0.0003239643,0.000039886825,0.0000042195447,0.000007886395,0.0000502899,0.0000052463124,0.00053351314],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999788,0.0000807041,0.0000124092785,0.00003209777,0.00003283589,0.00005392679],"domain_scores_gemma":[0.9989072,0.000356112,0.00030253862,0.00008961115,0.000061555314,0.00028286537],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004014179,0.0002213307,0.00018548236,0.00033700067,0.00040868873,0.0006029305,0.00022977493,0.00030778386,0.0012971979],"category_scores_gemma":[0.00085730944,0.00012909019,0.00013164771,0.00024107391,0.00032179285,0.00023584352,0.0005542815,0.00035928405,0.0001571399],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0013402964,0.0010536633,0.647919,0.00012667465,0.00023904431,0.00109865,0.0007732467,0.0008011568,0.30911475,0.000834022,0.00071068376,0.035988804],"study_design_scores_gemma":[0.000019642677,0.00075644493,0.986264,0.000016139053,0.0000617546,0.00070840406,0.0005646484,0.0015010794,0.008157554,0.00052717014,0.0014063107,0.00001687939],"about_ca_topic_score_codex":0.0028804974,"about_ca_topic_score_gemma":0.010850291,"teacher_disagreement_score":0.0028804974,"about_ca_system_score_codex":0.00019603605,"about_ca_system_score_gemma":0.00031521503,"threshold_uncertainty_score":0.00572747},"labels":[],"label_agreement":null},{"id":"W4387652227","doi":"10.1016/j.foreco.2023.121462","title":"Short-term effect of thinning on inter- and intra-annual radial increment in Mediterranean Scots pine-oak mixed forests","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":12,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Agencia Estatal de Meteorología; Agencia Estatal de Investigación; European Regional Development Fund; Universidad de Valladolid; Banco Santander; Ministerio de Ciencia e Innovación; European Commission","keywords":"Thinning; Scots pine; Basal area; Pinus <genus>; Mediterranean climate; Environmental science; Forestry; Climate change; Ecology; Biology; Geography; Botany","score_opus":0.006750832144705081,"score_gpt":0.2233224916166751,"score_spread":0.21657165947197002,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4387652227","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99978167,0.00009784235,0.000024374778,0.0000017945696,0.0000017747366,0.0000014206602,0.000025101432,0.00000200833,0.000064042906],"genre_scores_gemma":[0.9995763,0.000054588796,0.000116438205,0.00001118654,0.0000035199675,0.000005675706,0.00012259262,0.0000022578379,0.00010741357],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997266,0.00007932575,0.00003014759,0.00008634593,0.000037565827,0.000040048915],"domain_scores_gemma":[0.99921715,0.00020406899,0.00025650355,0.00007743546,0.00009968336,0.00014515856],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00071268063,0.00027928414,0.00027551648,0.00022586448,0.00013342191,0.00027781024,0.00022482863,0.0001483662,0.00031856517],"category_scores_gemma":[0.0007459078,0.000090540154,0.00025036142,0.00014166413,0.0001706476,0.00016727383,0.00015227648,0.00015645754,0.00007197734],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.005226227,0.0008844979,0.7888152,0.00018051715,0.00044475676,0.0002935455,0.00034147614,0.0022352347,0.17325176,0.000060836657,0.00025218885,0.028013784],"study_design_scores_gemma":[0.000008755531,0.00047648055,0.99720544,0.000003612918,0.000028981634,0.000024104971,0.00005713256,0.000523463,0.0015367903,0.00001087538,0.00012129941,0.0000030605931],"about_ca_topic_score_codex":0.0031785304,"about_ca_topic_score_gemma":0.009822344,"teacher_disagreement_score":0.0031785304,"about_ca_system_score_codex":0.00033734494,"about_ca_system_score_gemma":0.00018464541,"threshold_uncertainty_score":0.0063200593},"labels":[],"label_agreement":null},{"id":"W4388063534","doi":"10.1016/j.foreco.2023.121509","title":"Optimization and validation of universal response functions for interior spruce (Picea glauca, Picea engelmannii, and their hybrids)","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Climate change; Picea abies; Population; Environmental science; Ecology; Biology","score_opus":0.007146393402062057,"score_gpt":0.20539555857328123,"score_spread":0.19824916517121918,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4388063534","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8368957,0.0006823547,0.1598004,0.000091487345,0.000028521987,0.00007524596,0.00021324905,0.00046031538,0.0017527752],"genre_scores_gemma":[0.9818118,0.00006955404,0.017442815,0.00001806411,0.000002879176,0.000054572403,0.00019561814,0.000039291062,0.0003653091],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99892694,0.0005963524,0.000057565645,0.00017953318,0.000118239775,0.00012141336],"domain_scores_gemma":[0.99618536,0.002774907,0.00022057704,0.00024466185,0.0005059856,0.00006857103],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.005333513,0.0010360996,0.00060729985,0.00078834407,0.00035393526,0.00065387134,0.000613016,0.0009950418,0.0008104885],"category_scores_gemma":[0.005319063,0.00023136368,0.0009361049,0.00041691063,0.00060267944,0.0005156008,0.00091695524,0.00067894877,0.00016090796],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005743548,0.00033755545,0.0045027873,0.00025320062,0.000112683105,0.000045423356,0.00012624206,0.9122478,0.015384641,0.0012836572,0.0003729679,0.064758696],"study_design_scores_gemma":[0.000015545746,0.00027232984,0.002584088,0.000011999482,0.000018660518,0.000011792984,0.00005078636,0.9895885,0.006904554,0.00031015382,0.00022200431,0.00000954912],"about_ca_topic_score_codex":0.004061644,"about_ca_topic_score_gemma":0.0019339584,"teacher_disagreement_score":0.005333513,"about_ca_system_score_codex":0.0006420947,"about_ca_system_score_gemma":0.00064846623,"threshold_uncertainty_score":0.028206646},"labels":[],"label_agreement":null},{"id":"W4388256744","doi":"10.1016/j.foreco.2023.121487","title":"Unburnt refugia support post-fire population recovery of a threatened arboreal marsupial, Leadbeater’s possum","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Occupancy; Threatened species; Ecology; Geography; Habitat; Endangered species; Population; Context (archaeology); Fire ecology; Forest management; Fire regime; Ecosystem; Forestry; Biology; Archaeology; Demography","score_opus":0.006155599582496233,"score_gpt":0.21292106124583846,"score_spread":0.20676546166334223,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4388256744","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9989096,0.00002779575,0.000027226177,0.000084415384,0.0000067935935,0.0000014863576,0.000019404431,0.0000034490206,0.00091981026],"genre_scores_gemma":[0.99961424,0.000023382752,0.000037935715,0.00004217337,0.0000055589985,0.000001680366,0.000030500174,0.0000016504991,0.00024283963],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986744,0.00003702703,0.0000054331854,0.000023615316,0.000016691667,0.000049704773],"domain_scores_gemma":[0.9985051,0.00024225161,0.00050964684,0.00010794147,0.000114781746,0.00052027934],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00043242986,0.00014438551,0.00014213717,0.00032989474,0.00055623037,0.00053251145,0.00034906785,0.00030721453,0.0052431445],"category_scores_gemma":[0.002341969,0.00011069295,0.00011623536,0.0001152701,0.00041276368,0.00036367448,0.00058971584,0.00039828368,0.00031822245],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00084492326,0.00048271968,0.91937345,0.00009387597,0.00019110779,0.0010295751,0.0016600479,0.0005891597,0.038938463,0.0007656357,0.002054964,0.033975977],"study_design_scores_gemma":[0.000011622205,0.00018896798,0.99619615,0.000010668086,0.00002969765,0.00017199513,0.001261217,0.0007620597,0.00041101177,0.00016810317,0.0007834175,0.000005091806],"about_ca_topic_score_codex":0.006576587,"about_ca_topic_score_gemma":0.025629815,"teacher_disagreement_score":0.006576587,"about_ca_system_score_codex":0.00027368567,"about_ca_system_score_gemma":0.0002048168,"threshold_uncertainty_score":0.017540097},"labels":[],"label_agreement":null},{"id":"W4388516193","doi":"10.1016/j.foreco.2023.121521","title":"Snag dynamics and surface fuel loads in the Sierra Nevada: Predicting the impact of the 2012–2016 drought","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":11,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia","funders":"California Department of Forestry and Fire Protection; Division of Agriculture and Natural Resources, University of California; U.S. Geological Survey; National Park Service; University of California","keywords":"Snag; Coarse woody debris; Debris; Environmental science; Ecosystem; Ecology; Canyon; Litter; Biomass (ecology); Forestry; Geography; Physical geography; Forest ecology; Habitat; Biology","score_opus":0.004888504540900557,"score_gpt":0.21610850057745226,"score_spread":0.2112199960365517,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4388516193","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99722004,0.00013433183,0.0001864833,0.00007688682,0.000008768144,0.000006862618,0.0016056991,0.000018574927,0.00074230693],"genre_scores_gemma":[0.99563545,0.00015015103,0.0004363841,0.00002711655,0.000008242963,0.000015397327,0.0033973006,0.000005557981,0.00032444875],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99989223,0.000019173754,0.000009044628,0.0000353607,0.00001782904,0.000026230096],"domain_scores_gemma":[0.99966574,0.000047007252,0.00007332712,0.00001622078,0.00011099214,0.00008684466],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005119082,0.0002886868,0.00016474248,0.0006200372,0.00026094515,0.0006930359,0.0003491592,0.00027154502,0.0007445904],"category_scores_gemma":[0.00079968036,0.00012354103,0.00024862375,0.0005058419,0.00012733933,0.00039204102,0.00037599073,0.00030868515,0.00017618887],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000019892797,0.000031764903,0.9943878,0.000009159412,0.000018809567,0.000042234115,0.0000820378,0.0022783922,0.0001304158,0.000043551256,0.00064993463,0.002305967],"study_design_scores_gemma":[0.0000071012514,0.00002046761,0.9813921,0.000025301428,0.000020643196,0.000027936023,0.0008516562,0.01575163,0.000090932335,0.000113652204,0.001691843,0.0000068344966],"about_ca_topic_score_codex":0.2117812,"about_ca_topic_score_gemma":0.3875234,"teacher_disagreement_score":0.2117812,"about_ca_system_score_codex":0.0007904039,"about_ca_system_score_gemma":0.0007060499,"threshold_uncertainty_score":0.42109698},"labels":[],"label_agreement":null},{"id":"W4388602275","doi":"10.1016/j.foreco.2023.121562","title":"Harvest block aggregation as a driver of intensive moose browsing pressure on hardwood regeneration in a temperate forest","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec à Rimouski","funders":"Natural Sciences and Engineering Research Council of Canada; Mitacs","keywords":"Forage; Ecology; Regeneration (biology); Ecological succession; Vegetation (pathology); Hardwood; Geography; Environmental science; Grazing pressure; Forestry; Physical geography; Grazing; Biology","score_opus":0.009245368248625853,"score_gpt":0.21418445942189035,"score_spread":0.2049390911732645,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4388602275","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997806,0.00002015872,0.000017185735,0.00000853311,7.917214e-7,6.384385e-7,0.000018687488,0.0000010034436,0.00015229717],"genre_scores_gemma":[0.99983656,0.0000069605157,0.000012988885,0.0000050757667,0.0000025467075,7.269401e-7,0.00001977654,8.8569516e-7,0.000114416966],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99964154,0.000108775486,0.000019315718,0.00008504729,0.00003394835,0.000111420784],"domain_scores_gemma":[0.9979388,0.00067959947,0.0005348332,0.00011811099,0.0000853797,0.00064317783],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006864082,0.0001414104,0.00024025749,0.0005932652,0.0005151645,0.00097362546,0.00036247465,0.0004373115,0.0031119727],"category_scores_gemma":[0.0013748582,0.00017428075,0.0003764681,0.00040161808,0.0005538669,0.00039104666,0.00069013226,0.00039236818,0.00023200829],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014642239,0.000052661962,0.99723417,0.000004088082,0.00006758197,0.00008684005,0.00021308943,0.00011843259,0.0010558048,0.0000645724,0.000047385845,0.0009090394],"study_design_scores_gemma":[0.0000016209493,0.000021624019,0.99922407,0.0000017654403,0.000012525719,0.00002677868,0.00028491934,0.00035130308,0.000023383347,0.000021159005,0.000029253193,0.0000015749707],"about_ca_topic_score_codex":0.01794992,"about_ca_topic_score_gemma":0.047702283,"teacher_disagreement_score":0.01794992,"about_ca_system_score_codex":0.00027421745,"about_ca_system_score_gemma":0.00040322164,"threshold_uncertainty_score":0.035690844},"labels":[],"label_agreement":null},{"id":"W4388750444","doi":"10.1016/j.foreco.2023.121584","title":"Natural seeding as an alternative to planting in black spruce-lichen woodlands","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts (Québec); Université du Québec à Chicoutimi","funders":"Fonds de recherche du Québec – Nature et technologies; Natural Sciences and Engineering Research Council of Canada","keywords":"Scarification; Woodland; Afforestation; Agroforestry; Environmental science; Taiga; Reforestation; Sowing; Black spruce; Lichen; Ecology; Germination; Agronomy; Biology","score_opus":0.015792429104107816,"score_gpt":0.2441909476882048,"score_spread":0.228398518584097,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4388750444","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99734086,0.00018768727,0.00026274772,0.000041150426,0.000013174611,0.000034323333,0.000023043794,0.000022415665,0.0020745243],"genre_scores_gemma":[0.9978454,0.00009661952,0.0013552444,0.00001558954,0.000008031491,0.00001541203,0.000030433719,0.0000023174478,0.00063091505],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.9997712,0.00009843705,0.000008949057,0.00003928935,0.000031748896,0.00005043751],"domain_scores_gemma":[0.9993218,0.00015851007,0.00009840734,0.000044545537,0.000031490425,0.0003453097],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004995017,0.00019084355,0.00016344382,0.00046762615,0.0006598306,0.00038763555,0.00057979434,0.00023595666,0.003302118],"category_scores_gemma":[0.00077026157,0.000085902626,0.00011875807,0.00030752606,0.0003001756,0.00029329842,0.0003383829,0.0001672145,0.0001815865],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.017479064,0.016772062,0.24628149,0.000848527,0.00017440034,0.0036740769,0.002181405,0.011000488,0.10677045,0.0034103347,0.0027342234,0.5886734],"study_design_scores_gemma":[0.0011218286,0.028107047,0.9273642,0.00021420766,0.00018496416,0.0016410337,0.003185263,0.016625587,0.01036646,0.0028563326,0.008267031,0.0000659861],"about_ca_topic_score_codex":0.00934137,"about_ca_topic_score_gemma":0.08350483,"teacher_disagreement_score":0.00934137,"about_ca_system_score_codex":0.00053084467,"about_ca_system_score_gemma":0.0010558813,"threshold_uncertainty_score":0.018574},"labels":[],"label_agreement":null},{"id":"W4388750454","doi":"10.1016/j.foreco.2023.121559","title":"Shading and species diversity act as safety nets for seedling survival and vitality of native trees in dryland forests: Implications for restoration","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Outaouais; Université du Québec à Montréal","funders":"","keywords":"Seedling; Shrub; Species richness; Shading; Vitality; Biology; Forest restoration; Restoration ecology; Agroforestry; Ecology; Agronomy; Forest ecology; Ecosystem","score_opus":0.02247812267066845,"score_gpt":0.2686908583845113,"score_spread":0.24621273571384283,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4388750454","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990839,0.000059780286,0.00019816979,0.00004918879,0.0000028826053,0.000003359412,0.000020274227,0.0000035041828,0.00057889975],"genre_scores_gemma":[0.9996222,0.000015506717,0.00014235907,0.000023329703,0.0000032903338,0.0000026080813,0.00001814661,0.0000019090066,0.00017057937],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999587,0.00022270523,0.000022121618,0.00006854687,0.00004225709,0.000057332396],"domain_scores_gemma":[0.9946234,0.0027070164,0.00124517,0.00031188768,0.00024472314,0.00086774136],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0013787617,0.00024387121,0.00031100787,0.00042950746,0.00065628526,0.000898848,0.000539229,0.00043809193,0.0023301677],"category_scores_gemma":[0.004294043,0.00024300592,0.0002918772,0.00020783256,0.0013351656,0.0006691779,0.0006865063,0.00042796973,0.00010935362],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00075747614,0.00022447568,0.9801672,0.000050175502,0.00015314877,0.00009019471,0.0003144972,0.0012639137,0.0075496756,0.0006933408,0.000221672,0.008514223],"study_design_scores_gemma":[0.000014351971,0.0001447612,0.9963812,0.0000050057697,0.00004975882,0.000044303157,0.00039041176,0.0019448231,0.0002806914,0.0006110895,0.00012756893,0.000006068817],"about_ca_topic_score_codex":0.0048444304,"about_ca_topic_score_gemma":0.0234208,"teacher_disagreement_score":0.0048444304,"about_ca_system_score_codex":0.0006138737,"about_ca_system_score_gemma":0.0005832412,"threshold_uncertainty_score":0.009632468},"labels":[],"label_agreement":null},{"id":"W4389216138","doi":"10.1016/j.foreco.2023.121600","title":"Assessing soil carbon dynamics following mechanical site preparation in boreal lichen woodlands of Québec, Canada","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministère des Ressources naturelles et des Forêts (Québec); Université du Québec à Chicoutimi","funders":"","keywords":"Humus; Soil horizon; Environmental science; Soil water; Boreal; Reforestation; Soil carbon; Agronomy; Forestry; Soil science; Ecology; Agroforestry; Biology; Geography","score_opus":0.008845003486794477,"score_gpt":0.2249765563808308,"score_spread":0.21613155289403632,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4389216138","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99839586,0.00014182975,0.000091481386,0.000032782667,0.0000023243763,0.000024865023,0.00042904523,0.0000053876074,0.0008762787],"genre_scores_gemma":[0.9975744,0.000090158304,0.00020302748,0.00002842929,0.0000012560432,0.000015752652,0.00039170528,0.0000023175169,0.001692931],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99975806,0.000022666472,0.000007752117,0.00004596253,0.0000677596,0.00009769227],"domain_scores_gemma":[0.99901307,0.000078044424,0.00014349406,0.000020282092,0.0005171314,0.00022797604],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00035417118,0.00024917288,0.00022872728,0.00063610874,0.00178943,0.0009089361,0.0007469868,0.00033884036,0.0012060174],"category_scores_gemma":[0.00080793153,0.00013702131,0.00013373309,0.000977865,0.00042815844,0.0002895816,0.00033031014,0.00031641487,0.00016567725],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00038453503,0.00016424032,0.96915215,0.000046698842,0.00007506022,0.00019358589,0.0018511625,0.001258905,0.0062899347,0.00009693109,0.0010718356,0.01941501],"study_design_scores_gemma":[0.0000038369817,0.000024247676,0.99800974,0.000006934499,0.000006530588,0.00001181326,0.00073629676,0.00045904977,0.00017923598,0.000005889146,0.000551783,0.000004544179],"about_ca_topic_score_codex":0.99343735,"about_ca_topic_score_gemma":0.99865997,"teacher_disagreement_score":0.019053474,"about_ca_system_score_codex":0.019053474,"about_ca_system_score_gemma":0.008499613,"threshold_uncertainty_score":0.13824326},"labels":[],"label_agreement":null},{"id":"W4389417850","doi":"10.1016/j.foreco.2023.121630","title":"American beech outgrows sugar maple at the sapling stage regardless of partial harvest intensity in northern hardwood forests","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Beech; Yellow birch; Understory; Maple; Hardwood; Basal area; Aceraceae; Thinning; Sugar; Silviculture; Biology; Botany; Forestry; Canopy; Ecology; Geography","score_opus":0.009713675341448425,"score_gpt":0.2239673555180449,"score_spread":0.21425368017659646,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4389417850","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99947757,0.000025915162,0.0000112152575,0.0000052896503,9.0684887e-7,8.185019e-7,0.000024741064,0.0000010064185,0.00045250065],"genre_scores_gemma":[0.9995802,0.000022818913,0.000017434622,0.000009509726,0.0000010549044,9.976401e-7,0.00006206107,7.9151215e-7,0.00030516315],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985933,0.000022138198,0.000004543223,0.00003733002,0.00002356945,0.000053001586],"domain_scores_gemma":[0.9995683,0.00007977859,0.000117063464,0.000024721492,0.00004362161,0.00016652503],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019282963,0.00012520647,0.00015808128,0.00037866714,0.0004397662,0.00048763398,0.00023681267,0.00012657496,0.0012421629],"category_scores_gemma":[0.0004204113,0.0001365743,0.000092771945,0.0002604992,0.00026148034,0.00033238143,0.00023394125,0.00018277709,0.00016928658],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00029645368,0.00008600915,0.9891187,0.000010345799,0.000037552516,0.00016376162,0.000286689,0.00012272457,0.0057262336,0.00007074225,0.00026840708,0.0038124737],"study_design_scores_gemma":[0.0000011162691,0.000013573546,0.99936813,0.0000015771355,0.0000056105428,0.000039209743,0.00028582543,0.000073149065,0.00010519593,0.000016053418,0.00008950573,0.0000011784294],"about_ca_topic_score_codex":0.04272144,"about_ca_topic_score_gemma":0.23072726,"teacher_disagreement_score":0.04272144,"about_ca_system_score_codex":0.00031952176,"about_ca_system_score_gemma":0.0003695012,"threshold_uncertainty_score":0.08494556},"labels":[],"label_agreement":null},{"id":"W4390094904","doi":"10.1016/j.foreco.2023.121647","title":"Field-testing whitebark pine resistance to white pine blister rust: A simple, effective approach to progeny testing for restoration","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Yeasts and Rust Fungi Studies","field":"Biochemistry, Genetics and Molecular Biology","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia; University of British Columbia","funders":"","keywords":"Biology; Rust (programming language); Population; Ribes; Inoculation; Tree breeding; Agronomy; Horticulture; Botany; Woody plant; Demography","score_opus":0.01656908938730378,"score_gpt":0.25622743488245225,"score_spread":0.23965834549514847,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4390094904","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9352917,0.0006866399,0.053429965,0.000190254,0.00012776192,0.0010896259,0.0012015636,0.00082041754,0.0071619917],"genre_scores_gemma":[0.92384535,0.00058180816,0.060181525,0.0005634984,0.0000521561,0.0005883363,0.0017564971,0.00020470048,0.012226204],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.999398,0.00017738476,0.000048670074,0.00014354388,0.0001813658,0.00005097779],"domain_scores_gemma":[0.9989685,0.0003445218,0.00011154323,0.0000968104,0.00023001953,0.00024848306],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00094463397,0.0006953382,0.0005288644,0.00060515996,0.00060680683,0.00040852107,0.0006703045,0.0006767339,0.0024467374],"category_scores_gemma":[0.00079606776,0.0002487952,0.00031870065,0.00021490721,0.00027344987,0.0004453008,0.00033966312,0.0009291061,0.00056766457],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028872208,0.00115848,0.0166921,0.00006922315,0.000022889522,0.00029142812,0.00017378185,0.00018475146,0.9639121,0.0001485616,0.0003762616,0.016681617],"study_design_scores_gemma":[0.00021490651,0.013381206,0.25702894,0.00005523389,0.00021975732,0.0022772946,0.001019159,0.0033630326,0.71379954,0.0007641043,0.0077852393,0.000091493486],"about_ca_topic_score_codex":0.005819143,"about_ca_topic_score_gemma":0.019438684,"teacher_disagreement_score":0.005819143,"about_ca_system_score_codex":0.0003640316,"about_ca_system_score_gemma":0.0005124882,"threshold_uncertainty_score":0.011570513},"labels":[],"label_agreement":null},{"id":"W4390292088","doi":"10.1016/j.foreco.2023.121648","title":"Monitoring lianas from space: Using Sentinel-2 imagery to observe liana removal in logged tropical forests","year":2023,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Conservation, Biodiversity, and Resource Management","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"Natural Environment Research Council; Rufford Foundation","keywords":"Liana; Canopy; Environmental science; Satellite imagery; Disturbance (geology); Tree canopy; Basal area; Leaf area index; Remote sensing; Ecology; Biology; Geography","score_opus":0.025256171211291912,"score_gpt":0.23785113636481803,"score_spread":0.2125949651535261,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4390292088","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9968515,0.000084755666,0.0017051327,0.000023958748,0.000008601049,0.000019750694,0.0003419679,0.000076640725,0.00088770257],"genre_scores_gemma":[0.99263144,0.00011558512,0.0058766436,0.0000581244,0.00000919815,0.000037606675,0.00082561135,0.0000106362595,0.00043510148],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998796,0.0000149981115,0.0000048346556,0.000034651497,0.00004289876,0.000022947079],"domain_scores_gemma":[0.99977416,0.00002033771,0.0000940905,0.000018831472,0.000049599374,0.000043022384],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024831272,0.00018437537,0.00017281262,0.00020446382,0.00023849303,0.0002127731,0.00023552691,0.0001820886,0.00049263245],"category_scores_gemma":[0.00021547821,0.0000878302,0.00015329555,0.00020315094,0.00017510043,0.00034546852,0.00021787551,0.0002719637,0.0001628654],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00034433618,0.00032187006,0.56190556,0.00024705808,0.00010718269,0.00019013113,0.0009930416,0.0028218245,0.38561094,0.00012458597,0.0012248302,0.04610864],"study_design_scores_gemma":[0.000010512046,0.00033079326,0.9780759,0.000020398198,0.000035523117,0.00012787085,0.0005875421,0.006052999,0.012949826,0.0000668592,0.0017220585,0.000019790816],"about_ca_topic_score_codex":0.006272633,"about_ca_topic_score_gemma":0.026715042,"teacher_disagreement_score":0.006272633,"about_ca_system_score_codex":0.00020141127,"about_ca_system_score_gemma":0.00026073426,"threshold_uncertainty_score":0.012472272},"labels":[],"label_agreement":null},{"id":"W4390763893","doi":"10.1016/j.foreco.2023.121646","title":"The diversity of epixylic bryophytes in relation to dead wood properties and forest management in New Brunswick, Canada","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université de Moncton; Saint Mary's University; Université de Montréal","funders":"Natural Sciences and Engineering Research Council of Canada; University of New Brunswick","keywords":"Bryophyte; Species richness; Biodiversity; Coarse woody debris; Abundance (ecology); Forest management; Threatened species; Clearcutting; Snag; Forest ecology; Silviculture; Ecology; Agroforestry; Geography; Ecosystem; Forestry; Biology; Habitat","score_opus":0.01629057600913022,"score_gpt":0.17765336139546814,"score_spread":0.16136278538633791,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4390763893","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9922047,0.0009439229,0.00017850485,0.00029697476,0.000012215776,0.000040667135,0.0027896457,0.000012092748,0.0035213325],"genre_scores_gemma":[0.9910061,0.0007600781,0.00037289088,0.00013993854,0.000004019871,0.00002486379,0.0014039704,0.000013460613,0.0062746583],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9994143,0.000059357895,0.000040029765,0.00009193978,0.0001448539,0.00024952646],"domain_scores_gemma":[0.9981077,0.00015196203,0.000248196,0.000049941533,0.00094799994,0.00049431843],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005727717,0.0002937266,0.00041444707,0.002366322,0.003170869,0.0013142207,0.0014522867,0.00026840324,0.0025168925],"category_scores_gemma":[0.0009568435,0.0003087696,0.00027977157,0.0039767646,0.00096846715,0.00039652115,0.0007494811,0.0006262312,0.00028519772],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019217872,0.000046998728,0.97732085,0.000070014816,0.00008973771,0.00024639504,0.0032786664,0.00023679563,0.0017087457,0.00043876335,0.0019023899,0.014468363],"study_design_scores_gemma":[0.000004619014,0.000008948926,0.9950747,0.000028230688,0.000011779306,0.000044194752,0.0031218873,0.0001364208,0.00011937182,0.000025573376,0.0014141303,0.000010179043],"about_ca_topic_score_codex":0.9976545,"about_ca_topic_score_gemma":0.999652,"teacher_disagreement_score":0.026233317,"about_ca_system_score_codex":0.026233317,"about_ca_system_score_gemma":0.028979361,"threshold_uncertainty_score":0.19033694},"labels":[],"label_agreement":null},{"id":"W4391333863","doi":"10.1016/j.foreco.2024.121725","title":"Modelling the occupancy of two bird species of conservation concern in a managed Acadian Forest landscape: Applications for forest management","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval; J. D. Irving (Canada); Canadian Sport Centre Pacific; Natural Resources Canada; Carleton University","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Understory; Occupancy; Forest management; Habitat; Geography; Ecology; Environmental science; Sustainable forest management; Canopy; Forestry; Biology","score_opus":0.02040981287684204,"score_gpt":0.2448202494542425,"score_spread":0.22441043657740045,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4391333863","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9883095,0.000098651544,0.010430959,0.00009037023,0.0000044141475,0.000019953728,0.00025552537,0.0000612198,0.00072948454],"genre_scores_gemma":[0.99224794,0.00005148833,0.006967603,0.0000100059615,0.0000036057033,0.000026108697,0.00023088389,0.000007742604,0.000454705],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998022,0.00006868773,0.000010324036,0.00005728614,0.000024366514,0.00003720584],"domain_scores_gemma":[0.999385,0.00035146505,0.00011812816,0.000024528867,0.000059572503,0.00006119326],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006577044,0.00031151142,0.00030684366,0.00035052813,0.00036636248,0.0007945006,0.00081301515,0.0004046043,0.00066247897],"category_scores_gemma":[0.0013026802,0.00028120307,0.0003875827,0.0005694111,0.00033444338,0.00033606414,0.00029194177,0.00027940265,0.000049785605],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006818451,0.000056343688,0.13879675,0.000026821135,0.00006855159,0.000054691693,0.00014090941,0.85237736,0.00047573552,0.0008338513,0.00020008613,0.006900714],"study_design_scores_gemma":[0.000006999142,0.000024731215,0.023050662,0.0000046410205,0.000013108808,0.000016189317,0.000095814445,0.9762432,0.00007381849,0.00027094182,0.00019284115,0.0000069814164],"about_ca_topic_score_codex":0.41297713,"about_ca_topic_score_gemma":0.46242467,"teacher_disagreement_score":0.41297713,"about_ca_system_score_codex":0.002501511,"about_ca_system_score_gemma":0.0015875923,"threshold_uncertainty_score":0.82114667},"labels":[],"label_agreement":null},{"id":"W4391714115","doi":"10.1016/j.foreco.2024.121756","title":"Assessing spatial patterns of burn severity for guiding post-fire salvage logging in boreal forests of Eastern Canada","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Wildlife; Canadian Forest Service; Université de Sherbrooke; Natural Resources Canada; Université du Québec à Chicoutimi","funders":"Natural Sciences and Engineering Research Council of Canada; Université du Québec à Chicoutimi","keywords":"Salvage logging; Logging; Context (archaeology); Environmental science; Vegetation (pathology); Forest management; Fire regime; Snag; Forest ecology; Taiga; Coarse woody debris; Boreal; Environmental resource management; Disturbance (geology); Biodiversity; Forestry; Physical geography; Ecosystem; Agroforestry; Ecology; Geography; Medicine; Geology; Habitat","score_opus":0.008465579880582963,"score_gpt":0.23037940572380333,"score_spread":0.22191382584322036,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4391714115","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.994716,0.0001466868,0.0012587386,0.00003444419,0.0000030832214,0.000029667048,0.0027576317,0.000059703412,0.0009940814],"genre_scores_gemma":[0.9911356,0.00010536836,0.0048929136,0.000011660393,0.0000019647982,0.000013770142,0.0033668198,0.00001119952,0.00046068872],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998061,0.000014354285,0.000013090982,0.00005292901,0.000055423654,0.00005815183],"domain_scores_gemma":[0.9993395,0.000090579626,0.0001015737,0.00003607678,0.00031546093,0.000116762756],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037785523,0.00034535886,0.00019490549,0.0017907857,0.0007208758,0.0009130251,0.0003891263,0.0001717452,0.0005558321],"category_scores_gemma":[0.0010635452,0.00013873729,0.00021952638,0.0017352675,0.0002309348,0.00023344479,0.00035215917,0.00019751904,0.00010559519],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000074387455,0.00004513957,0.9617928,0.000034058776,0.000041900923,0.00007774037,0.00043250242,0.007143048,0.0026890296,0.00009165734,0.00053870166,0.02703902],"study_design_scores_gemma":[0.000003053035,0.000009885845,0.98134667,0.000014760521,0.000019749801,0.00002176252,0.00096656755,0.016219897,0.0005257433,0.000045754554,0.0008151829,0.000011120467],"about_ca_topic_score_codex":0.9113627,"about_ca_topic_score_gemma":0.976861,"teacher_disagreement_score":0.08863729,"about_ca_system_score_codex":0.0036759756,"about_ca_system_score_gemma":0.004097975,"threshold_uncertainty_score":0.17831856},"labels":[],"label_agreement":null},{"id":"W4391714135","doi":"10.1016/j.foreco.2024.121739","title":"Nitrogen fertilization increases N2O emission but does not offset the reduced radiative forcing caused by the increased carbon uptake in boreal forests","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":12,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"Vetenskapsrådet; Svenska Forskningsrådet Formas; Skogs- och Jordbrukets Forskningsråd","keywords":"Environmental science; Taiga; Primary production; Boreal; Radiative forcing; Biomass (ecology); Soil carbon; Greenhouse gas; Carbon sequestration; Atmospheric sciences; Agronomy; Ecosystem; Climate change; Soil water; Ecology; Soil science; Carbon dioxide; Biology","score_opus":0.009166947998680806,"score_gpt":0.21687621672526664,"score_spread":0.20770926872658582,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4391714135","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99825114,0.00037831778,0.00047781726,0.000044775952,0.000015781901,0.0000068641993,0.00010882389,0.000024144545,0.0006922221],"genre_scores_gemma":[0.9984149,0.00017564064,0.0008218286,0.00006411523,0.000006886551,0.000017893693,0.000133581,0.000009948423,0.00035526993],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9998093,0.000025301997,0.00002102422,0.00008309778,0.000026664206,0.00003458406],"domain_scores_gemma":[0.99968016,0.00009386557,0.0000844346,0.00003249747,0.000044205033,0.00006475726],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00034488228,0.00045090215,0.00040960242,0.00017643566,0.00041092062,0.00037236977,0.0003850901,0.00037037616,0.0007688426],"category_scores_gemma":[0.00026034674,0.0002086878,0.00040900797,0.00015219243,0.00036293903,0.00052236445,0.0002576323,0.00035378904,0.00007949701],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007248136,0.00013375061,0.018923743,0.00015445835,0.00005775817,0.00009893106,0.000036359972,0.000664912,0.974549,0.00010652876,0.000073983036,0.004475803],"study_design_scores_gemma":[0.00015896228,0.0018427712,0.6907633,0.00003096844,0.00020754807,0.00030135192,0.00023869894,0.005981693,0.2959504,0.0006697747,0.003799299,0.00005510659],"about_ca_topic_score_codex":0.012573844,"about_ca_topic_score_gemma":0.023558352,"teacher_disagreement_score":0.012573844,"about_ca_system_score_codex":0.000623733,"about_ca_system_score_gemma":0.00043076975,"threshold_uncertainty_score":0.025001287},"labels":[],"label_agreement":null},{"id":"W4391797011","doi":"10.1016/j.foreco.2024.121753","title":"Satellite-detected decreases in caribou lichen cover, Cladonia (Cladina) spp., over Eastern Canada during the last three decades","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; Government of Newfoundland and Labrador; Gouvernement du Québec; Natural Resources Canada","funders":"Government of Canada","keywords":"Lichen; Boreal; Cladonia; Geography; Physical geography; Environmental science; Population; Climate change; Ecology; Biology","score_opus":0.011763346393046414,"score_gpt":0.20810448759576922,"score_spread":0.1963411412027228,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4391797011","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99568117,0.0008495319,0.0000714595,0.00011869104,0.000009462599,0.0000056501176,0.0020156484,0.000010004205,0.0012383127],"genre_scores_gemma":[0.99733585,0.0005022593,0.00010278019,0.000056473415,0.000004592808,0.0000037250988,0.0009976678,0.000002601781,0.000993943],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984896,0.000008977826,0.000009559681,0.00003136523,0.000053159634,0.000047918216],"domain_scores_gemma":[0.9988626,0.000057940255,0.00020318732,0.000027646456,0.00071342505,0.00013524509],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024540434,0.00018310119,0.0001463139,0.0008841471,0.0009194849,0.00081782567,0.0003275393,0.00032750278,0.0009758803],"category_scores_gemma":[0.00089604664,0.0001240543,0.00016361284,0.0018867017,0.0005227012,0.00025699395,0.00036714546,0.00029503755,0.000116487005],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006995695,0.000013830903,0.99212646,0.000040885498,0.000062388615,0.00005056163,0.00062622974,0.00011651449,0.0009100104,0.000038451617,0.00046153957,0.005483203],"study_design_scores_gemma":[9.3385745e-7,0.000003737949,0.9990903,0.0000087663775,0.000008849265,0.000020772695,0.0003455738,0.000041390267,0.000044818167,0.0000037536743,0.000429832,0.0000013119209],"about_ca_topic_score_codex":0.9797117,"about_ca_topic_score_gemma":0.9925432,"teacher_disagreement_score":0.020288289,"about_ca_system_score_codex":0.0048398026,"about_ca_system_score_gemma":0.0058709825,"threshold_uncertainty_score":0.040815473},"labels":[],"label_agreement":null},{"id":"W4391984163","doi":"10.1016/j.foreco.2024.121749","title":"Iterative nearest neighbour age-height curve adjustment: Addressing the impact of spatial heterogeneity on longitudinal forestry provenance trial data","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Faculty of Forestry, University of British Columbia; Ministry of Forests, Lands, Natural Resource Operations and Rural Development; Natural Sciences and Engineering Research Council of Canada; University of British Columbia","keywords":"Provenance; Longitudinal data; Spatial heterogeneity; Forestry; Geography; Physical geography; Environmental science; Ecology; Econometrics; Statistics; Mathematics; Geology; Computer science; Biology; Data mining","score_opus":0.049943292656208615,"score_gpt":0.3159099352862275,"score_spread":0.2659666426300189,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4391984163","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.21220915,0.0014977045,0.7802618,0.00049582805,0.00032086528,0.0009990464,0.0010746185,0.0014834369,0.0016574988],"genre_scores_gemma":[0.69673365,0.00016173683,0.29761004,0.000275781,0.000068032954,0.0011754431,0.0015122076,0.0004998576,0.0019632257],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.8895081,0.08701854,0.007490573,0.009451902,0.0051426506,0.001388209],"domain_scores_gemma":[0.7146675,0.22765988,0.011697524,0.034653116,0.009977219,0.0013447662],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.120875195,0.0008038216,0.0027456367,0.0013019218,0.0021211063,0.0023651146,0.005486513,0.0022977467,0.0027031205],"category_scores_gemma":[0.28235364,0.0008925093,0.0024650076,0.0037198616,0.0016872928,0.0026700636,0.003008518,0.0028113562,0.00048843434],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0078184055,0.001040036,0.40970913,0.001326514,0.015067534,0.0008260383,0.0037736595,0.09446114,0.0046839043,0.01325562,0.008945027,0.43909308],"study_design_scores_gemma":[0.0014748544,0.0019516355,0.11365036,0.000337812,0.004637845,0.0011032625,0.0010588735,0.8175357,0.0064955167,0.033327322,0.018145552,0.00028135997],"about_ca_topic_score_codex":0.01982772,"about_ca_topic_score_gemma":0.04111628,"teacher_disagreement_score":0.120875195,"about_ca_system_score_codex":0.0013760017,"about_ca_system_score_gemma":0.004613652,"threshold_uncertainty_score":0.6392568},"labels":[],"label_agreement":null},{"id":"W4392123370","doi":"10.1016/j.foreco.2024.121768","title":"Acclimation of thinned lodgepole pine trees to wind","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Acclimatization; Pinus contorta; Environmental science; Biology; Ecology; Forestry; Botany; Geography","score_opus":0.007039875880971152,"score_gpt":0.21679230782091158,"score_spread":0.20975243193994042,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4392123370","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990534,0.000083058316,0.00022325496,0.000009545654,0.000007175917,0.000013396152,0.00005896219,0.000008123031,0.0005430844],"genre_scores_gemma":[0.99553764,0.000079993064,0.00034876715,0.00007774629,0.000010248109,0.000035353736,0.0003614899,0.000030105504,0.0035186214],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998318,0.000022701848,0.000011464234,0.000056867506,0.000033622007,0.000043610355],"domain_scores_gemma":[0.99940836,0.00015764036,0.000087136264,0.000077506884,0.000077586454,0.0001917948],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020284727,0.00032255458,0.00039007637,0.00022055862,0.00049083494,0.0005592582,0.0004795136,0.00044363755,0.0015750112],"category_scores_gemma":[0.00043409885,0.000366187,0.00032523606,0.00014767953,0.000467885,0.00042077532,0.0004741372,0.0014372756,0.00026477955],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009756445,0.000116831405,0.002664818,0.00003335533,0.00001537086,0.000120783174,0.00033564967,0.00013297203,0.99384636,0.00009496424,0.000034639663,0.0016285472],"study_design_scores_gemma":[0.00010663451,0.0036117453,0.61012095,0.000033609187,0.000116581214,0.00041818037,0.0016231664,0.002601941,0.37809658,0.00031750862,0.0029088743,0.000044240885],"about_ca_topic_score_codex":0.0074684867,"about_ca_topic_score_gemma":0.012362591,"teacher_disagreement_score":0.0074684867,"about_ca_system_score_codex":0.0006378237,"about_ca_system_score_gemma":0.0004153629,"threshold_uncertainty_score":0.01485002},"labels":[],"label_agreement":null},{"id":"W4392263553","doi":"10.1016/j.foreco.2024.121785","title":"Above- and belowground carbon stocks under differing silvicultural scenarios","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Wildlife; Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Carbon stock; Environmental science; Silviculture; Carbon fibers; Agroforestry; Ecology; Climate change; Biology; Mathematics","score_opus":0.004697001723229125,"score_gpt":0.1996682328858219,"score_spread":0.19497123116259277,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4392263553","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99891496,0.000055904384,0.00006664521,0.000009367774,7.9436e-7,0.000005208584,0.00045468935,0.000004195921,0.00048828474],"genre_scores_gemma":[0.99895847,0.00003887631,0.0001333652,0.000011457827,5.075651e-7,0.0000047942494,0.00051338517,0.0000020385569,0.00033712463],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998801,0.0000131071665,0.0000044806843,0.00003004011,0.00001958468,0.000052637533],"domain_scores_gemma":[0.999723,0.000036442645,0.000045386656,0.000016807244,0.0000929594,0.00008536758],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003138282,0.00028814096,0.00017742225,0.00029626032,0.0004893046,0.0005615039,0.00038779946,0.00021711797,0.0009131674],"category_scores_gemma":[0.00034941445,0.000059956496,0.00020016647,0.0002987683,0.00023651954,0.00028248617,0.00014453524,0.00014503003,0.00011815106],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018298383,0.00024866912,0.83421654,0.00014515729,0.0004169161,0.00051486545,0.0005068599,0.0377714,0.09538749,0.0005583258,0.0010414581,0.027362404],"study_design_scores_gemma":[0.00001275376,0.000105724466,0.9876396,0.00000671678,0.000037595975,0.00002895185,0.00034333367,0.0089881355,0.0021551014,0.000067889945,0.00060104695,0.000013227581],"about_ca_topic_score_codex":0.68333465,"about_ca_topic_score_gemma":0.88850164,"teacher_disagreement_score":0.68333465,"about_ca_system_score_codex":0.005078256,"about_ca_system_score_gemma":0.0017290589,"threshold_uncertainty_score":0.6370605},"labels":[],"label_agreement":null},{"id":"W4392582047","doi":"10.1016/j.foreco.2024.121821","title":"Exploring the effects of forest management on tree diversity, community composition, population structure and carbon stocks in sudanian domain of Senegal, West Africa","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue","funders":"Université du Québec en Abitibi-Témiscamingue","keywords":"Species richness; Forest management; Biodiversity; Disturbance (geology); Ecology; Species diversity; Diversity index; Biomass (ecology); Forest restoration; Alpha diversity; Geography; Agroforestry; Forest ecology; Forestry; Biology; Ecosystem","score_opus":0.011647561622917956,"score_gpt":0.20319766064986708,"score_spread":0.1915500990269491,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4392582047","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997551,0.00008568303,0.000017747852,0.000007998965,4.0043145e-7,0.0000016242703,0.000027793689,3.2087624e-7,0.000103401086],"genre_scores_gemma":[0.99975437,0.00009471975,0.000060309827,0.000005598112,8.531271e-7,0.0000024114152,0.000044001034,2.1860693e-7,0.000037499467],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986625,0.00005599526,0.000010356798,0.000019296527,0.000012468806,0.000035540383],"domain_scores_gemma":[0.99981004,0.000043615728,0.000076751865,0.000008742976,0.000023717554,0.00003717039],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033433788,0.00027459417,0.00015077286,0.0009792285,0.00038529516,0.00031742314,0.00016046836,0.00010134125,0.00041989543],"category_scores_gemma":[0.00040539363,0.000090129084,0.00015393726,0.0010354818,0.0003738562,0.00026124562,0.00035263287,0.00009893644,0.000039945277],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000053881966,0.000047927544,0.98537725,0.000037645463,0.00007500551,0.00049203564,0.0015404779,0.00019482465,0.0023203518,0.00008057745,0.00005946334,0.009720533],"study_design_scores_gemma":[0.000001100902,0.000032963497,0.9983369,0.0000069898383,0.00001192541,0.00006705815,0.0011540646,0.00015388896,0.00006632267,0.000019039493,0.00014789523,0.000001794865],"about_ca_topic_score_codex":0.021341592,"about_ca_topic_score_gemma":0.06869922,"teacher_disagreement_score":0.021341592,"about_ca_system_score_codex":0.00042703384,"about_ca_system_score_gemma":0.00029129395,"threshold_uncertainty_score":0.042434752},"labels":[],"label_agreement":null},{"id":"W4392590565","doi":"10.1016/j.foreco.2024.121818","title":"The influence of clearcut harvesting on bird communities in an adjacent protected area in Nova Scotia: Implications for buffer implementation","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Dalhousie University; Acadia University","funders":"","keywords":"Nova scotia; Silviculture; Geography; Environmental science; Logging; Nova (rocket); Ecology; Agroforestry; Forestry; Archaeology; Biology; Engineering; Aeronautics","score_opus":0.02406399318810286,"score_gpt":0.29846068407558407,"score_spread":0.2743966908874812,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4392590565","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994904,0.000037984373,0.000014871178,0.000035413465,0.0000021194446,0.0000036930123,0.000072659204,4.865708e-7,0.00034229422],"genre_scores_gemma":[0.9996233,0.000032168693,0.000041736832,0.000017603183,0.0000014315663,0.0000038581693,0.000050531824,5.1942806e-7,0.0002288756],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997143,0.000085584164,0.000013224213,0.000045729015,0.00003097717,0.000110162946],"domain_scores_gemma":[0.9986003,0.00032421734,0.0002994685,0.000051666564,0.00018951239,0.00053479156],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00043557514,0.00011184265,0.00016044022,0.00037813035,0.00084788963,0.0007529394,0.0003598222,0.00021922665,0.0011214195],"category_scores_gemma":[0.0015674379,0.00011975857,0.00012988546,0.0003746865,0.00072715286,0.00024205391,0.00057481055,0.0002825317,0.000070427195],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022750405,0.00008510996,0.99417996,0.000021463095,0.000044541026,0.00019086494,0.00057982333,0.00030518053,0.0010212081,0.0001259982,0.00023616577,0.0029822406],"study_design_scores_gemma":[0.0000025849085,0.000017345163,0.99904066,0.0000039621523,0.000004145123,0.000015093197,0.00072036806,0.000098779026,0.000020351628,0.000010802362,0.00006494665,0.0000010159524],"about_ca_topic_score_codex":0.5682352,"about_ca_topic_score_gemma":0.891088,"teacher_disagreement_score":0.43176478,"about_ca_system_score_codex":0.0026293497,"about_ca_system_score_gemma":0.0024721492,"threshold_uncertainty_score":0.86861503},"labels":[],"label_agreement":null},{"id":"W4392610998","doi":"10.1016/j.foreco.2024.121810","title":"Long-term effects of different harvesting intensities on soil microbial communities in a hardwood temperate forest","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Outaouais","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Hardwood; Temperate rainforest; Temperate forest; Temperate climate; Environmental science; Term (time); Ecology; Agroforestry; Biology; Ecosystem","score_opus":0.013069920127691106,"score_gpt":0.19713126139057405,"score_spread":0.18406134126288293,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4392610998","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998826,0.00002636434,0.000012136429,0.0000033349377,0.0000012727453,0.0000012567327,0.0000236643,4.566423e-7,0.00004882518],"genre_scores_gemma":[0.9996182,0.000025990168,0.000032714484,0.000016613018,0.000003556945,0.00000674718,0.00010583282,8.67992e-7,0.00018952979],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999803,0.000029605342,0.000013744752,0.000059078728,0.000022441105,0.000072171155],"domain_scores_gemma":[0.99928564,0.00017903092,0.00013017487,0.00003645193,0.000076177734,0.00029255653],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003675594,0.00023686301,0.00032605912,0.00034958552,0.00063056214,0.0006943965,0.0002965415,0.00037624297,0.0008069582],"category_scores_gemma":[0.00049549015,0.00017101345,0.00031962566,0.0002842937,0.0005721835,0.0005444421,0.00068482925,0.0004571649,0.00011977913],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0100743035,0.0019964764,0.6519387,0.00013739972,0.0003541263,0.00062970375,0.001250821,0.0005876334,0.3211506,0.00009722085,0.00016825416,0.011614699],"study_design_scores_gemma":[0.000008219438,0.00027610816,0.9980817,0.0000025613974,0.00002412413,0.000026842052,0.00030095535,0.00013951227,0.0010669916,0.00001721936,0.00005069002,0.000005093034],"about_ca_topic_score_codex":0.0079460265,"about_ca_topic_score_gemma":0.021384904,"teacher_disagreement_score":0.0079460265,"about_ca_system_score_codex":0.00060661434,"about_ca_system_score_gemma":0.00037945004,"threshold_uncertainty_score":0.015799522},"labels":[],"label_agreement":null},{"id":"W4393333554","doi":"10.1016/j.foreco.2024.121855","title":"Tree improvement increases the growth of white spruce (Picea glauca): Evidence from 15-year-old operational plantations in Alberta","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Basal area; Forestry; Site index; Diameter at breast height; Seed orchard; Thinning; Crown (dentistry); Agroforestry; Competition (biology); Experimental forest; Productivity; Canopy; Environmental science; Agronomy; Geography; Biology; Horticulture; Ecology","score_opus":0.006046685835931624,"score_gpt":0.21076708930413118,"score_spread":0.20472040346819956,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4393333554","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99952066,0.00008968055,0.000010976783,0.000012343801,8.462191e-7,0.0000017153146,0.000028550407,0.0000016530446,0.0003334828],"genre_scores_gemma":[0.99901116,0.00015310288,0.000052887328,0.0000198608,0.0000015252575,0.0000014748395,0.000097559154,0.000002150685,0.00066027505],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997242,0.000047086098,0.000009870686,0.0000480971,0.000072665396,0.00009796081],"domain_scores_gemma":[0.9989691,0.00018731614,0.00023476676,0.00005295404,0.00020405996,0.00035188394],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00057967444,0.00030592442,0.00019867082,0.00058810884,0.000770513,0.0008550684,0.0006902529,0.0003659483,0.0010196635],"category_scores_gemma":[0.0006640036,0.00015991087,0.00020978507,0.00046922918,0.0009022708,0.00024270073,0.00036117973,0.00026435175,0.000118280244],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016407537,0.00067353324,0.9590612,0.00004062291,0.00015926643,0.0005101738,0.0011732107,0.00034976966,0.025502833,0.00012690574,0.00024794484,0.010513695],"study_design_scores_gemma":[0.0000039584284,0.00006332314,0.99924254,0.0000020832115,0.000014191001,0.000019350811,0.00032242713,0.000038580587,0.00018877663,0.000007858337,0.00009553076,0.0000013556867],"about_ca_topic_score_codex":0.5631306,"about_ca_topic_score_gemma":0.85090107,"teacher_disagreement_score":0.43686938,"about_ca_system_score_codex":0.0026755852,"about_ca_system_score_gemma":0.0016684938,"threshold_uncertainty_score":0.8788844},"labels":[],"label_agreement":null},{"id":"W4393944381","doi":"10.1016/j.foreco.2024.121869","title":"Twenty-year responses of aspen stands to forest tent caterpillar defoliation and overstory dieback in Northeastern Ontario, Canada","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ontario Forest Research Institute; Ministry of Natural Resources and Forestry","funders":"Ontario Ministry of Natural Resources and Forestry","keywords":"Basal area; Understory; Canopy; Taiga; Boreal; Hardwood; Balsam; Abies balsamea; Forestry; Dominance (genetics); Stand development; Ecological succession; Ecology; Biology; Geography; Botany","score_opus":0.005180776822887331,"score_gpt":0.19275532250146246,"score_spread":0.18757454567857512,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4393944381","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99902487,0.00009048654,0.000015694777,0.000029289256,0.000003975261,0.0000063298316,0.00043701442,0.0000015114341,0.00039089026],"genre_scores_gemma":[0.9974021,0.00010316294,0.000034001296,0.00003094475,0.0000019936197,0.0000070452224,0.00065346586,0.0000012551702,0.0017660102],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976677,0.000022401739,0.00001370423,0.0000382128,0.00005534499,0.00010356424],"domain_scores_gemma":[0.99889636,0.00010031558,0.00017298927,0.000024709609,0.0003870453,0.00041858753],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00041359596,0.00020492736,0.00024037801,0.00044070874,0.001502548,0.0006506283,0.0005658978,0.00029056697,0.0010433194],"category_scores_gemma":[0.0008143608,0.00018079832,0.00027262102,0.00049151405,0.00051205215,0.00025552165,0.00042687205,0.0003516454,0.00017009495],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00036116457,0.00007856736,0.99285805,0.00001699056,0.000056892983,0.00016319829,0.0015764064,0.00016062048,0.0012474862,0.00002748254,0.0005273564,0.0029257105],"study_design_scores_gemma":[0.0000023190123,0.00001857459,0.99866664,0.0000028551772,0.0000058801497,0.000013287682,0.00084507006,0.00005295836,0.00004967359,0.0000034610403,0.00033638312,0.000002893018],"about_ca_topic_score_codex":0.9704211,"about_ca_topic_score_gemma":0.994337,"teacher_disagreement_score":0.029578924,"about_ca_system_score_codex":0.010893153,"about_ca_system_score_gemma":0.007096083,"threshold_uncertainty_score":0.0790357},"labels":[],"label_agreement":null},{"id":"W4393982069","doi":"10.1016/j.foreco.2024.121882","title":"Do plants directly absorb nitrogen derived from deposition of wildfire smoke?","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"National Natural Science Foundation of China","keywords":"Smoke; Biomass (ecology); Environmental science; Nitrogen; Ecosystem; Deposition (geology); Agronomy; Combustion; Chemistry; Environmental chemistry; Ecology; Biology","score_opus":0.005254803756924899,"score_gpt":0.20182467566087747,"score_spread":0.1965698719039526,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4393982069","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9757581,0.004132001,0.0053486787,0.0014502365,0.00014484528,0.00003670349,0.00011581865,0.000060570354,0.012953057],"genre_scores_gemma":[0.99301624,0.0013424397,0.0009348258,0.0004966314,0.00003212262,0.000013255627,0.00010189884,0.000012960458,0.0040496318],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99983275,0.000022014154,0.000005271393,0.00005696369,0.000033424658,0.000049643215],"domain_scores_gemma":[0.9997261,0.00006139381,0.000057644676,0.000029128496,0.000054613225,0.00007110637],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004285431,0.0003123334,0.00035646342,0.00016288248,0.00032966584,0.0007309375,0.0005042403,0.0011134843,0.0025980005],"category_scores_gemma":[0.00037067942,0.0002627594,0.00026939384,0.00012189833,0.0005917938,0.0012202988,0.0003979569,0.0006156382,0.0003482963],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001213077,0.00047710421,0.074810095,0.00041744983,0.00041503354,0.0006543894,0.00055783155,0.0005667569,0.86152315,0.0059316987,0.000885117,0.052548222],"study_design_scores_gemma":[0.00020424004,0.0016854086,0.7342427,0.0000806247,0.00033511198,0.0011717345,0.0029563673,0.006399854,0.2275672,0.012146587,0.01314411,0.00006611552],"about_ca_topic_score_codex":0.0055551883,"about_ca_topic_score_gemma":0.008244886,"teacher_disagreement_score":0.0055551883,"about_ca_system_score_codex":0.0005202229,"about_ca_system_score_gemma":0.00039814552,"threshold_uncertainty_score":0.011045694},"labels":[],"label_agreement":null},{"id":"W4393982125","doi":"10.1016/j.foreco.2024.121830","title":"Diverse leaf functional and phenotypic traits in hybrid oak individuals: Unveiling genetic variation, adaptation, and evolutionary potential within Quercus Species","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Biology; Adaptation (eye); Fagaceae; Genetic variation; Evolutionary biology; Phenotype; Phenotypic plasticity; Local adaptation; Phenotypic trait; Ecology; Genetics; Gene","score_opus":0.010115468065327008,"score_gpt":0.19277582657827175,"score_spread":0.18266035851294474,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4393982125","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99975234,0.000014589536,0.00009927982,0.0000025164702,7.455682e-7,9.3325525e-7,0.00002185921,0.0000010959383,0.00010664933],"genre_scores_gemma":[0.9997267,0.000006444174,0.00012872464,0.0000049528744,0.0000012379929,0.0000014291891,0.000032325577,0.000002256563,0.00009590677],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976796,0.00007402761,0.000014592281,0.00007392692,0.00003512361,0.00003439456],"domain_scores_gemma":[0.999681,0.00010339017,0.00006530912,0.000035042733,0.00003088623,0.00008441487],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000462911,0.00027225167,0.00020789479,0.0011423021,0.0003816909,0.0003547646,0.00024066305,0.00024938205,0.0009055794],"category_scores_gemma":[0.00032504514,0.00012518236,0.00015522508,0.0004812452,0.00041997264,0.00026422576,0.000339674,0.0003197494,0.00009951628],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006688003,0.00029625295,0.7989504,0.000023938603,0.00022015482,0.00032490634,0.0013491379,0.00044134574,0.18722269,0.00039618122,0.00005319193,0.0100530805],"study_design_scores_gemma":[0.000004237883,0.00005193866,0.998024,0.0000019352692,0.000015334059,0.00021510368,0.0003028768,0.00046726607,0.0007529202,0.000091774404,0.000066155735,0.000006428194],"about_ca_topic_score_codex":0.0015020759,"about_ca_topic_score_gemma":0.0046886737,"teacher_disagreement_score":0.0015020759,"about_ca_system_score_codex":0.00017606645,"about_ca_system_score_gemma":0.00010552774,"threshold_uncertainty_score":0.0030294657},"labels":[],"label_agreement":null},{"id":"W4396555692","doi":"10.1016/j.foreco.2024.121936","title":"Predicting the site productivity of forest tree species using climate niche models","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Species Distribution and Climate Change","field":"Environmental Science","cited_by":19,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Productivity; Pinus contorta; Range (aeronautics); Environmental science; Climate change; Ecology; Ecosystem; Species distribution; Environmental niche modelling; Carbon sequestration; Habitat; Ecosystem model; Ecological niche; Biology","score_opus":0.030855629212594812,"score_gpt":0.24011347110906744,"score_spread":0.20925784189647262,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4396555692","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.92152053,0.00030748855,0.07645719,0.00007252021,0.00001339551,0.000014334737,0.0005803715,0.00039067195,0.00064357376],"genre_scores_gemma":[0.9843965,0.00007275012,0.0147935515,0.000012977615,0.000007218152,0.000015685555,0.0004933248,0.000019416291,0.00018850931],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998504,0.000047186808,0.000007658498,0.00005526064,0.000017095635,0.000022511984],"domain_scores_gemma":[0.9994717,0.00031634813,0.00007316342,0.000035888894,0.000060947143,0.000041871863],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008752526,0.0006262619,0.00034251396,0.0007406334,0.00019362682,0.00045552122,0.00061595865,0.00045126094,0.00034671457],"category_scores_gemma":[0.0012584997,0.00024370363,0.00083263067,0.00059757737,0.00013938824,0.00056788727,0.0003002042,0.0003116053,0.0001263356],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000051829335,0.00006104001,0.04806356,0.000028054514,0.00008535316,0.000034137312,0.000031421903,0.93080246,0.001767264,0.00037975697,0.00021220255,0.018482858],"study_design_scores_gemma":[0.000001724931,0.0000070553556,0.0051698615,0.0000014354807,0.000006409483,0.0000075411476,0.0000051863813,0.994362,0.00017734668,0.0001941739,0.000064041706,0.0000032252578],"about_ca_topic_score_codex":0.01299083,"about_ca_topic_score_gemma":0.016280279,"teacher_disagreement_score":0.01299083,"about_ca_system_score_codex":0.00045660048,"about_ca_system_score_gemma":0.0003884664,"threshold_uncertainty_score":0.025830448},"labels":[],"label_agreement":null},{"id":"W4396684224","doi":"10.1016/j.foreco.2024.121955","title":"Mixing trembling aspen and white spruce increases the understory vegetation cover and improves soil properties but effects vary with broadleaf density","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Understory; Environmental science; Vegetation (pathology); Mixing (physics); Plant cover; Undergrowth; Ecology; Forestry; Agronomy; Canopy; Biology; Geography","score_opus":0.0058396979603675125,"score_gpt":0.17940232751850443,"score_spread":0.17356262955813692,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4396684224","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994597,0.0001399632,0.00010862893,0.0000051556185,0.0000023369228,0.000008908943,0.000026701084,0.000009835791,0.00023873478],"genre_scores_gemma":[0.9975352,0.00019638501,0.0011242864,0.000035238274,0.000005419143,0.000012738539,0.00015056902,0.000007083232,0.0009329559],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9997856,0.00003215073,0.000017508775,0.00006422236,0.00006639839,0.00003413717],"domain_scores_gemma":[0.99948055,0.000043665143,0.00016494935,0.000027107057,0.000036738715,0.00024716646],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002760984,0.00051312364,0.0003261443,0.00034547446,0.0003384263,0.00048411154,0.00025864012,0.00016679426,0.0010711337],"category_scores_gemma":[0.00024141526,0.00018926463,0.00022775582,0.0001651536,0.00025820968,0.00024791056,0.0003081394,0.00024830134,0.00022807092],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0043558367,0.0015972907,0.057127647,0.00015948311,0.0002737981,0.0001299655,0.00015931879,0.00027881938,0.91778004,0.00004716385,0.00008179096,0.018008746],"study_design_scores_gemma":[0.00008477528,0.009288302,0.91540784,0.0000146077,0.00016113164,0.00020981365,0.00021853317,0.0005522942,0.07266244,0.00004349001,0.0013414922,0.000015239489],"about_ca_topic_score_codex":0.0056102863,"about_ca_topic_score_gemma":0.032392506,"teacher_disagreement_score":0.0056102863,"about_ca_system_score_codex":0.00030439094,"about_ca_system_score_gemma":0.00030012697,"threshold_uncertainty_score":0.011155248},"labels":[],"label_agreement":null},{"id":"W4396999445","doi":"10.1016/j.foreco.2024.121978","title":"Patch level boreal bryophyte diversity driven by landscape heterogeneity","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval; Center for Northern Studies; Université du Québec en Abitibi-Témiscamingue","funders":"","keywords":"Bryophyte; Ecology; Diversity (politics); Boreal; Taiga; Geography; Biodiversity; Environmental science; Biology; Agroforestry","score_opus":0.016867824096753803,"score_gpt":0.20799409988007628,"score_spread":0.19112627578332247,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4396999445","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997423,0.000012183012,0.000047182784,0.000005616338,6.011294e-7,5.4524236e-7,0.000031850235,0.0000022892857,0.00015747258],"genre_scores_gemma":[0.99987435,0.000003227824,0.000024012637,0.0000037978873,6.634902e-7,4.794324e-7,0.00003374654,0.0000014495746,0.000058118978],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998053,0.000044893637,0.00000608911,0.00006433323,0.000017824155,0.000061517065],"domain_scores_gemma":[0.9994622,0.00010545605,0.00013962173,0.000052696083,0.000057496665,0.00018252252],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027643895,0.00013058065,0.00028858057,0.00032463818,0.0003610083,0.0007459476,0.0002328031,0.00022485823,0.0020952506],"category_scores_gemma":[0.0006305724,0.0001417002,0.00019893887,0.00028351526,0.00044466046,0.0003925238,0.00055399496,0.00029793713,0.00013107553],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005281068,0.00007323908,0.93743414,0.000020059724,0.00012993725,0.00016711997,0.000267074,0.000952532,0.056766953,0.00028272602,0.0002079102,0.003170287],"study_design_scores_gemma":[0.0000023049026,0.000015079773,0.9991473,6.361385e-7,0.000007723539,0.000039028102,0.00009197993,0.00049982854,0.00013369287,0.000028974226,0.00003149808,0.0000019693002],"about_ca_topic_score_codex":0.0074480693,"about_ca_topic_score_gemma":0.02177522,"teacher_disagreement_score":0.0074480693,"about_ca_system_score_codex":0.0003295194,"about_ca_system_score_gemma":0.00018039109,"threshold_uncertainty_score":0.01480943},"labels":[],"label_agreement":null},{"id":"W4399316405","doi":"10.1016/j.foreco.2024.122049","title":"Forest pollinator richness declines with distance into burned areas","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant and animal studies","field":"Agricultural and Biological Sciences","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Guelph","funders":"U.S. Forest Service; U.S. Department of Agriculture","keywords":"Pollinator; Species richness; Ecology; Geography; Agroforestry; Environmental science; Biology; Pollination; Pollen","score_opus":0.012564766040561214,"score_gpt":0.20333240934443966,"score_spread":0.19076764330387844,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4399316405","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99903333,0.00009825377,0.00014919105,0.00006501093,0.000003674363,0.0000016479394,0.00006917435,0.000010952594,0.0005686739],"genre_scores_gemma":[0.99890876,0.000030953477,0.00011803967,0.000036082314,0.00000723571,0.0000027700714,0.00013864292,0.0000049601995,0.00075241644],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99955505,0.00006618308,0.00002430823,0.00015796888,0.000056317156,0.0001401073],"domain_scores_gemma":[0.99648786,0.00075928424,0.0013173203,0.00033194342,0.0004452949,0.00065830094],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005470424,0.00017738316,0.0003301433,0.00078808825,0.00053687557,0.0011162817,0.00071565754,0.0006672858,0.0040311585],"category_scores_gemma":[0.0025238309,0.00028908782,0.0004317064,0.0005032979,0.00088587194,0.00087195245,0.000801532,0.0009067134,0.00052424317],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00034077582,0.000104945175,0.98761916,0.000017807948,0.00010965891,0.00010725861,0.00049812027,0.0002521115,0.0052017565,0.00010487594,0.0002134313,0.0054300614],"study_design_scores_gemma":[0.0000026151813,0.000029724533,0.9991578,0.000002897465,0.000007784004,0.000083477644,0.00024296589,0.00020139737,0.00010505509,0.000033925124,0.00013068896,0.0000017175756],"about_ca_topic_score_codex":0.007053058,"about_ca_topic_score_gemma":0.015653733,"teacher_disagreement_score":0.007053058,"about_ca_system_score_codex":0.0004906796,"about_ca_system_score_gemma":0.00028859434,"threshold_uncertainty_score":0.01402396},"labels":[],"label_agreement":null},{"id":"W4399376821","doi":"10.1016/j.foreco.2024.122009","title":"Soil moisture increases stability of North American Pinus species growing in sandy soils","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":10,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Western University","funders":"","keywords":"Soil water; Environmental science; Pinus <genus>; Water content; Moisture; Soil science; Ecology; Agronomy; Agroforestry; Botany; Biology; Geography; Geology; Geotechnical engineering","score_opus":0.008476052687514979,"score_gpt":0.20362146206383788,"score_spread":0.1951454093763229,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4399376821","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997911,0.000017770932,0.000012862623,0.0000027051642,4.0107875e-7,6.1800966e-7,0.000013651056,6.981742e-7,0.00016029768],"genre_scores_gemma":[0.99981195,0.00001376001,0.000013713974,0.00000465812,7.5383065e-7,0.0000010079002,0.000028079523,7.0090266e-7,0.00012544025],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99994063,0.000014311135,0.0000032273206,0.000016533362,0.000011009634,0.000014386823],"domain_scores_gemma":[0.9995326,0.00014795027,0.00013612269,0.000024172956,0.000053356605,0.00010581427],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014944587,0.00011508756,0.000105973864,0.000445697,0.0003145492,0.00029318215,0.00015487423,0.00016425106,0.001221943],"category_scores_gemma":[0.00047019136,0.0001263556,0.00009626999,0.00023875856,0.00024009148,0.00028074527,0.0002690176,0.00016110402,0.0000917032],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016250521,0.00028229275,0.7504326,0.0000774411,0.00012401624,0.00034982638,0.0012345501,0.0005400669,0.23422681,0.00024507628,0.00018114931,0.010681177],"study_design_scores_gemma":[0.0000020066684,0.00006399157,0.99855536,0.0000010391959,0.0000062793574,0.000044620643,0.00017840226,0.00016199742,0.0008884896,0.000024581701,0.00007207429,0.0000011598199],"about_ca_topic_score_codex":0.007576423,"about_ca_topic_score_gemma":0.029745797,"teacher_disagreement_score":0.007576423,"about_ca_system_score_codex":0.0002932319,"about_ca_system_score_gemma":0.00014128062,"threshold_uncertainty_score":0.015064657},"labels":[],"label_agreement":null},{"id":"W4399431137","doi":"10.1016/j.foreco.2024.122019","title":"Fertilization increases growth of western redcedar and western hemlock but also increases mortality and sinuosity","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia; Western Forest Products; Golder Associates (Canada); University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; Ministry of Forests, Lands, Natural Resource Operations and Rural Development","keywords":"Sinuosity; Western Hemlock; Human fertilization; Ecology; Clearcutting; Tsuga; Geography; Forestry; Environmental science; Biology; Agronomy; Geology","score_opus":0.013141601952627105,"score_gpt":0.24942903001492553,"score_spread":0.2362874280622984,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4399431137","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9979487,0.00028690597,0.0001314377,0.000046809677,0.000008416076,0.000002591957,0.000112945716,0.000014677856,0.0014475809],"genre_scores_gemma":[0.9972698,0.00022506654,0.00027902354,0.00009418315,0.0000067704987,0.0000049795285,0.00022942157,0.000007442295,0.0018832248],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.999897,0.000021702213,0.000008178648,0.000031654323,0.000015203387,0.000026119114],"domain_scores_gemma":[0.9995054,0.00014808754,0.00012339653,0.00003972505,0.00005674835,0.00012667046],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002104129,0.00027327525,0.00019693549,0.0002836515,0.00032035905,0.0002559991,0.00018602912,0.00027779012,0.0021829302],"category_scores_gemma":[0.0003971099,0.00016406245,0.00021564902,0.00018911654,0.00022906336,0.00024802878,0.00027842328,0.0001996267,0.00033998842],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018024154,0.0002673156,0.30896354,0.00011544428,0.00016610314,0.000505734,0.0002096343,0.00085532665,0.6630205,0.00040955705,0.0005803181,0.023104103],"study_design_scores_gemma":[0.000026074511,0.00030425854,0.9833636,0.000008222121,0.0000452177,0.00022521953,0.00011813174,0.0006205421,0.014160487,0.00016702754,0.0009539756,0.0000071489135],"about_ca_topic_score_codex":0.011884035,"about_ca_topic_score_gemma":0.0408495,"teacher_disagreement_score":0.011884035,"about_ca_system_score_codex":0.00046881472,"about_ca_system_score_gemma":0.0003214307,"threshold_uncertainty_score":0.023629725},"labels":[],"label_agreement":null},{"id":"W4399697214","doi":"10.1016/j.foreco.2024.122014","title":"Logging disturbance, hydrology, and geomorphic context determine suspended fine particulate organic matter concentrations in forested coastal headwater streams: A 10-year forest management experiment","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil and Water Nutrient Dynamics","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"National Marine Fisheries Service; Natural Sciences and Engineering Research Council of Canada; University of British Columbia","keywords":"Environmental science; Disturbance (geology); Hydrology (agriculture); STREAMS; Logging; Context (archaeology); Particulates; Ecology; Geology; Geomorphology","score_opus":0.0059823410027249274,"score_gpt":0.2026867126628122,"score_spread":0.19670437166008728,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4399697214","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99992645,0.0000028754882,0.000014169275,0.0000032542498,0.0000011102077,0.0000035202202,0.000024700392,0.000001043264,0.000022945153],"genre_scores_gemma":[0.998904,0.00001651674,0.00016448718,0.00003095082,0.000003502844,0.000024135374,0.0002513381,0.0000029486384,0.00060213293],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9994823,0.00014259975,0.000034577235,0.00014034088,0.000056262008,0.00014397922],"domain_scores_gemma":[0.9981499,0.00055582717,0.000372498,0.0001337353,0.00016661684,0.00062143395],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011312352,0.000454886,0.0005268074,0.00037405087,0.0006671212,0.00093330315,0.0006984989,0.00070341147,0.0005586884],"category_scores_gemma":[0.0011150143,0.00050823716,0.0004235701,0.00042252662,0.0011233926,0.0007654859,0.0003896436,0.0007534246,0.00014623426],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.017918963,0.013158936,0.8886765,0.000022338325,0.00031993218,0.00032474747,0.00087830826,0.00085266324,0.072293855,0.00008209528,0.00035095244,0.005120655],"study_design_scores_gemma":[0.00015630398,0.0023385484,0.9920906,0.0000027793124,0.00008885801,0.00004392456,0.0004451557,0.0018062674,0.0028613226,0.000036478592,0.00011564362,0.000014133693],"about_ca_topic_score_codex":0.0525194,"about_ca_topic_score_gemma":0.11810517,"teacher_disagreement_score":0.0525194,"about_ca_system_score_codex":0.0011330422,"about_ca_system_score_gemma":0.0012869181,"threshold_uncertainty_score":0.10442746},"labels":[],"label_agreement":null},{"id":"W4399702607","doi":"10.1016/j.foreco.2024.122084","title":"Clear-cutting of temperate forests in late successional stages triggers successional setbacks extending compositional recovery by an additional century","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":8,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec à Chicoutimi; Université Laval; Ministry of Natural Resources and Wildlife","funders":"","keywords":"Ecological succession; Clearcutting; Temperate rainforest; Ecology; Temperate forest; Temperate climate; Coarse woody debris; Agroforestry; Environmental science; Biology; Ecosystem; Habitat","score_opus":0.004693329349222097,"score_gpt":0.24089468693084418,"score_spread":0.23620135758162208,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4399702607","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992539,0.00013935629,0.00011653206,0.0000058586356,0.0000028786176,0.000004850092,0.00013132989,0.0000052412056,0.0003399404],"genre_scores_gemma":[0.9988427,0.000114286995,0.00027482017,0.00001797782,0.0000054827424,0.000009420462,0.00043366375,0.0000028402862,0.0002987595],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983954,0.000017912562,0.000013286844,0.00004605548,0.000029623794,0.000053493968],"domain_scores_gemma":[0.9993944,0.000077602985,0.00024634486,0.000053779655,0.00007042791,0.00015746447],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00043559654,0.00019818194,0.0002155072,0.00026503642,0.00029921668,0.0004412773,0.00018455037,0.00020039696,0.0013881094],"category_scores_gemma":[0.00061144895,0.00015373307,0.00024788504,0.0002787165,0.00014311828,0.00035856979,0.0003881425,0.000354233,0.00024942865],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0013731223,0.0004804234,0.85337985,0.00018834943,0.000114947194,0.0006690264,0.001034003,0.0005554875,0.11321668,0.00027816865,0.00041440706,0.02829547],"study_design_scores_gemma":[0.000001927177,0.000070400674,0.9987079,0.0000048964075,0.000004911477,0.000053677355,0.00012061889,0.00014468454,0.00058561104,0.000025417292,0.00027759903,0.0000023893815],"about_ca_topic_score_codex":0.0025274674,"about_ca_topic_score_gemma":0.0077535706,"teacher_disagreement_score":0.0025274674,"about_ca_system_score_codex":0.00026178194,"about_ca_system_score_gemma":0.00026371938,"threshold_uncertainty_score":0.005025506},"labels":[],"label_agreement":null},{"id":"W4399799117","doi":"10.1016/j.foreco.2024.122100","title":"Post-fire resurveys reveal predictability of long-term conifer recruitment in severely burned California dry forests","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"U.S. Forest Service; California Department of Forestry and Fire Protection; Oak Ridge Institute for Science and Education; National Institute of Food and Agriculture; National Institute of Environmental Health Sciences; Oak Ridge Associated Universities; Hatch; U.S. Department of Agriculture; U.S. Department of Energy","keywords":"Predictability; Environmental science; Term (time); Ecology; Forestry; Disturbance (geology); Geography; Biology; Mathematics","score_opus":0.012757311791912756,"score_gpt":0.24799624155218483,"score_spread":0.23523892976027208,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4399799117","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996667,0.00002060736,0.0000331165,0.000007198861,0.0000015742746,8.519539e-7,0.00006866153,0.0000027371627,0.00019869918],"genre_scores_gemma":[0.9995827,0.000015800315,0.000027112543,0.000007788265,0.0000022505903,0.0000018657088,0.00015774653,0.0000016667185,0.00020307761],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998889,0.000017569833,0.0000067130727,0.00003928982,0.0000140451075,0.000033538745],"domain_scores_gemma":[0.9986278,0.00041656254,0.0003929121,0.00011572633,0.00012491955,0.00032206284],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004214196,0.00013285989,0.00018205996,0.0003447881,0.00044383956,0.00051566,0.00023116017,0.00019419835,0.0011351645],"category_scores_gemma":[0.0016273971,0.00015629844,0.00008135205,0.00023031385,0.00024789828,0.00032363174,0.00032849092,0.00026010632,0.00017501395],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00011792768,0.00004107487,0.9963217,0.0000035185924,0.00001852451,0.000022693219,0.00012716121,0.00026145042,0.0006940447,0.000015206952,0.00011987631,0.0022568733],"study_design_scores_gemma":[0.0000012075317,0.000010271579,0.99959487,9.46232e-7,0.0000019748516,0.00000878119,0.00008036673,0.00021357025,0.000024590143,0.000009247379,0.00005343912,8.593007e-7],"about_ca_topic_score_codex":0.027502654,"about_ca_topic_score_gemma":0.12367284,"teacher_disagreement_score":0.027502654,"about_ca_system_score_codex":0.000354273,"about_ca_system_score_gemma":0.00018764223,"threshold_uncertainty_score":0.054685116},"labels":[],"label_agreement":null},{"id":"W4399799252","doi":"10.1016/j.foreco.2024.122046","title":"Perspectives: Five organizing themes for invasive forest insect and disease management in Canada and the United States","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Canadian Forest Service; McGill University; Natural Resources Canada; Carleton University","funders":"Fonds de recherche du Québec – Nature et technologies; Southern Research Station; Natural Sciences and Engineering Research Council of Canada; U.S. Forest Service; U.S. Department of Agriculture","keywords":"Invasive species; Disease management; Geography; Insect; Ecology; Forest management; Agroforestry; Environmental resource management; Biology; MEDLINE; Environmental science","score_opus":0.0057366450216696395,"score_gpt":0.19261742485269295,"score_spread":0.1868807798310233,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4399799252","genre_codex":"commentary","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.40748754,0.01583578,0.008479985,0.41485792,0.0029725023,0.0010773736,0.0013193935,0.00013344693,0.1478362],"genre_scores_gemma":[0.9505333,0.0066815377,0.0070813023,0.01949129,0.00019131435,0.00044560595,0.00037305593,0.000086801774,0.015115907],"study_design_codex":"qualitative","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.9818154,0.005942161,0.0007321572,0.0016232266,0.0037301737,0.006156765],"domain_scores_gemma":[0.97019726,0.008883666,0.0014222218,0.00046811643,0.010731758,0.008296917],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.021472428,0.0011998352,0.0009699802,0.0060980534,0.06806406,0.02674143,0.00485129,0.006518033,0.0032512564],"category_scores_gemma":[0.018806573,0.00079169555,0.0009939924,0.010031526,0.03436546,0.0063168,0.0120651135,0.013111569,0.0001874527],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":true,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00002385315,0.00002341853,0.0045575905,0.000240812,0.0000106534635,0.00084694126,0.92502046,0.00015799663,0.00045091842,0.050939355,0.009312148,0.008415866],"study_design_scores_gemma":[0.0000022456434,0.0000038577455,0.0014918287,0.0002863139,0.0000060399443,0.00006981429,0.9509416,0.000096765085,0.000066780354,0.0028849887,0.044128064,0.000021671642],"about_ca_topic_score_codex":0.97705996,"about_ca_topic_score_gemma":0.97857136,"teacher_disagreement_score":0.24635632,"about_ca_system_score_codex":0.24635632,"about_ca_system_score_gemma":0.3627614,"threshold_uncertainty_score":0.8741199},"labels":[],"label_agreement":null},{"id":"W4400074974","doi":"10.1016/j.foreco.2024.122092","title":"Inoculation with Azospirillum brasilense or Bacillus spp. improves root growth and nutritional quality of araucaria (Araucaria angustifolia) seedlings","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Growth and nutrition in plants","field":"Agricultural and Biological Sciences","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Universidade Federal do Paraná; Coordenação de Aperfeiçoamento de Pessoal de Nível Superior","keywords":"Araucaria; Azospirillum brasilense; Microbial inoculant; Biology; Inoculation; Botany; Rhizobacteria; Horticulture; Bacteria; Rhizosphere","score_opus":0.015772919675186573,"score_gpt":0.23309519979220583,"score_spread":0.21732228011701926,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4400074974","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9979868,0.0003584013,0.00038033305,0.00004217198,0.000015752868,0.000008919659,0.000059737486,0.00007476078,0.0010732678],"genre_scores_gemma":[0.99626523,0.000212731,0.00081530673,0.00003347135,0.000006695445,0.000009044624,0.00017276693,0.000020433406,0.0024642998],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99990773,0.00001866265,0.000005966323,0.000024494628,0.000018423123,0.000024725903],"domain_scores_gemma":[0.99978083,0.00003644315,0.00004233729,0.00002017871,0.000027239557,0.000092978175],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000118068274,0.00055457896,0.00029977292,0.00024020276,0.00012990454,0.00030349754,0.00022245878,0.00023308473,0.0009528724],"category_scores_gemma":[0.0001397337,0.00014743669,0.00013743587,0.000092778224,0.00016033163,0.00018566658,0.00018840829,0.00065008807,0.00024978872],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008118945,0.000037591082,0.0002714556,0.000014939998,0.0000027652165,0.0000189665,0.000012869077,0.000018353901,0.99877423,0.000014412764,0.000014125885,0.0007390425],"study_design_scores_gemma":[0.00007435931,0.0023049966,0.062423218,0.00003081412,0.00008003506,0.00022927903,0.00022299698,0.001940797,0.9297903,0.00008355324,0.0028002744,0.000019365381],"about_ca_topic_score_codex":0.002947726,"about_ca_topic_score_gemma":0.0047361804,"teacher_disagreement_score":0.002947726,"about_ca_system_score_codex":0.00025949252,"about_ca_system_score_gemma":0.00021665185,"threshold_uncertainty_score":0.0058611035},"labels":[],"label_agreement":null},{"id":"W4401205664","doi":"10.1016/j.foreco.2024.122177","title":"Drought timing, intensity, and consecutiveness have more influence on Douglas fir growth response than site conditions and stand density in European temperate climate","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":11,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Outaouais","funders":"","keywords":"Douglas fir; Temperate climate; Environmental science; Intensity (physics); Temperate rainforest; Climate change; Temperate forest; Ecology; Atmospheric sciences; Physical geography; Climatology; Forestry; Geography; Biology; Ecosystem; Geology; Physics","score_opus":0.007195870547702321,"score_gpt":0.23400959363749166,"score_spread":0.22681372308978934,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4401205664","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99965227,0.000087198016,0.000057274116,0.0000086134105,0.0000033220135,6.9734733e-7,0.000055032666,0.000002011359,0.00013353676],"genre_scores_gemma":[0.9996996,0.000020356061,0.000029330235,0.000017221008,0.000003375878,0.0000010017875,0.0000984009,0.0000025879706,0.0001281956],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99962413,0.00012380986,0.000034766857,0.00011005568,0.000026346443,0.00008089382],"domain_scores_gemma":[0.9988834,0.0003658697,0.0002701124,0.00007570827,0.00007782865,0.00032710293],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007901107,0.0002274648,0.00027559558,0.00046357317,0.00025411908,0.00047653788,0.00022896117,0.00038067665,0.001446741],"category_scores_gemma":[0.00096379896,0.00017109435,0.00030056018,0.00034793108,0.00032921106,0.00032338375,0.00036117798,0.00019549213,0.00014417144],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003305106,0.000088077715,0.98760986,0.000016079812,0.00015363445,0.00010999943,0.00017343076,0.0003040477,0.0081609115,0.000050361316,0.00009533295,0.002907696],"study_design_scores_gemma":[0.0000010216922,0.0000065655086,0.9998265,6.3682353e-7,0.0000053787226,0.000014571484,0.000027492104,0.00005826365,0.000029728091,0.0000061780797,0.00002283111,8.310435e-7],"about_ca_topic_score_codex":0.0058873086,"about_ca_topic_score_gemma":0.017562801,"teacher_disagreement_score":0.0058873086,"about_ca_system_score_codex":0.0002481158,"about_ca_system_score_gemma":0.00024971418,"threshold_uncertainty_score":0.011706054},"labels":[],"label_agreement":null},{"id":"W4401244193","doi":"10.1016/j.foreco.2024.122176","title":"Environmental characteristics of primary outbreak foci of the pine-tree lappet Dendrolimus pini (Lepidoptera, Lasiocampidae)","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Lepidoptera genitalia; Outbreak; Ecology; Biology; Tree (set theory); Forestry; Geography; Mathematics","score_opus":0.004354325644362029,"score_gpt":0.18349373554051399,"score_spread":0.17913940989615196,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4401244193","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995472,0.000023602124,0.000011556359,0.0000020439568,4.598514e-7,0.0000014771206,0.000111647976,8.4943133e-7,0.00030112747],"genre_scores_gemma":[0.9997596,0.00001330121,0.00001563092,0.0000025310114,9.3392714e-7,0.0000017102847,0.00012463382,7.0386346e-7,0.000080869075],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99993277,0.000010847268,0.0000052138557,0.000019353749,0.000008176788,0.000023572125],"domain_scores_gemma":[0.9995352,0.00010316267,0.00016539534,0.000011812141,0.000047121033,0.0001374252],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00009122271,0.00010512769,0.00011816401,0.00065489573,0.00026128645,0.0002675999,0.00012143415,0.00012882163,0.0014656201],"category_scores_gemma":[0.00036498514,0.00008875567,0.00007185869,0.0003828762,0.00020114047,0.00015734216,0.00022221966,0.000106408064,0.00017443103],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003835146,0.00009331949,0.983732,0.0000149770685,0.000022383845,0.00029318937,0.0002640425,0.00013188075,0.012859786,0.000026642994,0.00009595544,0.0020823],"study_design_scores_gemma":[7.8389496e-7,0.000019794297,0.9996107,5.395688e-7,0.000002186538,0.00007824886,0.00014411629,0.000028324403,0.000083970626,0.0000035202468,0.000026910464,8.881812e-7],"about_ca_topic_score_codex":0.00497347,"about_ca_topic_score_gemma":0.015059976,"teacher_disagreement_score":0.00497347,"about_ca_system_score_codex":0.00021603612,"about_ca_system_score_gemma":0.00009154173,"threshold_uncertainty_score":0.009889066},"labels":[],"label_agreement":null},{"id":"W4401836861","doi":"10.1016/j.foreco.2024.122195","title":"To improve estimates of neotropical forest carbon stocks more direct measurements are needed: An example from the Southwestern Amazon","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"International Microbiome Centre, University of Calgary; Instituto Nacional de Pesquisas da Amazônia; Conselho Nacional de Desenvolvimento Científico e Tecnológico; Coordenação de Aperfeiçoamento de Pessoal de Nível Superior","keywords":"Amazon rainforest; Carbon stock; Environmental science; Ecology; Geography; Agroforestry; Climate change; Biology","score_opus":0.01811829400891908,"score_gpt":0.23124972526183166,"score_spread":0.21313143125291256,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4401836861","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9809445,0.0030795906,0.0027866382,0.0015220493,0.000026805481,0.000032978947,0.001283874,0.000035215824,0.0102884285],"genre_scores_gemma":[0.9924971,0.0014189576,0.0040295147,0.00016089823,0.000013621328,0.00001361329,0.00040318255,0.000019879699,0.0014433413],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984753,0.000039856455,0.000008810643,0.0000332983,0.000045080706,0.000025400206],"domain_scores_gemma":[0.9991621,0.00016593779,0.00011435145,0.00008519268,0.00041912295,0.00005329595],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005439501,0.00049340364,0.00039481584,0.00045825413,0.00075368676,0.00070758973,0.00036901102,0.00028472932,0.001359439],"category_scores_gemma":[0.0013847076,0.00015380389,0.00020959272,0.0013597944,0.0004244666,0.0006427593,0.00057610334,0.00046693574,0.00020649905],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016716581,0.000057567802,0.8898981,0.00021575422,0.00024472695,0.000793168,0.0018647299,0.0017042743,0.013534855,0.0013168224,0.0018694788,0.08833322],"study_design_scores_gemma":[0.000012643091,0.000020583366,0.99057555,0.000042170494,0.00005219657,0.00024701416,0.0010733921,0.0009015606,0.0007271002,0.0008330538,0.005502622,0.000012095133],"about_ca_topic_score_codex":0.2344634,"about_ca_topic_score_gemma":0.53349394,"teacher_disagreement_score":0.2344634,"about_ca_system_score_codex":0.00084291544,"about_ca_system_score_gemma":0.00056375214,"threshold_uncertainty_score":0.4661973},"labels":[],"label_agreement":null},{"id":"W4402042462","doi":"10.1016/j.foreco.2024.122255","title":"Mixed stands of black spruce (Picea mariana) and tamarack (Larix laricina) offer high secondary growth in eastern boreal forests of Canada","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of New Brunswick; Canadian Forest Service; Ministry of Natural Resources and Wildlife; Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"Natural Sciences and Engineering Research Council of Canada; Ministère de l'Énergie et des Ressources Naturelles","keywords":"Black spruce; Taiga; Boreal; Ecology; Forestry; Larch; Agroforestry; Geography; Environmental science; Biology","score_opus":0.004497862652076658,"score_gpt":0.18230222541101218,"score_spread":0.17780436275893552,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4402042462","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99917334,0.000121889796,0.000148889,0.000007772545,6.0656276e-7,0.000003742444,0.00021462355,0.000009053197,0.00032003864],"genre_scores_gemma":[0.9991104,0.000074978554,0.00036140575,0.000004832374,8.0804296e-7,0.0000023886787,0.0002629655,0.0000021474536,0.00018005984],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99980325,0.000020657619,0.000008489106,0.000057794892,0.000061986124,0.000047837308],"domain_scores_gemma":[0.99970764,0.000047225538,0.00007738848,0.000014459678,0.00007949009,0.00007383974],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002796665,0.00032056132,0.00019553983,0.00073670055,0.00068164646,0.00060173444,0.00038928402,0.000102622565,0.000762619],"category_scores_gemma":[0.0005253104,0.00015600615,0.00022821798,0.00061436475,0.0003293919,0.0002141896,0.0002550847,0.00013799318,0.00009841947],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000083321225,0.000026863418,0.98268974,0.000029216248,0.000060444938,0.00007615037,0.00024145233,0.0005913896,0.0065979003,0.0000710857,0.00010960122,0.009422868],"study_design_scores_gemma":[8.23428e-7,0.000008758582,0.9989924,0.0000024307976,0.000010288489,0.000023589408,0.00018654128,0.00041595352,0.0002171189,0.000011115018,0.00012863218,0.0000025402971],"about_ca_topic_score_codex":0.76316786,"about_ca_topic_score_gemma":0.9518556,"teacher_disagreement_score":0.23683214,"about_ca_system_score_codex":0.00276825,"about_ca_system_score_gemma":0.0016952722,"threshold_uncertainty_score":0.47645378},"labels":[],"label_agreement":null},{"id":"W4402120393","doi":"10.1016/j.foreco.2024.122254","title":"Can invading Pinus species facilitate congeneric invasion in a mountain grassland?","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of Canada; Agriculture and Agri-Food Canada","funders":"Foundation for Physical Therapy; Agencia Nacional de Promoción de la Investigación, el Desarrollo Tecnológico y la Innovación; National Geographic Society","keywords":"Grassland; Ecology; Pinus <genus>; Biodiversity; Agroforestry; Biology; Botany","score_opus":0.014703162415763115,"score_gpt":0.21414776123418533,"score_spread":0.19944459881842222,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4402120393","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99640626,0.00008724656,0.00007652741,0.000085952925,0.0000030031806,0.000004314488,0.000011680643,0.0000038750686,0.0033210577],"genre_scores_gemma":[0.99967384,0.00003624039,0.00004985379,0.000017927621,0.000003322738,0.0000019958466,0.000008325399,8.380376e-7,0.00020775285],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996278,0.00015463177,0.000010642436,0.00006779738,0.000030999345,0.0001081743],"domain_scores_gemma":[0.99872667,0.00035694367,0.00040981456,0.00010673832,0.00006826785,0.00033161126],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00068284705,0.00027590423,0.0001928355,0.0005875018,0.0007972308,0.0009809335,0.00049096224,0.000568204,0.0057538734],"category_scores_gemma":[0.002531793,0.00019590918,0.00014761591,0.00031527155,0.00073912943,0.0013445498,0.00093332,0.00031450574,0.00028442926],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00050451537,0.00022848842,0.96562827,0.00010737814,0.00010632693,0.0009374079,0.0027544738,0.00043915506,0.009122613,0.002422912,0.00032733247,0.0174211],"study_design_scores_gemma":[0.0000062480776,0.000111040135,0.99501204,0.000015112946,0.000023280869,0.00035900125,0.002948103,0.00035785718,0.00016614691,0.00044481034,0.000550387,0.0000060632997],"about_ca_topic_score_codex":0.003185244,"about_ca_topic_score_gemma":0.014034664,"teacher_disagreement_score":0.0057538734,"about_ca_system_score_codex":0.00025067455,"about_ca_system_score_gemma":0.00029366527,"threshold_uncertainty_score":0.019248605},"labels":[],"label_agreement":null},{"id":"W4402891602","doi":"10.1016/j.foreco.2024.122309","title":"Assessing assisted population migration (seed transfer) for eastern white pine at northern planting sites","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Centre de Géomatique du Québec; Canadian Forest Service; Ontario Forest Research Institute","funders":"","keywords":"Sowing; White (mutation); Population; Ecology; Agroforestry; Geography; Biology; Forestry; Environmental science; Agronomy; Demography","score_opus":0.013059194031791673,"score_gpt":0.23802250249239335,"score_spread":0.22496330846060167,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4402891602","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990214,0.000034986235,0.00024263405,0.0000062260383,0.0000013308148,0.000013442011,0.00016409848,0.0000037426066,0.0005122569],"genre_scores_gemma":[0.99869764,0.000022232032,0.0006397557,0.0000066208563,9.913896e-7,0.000017872766,0.00031498424,0.000002173931,0.00029776496],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99956495,0.00015070754,0.000018300972,0.00009247478,0.00011168042,0.000061805564],"domain_scores_gemma":[0.9984357,0.0003552826,0.00037648663,0.00013128192,0.00046720792,0.0002341416],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011067442,0.00017609935,0.00017878164,0.00043227695,0.00073841977,0.0004013708,0.00040860887,0.00016298052,0.00062572083],"category_scores_gemma":[0.0017975997,0.00007514459,0.00017272927,0.00051021756,0.00032127113,0.0002267578,0.00025011878,0.00019411076,0.00009475953],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002044173,0.00007923984,0.9799114,0.000024704592,0.0000659529,0.000119821016,0.0004938744,0.0014781648,0.0047909925,0.00007855222,0.00018099665,0.0125719225],"study_design_scores_gemma":[0.0000043231325,0.00009057518,0.99857795,0.0000030167148,0.000011405078,0.000019945306,0.0001725075,0.0006610429,0.00017382667,0.000017050674,0.00026489355,0.0000036003605],"about_ca_topic_score_codex":0.35536397,"about_ca_topic_score_gemma":0.8022056,"teacher_disagreement_score":0.35536397,"about_ca_system_score_codex":0.002211761,"about_ca_system_score_gemma":0.0014255343,"threshold_uncertainty_score":0.706591},"labels":[],"label_agreement":null},{"id":"W4403156041","doi":"10.1016/j.foreco.2024.122313","title":"Characterizing long-term tree species dynamics in Canada’s forested ecosystems using annual time series remote sensing data","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing in Agriculture","field":"Environmental Science","cited_by":23,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia; Western Forest Products; Canadian Forest Service; Natural Resources Canada","funders":"Natural Resources Canada; Alliance de recherche numérique du Canada; Canadian Forest Service; Natural Sciences and Engineering Research Council of Canada; Government of Canada","keywords":"Ecosystem; Series (stratigraphy); Time series; Ecology; Term (time); Environmental science; Forest dynamics; Forest ecology; Remote sensing; Tree (set theory); Geography; Computer science; Biology; Mathematics","score_opus":0.010532930512679468,"score_gpt":0.2062435268487134,"score_spread":0.1957105963360339,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4403156041","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9941037,0.00021455892,0.00084371853,0.000029637762,0.0000030772212,0.000013858072,0.0037811238,0.000033026314,0.000977372],"genre_scores_gemma":[0.992667,0.00019720124,0.0025306041,0.000017178483,0.0000023003547,0.00001412689,0.0041366643,0.0000063714733,0.00042860638],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99974245,0.000020788691,0.000016594182,0.00005801513,0.000101021295,0.00006112322],"domain_scores_gemma":[0.99894565,0.00012557408,0.00017883931,0.00006235985,0.00057483313,0.00011274909],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00051586766,0.00025034495,0.00014900179,0.0016270981,0.00069161964,0.0007556803,0.0004106518,0.00015653156,0.00041385883],"category_scores_gemma":[0.0011432137,0.00012279068,0.0002084752,0.0030163173,0.00023475321,0.0003259326,0.00027060634,0.00018605875,0.00011256025],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000060040835,0.000046046498,0.9550189,0.000062386884,0.00009895625,0.00007978962,0.00058987027,0.004103659,0.003017919,0.00015591881,0.0010258349,0.035740707],"study_design_scores_gemma":[0.0000018913055,0.00000715847,0.9930363,0.000012929831,0.000020317671,0.000020171674,0.00035991255,0.0051846146,0.0003912069,0.000031339994,0.0009262084,0.000007996794],"about_ca_topic_score_codex":0.9694931,"about_ca_topic_score_gemma":0.98797244,"teacher_disagreement_score":0.030506909,"about_ca_system_score_codex":0.0057718693,"about_ca_system_score_gemma":0.005355947,"threshold_uncertainty_score":0.061373055},"labels":[],"label_agreement":null},{"id":"W4403258603","doi":"10.1016/j.foreco.2024.122319","title":"Microclimate drives growth of hair lichens in boreal forest canopies after partial cutting","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia","funders":"Sveriges Lantbruksuniversitet; Svenska Forskningsrådet Formas","keywords":"Lichen; Microclimate; Taiga; Environmental science; Ecology; Boreal; Canopy; Geography; Biology","score_opus":0.006401276691219257,"score_gpt":0.20231089786221412,"score_spread":0.19590962117099486,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4403258603","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99987113,0.000019898038,0.000010886985,0.0000016873392,5.221673e-7,0.0000013572602,0.000020646887,0.0000015327441,0.00007235015],"genre_scores_gemma":[0.9997408,0.000016437029,0.000038147504,0.00000650049,9.80717e-7,0.000004145007,0.00007021896,0.0000018527065,0.00012102538],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.999926,0.000010977108,0.0000043400546,0.000022120554,0.000008989501,0.000027719285],"domain_scores_gemma":[0.99964,0.000049634164,0.000091957554,0.000017589564,0.000029917806,0.00017090759],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012545266,0.00021397995,0.00019883152,0.00027008232,0.00020839371,0.00033327242,0.00014367959,0.00016456742,0.0005505108],"category_scores_gemma":[0.00026910918,0.00013613197,0.00015797552,0.00015138047,0.00020642071,0.0001634778,0.00026624525,0.00022251096,0.000098823104],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0017064094,0.00033731354,0.36057472,0.00006355517,0.00007499743,0.0001719374,0.0006384675,0.00033846573,0.6297111,0.00003202476,0.00015771663,0.00619331],"study_design_scores_gemma":[0.000003122777,0.000100490644,0.998331,0.000001369995,0.000007757169,0.000022642904,0.00012267973,0.00017332158,0.0011801765,0.0000050440963,0.000050102517,0.0000023123991],"about_ca_topic_score_codex":0.009003944,"about_ca_topic_score_gemma":0.02002997,"teacher_disagreement_score":0.009003944,"about_ca_system_score_codex":0.0002663666,"about_ca_system_score_gemma":0.00013076243,"threshold_uncertainty_score":0.01790303},"labels":[],"label_agreement":null},{"id":"W4404551779","doi":"10.1016/j.foreco.2024.122408","title":"Little recovery of the residual stand after mountain pine beetle disturbance in old stands in the northern Rocky Mountains, Alberta, Canada.","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Mountain pine beetle; Disturbance (geology); Ecology; Geography; Bark beetle; Forestry; Environmental science; Agroforestry; Biology; Bark (sound)","score_opus":0.004924433214196231,"score_gpt":0.17298097803004986,"score_spread":0.16805654481585364,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4404551779","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99843866,0.0004909195,0.000051934625,0.000024122472,0.000004837131,0.0000061670567,0.0004412871,0.0000070551546,0.00053495925],"genre_scores_gemma":[0.9977962,0.00012922147,0.00008917586,0.000030859617,0.0000033305698,0.0000030527253,0.00079222163,0.0000021345263,0.0011539366],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997429,0.000012728315,0.000009125233,0.000059744467,0.000085405765,0.000089953035],"domain_scores_gemma":[0.9994344,0.000027847404,0.00014350064,0.00003102404,0.00016621381,0.00019709975],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030015613,0.00024026848,0.00017674682,0.0005903249,0.00074760645,0.0008315896,0.0007025205,0.0002701449,0.0006873865],"category_scores_gemma":[0.0004900421,0.00015856288,0.00016369742,0.000548319,0.0006018649,0.0002402268,0.00028148768,0.0002465486,0.00016735934],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021733563,0.000064955726,0.9793312,0.000040848034,0.00006352617,0.00033841806,0.0009075882,0.00018994152,0.006274306,0.000049162863,0.00059527246,0.011927559],"study_design_scores_gemma":[7.531647e-7,0.000008651724,0.99957675,0.0000020088492,0.00000298983,0.00001790741,0.00012763229,0.000038924423,0.00003731367,0.0000026549376,0.00018299068,0.0000013337],"about_ca_topic_score_codex":0.87583476,"about_ca_topic_score_gemma":0.9771404,"teacher_disagreement_score":0.12416524,"about_ca_system_score_codex":0.0049597546,"about_ca_system_score_gemma":0.003059608,"threshold_uncertainty_score":0.24979287},"labels":[],"label_agreement":null},{"id":"W4404906360","doi":"10.1016/j.foreco.2024.122399","title":"Characterizing the Spectral-Temporal Signatures of Eastern Hemlock (Tsuga Canadensis) Using Sentinel-2 Satellite Images and Phenology Modelling","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing in Agriculture","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; University of Guelph","funders":"","keywords":"Tsuga; Phenology; Satellite; Environmental science; Remote sensing; Spectral signature; Ecology; Geography; Biology","score_opus":0.009971108593966034,"score_gpt":0.20718927112733893,"score_spread":0.1972181625333729,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4404906360","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9956462,0.000020906686,0.0040588896,0.0000068737054,0.0000011378737,0.00000481234,0.00007005371,0.000018826006,0.00017227272],"genre_scores_gemma":[0.99466646,0.000027202052,0.0049812705,0.0000035422022,0.000002103009,0.000007078425,0.00021238312,0.000004423655,0.00009561453],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999417,0.0000124208245,0.0000028455513,0.00002234689,0.000010729816,0.0000099411045],"domain_scores_gemma":[0.9998485,0.00005745403,0.00004323676,0.000011401622,0.000020770287,0.000018667755],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029358466,0.00025419105,0.0000991499,0.00043867974,0.000105439525,0.00025203265,0.00015291772,0.0001435128,0.00014521269],"category_scores_gemma":[0.0004460757,0.00010974139,0.00025217424,0.00024757042,0.000115219664,0.00024374058,0.00013381167,0.00010904706,0.000047587117],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024895018,0.00030882744,0.6433768,0.00007034931,0.0001380317,0.00015464479,0.00035326948,0.18515112,0.118601955,0.0006332149,0.00031695014,0.050645906],"study_design_scores_gemma":[0.000006653114,0.000064113054,0.35520962,0.000003988137,0.000027084,0.00007683829,0.00009246315,0.64150316,0.002629553,0.00022295621,0.00015009799,0.000013508611],"about_ca_topic_score_codex":0.012531944,"about_ca_topic_score_gemma":0.02648552,"teacher_disagreement_score":0.012531944,"about_ca_system_score_codex":0.0002840195,"about_ca_system_score_gemma":0.0002018927,"threshold_uncertainty_score":0.02491796},"labels":[],"label_agreement":null},{"id":"W4405125256","doi":"10.1016/j.foreco.2024.122442","title":"Identifying forest harvesting practices: Clear-cutting and thinning in diverse tree species using dense Landsat time series","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Sport Centre Pacific; Canadian Forest Service","funders":"Gobierno de Navarra; Ministerio de Economía y Competitividad; European Regional Development Fund; Ministerio de Ciencia, Innovación y Universidades","keywords":"Thinning; Logging; Series (stratigraphy); Agroforestry; Tree (set theory); Clearcutting; Remote sensing; Environmental science; Forestry; Ecology; Geography; Biology; Mathematics; Paleontology","score_opus":0.02962493042310065,"score_gpt":0.26904352442391083,"score_spread":0.23941859400081017,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4405125256","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9925922,0.00010607351,0.0061244066,0.0000116999145,0.000005517727,0.000037224545,0.00047118452,0.000051652238,0.00060004136],"genre_scores_gemma":[0.9858773,0.00011401939,0.012449302,0.000010457136,0.0000074737136,0.000026831585,0.0011902465,0.0000057713783,0.00031845114],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996666,0.000041713727,0.000040323896,0.00009985088,0.00011449061,0.000037052407],"domain_scores_gemma":[0.9994789,0.00010155619,0.00018032994,0.000049502134,0.00015431203,0.000035393303],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007933283,0.00038267986,0.00022008513,0.0021917224,0.00020875606,0.0004800583,0.00023131847,0.00026428045,0.00026283404],"category_scores_gemma":[0.0008172519,0.00011274803,0.00031807716,0.0013806926,0.00013232797,0.00042325165,0.00023676615,0.00012974176,0.0001358704],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019101649,0.00027039513,0.8301523,0.000110461224,0.00015082228,0.0001945502,0.00040195367,0.008469316,0.024586264,0.0001319151,0.00048803008,0.13485304],"study_design_scores_gemma":[0.0000039401093,0.00008441536,0.96739525,0.000014260779,0.000040903917,0.00012364819,0.00043026693,0.02769915,0.003656648,0.00008691676,0.00045043105,0.000014221637],"about_ca_topic_score_codex":0.0070301523,"about_ca_topic_score_gemma":0.022078251,"teacher_disagreement_score":0.0070301523,"about_ca_system_score_codex":0.0002450118,"about_ca_system_score_gemma":0.00019643441,"threshold_uncertainty_score":0.013978481},"labels":[],"label_agreement":null},{"id":"W4405329095","doi":"10.1016/j.foreco.2024.122457","title":"Forest structure predicts aboveground biomass better than community-weighted mean of traits, functional diversity, topography, and soil in a tropical forest across spatial scales","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":15,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Windsor","funders":"Yunnan Key Research and Development Program; Chinese Academy of Sciences","keywords":"Biomass (ecology); Functional diversity; Environmental science; Ecology; Tropical forest; Forest structure; Agroforestry; Geography; Biology; Canopy","score_opus":0.00806384788140338,"score_gpt":0.2131416952929954,"score_spread":0.20507784741159202,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4405329095","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99949086,0.000053237225,0.00019436835,0.000013683955,0.0000012357125,0.000001047517,0.00006383193,0.000004459764,0.00017725884],"genre_scores_gemma":[0.9997696,0.000014883165,0.00009733109,0.0000042212737,0.0000013376351,8.6221104e-7,0.000060005874,0.0000011757232,0.0000506486],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998431,0.000045327743,0.0000079412775,0.00005363116,0.000014853885,0.000035007728],"domain_scores_gemma":[0.99906546,0.00037651183,0.00023460385,0.00007383519,0.00007397276,0.00017561519],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007033173,0.0003190402,0.00024105646,0.0004628305,0.0002719334,0.0004990168,0.00021469971,0.00021424107,0.0012157005],"category_scores_gemma":[0.0012706819,0.00014851057,0.00035432674,0.00048048934,0.00036042955,0.0005230044,0.00032181217,0.00019990136,0.00016890123],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000033368226,0.00001679909,0.9961515,0.000006866708,0.00008320735,0.000029926749,0.000073013485,0.0011925673,0.00075867225,0.000052882595,0.000050425428,0.0015507155],"study_design_scores_gemma":[0.0000017458163,0.000019623269,0.9951663,0.000003990566,0.000016165275,0.000026873802,0.00011752769,0.0044347425,0.00006820331,0.0000884957,0.000053343756,0.0000028576922],"about_ca_topic_score_codex":0.02200568,"about_ca_topic_score_gemma":0.034487993,"teacher_disagreement_score":0.02200568,"about_ca_system_score_codex":0.00020973706,"about_ca_system_score_gemma":0.00026141305,"threshold_uncertainty_score":0.043755174},"labels":[],"label_agreement":null},{"id":"W4405535819","doi":"10.1016/j.foreco.2024.122461","title":"Tree rings reveal mixtures of aspen and spruce exhibit greater drought resilience in a planted field experiment","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"Forest Resource Improvement Association of Alberta; Alberta-Pacific Forest Industries; Natural Sciences and Engineering Research Council of Canada; Weyerhaeuser Company","keywords":"Resilience (materials science); Tree (set theory); Environmental science; Agroforestry; Field (mathematics); Woody plant; Picea engelmannii; Drought stress; Ecology; Forestry; Agronomy; Biology; Geography; Mathematics; Materials science; Pinus contorta","score_opus":0.004346875325939225,"score_gpt":0.20367107090730568,"score_spread":0.19932419558136646,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4405535819","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996916,0.000012457905,0.00010176368,0.000003546658,0.0000027358085,0.0000147647825,0.000084409236,0.000005462402,0.00008329466],"genre_scores_gemma":[0.9978719,0.00003282282,0.0009231212,0.00005963885,0.0000073641445,0.0000895544,0.0004985806,0.00000690437,0.0005100615],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99964845,0.00006557578,0.000033163615,0.00015590023,0.000044964952,0.0000520165],"domain_scores_gemma":[0.99892277,0.0001341068,0.00022620971,0.0000969451,0.00012258877,0.000497321],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008462141,0.0005396303,0.0005013599,0.00051398564,0.0006214233,0.00043327222,0.00054081745,0.00039232537,0.00076772243],"category_scores_gemma":[0.00044894274,0.00027281448,0.00033848843,0.0002555833,0.00041653696,0.00049764,0.00035301497,0.0006385941,0.00015583444],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.008768168,0.009980028,0.2056639,0.000100585945,0.00036277046,0.0003320305,0.0008880794,0.0008394058,0.764548,0.00017422141,0.00032390765,0.0080188755],"study_design_scores_gemma":[0.00015816498,0.009392582,0.9676523,0.000008844748,0.00012676268,0.00018820389,0.00046446748,0.0020794272,0.01905965,0.000099708035,0.0007391721,0.00003074088],"about_ca_topic_score_codex":0.0048255064,"about_ca_topic_score_gemma":0.014435873,"teacher_disagreement_score":0.0048255064,"about_ca_system_score_codex":0.0006230376,"about_ca_system_score_gemma":0.00030221153,"threshold_uncertainty_score":0.009594858},"labels":[],"label_agreement":null},{"id":"W4405808545","doi":"10.1016/j.foreco.2024.122488","title":"Drought resilience of coastal Douglas-fir is influenced by competition but not genetic selection","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia; Western Forest Products; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; University of British Columbia","keywords":"Douglas fir; Resilience (materials science); Selection (genetic algorithm); Competition (biology); Ecology; Psychological resilience; Biology; Geography; Forestry; Agroforestry; Computer science; Psychology","score_opus":0.0024797228192027063,"score_gpt":0.18522664071382544,"score_spread":0.18274691789462275,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4405808545","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997882,0.000013547664,0.00003082083,0.0000037350599,5.344354e-7,0.0000012865573,0.000022098551,0.0000015182281,0.00013824787],"genre_scores_gemma":[0.99969375,0.000011896628,0.000076660785,0.000014384724,5.0659924e-7,0.0000027243716,0.000059045124,0.0000017396629,0.00013928804],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99968076,0.00006232663,0.000021509131,0.00011485664,0.000053581047,0.00006704846],"domain_scores_gemma":[0.99928916,0.00014165344,0.00016111342,0.00009046457,0.00008920927,0.00022837268],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00051674194,0.00024158428,0.0003026166,0.00032571828,0.0004509694,0.00040333736,0.00031203995,0.00018158181,0.0008871835],"category_scores_gemma":[0.00063772255,0.00015024171,0.00017981218,0.00026515266,0.00044800824,0.00014357248,0.00033564484,0.000291564,0.00008506229],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001124678,0.00034348533,0.6225565,0.00004761366,0.00019396412,0.0002659717,0.00068493193,0.00065246306,0.36377487,0.00015613169,0.00021732201,0.009982047],"study_design_scores_gemma":[0.000004623369,0.00006274216,0.9987979,0.0000015835823,0.0000102501945,0.00003309163,0.00009756047,0.00025560346,0.0006273717,0.000013678655,0.00009076498,0.000004901596],"about_ca_topic_score_codex":0.052179098,"about_ca_topic_score_gemma":0.21098228,"teacher_disagreement_score":0.052179098,"about_ca_system_score_codex":0.0008620014,"about_ca_system_score_gemma":0.0006403374,"threshold_uncertainty_score":0.103750765},"labels":[],"label_agreement":null},{"id":"W4405889090","doi":"10.1016/j.foreco.2024.122482","title":"Can tree-rings inform assisted migration? Revisiting provenance trials across Atlantic Canada to compare local adaptation between red spruce populations","year":2024,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval; University of New Brunswick","funders":"Natural Sciences and Engineering Research Council of Canada; New Brunswick Innovation Foundation","keywords":"Provenance; Local adaptation; Adaptation (eye); Dendrochronology; Geography; Ecology; Tree (set theory); Biology; Archaeology; Paleontology; Demography; Population; Mathematics","score_opus":0.03028688258353358,"score_gpt":0.27969472273045326,"score_spread":0.2494078401469197,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4405889090","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99857485,0.000105942185,0.00055221363,0.000025849024,0.000005674953,0.000024403469,0.00032574008,0.0000075265566,0.00037784525],"genre_scores_gemma":[0.997867,0.00005498649,0.001412147,0.000024342185,0.0000024345145,0.000017428094,0.0003657188,0.00000661014,0.00024937832],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9985234,0.00057285355,0.00007869899,0.00038002437,0.00023205647,0.00021293398],"domain_scores_gemma":[0.99392265,0.0014656667,0.0009250996,0.0008651133,0.0022418166,0.000579518],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0044441875,0.0002691813,0.0003648418,0.0006865423,0.001671635,0.00079235976,0.0007745484,0.00027013177,0.0003791264],"category_scores_gemma":[0.005727183,0.00013553565,0.00027405433,0.0010395651,0.0008766113,0.0002991736,0.00062850956,0.00045660176,0.000057493748],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028817597,0.00005334035,0.9821494,0.00001631554,0.00011808618,0.00009673246,0.0015185177,0.00087046507,0.0030821152,0.00013288364,0.00024949375,0.011424488],"study_design_scores_gemma":[0.000015741925,0.00009300886,0.99477816,0.000015412763,0.00006137774,0.000032558295,0.0010294146,0.0018129025,0.00068126695,0.000100878155,0.0013662762,0.00001302977],"about_ca_topic_score_codex":0.80507576,"about_ca_topic_score_gemma":0.9596579,"teacher_disagreement_score":0.19492424,"about_ca_system_score_codex":0.0041259136,"about_ca_system_score_gemma":0.0053768917,"threshold_uncertainty_score":0.39214432},"labels":[],"label_agreement":null},{"id":"W4406609003","doi":"10.1016/j.foreco.2025.122498","title":"Interactions of soil properties and dominant tree canopy species with vegetation recruitment within a mine wasteland of the Zambian Copperbelt","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Mining and Resource Management","field":"Engineering","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Copperbelt University; National Research Foundation of Korea; National Research Foundation; National Science and Technology Council; International Development Research Centre","keywords":"Canopy; Vegetation (pathology); Ecology; Geography; Tree (set theory); Tree canopy; Agroforestry; Forestry; Environmental science; Biology; Mathematics","score_opus":0.017463008264443344,"score_gpt":0.20437873354029987,"score_spread":0.18691572527585654,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4406609003","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99991894,0.0000084192725,0.0000061131295,0.000004326573,1.3813195e-7,7.8012147e-7,0.000010069623,2.6825145e-7,0.000050902512],"genre_scores_gemma":[0.9998535,0.0000084745525,0.000016579761,0.0000029246546,2.179836e-7,0.0000015057317,0.000016499382,4.4438048e-7,0.00009975788],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977297,0.000059818496,0.000008223887,0.00003372086,0.000013736765,0.000111594105],"domain_scores_gemma":[0.9995302,0.0001320243,0.00014068908,0.000020784972,0.00006223957,0.000114093964],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027019848,0.00019976703,0.00027062543,0.00052756537,0.0011766505,0.00077281985,0.00038923894,0.00025607308,0.0015361031],"category_scores_gemma":[0.00095855613,0.00024954494,0.00018007917,0.00065430586,0.0007062091,0.000309479,0.0007033716,0.00033203873,0.0001369184],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018270314,0.00005815618,0.9897911,0.000015500706,0.000033542183,0.00034419252,0.0040564826,0.00012366525,0.0032157153,0.00009058057,0.00009422429,0.0019941481],"study_design_scores_gemma":[0.0000010752422,0.000026923697,0.9973839,0.0000036370848,0.0000064647074,0.000041499217,0.0023341842,0.000103577266,0.000040704934,0.000006299037,0.000050088318,0.0000016722828],"about_ca_topic_score_codex":0.20055555,"about_ca_topic_score_gemma":0.5264064,"teacher_disagreement_score":0.20055555,"about_ca_system_score_codex":0.0012274196,"about_ca_system_score_gemma":0.00087663764,"threshold_uncertainty_score":0.3987764},"labels":[],"label_agreement":null},{"id":"W4406819057","doi":"10.1016/j.foreco.2025.122506","title":"Composite effects of forest harvests and seismic lines influence re-establishment of trees and shrubs in Alberta’s mesic upland boreal forest","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Natural Resources Canada; Natural Sciences and Engineering Research Council of Canada; ConocoPhillips Canada; Cenovus Energy","keywords":"Taiga; Environmental science; Agroforestry; Boreal; Woody plant; Forestry; Ecology; Geography; Biology","score_opus":0.00210237607111449,"score_gpt":0.1959156812523315,"score_spread":0.193813305181217,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4406819057","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99942243,0.000042248153,0.00004315116,0.000009626581,0.0000010025151,0.000002706685,0.00003627681,0.00000469758,0.00043780566],"genre_scores_gemma":[0.9991032,0.00006013166,0.00016104504,0.00002251278,0.000001825692,0.0000040334025,0.000109926914,0.000003349831,0.00053406035],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997634,0.000029335157,0.000008713676,0.000049615024,0.00006412779,0.0000847621],"domain_scores_gemma":[0.99957365,0.000060815746,0.000095868214,0.000019291963,0.00007378916,0.00017657095],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025221703,0.00029353568,0.00021533569,0.00047135743,0.00061890774,0.0007869202,0.00042494538,0.00018421072,0.00098026],"category_scores_gemma":[0.00036437047,0.00014450548,0.00019558944,0.00043051055,0.0007775901,0.00020833116,0.00056080084,0.00027919363,0.00008777544],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010173862,0.00027436687,0.90956414,0.000065431756,0.00011720203,0.00043093672,0.0014402563,0.001422545,0.06731095,0.00022264171,0.00035009827,0.017784053],"study_design_scores_gemma":[0.0000024247147,0.000029032974,0.9988834,0.0000020741443,0.000007156115,0.000011452891,0.0004431649,0.00019833287,0.00026433024,0.00001724567,0.00013886331,0.0000025195277],"about_ca_topic_score_codex":0.37663463,"about_ca_topic_score_gemma":0.78515404,"teacher_disagreement_score":0.6233654,"about_ca_system_score_codex":0.0027700514,"about_ca_system_score_gemma":0.0014675139,"threshold_uncertainty_score":0.74888474},"labels":[],"label_agreement":null},{"id":"W4406939374","doi":"10.1016/j.foreco.2025.122503","title":"Soil nutrients and season drive fine root traits, soil microbial community and their interaction in a Pinus koraiensis seed orchard","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"China Scholarship Council; National Natural Science Foundation of China","keywords":"Pinus koraiensis; Nutrient; Agronomy; Orchard; Soil nutrients; Environmental science; Biology; Botany; Ecology","score_opus":0.007792855004277213,"score_gpt":0.21317540949191516,"score_spread":0.20538255448763795,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4406939374","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998927,0.000011339903,0.000018433428,0.0000019103993,4.0564157e-7,0.0000012174512,0.000020024661,0.0000010003713,0.000052961517],"genre_scores_gemma":[0.9995565,0.000011576598,0.00006165892,0.0000070485457,4.986172e-7,0.0000031641896,0.000052767486,0.0000014648524,0.00030534892],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999207,0.000012369545,0.000004513246,0.000033288674,0.000011879022,0.000017101404],"domain_scores_gemma":[0.9998055,0.000046674657,0.000033890767,0.000008924911,0.000024487264,0.000080602906],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00011565503,0.0001658293,0.00018683224,0.00026949687,0.00032834252,0.0002579432,0.00026222758,0.00013287597,0.00056220463],"category_scores_gemma":[0.00014416869,0.0001582677,0.00011109966,0.00017272483,0.00024059264,0.00023784993,0.00025964645,0.00024026848,0.00007425928],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011062342,0.00053842715,0.5005289,0.000058225043,0.00008002807,0.00047696722,0.0011025331,0.00024134174,0.49110365,0.00015850953,0.00009685585,0.004508333],"study_design_scores_gemma":[0.0000032953535,0.00006708882,0.997931,7.8192267e-7,0.00000834023,0.000053161642,0.0001882125,0.00032135507,0.0013505854,0.000014360701,0.00005852317,0.0000032942287],"about_ca_topic_score_codex":0.01590219,"about_ca_topic_score_gemma":0.059763648,"teacher_disagreement_score":0.01590219,"about_ca_system_score_codex":0.0004239066,"about_ca_system_score_gemma":0.0003278902,"threshold_uncertainty_score":0.03161925},"labels":[],"label_agreement":null},{"id":"W4407125299","doi":"10.1016/j.foreco.2025.122542","title":"Changes in wood density, growth, and carbon storage of the main stem of planted white spruce (Picea glauca) after commercial thinning","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"Natural Sciences and Engineering Research Council of Canada; Ministère de l'Énergie et des Ressources Naturelles; Institut national de la recherche scientifique; Université Laval","keywords":"Thinning; Botany; Carbon fibers; Environmental science; Biology; Ecology; Materials science; Composite material","score_opus":0.003892883713887004,"score_gpt":0.18530453317532689,"score_spread":0.1814116494614399,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4407125299","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996908,0.000019246665,0.000075468735,0.0000012679391,3.1647943e-7,0.0000024350268,0.00011024286,0.000002179948,0.00009803146],"genre_scores_gemma":[0.999091,0.000022385593,0.00020236094,0.000004910405,5.044993e-7,0.0000059559716,0.00037507396,0.0000013044252,0.0002965846],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989057,0.000011360684,0.000005021647,0.000045812427,0.000021866195,0.000025377374],"domain_scores_gemma":[0.99978286,0.000028136392,0.00006018198,0.000014541681,0.00007556146,0.00003869946],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020427286,0.000252024,0.00014114233,0.0003506809,0.00035099077,0.00030289977,0.0002521355,0.00013379661,0.00042817232],"category_scores_gemma":[0.00018175694,0.00012198321,0.000161167,0.0002803542,0.00019269288,0.0001518043,0.00010124447,0.00013356627,0.00008779453],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016287711,0.00009855744,0.9136467,0.000033488122,0.000068114095,0.000104423925,0.00033122668,0.0010111938,0.07730573,0.00003605506,0.00009164486,0.0071100667],"study_design_scores_gemma":[4.844437e-7,0.000016558939,0.9991417,6.766431e-7,0.0000032783837,0.000010044423,0.0000455846,0.00033762137,0.00040187084,0.0000018116855,0.00003903377,0.0000011969965],"about_ca_topic_score_codex":0.28170565,"about_ca_topic_score_gemma":0.59897065,"teacher_disagreement_score":0.28170565,"about_ca_system_score_codex":0.0017183585,"about_ca_system_score_gemma":0.00053668674,"threshold_uncertainty_score":0.5601319},"labels":[],"label_agreement":null},{"id":"W4407270996","doi":"10.1016/j.foreco.2024.122425","title":"An evidence map of research assessing the effects of timber harvesting on water quality, biotic and biodiversity indicators in running waters","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fish Ecology and Management Studies","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Nature Conservancy of Canada; University of British Columbia; Carleton University","funders":"Fonds de recherche du Québec – Nature et technologies; Natural Sciences and Engineering Research Council of Canada","keywords":"Biodiversity; Environmental science; Ecology; Water quality; Biotic component; Abiotic component; Biology","score_opus":0.02514194187204502,"score_gpt":0.3346054156519379,"score_spread":0.3094634737798929,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4407270996","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":"methods","model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":"methods","domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.017389264,0.9032657,0.0072028516,0.014914213,0.00079058675,0.002565141,0.028449701,0.00042754106,0.024994995],"genre_scores_gemma":[0.09615005,0.8563274,0.027642656,0.00275251,0.00039642717,0.003499614,0.012152273,0.00009346358,0.0009856515],"study_design_codex":"systematic_review","study_design_gemma":"systematic_review","domain_scores_codex":[0.98879707,0.002337881,0.0044661686,0.0013769323,0.0024974167,0.0005246785],"domain_scores_gemma":[0.87981313,0.08858347,0.012325946,0.0016511297,0.016282192,0.0013441716],"candidate_categories":["metaresearch"],"consensus_categories":[],"category_scores_codex":[0.012735183,0.0018465531,0.0032132186,0.0807197,0.0018274819,0.0079623945,0.0025865887,0.0026898126,0.011473176],"category_scores_gemma":[0.07007256,0.0011948113,0.0031967133,0.08103679,0.0018464881,0.00733053,0.004864695,0.0023628282,0.0020853162],"study_design_candidate":"systematic_review","study_design_consensus":"systematic_review","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00034507885,0.00010266133,0.013110953,0.5519499,0.0022016945,0.00078234245,0.003896122,0.0015841114,0.0013060466,0.0130090555,0.019793347,0.3919187],"study_design_scores_gemma":[0.00016321182,0.00026195744,0.03533166,0.720671,0.011282115,0.00082521886,0.0045051835,0.0008074414,0.00080401124,0.01801042,0.20721123,0.00012655213],"about_ca_topic_score_codex":0.010622962,"about_ca_topic_score_gemma":0.013979786,"teacher_disagreement_score":0.9872648,"about_ca_system_score_codex":0.004347461,"about_ca_system_score_gemma":0.017581595,"threshold_uncertainty_score":0.067350924},"labels":[],"label_agreement":null},{"id":"W4407553666","doi":"10.1016/j.foreco.2025.122554","title":"Conifer epiphytic phyllosphere bacterial communities respond more strongly to rain exclusion and host species identity than to soil water content","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Microbial Community Ecology and Physiology","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; Ministry of Natural Resources and Wildlife; Université Laval; Environment and Climate Change Canada; Université du Québec à Montréal","funders":"","keywords":"Phyllosphere; Epiphyte; Host (biology); Ecology; Biology; Botany; Bacteria","score_opus":0.01446925981608856,"score_gpt":0.23145192894051625,"score_spread":0.21698266912442768,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4407553666","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990144,0.00013310672,0.0002360022,0.000016076656,0.0000036211563,0.000007673617,0.00022232223,0.000007905773,0.00035905477],"genre_scores_gemma":[0.9987608,0.00008274105,0.00034231422,0.00006319249,0.000004576906,0.000017890696,0.00047891636,0.0000045848574,0.00024503487],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99956757,0.00006730665,0.000025360396,0.00016794272,0.000063499596,0.00010829619],"domain_scores_gemma":[0.9995815,0.00006308767,0.0001349707,0.000030534447,0.00009385345,0.00009593235],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00034503883,0.0003850534,0.0003725913,0.00032556988,0.0007348141,0.0006705527,0.00018558338,0.0002691428,0.0011731465],"category_scores_gemma":[0.00042725232,0.00015683977,0.00025394035,0.00039533447,0.00039128104,0.0005877796,0.00045335747,0.00037994012,0.00018152848],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005071266,0.0002589503,0.56399906,0.00020218527,0.0001226904,0.00016298745,0.00077079266,0.00025074426,0.41945297,0.00009101158,0.00028635032,0.013895192],"study_design_scores_gemma":[0.0000027890076,0.00011478957,0.9962788,0.000005502243,0.000013118704,0.00004347731,0.0003032068,0.00018033567,0.0025805177,0.000026865771,0.0004447402,0.000005732219],"about_ca_topic_score_codex":0.007924405,"about_ca_topic_score_gemma":0.014792432,"teacher_disagreement_score":0.007924405,"about_ca_system_score_codex":0.0002667374,"about_ca_system_score_gemma":0.0004608,"threshold_uncertainty_score":0.015756547},"labels":[],"label_agreement":null},{"id":"W4407622780","doi":"10.1016/j.foreco.2025.122555","title":"The importance of the volatile carbon fraction in estimating deadwood carbon concentrations","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Haliburton Forest & Wild Life Reserve; The Scarborough Hospital; University of Toronto","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Carbon fibers; Fraction (chemistry); Environmental science; Environmental chemistry; Chemistry; Materials science; Composite material; Composite number","score_opus":0.007495929249641649,"score_gpt":0.20361706913457628,"score_spread":0.19612113988493463,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4407622780","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.77156234,0.023068756,0.19504754,0.00019979161,0.00043580338,0.00034741813,0.0036650111,0.0005628338,0.00511046],"genre_scores_gemma":[0.91825294,0.0028506855,0.07466307,0.00022900745,0.00008745099,0.00021009236,0.002373196,0.00019276583,0.0011407863],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.998323,0.0003079735,0.0001355213,0.00063019624,0.00047551843,0.00012771081],"domain_scores_gemma":[0.99640626,0.0021807076,0.00034214355,0.0003954755,0.0005822831,0.000093182935],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.003971357,0.0011133983,0.0009767495,0.002001921,0.0009833617,0.0017060767,0.0010876672,0.0008065822,0.0008687807],"category_scores_gemma":[0.006457873,0.00042274094,0.0006999069,0.0015046935,0.00059330114,0.001800441,0.000733403,0.0007524395,0.00047158933],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00056421023,0.00013975761,0.621934,0.0014007947,0.0011379276,0.00036268003,0.000995006,0.009863541,0.15239903,0.0011583556,0.0012994607,0.20874523],"study_design_scores_gemma":[0.000021694574,0.00037054776,0.8643497,0.00033958297,0.0005176768,0.0010717867,0.0007648983,0.04390825,0.07215325,0.004277331,0.0120406225,0.00018468706],"about_ca_topic_score_codex":0.0063723535,"about_ca_topic_score_gemma":0.015319403,"teacher_disagreement_score":0.0063723535,"about_ca_system_score_codex":0.00041059326,"about_ca_system_score_gemma":0.00040842374,"threshold_uncertainty_score":0.02100277},"labels":[],"label_agreement":null},{"id":"W4407686583","doi":"10.1016/j.foreco.2025.122550","title":"Spruce hybrids show superior lifespan growth but intermediate response to climate stress compared to their ecologically divergent parental species","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":4,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; Ministère des Ressources naturelles et des Forêts (Québec); Natural Resources Canada; Canadian Forest Service; Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada; Génome Québec; Genome Canada","keywords":"Hybrid; Ecology; Biology; Climate change; Heat stress; Botany","score_opus":0.012922927183376894,"score_gpt":0.22472316766669664,"score_spread":0.21180024048331975,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4407686583","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9983956,0.00014873409,0.00049087306,0.0000077995555,0.0000045984425,0.0000039655274,0.0002060947,0.000041790412,0.00070037687],"genre_scores_gemma":[0.9973355,0.00007455406,0.0006602548,0.00002139463,0.000004499149,0.000009987921,0.00059585064,0.000028332792,0.0012695862],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99985206,0.000022476414,0.000011248269,0.000064081876,0.000026624079,0.000023533816],"domain_scores_gemma":[0.99975973,0.00004770093,0.00007043478,0.00002683876,0.000025501393,0.00006981064],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018199973,0.00050623476,0.00021687217,0.00066219363,0.0002413064,0.0002758035,0.00016450482,0.00020667477,0.0009272807],"category_scores_gemma":[0.00012002757,0.00011072874,0.00017523322,0.00021744033,0.00021153211,0.00013262028,0.00031262744,0.0003346022,0.00026564888],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020925471,0.00008890119,0.011630242,0.000023048453,0.00004000798,0.00014156237,0.000117998905,0.00012039027,0.98451984,0.00009481921,0.000033275024,0.0029807326],"study_design_scores_gemma":[0.000021356604,0.00055605156,0.93583,0.000009458082,0.00005949835,0.0013573924,0.00032662423,0.0006238237,0.0591393,0.00020107198,0.001851115,0.000024250196],"about_ca_topic_score_codex":0.0009258523,"about_ca_topic_score_gemma":0.002328315,"teacher_disagreement_score":0.0009272807,"about_ca_system_score_codex":0.00015128005,"about_ca_system_score_gemma":0.00008148513,"threshold_uncertainty_score":0.0031020045},"labels":[],"label_agreement":null},{"id":"W4407991649","doi":"10.1016/j.foreco.2025.122576","title":"Moderate-resolution mapping of aboveground biomass stocks, forest structure, and composition in coastal Alaska and British Columbia","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":7,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"Pacific Northwest Research Station; U.S. Forest Service; National Science Foundation","keywords":"Biomass (ecology); Forest structure; Geography; Environmental science; Carbon stock; Forestry; Composition (language); Ecology; Physical geography; Climate change; Canopy; Biology; Archaeology","score_opus":0.00450759890631154,"score_gpt":0.1980563357334457,"score_spread":0.19354873682713417,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4407991649","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982528,0.00012647347,0.00013459977,0.000024305984,0.0000016793181,0.0000045520533,0.00038859376,0.000012632046,0.0010543216],"genre_scores_gemma":[0.9986394,0.000068309426,0.0002808065,0.000010113937,8.009451e-7,0.000005946845,0.00035011582,0.0000021517965,0.00064229633],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989617,0.000009961721,0.000008447198,0.000033361204,0.000024699173,0.000027365788],"domain_scores_gemma":[0.99957854,0.000051905135,0.000036912483,0.000023823197,0.00023927263,0.000069560425],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023158173,0.00015026335,0.00018583004,0.001152538,0.0010278677,0.0008660949,0.00033348886,0.0002233693,0.0007188188],"category_scores_gemma":[0.00062597427,0.00014923126,0.00009796087,0.0014692253,0.00028698103,0.00025389725,0.00067313755,0.0001896693,0.0001293435],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018508846,0.00009083579,0.9404927,0.00004570429,0.00008918512,0.0002583208,0.0013386095,0.0067252764,0.008625767,0.0002927507,0.0012146243,0.040641002],"study_design_scores_gemma":[0.0000069888506,0.0000048754314,0.9930098,0.000020345436,0.000018139806,0.00003014409,0.0012522878,0.0043149493,0.0003159624,0.000059003283,0.0009553515,0.000012257067],"about_ca_topic_score_codex":0.8959927,"about_ca_topic_score_gemma":0.9678402,"teacher_disagreement_score":0.1040073,"about_ca_system_score_codex":0.0023119454,"about_ca_system_score_gemma":0.0027525614,"threshold_uncertainty_score":0.2092396},"labels":[],"label_agreement":null},{"id":"W4408113768","doi":"10.1016/j.foreco.2025.122559","title":"Complexity in long-term stand dynamics of mixed-species, multi-cohort stands using an imputation/copula tree growth model","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of New Brunswick","funders":"","keywords":"Copula (linguistics); Imputation (statistics); Econometrics; Statistics; Mathematics; Term (time); Ecology; Biology; Missing data; Physics","score_opus":0.022934073189493653,"score_gpt":0.26540869541768763,"score_spread":0.242474622228194,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4408113768","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.5459375,0.0005815119,0.4447008,0.00055319775,0.000056039054,0.00011471786,0.0014058407,0.00041645626,0.0062340037],"genre_scores_gemma":[0.9735541,0.00022769066,0.02058983,0.000069079106,0.000024251798,0.00011593036,0.0007988651,0.000088756606,0.0045315498],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99950886,0.00014414573,0.00002697612,0.00016885853,0.000058559934,0.00009272887],"domain_scores_gemma":[0.99790025,0.0011022649,0.00044023074,0.00013306316,0.00028351284,0.00014069588],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002676653,0.0006477433,0.00082742254,0.0006425918,0.0006656522,0.0016570694,0.002087273,0.0010203589,0.001553486],"category_scores_gemma":[0.003969867,0.00075841305,0.0015480763,0.00080758164,0.00066679984,0.0011764533,0.00082173536,0.0012877801,0.00026225057],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000018105051,0.000025446452,0.006871404,0.000012837069,0.000047888836,0.00009065432,0.00004710082,0.9857653,0.00024746868,0.00416582,0.00029411187,0.0024139364],"study_design_scores_gemma":[0.000001483175,0.0000046714104,0.00083257316,0.0000032282396,0.000007883746,0.000010911251,0.0000069869902,0.99810046,0.0000249556,0.00092767295,0.0000746279,0.000004560961],"about_ca_topic_score_codex":0.048680007,"about_ca_topic_score_gemma":0.03189578,"teacher_disagreement_score":0.048680007,"about_ca_system_score_codex":0.001682716,"about_ca_system_score_gemma":0.0019358257,"threshold_uncertainty_score":0.096793294},"labels":[],"label_agreement":null},{"id":"W4408359645","doi":"10.1016/j.foreco.2025.122621","title":"Mechanical site preparation and use of non-invasive cover crops influences early-successional forest vegetation composition of a reclaimed airstrip in the Boreal Forest","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Biomass Utilization and Management","field":"Engineering","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Northern Alberta Institute of Technology","funders":"Natural Sciences and Engineering Research Council of Canada; Shell Canada; Canadian Natural Resources Limited","keywords":"Taiga; Environmental science; Vegetation (pathology); Boreal; Ecology; Agroforestry; Ecological succession; Clearcutting; Forestry; Geography; Biology","score_opus":0.007738234906493883,"score_gpt":0.23725186206137663,"score_spread":0.22951362715488274,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4408359645","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99973136,0.000032558946,0.000016655164,0.0000028920538,7.5493676e-7,0.0000036293372,0.000054397377,0.0000018844562,0.00015585012],"genre_scores_gemma":[0.9991937,0.000047074354,0.0001291299,0.000010848558,8.7279875e-7,0.0000046660575,0.00014907886,0.0000023355235,0.0004622456],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983275,0.000016612257,0.0000075361672,0.00005055022,0.000031202453,0.000061354585],"domain_scores_gemma":[0.9995765,0.000040185023,0.00008271082,0.0000149426905,0.00008523777,0.00020042792],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014668395,0.00025170125,0.00022555845,0.00027995463,0.00059524644,0.0006154657,0.0003629193,0.00015693656,0.0007008497],"category_scores_gemma":[0.00025934933,0.00016100574,0.00019360043,0.00022512894,0.00040587565,0.00015604573,0.00021292407,0.00022420035,0.00012937312],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0013619744,0.0005447871,0.77582216,0.00009418348,0.00010613132,0.00044276688,0.0013209366,0.0005542406,0.20739798,0.000053458025,0.00023911317,0.012062288],"study_design_scores_gemma":[0.0000025915024,0.00010772527,0.99872094,0.000002304187,0.0000058803857,0.000024619283,0.0003105304,0.00014709253,0.0005421481,0.0000029451191,0.0001302534,0.0000029010248],"about_ca_topic_score_codex":0.599324,"about_ca_topic_score_gemma":0.877314,"teacher_disagreement_score":0.599324,"about_ca_system_score_codex":0.0028668833,"about_ca_system_score_gemma":0.0018649119,"threshold_uncertainty_score":0.80607134},"labels":[],"label_agreement":null},{"id":"W4408472850","doi":"10.1016/j.foreco.2025.122649","title":"Response of breeding bird communities to emerald ash borer invasion in southern Ontario hardwood forests: Pre and post-infestation","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"Ministry of Natural Resources","keywords":"Emerald ash borer; Infestation; Hardwood; Ecology; Native forest; Geography; Biology; Fraxinus; Agroforestry; Forestry; Environmental science; Agronomy","score_opus":0.007665649368264259,"score_gpt":0.21814741994058884,"score_spread":0.2104817705723246,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4408472850","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99948347,0.000018684552,0.0000047416265,0.00001904686,8.2216104e-7,0.000002270969,0.00006851428,4.6966912e-7,0.00040183315],"genre_scores_gemma":[0.9988426,0.000023979008,0.000013272696,0.000014497418,0.0000010993334,0.000003588876,0.00010446238,5.2819485e-7,0.0009959703],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985766,0.0000186169,0.0000053664294,0.000025658193,0.00002833883,0.00006430618],"domain_scores_gemma":[0.99918455,0.00008565758,0.00020015205,0.00002063511,0.00016507592,0.00034400384],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016648554,0.00010046414,0.00011623835,0.00029286227,0.0007505371,0.0005399457,0.00034188706,0.00028239918,0.0022926922],"category_scores_gemma":[0.000743767,0.00017494906,0.00012400665,0.0002533655,0.0005633439,0.00032580865,0.0004890381,0.000289098,0.00020547619],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031342797,0.000055309873,0.99232376,0.0000141708415,0.000022650967,0.000111492925,0.0026106038,0.00008871046,0.0026065796,0.000043457498,0.00023988583,0.0015698114],"study_design_scores_gemma":[6.824266e-7,0.0000070617216,0.9991574,9.3718927e-7,8.36594e-7,0.000005754679,0.0007417194,0.000014408851,0.000015035797,0.000001966524,0.000053583903,5.920708e-7],"about_ca_topic_score_codex":0.7094601,"about_ca_topic_score_gemma":0.95139074,"teacher_disagreement_score":0.29053992,"about_ca_system_score_codex":0.0033418236,"about_ca_system_score_gemma":0.0016597805,"threshold_uncertainty_score":0.5845019},"labels":[],"label_agreement":null},{"id":"W4408520527","doi":"10.1016/j.foreco.2025.122613","title":"Long-term trajectories of impacts and recovery of headwater stream temperatures after forest harvest in interior British Columbia","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Hydrology and Sediment Transport Processes","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Simon Fraser University; Pacific Salmon Commission; Fisheries and Oceans Canada","funders":"","keywords":"Term (time); Environmental science; Ecology; Geography; Disturbance (geology); Agroforestry; Hydrology (agriculture); Forestry; Geology; Biology; Geomorphology; Geotechnical engineering","score_opus":0.0027358064302139425,"score_gpt":0.1962627833307098,"score_spread":0.19352697690049583,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4408520527","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9987155,0.00007499553,0.000018520135,0.00008188551,0.000003188658,0.0000033063113,0.0005520826,0.000002664493,0.00054773333],"genre_scores_gemma":[0.99709153,0.00010317489,0.000023876712,0.000033102082,0.0000016196046,0.0000061171054,0.0008649577,0.0000024245903,0.0018731059],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977654,0.000019157975,0.000012060243,0.000038402595,0.000037113317,0.00011676581],"domain_scores_gemma":[0.9988098,0.00013063659,0.0001897263,0.00005231958,0.0003882772,0.00042929247],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029929058,0.00016521693,0.00023069802,0.00061434484,0.0012740616,0.0010548005,0.0006851654,0.0005608762,0.0026334443],"category_scores_gemma":[0.0013928608,0.00024326556,0.00022425532,0.0010067055,0.0006514454,0.0004219486,0.0010390457,0.00083945075,0.00044652706],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019379029,0.00010346034,0.991619,0.0000114528175,0.000063875035,0.00012673505,0.0011059084,0.0005627882,0.00051662704,0.000075466945,0.001070931,0.004549994],"study_design_scores_gemma":[0.000001988607,0.0000057180446,0.9985482,0.00000707238,0.000006028341,0.000009298419,0.0009681458,0.00016033312,0.00002763467,0.000009564916,0.0002524117,0.000003558292],"about_ca_topic_score_codex":0.95644826,"about_ca_topic_score_gemma":0.98798114,"teacher_disagreement_score":0.043551743,"about_ca_system_score_codex":0.006932989,"about_ca_system_score_gemma":0.0044504562,"threshold_uncertainty_score":0.087616384},"labels":[],"label_agreement":null},{"id":"W4408529896","doi":"10.1016/j.foreco.2025.122653","title":"Perspectives: The license to fail – Steps towards an adaptive paradigm for forest management in times of unprecedented uncertainty","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":3,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Bundesamt für Naturschutz; BioFuelNet Canada","keywords":"Adaptive management; Forest management; License; Environmental resource management; Computer science; Business; Agroforestry; Environmental science","score_opus":0.00963690302441849,"score_gpt":0.26123087696426756,"score_spread":0.25159397393984906,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4408529896","genre_codex":"commentary","genre_gemma":"commentary","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"commentary","genre_consensus":"commentary","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0051752394,0.008981532,0.0522845,0.83362687,0.0042744824,0.000041850915,0.000084551975,0.0001182955,0.095412716],"genre_scores_gemma":[0.73780406,0.014858826,0.038664695,0.16657174,0.0117452275,0.0003242788,0.00013471994,0.00044220683,0.02945418],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.98431814,0.0093585625,0.0003484449,0.001898978,0.0027776952,0.0012981584],"domain_scores_gemma":[0.98210216,0.010172091,0.0011126212,0.0017579611,0.0022049088,0.002650382],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.025505632,0.0013132779,0.0010120181,0.0019347399,0.010983829,0.0193274,0.0038482647,0.015821427,0.009281381],"category_scores_gemma":[0.018608483,0.00050911185,0.0011877335,0.0012049386,0.071224205,0.035245292,0.009463513,0.021390412,0.0018669001],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":"theoretical_or_conceptual","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000017629434,0.000025450381,0.00017547404,0.00006368463,0.000008535808,0.00009330836,0.003333005,0.0005658437,0.00009860498,0.9725363,0.01420354,0.008878533],"study_design_scores_gemma":[0.000006449194,0.000020344727,0.000094465395,0.0001373359,0.000003612919,0.00005749135,0.0024296474,0.000615042,0.000087074084,0.91653204,0.079993956,0.000022579432],"about_ca_topic_score_codex":0.0038673808,"about_ca_topic_score_gemma":0.004333318,"teacher_disagreement_score":0.025505632,"about_ca_system_score_codex":0.008335715,"about_ca_system_score_gemma":0.011040892,"threshold_uncertainty_score":0.13488829},"labels":[],"label_agreement":null},{"id":"W4408541261","doi":"10.1016/j.foreco.2025.122592","title":"Numerical response of Trypodendron lineatum to hemlock looper defoliation in boreal balsam fir forest","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval; Centre de Géomatique du Québec; Natural Resources Canada; Canadian Forest Service","funders":"Canadian Forest Service; Natural Sciences and Engineering Research Council of Canada; Université Laval","keywords":"Balsam; Abies lasiocarpa; Taiga; Western Hemlock; Abies balsamea; Douglas fir; Boreal; Choristoneura fumiferana; Biology; Forestry; Environmental science; Botany; Ecology; PEST analysis; Spruce budworm; Geography; Tortricidae; Pinus contorta","score_opus":0.004054970192013111,"score_gpt":0.22680771770536223,"score_spread":0.22275274751334911,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4408541261","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999806,0.00003233119,0.00002230779,0.000002093121,7.5607824e-7,0.0000019441275,0.00003912832,0.0000022505242,0.00009337888],"genre_scores_gemma":[0.9996531,0.000018181294,0.00007438793,0.0000070042483,0.0000012423629,0.000003908909,0.00011699884,6.588293e-7,0.00012449236],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989915,0.000009351623,0.00000699445,0.00003702224,0.000022932518,0.000024537108],"domain_scores_gemma":[0.99957067,0.000052019346,0.00017009591,0.000016447557,0.00005795534,0.00013288966],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012130708,0.00018578787,0.00019280535,0.00037908123,0.00027470652,0.00031434715,0.00013371842,0.0002606885,0.0005290257],"category_scores_gemma":[0.00031949102,0.00008543469,0.00013213367,0.00016626914,0.00013635322,0.00017095018,0.00017859609,0.0002777851,0.00012968053],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00045209308,0.00023627958,0.8163441,0.000047093232,0.000041120325,0.00020419178,0.00048980775,0.00034267086,0.1757469,0.000020118787,0.00007889446,0.0059968224],"study_design_scores_gemma":[8.5402456e-7,0.000112883376,0.99891424,9.304662e-7,0.0000027014776,0.00004092242,0.000069596186,0.00017327702,0.0006318101,0.0000036979827,0.000047481797,0.0000016411093],"about_ca_topic_score_codex":0.0072777863,"about_ca_topic_score_gemma":0.017328288,"teacher_disagreement_score":0.0072777863,"about_ca_system_score_codex":0.0003624017,"about_ca_system_score_gemma":0.000108721666,"threshold_uncertainty_score":0.014470875},"labels":[],"label_agreement":null},{"id":"W4408700507","doi":"10.1016/j.foreco.2025.122655","title":"Natural regeneration 18 years after experimental silvicultural treatments in Canadian boreal forests","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":12,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Ministry of Natural Resources and Wildlife; Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"Natural Sciences and Engineering Research Council of Canada; Ministère des Ressources Naturelles et de la Faune; Ontario Ministry of Natural Resources and Forestry","keywords":"Regeneration (biology); Natural regeneration; Silviculture; Taiga; Boreal; Ecology; Forest regeneration; Environmental science; Logging; Forestry; Natural (archaeology); Agroforestry; Geography; Biology","score_opus":0.006814961098540326,"score_gpt":0.20798945493368706,"score_spread":0.20117449383514674,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4408700507","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990693,0.000090488145,0.000100527184,0.0000113325095,0.00001026472,0.00005858176,0.00029685063,0.000010266619,0.00035236822],"genre_scores_gemma":[0.99293876,0.00011715898,0.0010540865,0.000075935604,0.00000786519,0.00016364934,0.0014889059,0.00001007029,0.0041435896],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9993598,0.000046113575,0.000032229633,0.00017084127,0.00015203663,0.00023896055],"domain_scores_gemma":[0.9987914,0.00009333173,0.00015282168,0.00006709213,0.00038569752,0.00050968013],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004946612,0.00057540473,0.0005441437,0.00053638755,0.0015656077,0.00043488934,0.00077105255,0.00029657118,0.0008134158],"category_scores_gemma":[0.0003807663,0.0002565628,0.00034657493,0.00031307276,0.0008190391,0.00024977513,0.0003896191,0.0007512036,0.00014199683],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.01750963,0.009995567,0.16756156,0.00025026393,0.0002741729,0.0007980565,0.003262033,0.001285785,0.7622735,0.0002625604,0.0017735669,0.03475328],"study_design_scores_gemma":[0.00020472058,0.008907528,0.95469785,0.000015034483,0.0000826724,0.000110498,0.0009249048,0.0011334018,0.030779675,0.00005429089,0.0030274012,0.00006200203],"about_ca_topic_score_codex":0.7080206,"about_ca_topic_score_gemma":0.9089565,"teacher_disagreement_score":0.29197937,"about_ca_system_score_codex":0.008339101,"about_ca_system_score_gemma":0.0051719863,"threshold_uncertainty_score":0.5873978},"labels":[],"label_agreement":null},{"id":"W4408829498","doi":"10.1016/j.foreco.2025.122667","title":"The irregular shelterwood silviculture system and managing for stand complexity from a North American perspective","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ontario Forest Research Institute","funders":"","keywords":"Silviculture; Perspective (graphical); Forestry; Forest management; Environmental science; Agroforestry; Geography; Ecology; Biology; Computer science","score_opus":0.0047946604693079094,"score_gpt":0.2124633638007589,"score_spread":0.207668703331451,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4408829498","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8594608,0.019121489,0.009825898,0.013265812,0.00022965069,0.00009413401,0.00011304034,0.000058816287,0.09783043],"genre_scores_gemma":[0.9843726,0.005521721,0.0056893877,0.000993861,0.00009678716,0.000040913066,0.00005849381,0.000011757774,0.003214527],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.99961877,0.00011958221,0.00001184048,0.000073567506,0.00008748112,0.000088748566],"domain_scores_gemma":[0.99943537,0.00011606926,0.00013499163,0.000042413372,0.00013766055,0.00013358242],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0009634156,0.00026022937,0.00015366903,0.0010945149,0.0023277048,0.002460602,0.0008255784,0.0003999851,0.0016707001],"category_scores_gemma":[0.00081489724,0.00009609856,0.00016739493,0.0010034785,0.002338916,0.0016734495,0.0016070962,0.0009390174,0.00008485084],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012452528,0.00042142675,0.23619297,0.0014728033,0.00014453426,0.0016322281,0.0627371,0.003370525,0.008635162,0.15166669,0.012547209,0.52105486],"study_design_scores_gemma":[0.000014163691,0.00023954583,0.53220004,0.0014964871,0.00022431833,0.0006304193,0.08763377,0.003884371,0.002192611,0.048510715,0.32290244,0.00007104934],"about_ca_topic_score_codex":0.030460672,"about_ca_topic_score_gemma":0.20036478,"teacher_disagreement_score":0.96953934,"about_ca_system_score_codex":0.0025730284,"about_ca_system_score_gemma":0.0038765748,"threshold_uncertainty_score":0.060566783},"labels":[],"label_agreement":null},{"id":"W4409191399","doi":"10.1016/j.foreco.2025.122668","title":"Decadal decline in forest floor soil organic carbon after clear-cutting in Nordic and Canadian forests","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":9,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Canadian Forest Service","funders":"Horizon 2020; HORIZON EUROPE Framework Programme; Nature; Norsk institutt for naturforskning; SNS Nordic Forest Research; Norges Forskningsråd; European Commission","keywords":"Forest floor; Clearcutting; Soil carbon; Environmental science; Agroforestry; Carbon fibers; Forestry; Carbon cycle; Ecology; Geography; Soil science; Soil water; Ecosystem; Biology; Mathematics","score_opus":0.0024609529342711307,"score_gpt":0.19193025416205092,"score_spread":0.1894693012277798,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4409191399","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9741828,0.010143711,0.00030719175,0.00032197777,0.00006102351,0.000010419522,0.01212996,0.000034890927,0.0028082088],"genre_scores_gemma":[0.99060154,0.0016269343,0.0003366002,0.00011895971,0.000010922765,0.0000073945903,0.006251429,0.000012652555,0.0010336774],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995509,0.000020680312,0.000021673606,0.00015414473,0.00010585386,0.00014678999],"domain_scores_gemma":[0.9980222,0.00009834049,0.00028187374,0.00008771703,0.0012753045,0.00023466596],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010149161,0.00036636787,0.0003954875,0.0014226475,0.0012770043,0.0012313366,0.0006759272,0.00037306832,0.0012120531],"category_scores_gemma":[0.0011047734,0.0002020697,0.00056340627,0.0022476418,0.0005555718,0.00040330947,0.00059689773,0.00049771584,0.00012328297],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003787716,0.000019326573,0.97226715,0.00024647417,0.0008207803,0.0001590656,0.0014089053,0.00082249317,0.0023015896,0.00043523207,0.0033172534,0.017823035],"study_design_scores_gemma":[0.0000034776817,0.0000043487653,0.9975318,0.00003449031,0.00007642317,0.000020383777,0.00030921208,0.000112319256,0.00011298578,0.000018080531,0.0017658938,0.000010674668],"about_ca_topic_score_codex":0.98332626,"about_ca_topic_score_gemma":0.9912964,"teacher_disagreement_score":0.016673744,"about_ca_system_score_codex":0.00913099,"about_ca_system_score_gemma":0.011138408,"threshold_uncertainty_score":0.066250265},"labels":[],"label_agreement":null},{"id":"W4409450361","doi":"10.1016/j.foreco.2025.122728","title":"Altitudinal influences on soil microbial diversity: The pivotal role of plant functional composition in shaping bacterial and fungal communities","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Mycorrhizal Fungi and Plant Interactions","field":"Agricultural and Biological Sciences","cited_by":8,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Major Science and Technology Projects in Yunnan Province; Cultivating Plan Program for the Leader in Science and Technology of Yunnan Province; Applied Basic Research Foundation of Yunnan Province","keywords":"Fungal Diversity; Ecology; Functional diversity; Soil fungi; Microbial population biology; Diversity (politics); Composition (language); Biology; Soil biology; Environmental science; Soil water; Botany; Bacteria","score_opus":0.01308375047903047,"score_gpt":0.18949277120230792,"score_spread":0.17640902072327747,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4409450361","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9987924,0.00024745677,0.00014612946,0.000025769581,0.0000032755006,0.0000011885078,0.000062040555,0.0000020926766,0.0007196082],"genre_scores_gemma":[0.99965096,0.00006297033,0.000054857843,0.000017116856,0.0000047893996,0.0000011558534,0.000042097567,0.0000019053002,0.00016404492],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998456,0.000057255424,0.000007919214,0.00003804668,0.00002072798,0.000030486233],"domain_scores_gemma":[0.9994592,0.00015539354,0.0001687357,0.000038659084,0.000062577834,0.000115448944],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004296094,0.00014094383,0.00012031382,0.00038243935,0.0002547158,0.0005313592,0.0001486446,0.00028083066,0.0015938005],"category_scores_gemma":[0.000524976,0.00010176026,0.00011504544,0.00034682298,0.00027664276,0.000352782,0.00034826295,0.00020973627,0.00019668949],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004597113,0.000078396995,0.9283915,0.000041125593,0.00012718573,0.000104482635,0.00072166964,0.00031402253,0.057849627,0.00035941057,0.0001450032,0.011407872],"study_design_scores_gemma":[0.0000011880884,0.000024447663,0.9991972,0.0000024536948,0.00000895276,0.00001838433,0.00017437409,0.00014894722,0.00025464434,0.000030645122,0.0001365024,0.0000023165762],"about_ca_topic_score_codex":0.0033048436,"about_ca_topic_score_gemma":0.012055142,"teacher_disagreement_score":0.0033048436,"about_ca_system_score_codex":0.0001710583,"about_ca_system_score_gemma":0.00014560425,"threshold_uncertainty_score":0.0065712333},"labels":[],"label_agreement":null},{"id":"W4409781712","doi":"10.1016/j.foreco.2025.122750","title":"Post-fire vegetation regeneration during abnormally dry years following severe montane fire: Southern Alberta, Canada","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":6,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Lethbridge","funders":"Western Economic Diversification Canada; Natural Sciences and Engineering Research Council of Canada; Alberta Innovates; Canada Foundation for Innovation; Parks Canada; University of Lethbridge","keywords":"Montane ecology; Regeneration (biology); Vegetation (pathology); Environmental science; Ecology; Fire ecology; Forestry; Fire history; Geography; Biology; Ecosystem; Climate change; Medicine","score_opus":0.001421833521782103,"score_gpt":0.16103735083073883,"score_spread":0.15961551730895673,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4409781712","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982199,0.0001280927,0.00007411357,0.00004459089,0.0000023772093,0.000012972582,0.00069810956,0.0000072296175,0.0008126602],"genre_scores_gemma":[0.9971379,0.00017061106,0.00025876588,0.000036505502,0.0000021328904,0.000008746542,0.0008610165,0.0000028006382,0.0015214978],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998344,0.0000102983795,0.000005613171,0.000027530836,0.00005991301,0.00006217201],"domain_scores_gemma":[0.99949265,0.000029857822,0.00007664632,0.000012266275,0.000246611,0.00014194871],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002704882,0.0002180399,0.00019245564,0.0007900116,0.0015746811,0.00069845264,0.00060809124,0.00022685275,0.0008914177],"category_scores_gemma":[0.0004765334,0.00014506101,0.00012664148,0.0010932065,0.00043582852,0.00015609783,0.00037379187,0.00024134414,0.00014635242],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002694238,0.00007671258,0.9675211,0.00005133576,0.000050611503,0.00048859004,0.0029644237,0.0010216363,0.0048002675,0.00009096544,0.0012886366,0.021376379],"study_design_scores_gemma":[0.0000025127183,0.000011184728,0.9978277,0.000007115632,0.0000048749166,0.000027443031,0.0012259486,0.00032696823,0.00011230351,0.000009448137,0.00044008816,0.0000044757753],"about_ca_topic_score_codex":0.9917749,"about_ca_topic_score_gemma":0.99857986,"teacher_disagreement_score":0.011804329,"about_ca_system_score_codex":0.011804329,"about_ca_system_score_gemma":0.008205435,"threshold_uncertainty_score":0.08564681},"labels":[],"label_agreement":null},{"id":"W4409814154","doi":"10.1016/j.foreco.2025.122733","title":"Thirty-year responses of ecosystem components to stand thinning in lodgepole pine forest: Old-forest attributes, stand structure, and forest-floor small mammals","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"Habitat Conservation Trust Foundation; Tolko Industries","keywords":"Thinning; Forest floor; Forest ecology; Forest structure; Snag; Pinus contorta; Pine forest; Forestry; Ecosystem; Ecology; Forest management; Coarse woody debris; Clearcutting; Environmental science; Old-growth forest; Agroforestry; Geography; Habitat; Biology; Canopy","score_opus":0.00837352782244005,"score_gpt":0.21643058743175056,"score_spread":0.2080570596093105,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4409814154","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99988234,0.00002194429,0.000007797058,0.0000025131278,5.600604e-7,0.0000015616188,0.0000401936,6.6072727e-7,0.000042272033],"genre_scores_gemma":[0.9995092,0.000022290365,0.000022862052,0.000007843354,7.4785623e-7,0.0000041883313,0.00021116708,4.4586744e-7,0.00022131111],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989307,0.00001566091,0.0000060396274,0.000029797458,0.000019196696,0.000036193247],"domain_scores_gemma":[0.9993606,0.000093281844,0.00015395205,0.00002681316,0.00008732268,0.00027802296],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033860913,0.00018324633,0.0001536343,0.00016364935,0.00029305808,0.00036586003,0.00020925824,0.0002202264,0.00051193254],"category_scores_gemma":[0.00053136126,0.00012473934,0.00015145325,0.0001278863,0.00025654864,0.00014466333,0.00022837971,0.000295466,0.0000916913],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010666407,0.0002830098,0.9813737,0.000013507026,0.000057253492,0.00015711076,0.00031678914,0.00025862802,0.0136728585,0.000011003652,0.000117920354,0.002671581],"study_design_scores_gemma":[0.0000012544376,0.000056927714,0.99963975,4.9777356e-7,0.0000033586887,0.00000976773,0.000068303285,0.00005518507,0.00012649335,0.0000024883054,0.00003507342,0.0000010155868],"about_ca_topic_score_codex":0.062240344,"about_ca_topic_score_gemma":0.20494045,"teacher_disagreement_score":0.062240344,"about_ca_system_score_codex":0.00092457846,"about_ca_system_score_gemma":0.0005383203,"threshold_uncertainty_score":0.12375611},"labels":[],"label_agreement":null},{"id":"W4409864618","doi":"10.1016/j.foreco.2025.122749","title":"Dung beetle communities change quickly following tropical forest restoration: A case study from southern Costa Rica","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"International Conservation Fund of Canada; Bobolink Foundation","keywords":"Dung beetle; Tropical forest; Scarabaeinae; Geography; Agroforestry; Ecology; Tropics; Forest restoration; Forestry; Environmental science; Forest ecology; Ecosystem; Biology; Scarabaeidae","score_opus":0.0178329034743967,"score_gpt":0.2469239003158285,"score_spread":0.2290909968414318,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4409864618","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994349,0.000055530658,0.00002035502,0.000046316833,7.2630297e-7,0.000008892721,0.00003461624,0.0000011198144,0.0003975198],"genre_scores_gemma":[0.9993593,0.000112138725,0.000116397285,0.000036810852,0.0000013231278,0.000009320298,0.00005774075,0.0000013218073,0.00030562226],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997824,0.00007949103,0.000010601088,0.000029956273,0.000023021319,0.00007456845],"domain_scores_gemma":[0.999632,0.000059223963,0.00012433645,0.000037774582,0.00007054597,0.00007620102],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004038425,0.00026390402,0.000236064,0.00057921023,0.0018167909,0.00067047734,0.0005691471,0.00053398975,0.0006911436],"category_scores_gemma":[0.0008186822,0.0001640199,0.0001975081,0.00092335,0.0008741757,0.0003379087,0.0009965725,0.00034838598,0.000080882135],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021971672,0.00031165744,0.93398774,0.00012999425,0.00013529992,0.007036607,0.037124984,0.00044961157,0.0052035325,0.00026874265,0.00066347566,0.014468676],"study_design_scores_gemma":[0.0000071601908,0.0000630554,0.9708527,0.000024999294,0.00003122141,0.0006050343,0.026693877,0.00029332336,0.00019960535,0.000043862783,0.0011783085,0.0000069315147],"about_ca_topic_score_codex":0.26042265,"about_ca_topic_score_gemma":0.6292187,"teacher_disagreement_score":0.26042265,"about_ca_system_score_codex":0.0021331983,"about_ca_system_score_gemma":0.0010266893,"threshold_uncertainty_score":0.5178136},"labels":[],"label_agreement":null},{"id":"W4410020003","doi":"10.1016/j.foreco.2025.122760","title":"Long-term effects of forest harvesting on habitat use by temperate insectivorous bats.","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bat Biology and Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; University of Regina","funders":"Natural Sciences and Engineering Research Council of Canada; Mitacs; National Council for Air and Stream Improvement; Sustainable Forestry Initiative; University of Regina","keywords":"Insectivore; Temperate rainforest; Ecology; Temperate forest; Habitat; Temperate climate; Term (time); Environmental science; Agroforestry; Biology; Ecosystem","score_opus":0.009402955357133888,"score_gpt":0.20847311447658148,"score_spread":0.1990701591194476,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4410020003","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99893564,0.00040665615,0.000023583072,0.000050767707,0.000010516318,0.0000025916513,0.00021283528,0.0000015931719,0.00035590536],"genre_scores_gemma":[0.99892336,0.0001334152,0.000029124321,0.00003684617,0.000010787053,0.000008236182,0.0003125521,0.000002636962,0.0005430401],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996662,0.00010708968,0.00001992565,0.000057322013,0.000032206448,0.000117299125],"domain_scores_gemma":[0.99745446,0.00077504775,0.00070244656,0.00017618736,0.00017604865,0.00071573537],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00082927896,0.00019379324,0.00027195073,0.000253041,0.0003538403,0.0005775757,0.00030398346,0.00057843485,0.0023615495],"category_scores_gemma":[0.0020404544,0.00016452475,0.0003670613,0.0002943394,0.00051760837,0.00038259395,0.0005518592,0.0007964855,0.0004584597],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0037664438,0.0011297499,0.97850966,0.000039643415,0.00046791296,0.00029952868,0.0003119954,0.0002416053,0.005637077,0.00008175861,0.0004269334,0.009087627],"study_design_scores_gemma":[0.0000025896093,0.0001076474,0.99962115,0.0000030706126,0.000016840828,0.000022638373,0.00007606333,0.00002869966,0.000041012467,0.0000103575285,0.00006799162,0.000001913817],"about_ca_topic_score_codex":0.007260083,"about_ca_topic_score_gemma":0.027546395,"teacher_disagreement_score":0.007260083,"about_ca_system_score_codex":0.0003659436,"about_ca_system_score_gemma":0.00034604588,"threshold_uncertainty_score":0.014435649},"labels":[],"label_agreement":null},{"id":"W4410106926","doi":"10.1016/j.foreco.2025.122764","title":"Bobcats select young forests and avoid clear-cut and mature forests in a timber-logged landscape","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"Summerlee Foundation","keywords":"Geography; Logging; Ecology; Clearcutting; Agroforestry; Forestry; Biology","score_opus":0.0030067573626098736,"score_gpt":0.21390984867660012,"score_spread":0.21090309131399024,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4410106926","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99852186,0.000036691825,0.00008732981,0.00004236394,0.00000322268,0.000012076117,0.000039093313,0.0000051028464,0.0012523461],"genre_scores_gemma":[0.9954615,0.000076416654,0.00034894128,0.00014248477,0.0000030204353,0.000019622574,0.00012796979,0.000007070456,0.0038129191],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998447,0.00003396781,0.0000054364305,0.000034348715,0.000024024659,0.000057432553],"domain_scores_gemma":[0.99947613,0.00006324528,0.00012458814,0.000031485975,0.000064113396,0.00024040381],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033296784,0.0002619999,0.0003253285,0.000486801,0.0010437319,0.00083804526,0.0003403461,0.0003570954,0.003641522],"category_scores_gemma":[0.0006204747,0.00029330348,0.00010070535,0.0002490933,0.00067662046,0.00037586706,0.0006230073,0.0003193232,0.0008426319],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010158742,0.0010710815,0.8924749,0.00008582698,0.000074548574,0.00056350057,0.0010806614,0.0006383143,0.08528078,0.0008703103,0.0024184233,0.014425834],"study_design_scores_gemma":[0.000040956907,0.0002665667,0.9921102,0.000013754438,0.0000280175,0.0002804989,0.0017541158,0.00091198983,0.002425506,0.00031584504,0.0018374572,0.000015058412],"about_ca_topic_score_codex":0.019385258,"about_ca_topic_score_gemma":0.19982739,"teacher_disagreement_score":0.019385258,"about_ca_system_score_codex":0.0004684734,"about_ca_system_score_gemma":0.0006374706,"threshold_uncertainty_score":0.038544834},"labels":[],"label_agreement":null},{"id":"W4410423407","doi":"10.1016/j.foreco.2025.122788","title":"Potential of thinning to increase forest resilience and resistance to drought, pest, windstorm and fire: A meta-analysis","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree Root and Stability Studies","field":"Engineering","cited_by":20,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Thinning; Resilience (materials science); PEST analysis; Resistance (ecology); Environmental science; Agroforestry; Forestry; Ecology; Geography; Biology; Botany","score_opus":0.008114972022899488,"score_gpt":0.22460820560961284,"score_spread":0.21649323358671335,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4410423407","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.055717006,0.9335948,0.0052016755,0.0008186238,0.00052958564,0.0003391338,0.002630042,0.0002448598,0.00092429307],"genre_scores_gemma":[0.8297,0.15867877,0.0062441174,0.0013235447,0.00032245045,0.0006580887,0.0022486346,0.0001392752,0.0006851248],"study_design_codex":"meta_analysis","study_design_gemma":"meta_analysis","domain_scores_codex":[0.992618,0.004105705,0.0013521402,0.0012193391,0.00041228256,0.00029255514],"domain_scores_gemma":[0.983305,0.013116891,0.0015141288,0.0010141617,0.00068810617,0.00036179283],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.012991984,0.0031706821,0.011039894,0.004614362,0.00064730074,0.0034155662,0.002795291,0.0023287882,0.0039596157],"category_scores_gemma":[0.023614036,0.0015941034,0.05606309,0.0047131097,0.0007531102,0.0014955436,0.0015229979,0.0023275565,0.000421908],"study_design_candidate":"meta_analysis","study_design_consensus":"meta_analysis","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018686657,0.000038291004,0.0071636587,0.039131083,0.94545656,0.00015558221,0.00004997042,0.0013313899,0.00046283516,0.00012126859,0.00030265455,0.0039179763],"study_design_scores_gemma":[0.00021858819,0.00015281339,0.0038003072,0.0017591304,0.9928104,0.000053119158,0.000021773983,0.00037619472,0.00013267391,0.00019947429,0.0004609038,0.000014622599],"about_ca_topic_score_codex":0.0083448095,"about_ca_topic_score_gemma":0.011036603,"teacher_disagreement_score":0.012991984,"about_ca_system_score_codex":0.0016258236,"about_ca_system_score_gemma":0.0020636644,"threshold_uncertainty_score":0.068708956},"labels":[],"label_agreement":null},{"id":"W4410549663","doi":"10.1016/j.foreco.2025.122796","title":"Assessing wildfire potential in a coastal forest watershed, British Columbia, Canada","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Victoria; Natural Resources Canada; Okanagan University College; Canadian Forest Service","funders":"Capital Regional District; Natural Sciences and Engineering Research Council of Canada; University of Victoria","keywords":"Watershed; Environmental science; Geography; Ecology; Agroforestry; Biology","score_opus":0.002307817084033035,"score_gpt":0.17986911452968776,"score_spread":0.17756129744565471,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4410549663","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9955087,0.00016391197,0.0001438465,0.00016645543,0.0000056466884,0.00007728357,0.00082690164,0.000016187561,0.0030910715],"genre_scores_gemma":[0.99532074,0.0002871945,0.00079461484,0.00007293555,0.0000024319152,0.00003965849,0.0007154532,0.000007052937,0.002759998],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9994815,0.00006430921,0.00003272062,0.000071945324,0.00019783653,0.0001516809],"domain_scores_gemma":[0.9982008,0.00017920345,0.00009956316,0.000036934514,0.0011338753,0.0003495158],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005591356,0.000447081,0.00039949233,0.001472308,0.004533931,0.0022524442,0.001563359,0.00060879794,0.0012050162],"category_scores_gemma":[0.0021371688,0.00036991815,0.00025613923,0.0027176673,0.0008431407,0.00043328194,0.0008603001,0.00069150724,0.00017648378],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023992948,0.00032951916,0.952975,0.00008869209,0.0001560319,0.001036142,0.0019802963,0.0045490405,0.0014897347,0.00035183536,0.0035065375,0.03329724],"study_design_scores_gemma":[0.000033659453,0.000047738144,0.9803607,0.00006532328,0.000084340296,0.00013339389,0.010355544,0.0060931533,0.0004087158,0.00014490917,0.0022482895,0.000024261133],"about_ca_topic_score_codex":0.99693406,"about_ca_topic_score_gemma":0.9994216,"teacher_disagreement_score":0.031527847,"about_ca_system_score_codex":0.031527847,"about_ca_system_score_gemma":0.03196675,"threshold_uncertainty_score":0.2287516},"labels":[],"label_agreement":null},{"id":"W4410579964","doi":"10.1016/j.foreco.2025.122809","title":"Liming alone does not guarantee the success of sugar maple regeneration","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Pathogens and Fungal Diseases","field":"Biochemistry, Genetics and Molecular Biology","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; Ministère des Ressources naturelles et des Forêts (Québec)","funders":"Ministère de l'Énergie et des Ressources Naturelles","keywords":"Maple; Regeneration (biology); Sugar; Aceraceae; Environmental science; Agroforestry; Business; Chemistry; Ecology; Biology","score_opus":0.005237513595944888,"score_gpt":0.21824658957020493,"score_spread":0.21300907597426005,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4410579964","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98591065,0.000713817,0.0013713379,0.000588207,0.00004591657,0.000018545283,0.00011411539,0.00015477007,0.01108256],"genre_scores_gemma":[0.99736905,0.00009338085,0.00046876207,0.00018158993,0.000013002555,0.0000073784113,0.00010237079,0.000028303633,0.0017361019],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99941087,0.00011971124,0.00005478188,0.00011227999,0.00013604498,0.00016623463],"domain_scores_gemma":[0.9954026,0.0015607434,0.00087708887,0.00043243216,0.00042948185,0.001297609],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011177447,0.00024602166,0.00055863993,0.00041990698,0.000810558,0.0009175512,0.0006494503,0.0007411283,0.0054630535],"category_scores_gemma":[0.002578237,0.00017026761,0.00025061864,0.00022540452,0.00093815895,0.0013921785,0.00094370334,0.0005863816,0.0008350763],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0023407408,0.0007342954,0.25284547,0.0009224258,0.0002575224,0.0018897173,0.0005889026,0.0028759467,0.634008,0.0038891619,0.0031104705,0.09653726],"study_design_scores_gemma":[0.00005362686,0.0017940734,0.90659,0.000120704404,0.00014117252,0.0022517103,0.0019956022,0.004241122,0.06459839,0.00538386,0.012731443,0.00009836173],"about_ca_topic_score_codex":0.0023993612,"about_ca_topic_score_gemma":0.0080095725,"teacher_disagreement_score":0.0054630535,"about_ca_system_score_codex":0.00057237555,"about_ca_system_score_gemma":0.00092196796,"threshold_uncertainty_score":0.018275797},"labels":[],"label_agreement":null},{"id":"W4410614741","doi":"10.1016/j.foreco.2025.122820","title":"Complex ecological pathways drive boreal forest successional dynamics","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Ministry of Natural Resources and Forestry; Lakehead University; Ontario Forest Research Institute","funders":"Ontario Ministry of Natural Resources and Forestry","keywords":"Ecology; Taiga; Boreal; Ecological succession; Environmental science; Geography; Biology","score_opus":0.009662535830164633,"score_gpt":0.2358400806503014,"score_spread":0.22617754482013677,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4410614741","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9929395,0.00020501632,0.0008149062,0.00049489643,0.000013487144,0.000014131846,0.00015945124,0.000015172813,0.005343378],"genre_scores_gemma":[0.99940133,0.00008225648,0.00024747307,0.000033389242,0.0000029817177,0.0000030572457,0.000033446195,0.0000031805002,0.0001929231],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997789,0.00006302952,0.000012404361,0.000060091992,0.000022882838,0.000062711624],"domain_scores_gemma":[0.9990964,0.00022857198,0.00028256813,0.000051733758,0.000088099325,0.00025266226],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00057350047,0.00013468855,0.00014824756,0.00062178564,0.0008407648,0.0021415479,0.00024784225,0.00038379672,0.0035191285],"category_scores_gemma":[0.0019601712,0.0001655405,0.000201105,0.00043890098,0.0013835173,0.0014243184,0.0008052303,0.00047842425,0.00017965228],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00030389964,0.0002015418,0.92077255,0.00017056413,0.00016043248,0.00040844572,0.0026709845,0.0074353884,0.008219718,0.03460205,0.0019040956,0.023150358],"study_design_scores_gemma":[0.00002029244,0.00004740735,0.9605215,0.000025043915,0.000026787222,0.00012380251,0.0045987866,0.0068651293,0.00029066735,0.023198107,0.004258385,0.000024080293],"about_ca_topic_score_codex":0.015750978,"about_ca_topic_score_gemma":0.08608582,"teacher_disagreement_score":0.015750978,"about_ca_system_score_codex":0.0015733825,"about_ca_system_score_gemma":0.0008607378,"threshold_uncertainty_score":0.031318605},"labels":[],"label_agreement":null},{"id":"W4410979344","doi":"10.1016/j.foreco.2025.122844","title":"Interacting and dynamic effects of species and structural diversity promote annual woody biomass production in a tropical tree diversity experiment","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":3,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"Deutsche Forschungsgemeinschaft","keywords":"Biomass (ecology); Diversity (politics); Woody plant; Ecology; Species diversity; Tree (set theory); Agroforestry; Tropical forest; Functional diversity; Biodiversity; Tropics; Geography; Environmental science; Biology; Mathematics","score_opus":0.0032423439952466004,"score_gpt":0.20517352158160368,"score_spread":0.2019311775863571,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4410979344","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998605,0.0000074660848,0.000040910083,0.0000024371507,4.857113e-7,0.0000024288186,0.000026870612,0.0000019836657,0.000056854173],"genre_scores_gemma":[0.9991235,0.000022718936,0.00046113753,0.000017537324,0.000002110397,0.000023272565,0.00011148747,0.000005460725,0.00023271423],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99983823,0.00004433231,0.000012832684,0.000056465964,0.000012920831,0.00003524614],"domain_scores_gemma":[0.99916995,0.00019261503,0.0001767968,0.00006871504,0.000032559477,0.000359525],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038725772,0.00029943787,0.00034048405,0.00029049357,0.00030116312,0.00038615434,0.0004072665,0.00016795483,0.0013216112],"category_scores_gemma":[0.00029186078,0.00020959233,0.00025561862,0.00020866632,0.00038393761,0.00028772783,0.0004898391,0.00035339178,0.00008375529],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.006807326,0.0013771288,0.12333122,0.00013719307,0.00025503102,0.00027955425,0.00070965564,0.0012745418,0.85880756,0.00019850682,0.000110929424,0.0067114434],"study_design_scores_gemma":[0.000113784045,0.0037037316,0.9633145,0.00001011733,0.00017698218,0.00012643245,0.0003373867,0.00436589,0.02714618,0.00014504015,0.0005355971,0.000024323483],"about_ca_topic_score_codex":0.0045837206,"about_ca_topic_score_gemma":0.010873863,"teacher_disagreement_score":0.0045837206,"about_ca_system_score_codex":0.0004014502,"about_ca_system_score_gemma":0.00020954496,"threshold_uncertainty_score":0.009114087},"labels":[],"label_agreement":null},{"id":"W4411012330","doi":"10.1016/j.foreco.2025.122864","title":"Eastern white pine and red pine forest regeneration following secondary disturbance","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Royal College of Physicians and Surgeons of Canada; Nova Scotia Department of Agriculture; Université du Québec en Abitibi-Témiscamingue","funders":"Natural Resources Canada; Mitacs; Ontario Ministry of Natural Resources and Forestry","keywords":"Disturbance (geology); Regeneration (biology); Red pine; Pine forest; Forest regeneration; Forestry; Woody plant; Ecology; White (mutation); Natural regeneration; Agroforestry; Environmental science; Geography; Biology; Pinus <genus>; Botany","score_opus":0.00317131524951536,"score_gpt":0.1927387443464617,"score_spread":0.18956742909694635,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4411012330","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99967575,0.000023720744,0.000013569297,0.0000019092308,3.9023172e-7,0.000002843086,0.00003204658,0.0000010552627,0.00024874933],"genre_scores_gemma":[0.9995117,0.000017546432,0.000023626284,0.0000066890907,5.4892064e-7,0.000002281057,0.00011523875,4.9237315e-7,0.0003217785],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999051,0.000010291458,0.0000034381155,0.000021961288,0.000020003323,0.000039129514],"domain_scores_gemma":[0.99973804,0.000023639026,0.00008010872,0.000013536136,0.000048705864,0.000095933836],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018205318,0.000107801534,0.00013538297,0.00026015742,0.00023684677,0.0002707684,0.00014645251,0.000111716035,0.000739376],"category_scores_gemma":[0.00027860916,0.000059929287,0.00010969169,0.00013897827,0.00020706492,0.00009887288,0.00017979949,0.00009293034,0.000106231055],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00046114856,0.0001162021,0.9588573,0.00002891269,0.000048350335,0.00060071994,0.00036475487,0.00036517534,0.027771143,0.00003118819,0.00015998953,0.011195016],"study_design_scores_gemma":[9.035096e-7,0.00003438115,0.99961084,9.3702994e-7,0.0000016604794,0.00004702063,0.00007963171,0.000043819273,0.0001218526,0.0000033010738,0.000054902586,7.8807545e-7],"about_ca_topic_score_codex":0.091467515,"about_ca_topic_score_gemma":0.3659574,"teacher_disagreement_score":0.091467515,"about_ca_system_score_codex":0.0008768602,"about_ca_system_score_gemma":0.00038574115,"threshold_uncertainty_score":0.18187022},"labels":[],"label_agreement":null},{"id":"W4411020335","doi":"10.1016/j.foreco.2025.122815","title":"Understory community dynamics 12 years after commercial thinning and gap creation in naturally regenerated and planted stands","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; University of Calgary; Canadian Forest Service; Ministère des Ressources naturelles et des Forêts (Québec); Natural Resources Canada; Université du Québec à Rimouski","funders":"Ministère des Ressources Naturelles et de la Faune","keywords":"Understory; Thinning; Forestry; Silviculture; Environmental science; Agroforestry; Canopy; Ecology; Biology; Geography","score_opus":0.007955708442645513,"score_gpt":0.23081933623523668,"score_spread":0.22286362779259117,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4411020335","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998989,0.000020846306,0.000014872532,0.0000010138554,4.2230744e-7,0.0000011561424,0.00003277702,7.971499e-7,0.000029109286],"genre_scores_gemma":[0.9993919,0.000020409718,0.000073908705,0.0000063676316,6.8720465e-7,0.0000044860376,0.00023372525,6.132174e-7,0.00026778236],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999145,0.000008929205,0.0000043410237,0.00002804496,0.000012522844,0.00003174073],"domain_scores_gemma":[0.99964106,0.000029355968,0.000087865104,0.000015535032,0.00007227275,0.000153965],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018619203,0.00015917714,0.00020807922,0.00021510669,0.0002881657,0.00027543402,0.00019392263,0.00017724115,0.0003293919],"category_scores_gemma":[0.000215325,0.00009815115,0.000117698226,0.00010722507,0.00020631208,0.00017936218,0.00020926025,0.00023444141,0.000069041525],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016846923,0.0004180703,0.7635689,0.000041069765,0.00006888736,0.00021272493,0.0010044808,0.00027850337,0.22391279,0.000038633167,0.00009677715,0.008674522],"study_design_scores_gemma":[0.0000031801287,0.00013860676,0.9985196,0.0000013465537,0.0000062844165,0.000018362107,0.00012987627,0.00017747613,0.0009506858,0.0000054076777,0.000047232526,0.0000019807069],"about_ca_topic_score_codex":0.03734671,"about_ca_topic_score_gemma":0.12503016,"teacher_disagreement_score":0.03734671,"about_ca_system_score_codex":0.000700032,"about_ca_system_score_gemma":0.0004110603,"threshold_uncertainty_score":0.074258685},"labels":[],"label_agreement":null},{"id":"W4411051159","doi":"10.1016/j.foreco.2025.122883","title":"Bottom-up and top-down forces regulate spruce budworm (Lepidoptera: Tortricidae) biological performance on regenerating white spruce","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Concordia University","funders":"Universities Space Research Association; Natural Sciences and Engineering Research Council of Canada; Ministère des Forêts, de la Faune et des Parcs","keywords":"Tortricidae; Spruce budworm; Lepidoptera genitalia; Biology; Ecology; Choristoneura fumiferana","score_opus":0.005357137106486694,"score_gpt":0.20342824357339434,"score_spread":0.19807110646690765,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4411051159","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995472,0.00005147268,0.000040559615,0.0000053898507,5.665311e-7,0.0000027741266,0.000051143965,0.000003839186,0.00029693427],"genre_scores_gemma":[0.99915755,0.00004550518,0.000134136,0.00002139618,0.0000010311678,0.000003786044,0.00010309605,0.000002001516,0.0005314712],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999013,0.000009740255,0.0000032195546,0.00002390924,0.000018602981,0.00004321641],"domain_scores_gemma":[0.99973625,0.00002750903,0.00005715522,0.000009380189,0.000049790946,0.00011987146],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00009206005,0.00022175972,0.00015261503,0.00020898248,0.0003272057,0.00036449483,0.00012907774,0.0001367531,0.0006816965],"category_scores_gemma":[0.00013883403,0.00010193148,0.00016040183,0.00006773575,0.00024008483,0.00012544142,0.0002166343,0.0001899011,0.0001225531],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00027093216,0.00009156715,0.5022781,0.00005761304,0.000049280505,0.000138109,0.00045239046,0.00042764694,0.48611546,0.000064945445,0.00023845247,0.009815607],"study_design_scores_gemma":[8.230211e-7,0.000051672298,0.9980988,0.0000015909691,0.0000043708587,0.000011040839,0.000113647446,0.00015210146,0.001473546,0.00000457273,0.000086329805,0.0000014970365],"about_ca_topic_score_codex":0.063345306,"about_ca_topic_score_gemma":0.21612681,"teacher_disagreement_score":0.063345306,"about_ca_system_score_codex":0.00083079556,"about_ca_system_score_gemma":0.0003951003,"threshold_uncertainty_score":0.1259532},"labels":[],"label_agreement":null},{"id":"W4411240051","doi":"10.1016/j.foreco.2025.122886","title":"How much is too much? How do biomass harvesting, site preparation intensity, and wood ash applications alter plant community recovery of a second growth boreal jack pine forest?","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Management and Policy","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Natural Resources and Forestry; Natural Resources Canada; Canadian Forest Service","funders":"First Nations Development Institute; Canadian Forest Service; Ontario Power Generation; Ontario Ministry of Natural Resources and Forestry; Ministry of Natural Resources; Office of Energy Research and Development; Natural Sciences and Engineering Research Council of Canada","keywords":"Biomass (ecology); Taiga; Environmental science; Wood ash; Agroforestry; Ecology; Boreal; Forestry; Geography; Biology","score_opus":0.009124278674073318,"score_gpt":0.22588188061215314,"score_spread":0.21675760193807983,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4411240051","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995192,0.00015338305,0.000060309903,0.000050178656,0.0000020651503,0.0000059728727,0.000035396388,0.0000018443058,0.0001717026],"genre_scores_gemma":[0.9991792,0.00013943172,0.00010713657,0.000093799215,0.0000027817455,0.000004909438,0.00006958816,0.0000014390139,0.00040172387],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998504,0.00002333414,0.0000060701,0.000039938146,0.000027646307,0.000052543786],"domain_scores_gemma":[0.99960035,0.00003979784,0.00013368399,0.000019296438,0.00007225789,0.0001347208],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003051676,0.00015850604,0.0002521425,0.00014635228,0.000365817,0.0005673914,0.00023742171,0.0002816584,0.0003570455],"category_scores_gemma":[0.00046915334,0.00010962059,0.00016832404,0.00013981808,0.0005096739,0.00030612893,0.00017393727,0.0002434224,0.00010392951],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000791086,0.00037281244,0.82553434,0.00011045666,0.00023898241,0.00022435508,0.0014981618,0.00032373364,0.14385125,0.00006488325,0.00031487702,0.02667507],"study_design_scores_gemma":[0.0000018659849,0.000078393066,0.9987662,0.0000020882378,0.000008159806,0.000012645763,0.0005236946,0.0000618026,0.00038873596,0.000011765437,0.0001424545,0.000002348906],"about_ca_topic_score_codex":0.10427339,"about_ca_topic_score_gemma":0.40235174,"teacher_disagreement_score":0.10427339,"about_ca_system_score_codex":0.0013401416,"about_ca_system_score_gemma":0.0010200323,"threshold_uncertainty_score":0.20733291},"labels":[],"label_agreement":null},{"id":"W4411332028","doi":"10.1016/j.foreco.2025.122665","title":"Recovery of ecosystem carbon pools 35 years after whole-tree and stem-only clearcutting a red spruce – balsam fir forest in north-central Maine, USA","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"Cooperative Forestry Research Unit, University of Maine; Københavns Universitet; University of Toronto; Maine Agricultural and Forest Experiment Station; College of Environmental Science and Forestry, State University of New York; University of Maine; U.S. Forest Service; Edna Bailey Sussman Foundation; State University of New York; European Social Fund; U.S. Department of Energy","keywords":"Balsam; Clearcutting; Forest ecology; Ecosystem; Environmental science; Forestry; Abies balsamea; Snag; Forest management; Agroforestry; Biology; Ecology; Geography; Botany; Habitat","score_opus":0.0070578718813195445,"score_gpt":0.18171670693838987,"score_spread":0.17465883505707033,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4411332028","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99983704,0.00002163751,0.000012597047,0.0000052485216,6.935066e-7,0.0000016958641,0.00006541363,0.0000012997781,0.000054268712],"genre_scores_gemma":[0.9994235,0.000020882828,0.00004524223,0.00001149801,0.0000013969342,0.000003071001,0.0003141583,6.291818e-7,0.00017952514],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998692,0.0000150365095,0.000009821746,0.000050469596,0.0000205385,0.00003502464],"domain_scores_gemma":[0.9996462,0.00002946829,0.00011932996,0.000025573918,0.0000559902,0.00012348384],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036407914,0.00021906555,0.00021178558,0.0003764842,0.0003457992,0.00043219002,0.0003260156,0.00023506791,0.00037576226],"category_scores_gemma":[0.00034185254,0.00012951864,0.00021597785,0.00019526224,0.0003760425,0.00040635167,0.00037607134,0.00022815616,0.00012028825],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00029899547,0.00024629154,0.9774162,0.000014794877,0.00007987752,0.000322501,0.00068310846,0.0001450596,0.015712589,0.000031951142,0.00013769361,0.0049109077],"study_design_scores_gemma":[8.98611e-7,0.00003634528,0.99949205,0.0000010859617,0.000003213667,0.000017109745,0.00009222928,0.00007917693,0.00021747914,0.0000043966734,0.000054817272,0.0000011992231],"about_ca_topic_score_codex":0.027363472,"about_ca_topic_score_gemma":0.101320356,"teacher_disagreement_score":0.027363472,"about_ca_system_score_codex":0.0007468164,"about_ca_system_score_gemma":0.00042358684,"threshold_uncertainty_score":0.05440843},"labels":[],"label_agreement":null},{"id":"W4411847559","doi":"10.1016/j.foreco.2025.122950","title":"Dynamics in tree structure and composition along boreal forest edges: A case study in Alberta’s in situ oil sands","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":4,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Alberta Innovates","keywords":"Taiga; Oil sands; Boreal; Environmental science; Snag; Forestry; Ecology; Geography; Composition (language); In situ; Tree (set theory); Forest structure; Agroforestry; Mathematics; Habitat; Canopy; Biology; Asphalt; Cartography","score_opus":0.006596912984779791,"score_gpt":0.2278292735090442,"score_spread":0.2212323605242644,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4411847559","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9988675,0.00004138467,0.00009867539,0.000019097926,0.0000011358756,0.000012314542,0.0001937611,0.0000047904996,0.0007612263],"genre_scores_gemma":[0.9982895,0.000071415656,0.00051522924,0.000021314016,0.0000018605464,0.000006505499,0.00027039726,0.0000026574146,0.00082099426],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99973553,0.000026884527,0.000007650553,0.000044503333,0.000079131816,0.000106365565],"domain_scores_gemma":[0.9995602,0.00006533543,0.00007633693,0.000029050374,0.00014151819,0.00012752833],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031942796,0.0002900574,0.00018710055,0.00090774597,0.0017686699,0.00069998164,0.00084691995,0.0003585216,0.00059926504],"category_scores_gemma":[0.00046932843,0.00018321314,0.00019399513,0.0014977376,0.0009251958,0.00023217025,0.0005082427,0.00031792014,0.00009170311],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024914314,0.0001884182,0.97171414,0.000040256284,0.000034819444,0.0027842037,0.005608066,0.001180216,0.004671349,0.00018380389,0.00037565874,0.012970008],"study_design_scores_gemma":[0.00000422463,0.000038283353,0.9915838,0.000009459533,0.00001232502,0.00022379079,0.0059680846,0.0008726856,0.00036714936,0.000039666804,0.0008708084,0.000009599834],"about_ca_topic_score_codex":0.89360064,"about_ca_topic_score_gemma":0.98282695,"teacher_disagreement_score":0.10639936,"about_ca_system_score_codex":0.006752082,"about_ca_system_score_gemma":0.0031824883,"threshold_uncertainty_score":0.2140519},"labels":[],"label_agreement":null},{"id":"W4411954839","doi":"10.1016/j.foreco.2025.122963","title":"Bioavailable strontium isoscape for the Amazon region using tree wood","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Isotope Analysis in Ecology","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Ottawa","funders":"Conselho Nacional de Desenvolvimento Científico e Tecnológico; Coordenação de Aperfeiçoamento de Pessoal de Nível Superior","keywords":"Amazon rainforest; Tree (set theory); Strontium; Environmental science; Agroforestry; Ecology; Biology; Chemistry; Mathematics","score_opus":0.010086784870405357,"score_gpt":0.23069465609337506,"score_spread":0.2206078712229697,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4411954839","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982437,0.0001624987,0.00028479946,0.000020297573,0.0000012170938,0.000004564392,0.000760852,0.000008102511,0.0005140107],"genre_scores_gemma":[0.99916077,0.000069715206,0.00034896572,0.0000035396063,7.677644e-7,0.0000024833325,0.0002049894,0.000005447098,0.00020335421],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991107,0.000024454052,0.0000057252537,0.00003012964,0.000018127997,0.000010481329],"domain_scores_gemma":[0.9998165,0.000040125768,0.000057796373,0.000017513676,0.000048472233,0.000019567638],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023097818,0.00021488343,0.0001602103,0.0005526098,0.00022155112,0.00042229908,0.0003521157,0.0001889055,0.0007613099],"category_scores_gemma":[0.0006088075,0.00013611393,0.00024661253,0.00071811257,0.00012112399,0.00035897936,0.00023079812,0.00011015898,0.00015734503],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00040813276,0.000053319378,0.9617143,0.00010289916,0.00018794823,0.00020092378,0.0007800214,0.0014965425,0.013472775,0.0003309298,0.00025231668,0.020999884],"study_design_scores_gemma":[0.000010697332,0.000046667155,0.9925383,0.000012039211,0.000111932786,0.000084443294,0.00040107517,0.0038317388,0.001869848,0.00009573004,0.0009901174,0.0000073731558],"about_ca_topic_score_codex":0.17272097,"about_ca_topic_score_gemma":0.3129902,"teacher_disagreement_score":0.17272097,"about_ca_system_score_codex":0.00065491005,"about_ca_system_score_gemma":0.00034122216,"threshold_uncertainty_score":0.34343123},"labels":[],"label_agreement":null},{"id":"W4411983257","doi":"10.1016/j.foreco.2025.122949","title":"Drivers of understory vegetation 18 years after novel experimental partial-harvest treatments in Canadian boreal forests","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue","funders":"Natural Sciences and Engineering Research Council of Canada; Ministère de l'Énergie et des Ressources Naturelles; Mitacs; Canada Foundation for Innovation","keywords":"Understory; Taiga; Boreal; Vegetation (pathology); Environmental science; Ecology; Forestry; Geography; Agroforestry; Biology; Canopy","score_opus":0.012412740664596624,"score_gpt":0.21412135823535652,"score_spread":0.2017086175707599,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4411983257","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992513,0.00007727662,0.000028333965,0.000046043006,0.000005623069,0.000006398607,0.00038162802,0.0000024581632,0.00020078756],"genre_scores_gemma":[0.99889404,0.00003163168,0.000043913053,0.000030467649,0.0000031287602,0.000011976458,0.00050234725,0.000002014894,0.00048065596],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9993017,0.00007977337,0.00001864938,0.000202138,0.00007271924,0.00032501857],"domain_scores_gemma":[0.99779534,0.00026800422,0.00057576847,0.00012899283,0.00044310666,0.00078883476],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0009880131,0.0003520739,0.00041207136,0.0005254436,0.002018743,0.0011520035,0.0011578646,0.0007282631,0.0018740847],"category_scores_gemma":[0.0015970652,0.00026292828,0.0003890451,0.0005690953,0.0013347937,0.0007108895,0.00079535996,0.0008858691,0.0001547864],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014668558,0.0005635826,0.9861389,0.000027066648,0.00016059286,0.00010749466,0.0014842895,0.00027892686,0.004036665,0.00012961942,0.00091809814,0.0046878834],"study_design_scores_gemma":[0.000003316727,0.000021270916,0.99929774,0.00000308648,0.00000810488,0.00000570292,0.0004064902,0.00007660821,0.00004174023,0.000009281459,0.00012208635,0.000004647092],"about_ca_topic_score_codex":0.8635436,"about_ca_topic_score_gemma":0.97458637,"teacher_disagreement_score":0.13645637,"about_ca_system_score_codex":0.01024439,"about_ca_system_score_gemma":0.0071660955,"threshold_uncertainty_score":0.27451992},"labels":[],"label_agreement":null},{"id":"W4412464339","doi":"10.1016/j.foreco.2025.122987","title":"A new lens on biodiversity assessment: The reliability of high-resolution remote sensing in investigating tree species diversity in old-growth forests","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Instytut Badawczy Leśnictwa; Narodowe Centrum Badań i Rozwoju; Innovation for Defence Excellence and Security","keywords":"Biodiversity; Diversity (politics); Tree (set theory); Ecology; Reliability (semiconductor); Geography; Species diversity; Agroforestry; Remote sensing; Environmental resource management; Environmental science; Biology; Mathematics","score_opus":0.01293159978205205,"score_gpt":0.22145973526056387,"score_spread":0.20852813547851182,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4412464339","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.1466973,0.10597286,0.6115101,0.057440557,0.003125674,0.00022755827,0.0018492729,0.0007175954,0.07245914],"genre_scores_gemma":[0.8483156,0.015363894,0.12410462,0.005447888,0.003926557,0.00015359191,0.00023690998,0.00020864629,0.0022423065],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.9890344,0.005993232,0.0006217381,0.001727742,0.0023402357,0.00028268812],"domain_scores_gemma":[0.9398499,0.04599606,0.0043442072,0.0049592345,0.0039504054,0.00090022903],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.026683599,0.0013284234,0.0012589708,0.008703491,0.0017163246,0.012549635,0.0017892256,0.0027479802,0.0026297597],"category_scores_gemma":[0.0369863,0.0006720979,0.00081447995,0.00444028,0.015015545,0.019215832,0.006183826,0.005137349,0.0006060982],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00046804844,0.00016302621,0.12291193,0.002952253,0.00079516723,0.0009363277,0.02733331,0.006761239,0.016072243,0.32325542,0.011100948,0.48725006],"study_design_scores_gemma":[0.00008134089,0.0009071693,0.18423627,0.0065537198,0.00062286784,0.0034753075,0.034666944,0.026900914,0.011713832,0.56554013,0.16466773,0.0006337358],"about_ca_topic_score_codex":0.0071810554,"about_ca_topic_score_gemma":0.00876814,"teacher_disagreement_score":0.026683599,"about_ca_system_score_codex":0.0017660117,"about_ca_system_score_gemma":0.0013413746,"threshold_uncertainty_score":0.14111805},"labels":[],"label_agreement":null},{"id":"W4412481028","doi":"10.1016/j.foreco.2025.122990","title":"Using forestry archives to assess long-term changes in forest landscape age structure and tree composition (1950–2020) in eastern Canada","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministère des Ressources naturelles et des Forêts (Québec); Université du Québec à Chicoutimi","funders":"Natural Resources Canada; Natural Sciences and Engineering Research Council of Canada; Ontario Ministry of Natural Resources and Forestry","keywords":"Forest structure; Forestry; Term (time); Geography; Tree (set theory); Age structure; Composition (language); Old-growth forest; Agroforestry; Ecology; Environmental science; Archaeology; Biology; Canopy; Demography; Mathematics","score_opus":0.01699636495014316,"score_gpt":0.24586871523737872,"score_spread":0.22887235028723557,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4412481028","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97744286,0.00082467013,0.00049118703,0.00012441167,0.000010737702,0.000051768413,0.017838774,0.00006486121,0.003150856],"genre_scores_gemma":[0.9850991,0.0005306373,0.0016444547,0.000056589866,0.0000065825966,0.000037462734,0.011056515,0.000010565277,0.0015580666],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995883,0.000024916217,0.000029133484,0.000077920864,0.00017609108,0.00010364445],"domain_scores_gemma":[0.9974808,0.00011020632,0.00038478975,0.00011474014,0.0015435718,0.00036586184],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000634997,0.00029343297,0.00020164107,0.003065538,0.0013668044,0.0012023832,0.0006962522,0.00025937677,0.00078563445],"category_scores_gemma":[0.00190902,0.00015650588,0.00019442975,0.0044338345,0.0002879792,0.0004455791,0.00074636465,0.000313079,0.00019675212],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000033635522,0.000024850715,0.9803375,0.000030752104,0.000063768886,0.00005000335,0.0005433175,0.00062340335,0.00029890233,0.000086856715,0.0015063647,0.016400645],"study_design_scores_gemma":[0.000001641139,0.000005257342,0.9965507,0.000021116688,0.000014536905,0.000015722535,0.0005569043,0.0007371992,0.00009229797,0.00001994249,0.0019783415,0.000006293709],"about_ca_topic_score_codex":0.9845201,"about_ca_topic_score_gemma":0.99593,"teacher_disagreement_score":0.015479922,"about_ca_system_score_codex":0.010848269,"about_ca_system_score_gemma":0.011243066,"threshold_uncertainty_score":0.07871008},"labels":[],"label_agreement":null},{"id":"W4412632605","doi":"10.1016/j.foreco.2025.123026","title":"Silvicultural intensification and the impact on structural diversity in a regenerating Canadian boreal mixedwood","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Ecology and Biodiversity Studies","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ontario Forest Research Institute; University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Boreal; Diversity (politics); Taiga; Environmental science; Ecology; Agroforestry; Geography; Forestry; Biology","score_opus":0.01090878358131064,"score_gpt":0.20846867220882942,"score_spread":0.19755988862751878,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4412632605","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99914217,0.00007446195,0.00002009954,0.000008972695,8.77777e-7,0.000008892516,0.00010062468,0.000002865579,0.00064102886],"genre_scores_gemma":[0.9983908,0.00010659289,0.00022830254,0.000025423062,0.0000013390593,0.000011591859,0.00026250357,0.0000024391768,0.00097104895],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996953,0.000028118422,0.000011269234,0.00004973111,0.00009820941,0.00011731697],"domain_scores_gemma":[0.9994159,0.00003373615,0.00008649948,0.00001795355,0.00017389623,0.00027202556],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000314587,0.00033164772,0.00021897577,0.00070259447,0.0012809072,0.000675744,0.0005774854,0.00016942159,0.0010595628],"category_scores_gemma":[0.00044759866,0.00013797134,0.0001966321,0.0005112918,0.0005236152,0.00020479082,0.00042451234,0.00026969763,0.000090384965],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001592809,0.00072701625,0.8421036,0.00014040525,0.00016389994,0.0004488009,0.0017450153,0.0010352287,0.11726976,0.00025546752,0.000538784,0.03397924],"study_design_scores_gemma":[0.0000037783623,0.00011702422,0.99844825,0.0000030003887,0.000010757888,0.000018241119,0.00039462186,0.00008948528,0.0004921618,0.000006676031,0.0004118025,0.000004157475],"about_ca_topic_score_codex":0.8715472,"about_ca_topic_score_gemma":0.981206,"teacher_disagreement_score":0.12845278,"about_ca_system_score_codex":0.008090913,"about_ca_system_score_gemma":0.0038034841,"threshold_uncertainty_score":0.2584185},"labels":[],"label_agreement":null},{"id":"W4412698715","doi":"10.1016/j.foreco.2025.123044","title":"Riparian vegetation variability in natural boreal forests: Lessons for delineating functional forested strips at the margin of aquatic habitats","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Hydrology and Sediment Transport Processes","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"McGill University; Université Laval; Ministère de l'Agriculture, des Pêcheries et de l'Alimentation","funders":"Fonds de recherche du Québec – Nature et technologies; Natural Resources Canada; Hydro-Québec; Fonds Québécois de la Recherche sur la Nature et les Technologies; Ontario Ministry of Natural Resources and Forestry; Natural Sciences and Engineering Research Council of Canada; Ducks Unlimited Canada","keywords":"Riparian zone; Habitat; Taiga; Ecology; Boreal; Environmental science; Vegetation (pathology); Riparian forest; Natural (archaeology); Geography; Biology","score_opus":0.009913112489516512,"score_gpt":0.2407896577095743,"score_spread":0.2308765452200578,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4412698715","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99441105,0.0012319126,0.001965595,0.00021611516,0.00000714202,0.00001796975,0.00048662102,0.000027242204,0.0016363799],"genre_scores_gemma":[0.9982241,0.00016026304,0.0012852192,0.000029147765,0.0000048869424,0.0000038518756,0.00022823762,0.00000605161,0.00005835858],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997112,0.00007688544,0.000015062075,0.000102138554,0.00003613659,0.000058656366],"domain_scores_gemma":[0.9993205,0.00018745997,0.00014233416,0.000053980228,0.00015933922,0.00013629837],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008502922,0.00032357406,0.00034698404,0.0011718197,0.0007568446,0.0010697682,0.00057754706,0.00020816336,0.00049822754],"category_scores_gemma":[0.0014596803,0.00012837723,0.00041469288,0.0011429475,0.000853922,0.00065707293,0.00041128843,0.0002951349,0.000063438594],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000051145893,0.00001566358,0.9771692,0.00006339548,0.00007525355,0.00008377066,0.0008100409,0.0013918411,0.0020115976,0.00022587125,0.00021772659,0.017884485],"study_design_scores_gemma":[6.5519566e-7,0.000007705827,0.9982192,0.000009101156,0.000008313839,0.00001733753,0.00047676213,0.00085588166,0.000052860523,0.00011291687,0.00023396786,0.0000052093806],"about_ca_topic_score_codex":0.60836977,"about_ca_topic_score_gemma":0.7918894,"teacher_disagreement_score":0.60836977,"about_ca_system_score_codex":0.0016709483,"about_ca_system_score_gemma":0.0018610805,"threshold_uncertainty_score":0.78787327},"labels":[],"label_agreement":null},{"id":"W4412720553","doi":"10.1016/j.foreco.2025.123042","title":"Riparian forest paves the way to climate-driven expansion in bats: Evidence from a fine-scale elevational shift","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bat Biology and Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"Erasmus+","keywords":"Riparian zone; Environmental science; Scale (ratio); Ecology; Snag; Climate change; Riparian forest; Geography; Physical geography; Hydrology (agriculture); Geology; Habitat; Biology; Cartography","score_opus":0.015932481279405844,"score_gpt":0.2317372919985566,"score_spread":0.21580481071915075,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4412720553","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9985702,0.00049576536,0.00014432907,0.000036036014,0.0000036003362,0.0000028961535,0.00010917161,0.0000045289444,0.00063335744],"genre_scores_gemma":[0.9993156,0.00025229657,0.00012119182,0.000045581666,0.000013691071,0.000003602749,0.00013471904,0.000003368996,0.00010992292],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99980646,0.0000387339,0.000013671851,0.00006948504,0.000027790506,0.000043844233],"domain_scores_gemma":[0.9989705,0.0001891714,0.000411848,0.00011981952,0.00013866526,0.00017012224],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00041565287,0.00011149223,0.00016986544,0.0006440833,0.00026924416,0.0005460393,0.00030264343,0.00039906963,0.001643307],"category_scores_gemma":[0.0006696092,0.00019052158,0.00020905683,0.0005923926,0.00072773336,0.00031313306,0.00043850558,0.0002653277,0.0004073383],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018559222,0.00004539042,0.97902155,0.000043727792,0.000085584004,0.0002138677,0.00048604066,0.00006674474,0.010518347,0.00008947955,0.00011900851,0.009124495],"study_design_scores_gemma":[0.000001084578,0.000017062703,0.9995902,0.0000026780099,0.0000068128447,0.00009033954,0.000077583485,0.000022852504,0.00005640078,0.000018164554,0.00011469245,0.0000020059604],"about_ca_topic_score_codex":0.0024627845,"about_ca_topic_score_gemma":0.0054870467,"teacher_disagreement_score":0.0024627845,"about_ca_system_score_codex":0.0001151587,"about_ca_system_score_gemma":0.00010212343,"threshold_uncertainty_score":0.005497396},"labels":[],"label_agreement":null},{"id":"W4412834363","doi":"10.1016/j.foreco.2025.122993","title":"Soil moisture is a main driver of growth response of coastal Douglas-fir with high spatial variability","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Positive Living North; Government of British Columbia; University of Northern British Columbia","funders":"","keywords":"Douglas fir; Environmental science; Water content; Ecology; Soil science; Forestry; Geography; Geology; Biology; Geotechnical engineering","score_opus":0.0017278280260126964,"score_gpt":0.17541555411425439,"score_spread":0.17368772608824168,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4412834363","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993717,0.00006287714,0.00012090828,0.000017705972,0.000003202875,8.6334694e-7,0.00014770769,0.0000073590045,0.00026769371],"genre_scores_gemma":[0.9995777,0.000014604483,0.000039490064,0.000009910021,0.000002768967,7.241609e-7,0.00013014588,0.0000033074148,0.00022125388],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999908,0.000012114442,0.0000051824663,0.000041269093,0.000009824937,0.000023701108],"domain_scores_gemma":[0.99950945,0.00011972374,0.00014156055,0.000049376722,0.000066875415,0.00011308137],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022353185,0.0001818391,0.00012876341,0.00022148626,0.0001575103,0.00033552203,0.00014357193,0.00016289011,0.0014573914],"category_scores_gemma":[0.00052270986,0.00010640543,0.0002423497,0.00021710388,0.00011699206,0.00015521175,0.00018005376,0.0001879963,0.00023915226],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016035265,0.000042444142,0.95648646,0.0000159876,0.00008145449,0.00010290353,0.000075404096,0.00046014306,0.038248204,0.000032083037,0.00017314444,0.0041214577],"study_design_scores_gemma":[4.982603e-7,0.0000072559214,0.99935263,6.806294e-7,0.0000051368397,0.000028454664,0.000031881027,0.0002916799,0.00021809012,0.000008902603,0.00005366306,0.0000011122764],"about_ca_topic_score_codex":0.008826906,"about_ca_topic_score_gemma":0.015938662,"teacher_disagreement_score":0.008826906,"about_ca_system_score_codex":0.0001992361,"about_ca_system_score_gemma":0.00016214905,"threshold_uncertainty_score":0.017551064},"labels":[],"label_agreement":null},{"id":"W4412957940","doi":"10.1016/j.foreco.2025.123056","title":"Tree size and moisture gradient influence the performance of competition indices in uneven-aged interior Douglas-fir dominated stands","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"University of British Columbia","keywords":"Douglas fir; Competition (biology); Tree (set theory); Environmental science; Moisture; Ecology; Forestry; Mathematics; Biology; Geography; Meteorology","score_opus":0.0021198812320516666,"score_gpt":0.1921295086555665,"score_spread":0.19000962742351482,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4412957940","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998791,0.000014836807,0.000013873083,0.0000019360618,6.7657186e-7,2.822852e-7,0.000009263657,5.453211e-7,0.00007943309],"genre_scores_gemma":[0.99985504,0.0000048189786,0.000015771058,0.000004066854,0.0000010103488,3.4798643e-7,0.000024318288,7.519044e-7,0.00009386911],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998293,0.00005326607,0.000011528168,0.00003432877,0.000021266933,0.00005034807],"domain_scores_gemma":[0.99807787,0.0008488475,0.0002342542,0.00006833635,0.0001216546,0.0006491033],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00065473525,0.0002574599,0.00022339849,0.00031975427,0.00020618644,0.0004563744,0.00023737826,0.00024693063,0.0010170217],"category_scores_gemma":[0.0014812181,0.00014932394,0.00016451736,0.00016391359,0.0002817669,0.0002373658,0.00024139708,0.00024129261,0.00016850358],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006105405,0.00014861442,0.98745674,0.0000057933953,0.00007809875,0.00008016848,0.00008896093,0.00041793782,0.008869705,0.000039004208,0.000055935405,0.0021484746],"study_design_scores_gemma":[0.0000026299715,0.00005602562,0.9991278,7.444028e-7,0.000009706849,0.000034638124,0.000053531647,0.0005385457,0.00014083188,0.00001590103,0.000017914464,0.0000018591242],"about_ca_topic_score_codex":0.0069294544,"about_ca_topic_score_gemma":0.020548437,"teacher_disagreement_score":0.0069294544,"about_ca_system_score_codex":0.00019915559,"about_ca_system_score_gemma":0.00022119905,"threshold_uncertainty_score":0.013778269},"labels":[],"label_agreement":null},{"id":"W4413003039","doi":"10.1016/j.foreco.2025.123045","title":"Diversity, composition, and gastropod grazing of epiphytic lichen communities of forested wetlands at clearcut and intact edges in Nova Scotia, Canada","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Saint Mary's University; Nova Scotia Hospital; Dalhousie University","funders":"Natural Sciences and Engineering Research Council of Canada; Mitacs; Ontario Ministry of Natural Resources and Forestry; Nova Scotia Museum","keywords":"Grazing; Epiphyte; Nova scotia; Lichen; Wetland; Ecology; Geography; Composition (language); Environmental science; Biology; Archaeology","score_opus":0.010613892095781927,"score_gpt":0.19674269294641022,"score_spread":0.1861288008506283,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4413003039","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9988342,0.000129717,0.00002062931,0.000015248689,0.000002199241,0.000008932266,0.0005709927,0.0000020007099,0.00041618478],"genre_scores_gemma":[0.9984534,0.0001265106,0.00008002837,0.000020797954,0.0000012745467,0.000006845917,0.00046499918,0.0000015939647,0.00084442244],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996408,0.000031836436,0.000023110464,0.000063888896,0.00007796116,0.00016235102],"domain_scores_gemma":[0.99891925,0.000076739365,0.0001779618,0.000029394505,0.00039356799,0.00040318334],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002645073,0.0002409094,0.00032678392,0.0015845387,0.0016091027,0.0009043187,0.00069054344,0.00024036517,0.0011034039],"category_scores_gemma":[0.00070550037,0.00026746062,0.0002744471,0.0016878945,0.0008711345,0.00024848158,0.0006457588,0.00026915793,0.00018468699],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017139308,0.00004023051,0.99207884,0.000041956766,0.00006261785,0.000118575124,0.001720439,0.000121743666,0.0014971393,0.0000598399,0.00035605085,0.0037311392],"study_design_scores_gemma":[0.0000027079884,0.000008152421,0.9988105,0.000008137415,0.0000054425564,0.000021547663,0.00091624353,0.000051441617,0.000032033502,0.0000032558053,0.00013820332,0.0000023946736],"about_ca_topic_score_codex":0.98484117,"about_ca_topic_score_gemma":0.9967848,"teacher_disagreement_score":0.015158832,"about_ca_system_score_codex":0.008273547,"about_ca_system_score_gemma":0.0075495197,"threshold_uncertainty_score":0.06002903},"labels":[],"label_agreement":null},{"id":"W4413399085","doi":"10.1016/j.foreco.2025.123090","title":"Small mammal responses to structural retention through stubbing in foothills forests","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Forest Resource Improvement Association of Alberta; Mitacs","keywords":"Foothills; Mammal; Ecology; Geography; Environmental science; Agroforestry; Biology","score_opus":0.01511844113851571,"score_gpt":0.24048577928734718,"score_spread":0.22536733814883148,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4413399085","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99984384,0.000029107738,0.00001206355,0.0000034424982,3.8964126e-7,0.000001921807,0.00001158039,0.0000012302216,0.00009637629],"genre_scores_gemma":[0.99958616,0.000032289423,0.00006150265,0.000013410635,0.0000010535072,0.0000030008248,0.00004773847,6.2945827e-7,0.0002541468],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999194,0.000011138847,0.000002437057,0.000018291896,0.000014599294,0.00003426069],"domain_scores_gemma":[0.99976915,0.0000250232,0.00006247426,0.0000090116,0.00002042085,0.00011402779],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012971676,0.00020413696,0.00017704706,0.0002459513,0.0002944334,0.00032613374,0.00022479243,0.00016585238,0.00078310585],"category_scores_gemma":[0.00027758733,0.00012694011,0.000090966714,0.00014168427,0.00039582225,0.0001275081,0.0001956926,0.00019008499,0.00007904505],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012529431,0.00039722945,0.902484,0.000057003796,0.00007048689,0.00021446512,0.0010069538,0.00033424803,0.083468996,0.000038711907,0.00015585315,0.0105190845],"study_design_scores_gemma":[0.000001970491,0.000085130814,0.99955124,0.000001053844,0.0000032900937,0.000009859439,0.00012117705,0.000049561793,0.00013861412,0.0000050819076,0.000032436714,6.6075546e-7],"about_ca_topic_score_codex":0.09873283,"about_ca_topic_score_gemma":0.41404712,"teacher_disagreement_score":0.09873283,"about_ca_system_score_codex":0.00082614075,"about_ca_system_score_gemma":0.0004177329,"threshold_uncertainty_score":0.1963163},"labels":[],"label_agreement":null},{"id":"W4413447764","doi":"10.1016/j.foreco.2025.123064","title":"Selective breeding for growth does not compromise drought resistance in western larch seedlings","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":4,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Faculty of Forestry, University of British Columbia; Natural Sciences and Engineering Research Council of Canada; University of British Columbia; Genome British Columbia; Forest Genetics Council of British Columbia; Genome Canada","keywords":"Larch; Resistance (ecology); Drought resistance; Compromise; Biology; Ecology; Agroforestry; Agronomy; Environmental science","score_opus":0.008108376459525295,"score_gpt":0.23301062928268454,"score_spread":0.22490225282315923,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4413447764","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99961084,0.00003137224,0.00008576976,0.000005621408,6.900243e-7,0.0000028218863,0.00002304366,0.000005212863,0.00023461421],"genre_scores_gemma":[0.998912,0.000044112847,0.00029526805,0.000027731267,0.0000012145381,0.00000834433,0.00008843979,0.000007758945,0.000615189],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9998784,0.000020401121,0.000007705676,0.000034086825,0.000026403104,0.00003283748],"domain_scores_gemma":[0.9996985,0.000047347858,0.00008879739,0.00003194277,0.00003333588,0.00010005777],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019898951,0.00019250318,0.00014445615,0.00019309421,0.00033686752,0.00022216013,0.00019515987,0.000110041925,0.0005703717],"category_scores_gemma":[0.00019855548,0.000105378414,0.000068213216,0.00013730775,0.00032491813,0.00010118338,0.00021322213,0.00022185362,0.00009201302],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021951049,0.00006804821,0.0359849,0.00002423309,0.000021301215,0.00013163252,0.00015744017,0.00014530843,0.95993125,0.00007362322,0.000054539534,0.0031881742],"study_design_scores_gemma":[0.000028593999,0.00034126051,0.9517556,0.000008208827,0.000032213975,0.00022930469,0.0002852059,0.00077389827,0.045630097,0.000049822473,0.0008547984,0.000011015897],"about_ca_topic_score_codex":0.019860929,"about_ca_topic_score_gemma":0.12565161,"teacher_disagreement_score":0.019860929,"about_ca_system_score_codex":0.0007372606,"about_ca_system_score_gemma":0.00052445463,"threshold_uncertainty_score":0.03949064},"labels":[],"label_agreement":null},{"id":"W4413767608","doi":"10.1016/j.foreco.2025.123087","title":"Productive yet wild: Reconciling timber harvesting and small mammal conservation via understory protection harvesting in managed boreal landscapes of Alberta, Canada","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife Ecology and Conservation","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Alberta Pacific Forest Industries; University of Alberta","funders":"Forest Resource Improvement Association of Alberta; Mitacs; Alberta-Pacific Forest Industries","keywords":"Understory; Agroforestry; Logging; Boreal; Taiga; Geography; Silviculture; Ecology; Environmental science; Forestry; Biology; Canopy","score_opus":0.008734160011909957,"score_gpt":0.1830593531733502,"score_spread":0.17432519316144024,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4413767608","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982528,0.00036663734,0.0001389833,0.00007139805,0.0000025625645,0.000017061615,0.0001300928,0.000005064683,0.001015315],"genre_scores_gemma":[0.99820685,0.00024714877,0.0006878905,0.000047418856,0.0000028961795,0.000008012746,0.00013655688,0.000002479909,0.00066083384],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99957377,0.00007299505,0.000013918812,0.00008151717,0.0001377688,0.00012000054],"domain_scores_gemma":[0.9995683,0.0000551796,0.00009429477,0.000020833651,0.000100287754,0.00016106285],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00058844837,0.00021794013,0.00020519072,0.0005787555,0.0010134305,0.0009832666,0.00071269047,0.00014884656,0.00064088235],"category_scores_gemma":[0.0009326298,0.000112886366,0.00010443837,0.0008146049,0.0008198294,0.00027831737,0.0004454247,0.00016202556,0.00004558315],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006166391,0.00019008109,0.9487914,0.000073651674,0.00009461103,0.00015396626,0.0012706058,0.0012405055,0.0057701906,0.00029848987,0.0006156686,0.040884208],"study_design_scores_gemma":[0.000010116492,0.000061299295,0.99728596,0.000010622405,0.000026836744,0.000024227527,0.0011023851,0.0004618288,0.0001751226,0.000045943594,0.0007906514,0.000004867876],"about_ca_topic_score_codex":0.95314294,"about_ca_topic_score_gemma":0.9932394,"teacher_disagreement_score":0.04685706,"about_ca_system_score_codex":0.012293749,"about_ca_system_score_gemma":0.009375223,"threshold_uncertainty_score":0.09426594},"labels":[],"label_agreement":null},{"id":"W4413768589","doi":"10.1016/j.foreco.2025.123122","title":"Climate, topography, and stand conditions interact to shape maximum stand density in interior Douglas-fir forests","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Government of British Columbia","funders":"Ministry of Forests, Lands, Natural Resource Operations and Rural Development","keywords":"Douglas fir; Environmental science; Forestry; Geography; Climate change; Physical geography; Ecology; Agroforestry; Biology","score_opus":0.004048106244034732,"score_gpt":0.2354791490474029,"score_spread":0.23143104280336818,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4413768589","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99962926,0.00003189399,0.00008033547,0.000006759311,6.403247e-7,5.9994187e-7,0.000026582353,0.0000021890448,0.00022181484],"genre_scores_gemma":[0.99979466,0.0000071699696,0.000060290917,0.00000523307,0.0000010603275,6.721744e-7,0.000036451405,0.0000018284163,0.00009261573],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983084,0.00005602757,0.000010152014,0.000034640325,0.000018450595,0.00004980112],"domain_scores_gemma":[0.99918,0.0003915327,0.00015017013,0.00004061449,0.00006830581,0.00016940953],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00050310034,0.00014882344,0.00026356857,0.00044214746,0.00035418064,0.0008170175,0.00026924314,0.00026836974,0.0011752604],"category_scores_gemma":[0.0011773508,0.00023758048,0.00024293017,0.00027547788,0.00043824024,0.00025814865,0.00038824024,0.00018010441,0.00015240039],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00009976417,0.000043265936,0.99078864,0.000010558979,0.000045307122,0.00004498113,0.00011738064,0.0008283599,0.00529549,0.00009803387,0.000075761774,0.002552448],"study_design_scores_gemma":[0.0000015618266,0.0000072101834,0.9990194,0.0000011660096,0.0000065648087,0.000030508958,0.00006963213,0.00070305297,0.0000659199,0.00006489128,0.00002813612,0.0000019504596],"about_ca_topic_score_codex":0.009478646,"about_ca_topic_score_gemma":0.050616026,"teacher_disagreement_score":0.009478646,"about_ca_system_score_codex":0.00033137086,"about_ca_system_score_gemma":0.0002847869,"threshold_uncertainty_score":0.018846989},"labels":[],"label_agreement":null},{"id":"W4413776947","doi":"10.1016/j.foreco.2025.123127","title":"Perspectives: Pests in plantation forests: Challenging traditional productive paradigms in the Southern Cone of America","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":5,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Centre de Géomatique du Québec","funders":"Instituto Nacional de Tecnología Agropecuaria","keywords":"Agroforestry; Cone (formal languages); Geography; Ecology; Forestry; Environmental science; Biology; Mathematics","score_opus":0.00854740536143267,"score_gpt":0.21570199007221733,"score_spread":0.20715458471078466,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4413776947","genre_codex":"commentary","genre_gemma":"commentary","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"commentary","genre_consensus":"commentary","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.13012612,0.032188393,0.0040724156,0.77917904,0.0012880696,0.00003466652,0.00035524013,0.000044341392,0.05271178],"genre_scores_gemma":[0.8908595,0.028022386,0.0026813934,0.07003691,0.0035716263,0.00003187448,0.00012113524,0.00001742945,0.0046577817],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"not_applicable","domain_scores_codex":[0.9985435,0.0005471209,0.000029871371,0.00021708819,0.00027915539,0.0003833057],"domain_scores_gemma":[0.99541724,0.0009803122,0.00070902397,0.00015545131,0.0015647113,0.0011732538],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0039147846,0.00048557617,0.00043191324,0.0010291801,0.0031951987,0.005418711,0.001935215,0.0033499282,0.005741325],"category_scores_gemma":[0.0034871376,0.000117225,0.00030082365,0.0012681169,0.011683447,0.006441672,0.0026937772,0.003574359,0.00032316463],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002837664,0.0008314052,0.2493059,0.0022433796,0.00021567004,0.0018593872,0.029870067,0.0034628245,0.009208925,0.29267395,0.13376312,0.27628157],"study_design_scores_gemma":[0.000060646475,0.00028629176,0.24273585,0.0019628005,0.000148921,0.0012825624,0.2014181,0.0026551522,0.0012407997,0.31247684,0.23562385,0.00010814192],"about_ca_topic_score_codex":0.10718983,"about_ca_topic_score_gemma":0.31191838,"teacher_disagreement_score":0.10718983,"about_ca_system_score_codex":0.0038910469,"about_ca_system_score_gemma":0.010702221,"threshold_uncertainty_score":0.21313184},"labels":[],"label_agreement":null},{"id":"W4413818485","doi":"10.1016/j.foreco.2025.123125","title":"Soil amendments alter understory vegetation composition and functional diversity in poorly regenerated logging sites in Quebec, Canada","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ecology and Vegetation Dynamics Studies","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministère des Ressources naturelles et des Forêts; Université du Québec en Abitibi-Témiscamingue","funders":"Canadian Forest Service; Fondation de l’Université du Québec en Abitibi-Témiscamingue","keywords":"Understory; Logging; Vegetation (pathology); Diversity (politics); Environmental science; Functional diversity; Ecology; Composition (language); Agroforestry; Geography; Forestry; Biology; Canopy","score_opus":0.008398672015165691,"score_gpt":0.1958824934514976,"score_spread":0.1874838214363319,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4413818485","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99781823,0.00030294462,0.00012170232,0.000066350134,0.0000040955347,0.000022397944,0.00080523524,0.000012545239,0.0008465105],"genre_scores_gemma":[0.9971585,0.00019592012,0.0003313537,0.00007525618,0.0000019196805,0.000012933331,0.0005575438,0.000005360806,0.0016612659],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997181,0.000027316697,0.000011979117,0.000079558646,0.00007087243,0.000092057235],"domain_scores_gemma":[0.99932706,0.00005864082,0.00010819663,0.000021896598,0.0003110741,0.00017316506],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002818287,0.00029997333,0.00030013124,0.0006171757,0.0015027098,0.00074409344,0.00071022456,0.00026732168,0.001533896],"category_scores_gemma":[0.00047308163,0.00016235281,0.00019130066,0.0008794059,0.00063261815,0.00023385984,0.00029262,0.00025225503,0.00015347384],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00046235637,0.00021734161,0.9297037,0.00013278633,0.00014801974,0.00035565192,0.0019360438,0.0007819021,0.03148021,0.000097060016,0.0017399829,0.032944832],"study_design_scores_gemma":[0.000005168506,0.00003297228,0.9977187,0.000012727269,0.000013300109,0.00002088123,0.0006711169,0.00035125317,0.00031282066,0.000006935578,0.0008475998,0.0000066104626],"about_ca_topic_score_codex":0.989461,"about_ca_topic_score_gemma":0.9979176,"teacher_disagreement_score":0.015116033,"about_ca_system_score_codex":0.015116033,"about_ca_system_score_gemma":0.008892729,"threshold_uncertainty_score":0.10967505},"labels":[],"label_agreement":null},{"id":"W4414006745","doi":"10.1016/j.foreco.2025.123129","title":"Black spruce growth under climate extremes: Genetic insights for managing a key resource production species","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal; Natural Resources Canada","funders":"Natural Resources Canada; Canadian Forest Service; Natural Sciences and Engineering Research Council of Canada","keywords":"Key (lock); Resource (disambiguation); Production (economics); Ecology; Biology; Agroforestry; Environmental resource management; Environmental science; Computer science; Economics","score_opus":0.008018420677039657,"score_gpt":0.20467861354322497,"score_spread":0.19666019286618533,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4414006745","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97682106,0.0064091147,0.009291802,0.0031346972,0.000045784855,0.000048034446,0.00078684284,0.00006731786,0.003395327],"genre_scores_gemma":[0.9787603,0.004437896,0.015201825,0.0003933821,0.00006249791,0.00003035882,0.00052548194,0.000023566374,0.00056472357],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99987113,0.000031882664,0.0000068432137,0.000043184496,0.000021854763,0.00002523281],"domain_scores_gemma":[0.99969804,0.00006538533,0.00009343088,0.000013103506,0.000043071734,0.00008701967],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008898825,0.0005379636,0.000446902,0.0008300787,0.0006796395,0.0010696505,0.00050570257,0.00050727255,0.0007093351],"category_scores_gemma":[0.00065478584,0.0001392603,0.00023320364,0.000996612,0.0003532624,0.0007760759,0.00049336086,0.000617516,0.00007928118],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00048379943,0.0004204136,0.5841357,0.00037738716,0.0003268993,0.00068304,0.002117238,0.01742801,0.13834669,0.0037498637,0.0016523886,0.25027862],"study_design_scores_gemma":[0.000023542576,0.0002921496,0.9649871,0.00014357409,0.00016158346,0.00016127204,0.003493988,0.014043075,0.0014779205,0.0056977603,0.009448092,0.000069965936],"about_ca_topic_score_codex":0.025153754,"about_ca_topic_score_gemma":0.07242793,"teacher_disagreement_score":0.025153754,"about_ca_system_score_codex":0.0010057474,"about_ca_system_score_gemma":0.0014331712,"threshold_uncertainty_score":0.050014675},"labels":[],"label_agreement":null},{"id":"W4414006860","doi":"10.1016/j.foreco.2025.123133","title":"Edge effects of linear disturbances on plant functional traits in boreal fens of northern Alberta, Canada","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Saint Mary's University; University of Waterloo; Natural Resources Canada; Canadian Forest Service","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Boreal; Taiga; Ecology; Geography; Environmental science; Physical geography; Biology","score_opus":0.0028333341073514522,"score_gpt":0.17403555880240731,"score_spread":0.17120222469505586,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4414006860","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9989795,0.00008988485,0.00006627946,0.000016108797,0.000001343288,0.0000035999403,0.00027839126,0.0000064584415,0.0005584067],"genre_scores_gemma":[0.9988134,0.00006822561,0.00017977471,0.000022725035,8.9727405e-7,0.0000039872175,0.000424628,0.0000035953449,0.00048269038],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99975127,0.000020525898,0.000008666216,0.00005860632,0.0000740532,0.00008683611],"domain_scores_gemma":[0.99945205,0.00005694971,0.00009013843,0.000019954563,0.00022139281,0.00015950996],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023245843,0.00033167744,0.00030692265,0.0008592027,0.0013229526,0.0006233711,0.00053914194,0.0001874071,0.00078591646],"category_scores_gemma":[0.00041881425,0.00016546571,0.00021918568,0.0010497055,0.0006948565,0.00015151723,0.00042633302,0.00022419651,0.00008878733],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005121793,0.00006730104,0.9617455,0.000046609617,0.00010488985,0.0003690595,0.0013978506,0.0012104596,0.023058824,0.000116594914,0.00051207107,0.0108586475],"study_design_scores_gemma":[0.0000015469367,0.0000095904625,0.999032,0.0000020953019,0.0000054500642,0.000017820701,0.00044239656,0.00016090568,0.00012906271,0.000007999418,0.00018836555,0.0000027130432],"about_ca_topic_score_codex":0.96515733,"about_ca_topic_score_gemma":0.9908296,"teacher_disagreement_score":0.03484267,"about_ca_system_score_codex":0.010163535,"about_ca_system_score_gemma":0.0047095367,"threshold_uncertainty_score":0.07374191},"labels":[],"label_agreement":null},{"id":"W4414280916","doi":"10.1016/j.foreco.2025.123163","title":"Reducing logging intensity in north temperate rainforests for climate and economic benefits","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Forests; University of Northern British Columbia; Government of British Columbia","funders":"Ministry of Forests, Lands and Natural Resource Operations; University of Northern British Columbia","keywords":"Logging; Temperate rainforest; Carbon sink; Temperate climate; Rainforest; Ecosystem; Greenhouse gas; Temperate forest","score_opus":0.006039927273826626,"score_gpt":0.21097717019039675,"score_spread":0.20493724291657012,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4414280916","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9988109,0.00012878138,0.000103602964,0.00002661427,0.0000030250712,0.000017113436,0.00034640156,0.0000057299762,0.0005579085],"genre_scores_gemma":[0.99784124,0.00011420878,0.00038411963,0.00010835036,0.0000053378626,0.000036911566,0.0008537311,0.000003615166,0.0006524354],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99954224,0.00012179812,0.000028964401,0.00011862375,0.00008515669,0.00010322273],"domain_scores_gemma":[0.9987884,0.00017002231,0.00046214828,0.00015773681,0.00016873488,0.00025307242],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008585598,0.00017991234,0.0003167173,0.00025422548,0.0005150204,0.0005012326,0.00035812377,0.00020234831,0.0013081335],"category_scores_gemma":[0.001526438,0.00012155591,0.00026279924,0.00044357116,0.0003674683,0.00030250812,0.00025451044,0.00023230622,0.00015560933],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007424385,0.00028560963,0.97586787,0.000063788866,0.00015409275,0.00013526207,0.00046455231,0.00043516056,0.007299152,0.000039090308,0.0005992278,0.013913855],"study_design_scores_gemma":[0.0000067026285,0.00003038951,0.9992211,0.0000042589063,0.00001230114,0.000008947655,0.00011669158,0.00007965313,0.00012976414,0.000010875125,0.00037744275,0.000001758066],"about_ca_topic_score_codex":0.15255594,"about_ca_topic_score_gemma":0.52386075,"teacher_disagreement_score":0.15255594,"about_ca_system_score_codex":0.00084445084,"about_ca_system_score_gemma":0.0011833457,"threshold_uncertainty_score":0.30333596},"labels":[],"label_agreement":null},{"id":"W4414305534","doi":"10.1016/j.foreco.2025.123174","title":"Effects of nitrogen application on growth and mortality of stemwood biomass in coastal forests of British Columbia","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Bioenergy crop production and management","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia","funders":"","keywords":"Biomass (ecology); Nitrogen; Nutrient; Ecosystem; Primary production; Biomass partitioning; Stand development; Thinning; Tropics","score_opus":0.0042103153465462015,"score_gpt":0.19445144415732235,"score_spread":0.19024112881077615,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4414305534","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991462,0.00009625899,0.000011274802,0.000020615711,0.0000018434558,0.0000029403946,0.000071319315,0.0000021265448,0.00064748153],"genre_scores_gemma":[0.99808526,0.00010095584,0.000041603318,0.000037812253,9.1494354e-7,0.0000043803725,0.0001344662,0.000002349504,0.0015922196],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997414,0.000046968238,0.000015758336,0.000045159093,0.000053069274,0.00009778151],"domain_scores_gemma":[0.99880254,0.00031401968,0.00014206354,0.000036937403,0.00034067812,0.00036382102],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00035677775,0.00030549977,0.00023067271,0.00044541666,0.0010964705,0.0007147616,0.0006063392,0.00031329342,0.0011253565],"category_scores_gemma":[0.00092356204,0.00017980448,0.0001728868,0.00047279402,0.00046698668,0.00021180477,0.0004081509,0.0003956521,0.00014370492],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.005564698,0.0005669016,0.87863547,0.00014978737,0.00026259036,0.0010235562,0.0012666883,0.0015816613,0.08809005,0.00012449802,0.0010793355,0.02165478],"study_design_scores_gemma":[0.00000882388,0.000096479205,0.99731183,0.0000068149457,0.000021098604,0.00003285662,0.0005519951,0.00027561226,0.0013718791,0.000014595799,0.0003025614,0.0000054422007],"about_ca_topic_score_codex":0.81591403,"about_ca_topic_score_gemma":0.94774085,"teacher_disagreement_score":0.18408597,"about_ca_system_score_codex":0.0065882364,"about_ca_system_score_gemma":0.0031077997,"threshold_uncertainty_score":0.3703401},"labels":[],"label_agreement":null},{"id":"W4414396511","doi":"10.1016/j.foreco.2025.123172","title":"Population phase-dependent niche requirements may limit outbreaks of the range-expanding mountain pine beetle in the western boreal forest","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"Natural Resources Canada; Natural Sciences and Engineering Research Council of Canada; Ministry of Natural Resources","keywords":"Mountain pine beetle; Dendroctonus; Pinus contorta; Habitat; Range (aeronautics); Bark beetle; Competition (biology); Niche; Population","score_opus":0.012255661029574363,"score_gpt":0.2715393303152396,"score_spread":0.2592836692856652,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4414396511","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999608,0.000039321203,0.000083175226,0.000007632715,5.902896e-7,0.000001958315,0.0000094392135,0.0000037300906,0.00024615185],"genre_scores_gemma":[0.9997327,0.000024558798,0.00010835675,0.000011654581,0.000002995157,0.000002367381,0.000032486907,0.0000014813647,0.0000833747],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999225,0.000013648489,0.0000052841638,0.000021703076,0.000008620457,0.000028265606],"domain_scores_gemma":[0.99964535,0.000034687844,0.00016592689,0.00001829412,0.000034417117,0.000101319245],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002110645,0.00014770968,0.000149348,0.0002337829,0.00032991456,0.000485037,0.00022198414,0.0001471489,0.0009635208],"category_scores_gemma":[0.00045589267,0.00013329729,0.000116117255,0.00007164206,0.00019951216,0.00034934966,0.00023481523,0.00018786316,0.000102950435],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003775558,0.00028683376,0.8046598,0.00006563734,0.000056028126,0.00016729093,0.0006024045,0.0007497063,0.17838638,0.0003270873,0.00024406447,0.014077285],"study_design_scores_gemma":[0.000005357387,0.000110901674,0.99819094,0.000002997928,0.000008587263,0.00008848483,0.00021174506,0.0005662089,0.00051615963,0.000080631915,0.00021478397,0.0000032297733],"about_ca_topic_score_codex":0.0042517837,"about_ca_topic_score_gemma":0.021527931,"teacher_disagreement_score":0.0042517837,"about_ca_system_score_codex":0.00024700692,"about_ca_system_score_gemma":0.00020681748,"threshold_uncertainty_score":0.008454084},"labels":[],"label_agreement":null},{"id":"W4414521295","doi":"10.1016/j.foreco.2025.123132","title":"Burn severity modifies the impact of salvage logging on post-wildfire natural regeneration of Douglas-fir in interior British Columbia","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Ministry of Forests; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; University of British Columbia; Ministerio de Educación, Cultura y Deporte","keywords":"Salvage logging; Seedling; Logging; Biomass (ecology); Nitrogen; Regeneration (biology)","score_opus":0.0027192699089799697,"score_gpt":0.20951574877799228,"score_spread":0.2067964788690123,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4414521295","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99948657,0.000069599744,0.000027269534,0.000008884382,0.000001529257,0.000003125545,0.00012700072,0.000004374929,0.00027154194],"genre_scores_gemma":[0.99886477,0.00006228182,0.00007246942,0.00002519446,6.8003897e-7,0.000004158797,0.00034413778,0.000003850644,0.00062239263],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979,0.00002930571,0.000010332727,0.000050822564,0.000047893736,0.000071601964],"domain_scores_gemma":[0.99933904,0.00009146657,0.00011571128,0.00003587017,0.00017046047,0.0002475051],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002681595,0.00031456898,0.0003733978,0.00031343588,0.0006402459,0.0007756578,0.0003811487,0.0001668687,0.0012677677],"category_scores_gemma":[0.00051675254,0.00017033548,0.00020309207,0.00034565548,0.00039817585,0.00015871898,0.00033895537,0.0003476027,0.00017886552],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009590384,0.00026580738,0.9166753,0.000060162158,0.00017848832,0.0003005037,0.0007289869,0.0009344969,0.06561164,0.000048099075,0.0005283177,0.013709073],"study_design_scores_gemma":[0.0000010166317,0.00002548745,0.99937797,0.0000027382832,0.000007458966,0.000011829547,0.00018197564,0.00013999207,0.0001666951,0.0000044938706,0.00007802262,0.0000023736973],"about_ca_topic_score_codex":0.6515746,"about_ca_topic_score_gemma":0.9002621,"teacher_disagreement_score":0.3484254,"about_ca_system_score_codex":0.0030165652,"about_ca_system_score_gemma":0.0022109644,"threshold_uncertainty_score":0.7009547},"labels":[],"label_agreement":null},{"id":"W4414573935","doi":"10.1016/j.foreco.2025.123179","title":"Moving up north: How do translocated seedlings perform in mixed-species plantings at the boreal-temperate interface?","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Seedling growth and survival studies","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval; Ministry of Natural Resources and Wildlife","funders":"Ministère de l'Énergie et des Ressources Naturelles; Québec Ministère du Développement Durable, de l’Environnement et de la Lutte Contre les Changements Climatiques; Société Française de lutte contre les Cancers et les leucémies de l'Enfant et de l'Adolescent","keywords":"Afforestation; Climate change; Coppicing; Vegetation (pathology); Pruning; Silviculture; Canopy; Clearcutting","score_opus":0.007241068691871927,"score_gpt":0.20001869066005507,"score_spread":0.19277762196818313,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4414573935","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994037,0.000051534793,0.000025580543,0.000014557004,0.0000017575122,0.0000029608693,0.000031194242,0.0000016773338,0.00046685032],"genre_scores_gemma":[0.9985428,0.00007070033,0.0001565435,0.000034341243,0.0000016097572,0.0000047255944,0.00011525809,0.0000034170466,0.0010705935],"study_design_codex":"observational","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9997811,0.00002605434,0.0000070070696,0.00009050064,0.00002931168,0.000066029635],"domain_scores_gemma":[0.99935085,0.00007285263,0.0001430146,0.00004181644,0.0001450111,0.0002465017],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004814739,0.00020564867,0.00017484151,0.00025690402,0.00068290206,0.0010828922,0.00042594975,0.0002738864,0.0015451905],"category_scores_gemma":[0.00074210786,0.00011448687,0.00011609025,0.0001955447,0.00040638747,0.0005533037,0.00033878206,0.000257429,0.00046009818],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000526361,0.00032474738,0.9224029,0.00006150313,0.000045090597,0.00035462953,0.0052369977,0.00018829957,0.04169365,0.000120365505,0.00038547607,0.02865993],"study_design_scores_gemma":[0.000002438461,0.00008566991,0.9971578,0.0000051398165,0.0000043559203,0.000031855667,0.0020826813,0.00009566023,0.00020487973,0.000019132265,0.00030548745,0.0000047799886],"about_ca_topic_score_codex":0.13983504,"about_ca_topic_score_gemma":0.5715322,"teacher_disagreement_score":0.13983504,"about_ca_system_score_codex":0.0013024731,"about_ca_system_score_gemma":0.00076681725,"threshold_uncertainty_score":0.27804226},"labels":[],"label_agreement":null},{"id":"W4414723700","doi":"10.1016/j.foreco.2025.123189","title":"Root exudate-driven mycorrhizal suppression underlies Indocalamus tessellatus invasion: Evidence from field and pot experiments","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Agronomic Practices and Intercropping Systems","field":"Agricultural and Biological Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Lakehead University","funders":"National Key Research and Development Program of China Stem Cell and Translational Research; National Key Research and Development Program of China; National Natural Science Foundation of China","keywords":"Rhizosphere; Pinus massoniana; Allelopathy; Bamboo; Exudate; Biodiversity; Arbuscular mycorrhiza; Phyllostachys edulis","score_opus":0.022502687165253363,"score_gpt":0.25384582056340405,"score_spread":0.23134313339815069,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4414723700","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9996867,0.000028117538,0.0000941195,0.000007965997,8.612405e-7,0.0000026285961,0.000020570604,0.0000068182608,0.00015235813],"genre_scores_gemma":[0.9995183,0.000031870382,0.00014890816,0.000014205711,8.4118426e-7,0.000006098472,0.00004795045,0.0000054677034,0.00022639532],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9997795,0.000045574605,0.000014708682,0.00006963084,0.000033678334,0.000056870173],"domain_scores_gemma":[0.99935097,0.00017611896,0.00021051959,0.00007502121,0.000045742356,0.00014159278],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048488006,0.0003307305,0.0003523024,0.00031940054,0.00033528492,0.00046092563,0.0005828356,0.0004118805,0.0015058488],"category_scores_gemma":[0.0004915197,0.00022538949,0.00014787371,0.00016106776,0.00055182027,0.00040392837,0.00042445995,0.0005047866,0.000114971306],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009510131,0.00030744492,0.017043851,0.000049326194,0.000026676335,0.00006582458,0.00013202414,0.00013879238,0.9786896,0.00015924133,0.000027961838,0.0024082004],"study_design_scores_gemma":[0.000118499265,0.0011919591,0.9091584,0.000014553149,0.000087447406,0.00028229714,0.000602939,0.00319494,0.08436017,0.00035794685,0.000604712,0.000026122003],"about_ca_topic_score_codex":0.005411328,"about_ca_topic_score_gemma":0.012244647,"teacher_disagreement_score":0.005411328,"about_ca_system_score_codex":0.0005487731,"about_ca_system_score_gemma":0.00030281657,"threshold_uncertainty_score":0.010759652},"labels":[],"label_agreement":null},{"id":"W4415086323","doi":"10.1016/j.foreco.2025.123226","title":"Viscum album in French forests: Distribution, environmental drivers and impacts on tree health and growth","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Parasitism and Resistance","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval; Natural Resources Canada; Canadian Forest Service","funders":"","keywords":"Viscum album; Abiotic component; Biodiversity; Crown (dentistry); Scots pine; Tree health; Habitat; Biotic component; Infestation; Climate change","score_opus":0.0035159341280778683,"score_gpt":0.1913991142626893,"score_spread":0.18788318013461142,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4415086323","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99753547,0.0008215309,0.00017886264,0.00004577113,0.0000033427061,0.0000033901108,0.00092292135,0.000009770659,0.000478998],"genre_scores_gemma":[0.99839157,0.00020324205,0.00019052207,0.00002207827,0.0000054229827,0.000003900225,0.0009933735,0.000002579401,0.00018721928],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997595,0.000048128528,0.00000917362,0.00008349589,0.000032675827,0.00006710684],"domain_scores_gemma":[0.9995789,0.00009748584,0.00014235209,0.000026193358,0.00009570922,0.000059404712],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00047003783,0.0003116576,0.0002249869,0.0011812667,0.00036946844,0.00056715676,0.00020835001,0.00019703447,0.00095567823],"category_scores_gemma":[0.00043828474,0.00006638917,0.00030609567,0.00088816194,0.0002228428,0.00029681952,0.0002891884,0.00015647364,0.00012704934],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006464381,0.000021901267,0.98272055,0.00003275805,0.00006722335,0.00016939238,0.00044591853,0.00038308158,0.0012767467,0.00009464709,0.0004987959,0.014224373],"study_design_scores_gemma":[7.958531e-7,0.000008297537,0.9986922,0.000006566841,0.000006922525,0.00007201078,0.00022942865,0.00025496705,0.00003054006,0.000012176575,0.0006837619,0.0000023939333],"about_ca_topic_score_codex":0.21057229,"about_ca_topic_score_gemma":0.3115674,"teacher_disagreement_score":0.21057229,"about_ca_system_score_codex":0.0012192578,"about_ca_system_score_gemma":0.00035285615,"threshold_uncertainty_score":0.41869324},"labels":[],"label_agreement":null},{"id":"W4415239047","doi":"10.1016/j.foreco.2025.123260","title":"The impacts of global change on the self-thinning lines for six timber species in Canada","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest ecology and management","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta; Alberta Environment and Protected Areas","funders":"Global Affairs Canada; China Scholarship Council","keywords":"Climate change; Abiotic component; Global change; Deposition (geology); Global warming; Competition (biology)","score_opus":0.007938092342063042,"score_gpt":0.21574443768693177,"score_spread":0.20780634534486872,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4415239047","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99681526,0.00014197409,0.000049558243,0.00022620075,0.0000055619616,0.000009693483,0.00038591528,0.0000056590893,0.002360096],"genre_scores_gemma":[0.9980248,0.0001044889,0.00012758527,0.000049621878,0.0000012451487,0.000003728131,0.00025680216,0.0000027159485,0.0014290612],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99952495,0.000038130212,0.000015326365,0.00004706289,0.00012064437,0.00025378514],"domain_scores_gemma":[0.9985606,0.00011363857,0.00019469367,0.000031626005,0.00076214684,0.00033724465],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00047468275,0.00024554267,0.00023268927,0.001105426,0.0031585356,0.0013232487,0.0010846696,0.0005231764,0.0016310681],"category_scores_gemma":[0.0013631631,0.00016772613,0.000295515,0.0015465234,0.0013132723,0.0004272295,0.00084218,0.00068431185,0.00011018231],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028631045,0.00009468414,0.96297103,0.00004820604,0.00012538323,0.0005396458,0.003367949,0.0034077321,0.0024318327,0.0012566678,0.0020447066,0.0234259],"study_design_scores_gemma":[0.000005015297,0.000016197702,0.9931083,0.0000083090645,0.000021183889,0.00004336719,0.0040879776,0.0007403839,0.00019469441,0.00006606914,0.0016993001,0.000009211006],"about_ca_topic_score_codex":0.9926997,"about_ca_topic_score_gemma":0.99891245,"teacher_disagreement_score":0.031658787,"about_ca_system_score_codex":0.031658787,"about_ca_system_score_gemma":0.014561579,"threshold_uncertainty_score":0.22970164},"labels":[],"label_agreement":null},{"id":"W4415329780","doi":"10.1016/j.foreco.2025.123236","title":"Plant diversity patterns across karst and non-karst substrates in old-growth coastal temperate rainforests of Vancouver Island, Canada","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Northern British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Species richness; Karst; Tsuga; Biodiversity; Temperate rainforest; Temperate forest; Beta diversity; Alpha diversity; Nestedness; Species diversity","score_opus":0.00539017141880979,"score_gpt":0.19940482139687218,"score_spread":0.1940146499780624,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4415329780","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9986872,0.000154993,0.000024645255,0.000012442303,0.0000010692717,0.0000071524923,0.0005129113,0.0000029706212,0.00059670844],"genre_scores_gemma":[0.9986349,0.00016545483,0.000091957656,0.000016501825,8.4919196e-7,0.0000062021095,0.00056502817,0.0000017834142,0.00051724043],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999777,0.000014391796,0.000013231804,0.000056827852,0.000059234026,0.00007935691],"domain_scores_gemma":[0.99924916,0.000068275425,0.000098279124,0.000024416804,0.0002850722,0.00027477922],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018415732,0.00023848804,0.00026229385,0.0013670491,0.0013467591,0.0010732383,0.0005454279,0.00020829916,0.0009817297],"category_scores_gemma":[0.0005044648,0.00021942552,0.00016989783,0.001649732,0.00078364933,0.00016390157,0.0006160772,0.00020179918,0.00016135215],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00007710464,0.000019757044,0.9900311,0.000029588324,0.00003708023,0.00009398075,0.0015910881,0.000079250975,0.0020128284,0.000031428164,0.00024097005,0.0057558697],"study_design_scores_gemma":[0.0000013894729,0.0000050198055,0.99894446,0.0000063265466,0.000004173544,0.000019607822,0.00080826407,0.000042104017,0.000034885787,0.000003530507,0.0001285056,0.0000018183912],"about_ca_topic_score_codex":0.95892346,"about_ca_topic_score_gemma":0.9924164,"teacher_disagreement_score":0.04107654,"about_ca_system_score_codex":0.0052627143,"about_ca_system_score_gemma":0.0030517422,"threshold_uncertainty_score":0.08263683},"labels":[],"label_agreement":null},{"id":"W4415664089","doi":"10.1016/j.foreco.2025.123283","title":"Regional characteristics drive thinning effects on boreal soil organic carbon stocks","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":3,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Natural Resources Canada; Canadian Forest Service; Université du Québec en Abitibi-Témiscamingue","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Soil carbon; Thinning; Boreal; Taiga; Forest floor; Vegetation (pathology); Soil fertility; Ecosystem; Soil water","score_opus":0.005477324287159216,"score_gpt":0.19806893989308122,"score_spread":0.192591615605922,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4415664089","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9988439,0.000194122,0.00007857747,0.000012110925,0.0000026299015,0.0000052388746,0.00025766034,0.0000064155597,0.00059932965],"genre_scores_gemma":[0.998808,0.00010037982,0.00014281101,0.000022914988,0.0000020026237,0.0000045306665,0.0004371901,0.0000047850594,0.00047731004],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998554,0.000015042813,0.0000077647555,0.00004904206,0.000029341745,0.00004348538],"domain_scores_gemma":[0.9994948,0.00005692391,0.00015522105,0.000034897916,0.00013586815,0.00012226318],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003743644,0.00020507004,0.00019100012,0.0002476743,0.00035367638,0.00044764514,0.000188574,0.00015159759,0.001091307],"category_scores_gemma":[0.00039343382,0.00009614834,0.00020036676,0.00032337452,0.00022043962,0.00014936765,0.0001347605,0.00018135618,0.000107108455],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005284088,0.000098720084,0.90655565,0.000043389948,0.00014086528,0.00018313587,0.0002308751,0.0005840747,0.08005383,0.00006083354,0.00033570125,0.0111845955],"study_design_scores_gemma":[8.4177196e-7,0.000012512121,0.9995653,0.0000012940625,0.0000061514534,0.00001022066,0.000037166355,0.00005069575,0.00020505735,0.0000030623114,0.00010624953,0.000001299644],"about_ca_topic_score_codex":0.21428952,"about_ca_topic_score_gemma":0.5163457,"teacher_disagreement_score":0.21428952,"about_ca_system_score_codex":0.0010703248,"about_ca_system_score_gemma":0.00082705164,"threshold_uncertainty_score":0.4260844},"labels":[],"label_agreement":null},{"id":"W4415741358","doi":"10.1016/j.foreco.2025.123180","title":"Snow dynamics and forest structure interact to increase wildfire burn severity in the boreal forest","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Toronto","funders":"Natural Sciences and Engineering Research Council of Canada; Osteoporosis Canada; Ontario Ministry of Natural Resources and Forestry","keywords":"Snow; Snowpack; Taiga; Boreal; Snowmelt; Climate change; Snow cover; Ecoregion","score_opus":0.001991566607957259,"score_gpt":0.20225759642793745,"score_spread":0.20026602981998018,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4415741358","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992902,0.00008366398,0.00008348768,0.00004233076,0.0000028553256,0.0000030598019,0.00012536248,0.0000044153394,0.00036466072],"genre_scores_gemma":[0.9996271,0.00003486285,0.00007951243,0.0000100551615,0.000001763833,0.0000017807924,0.000120214965,0.0000011712361,0.00012342661],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997384,0.000048178536,0.000017844905,0.00006828984,0.000055520304,0.000071741044],"domain_scores_gemma":[0.99914503,0.00014816578,0.00036915674,0.000043389842,0.000104396786,0.00018993212],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038926268,0.00024285167,0.0001645202,0.00041479804,0.000526062,0.0006542104,0.00022462122,0.00020180766,0.0009114549],"category_scores_gemma":[0.0010787335,0.00017360803,0.0004831771,0.00037538778,0.00043324247,0.00030394955,0.00037624905,0.0002237084,0.000067617715],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00002583563,0.000014760988,0.9981431,0.000005894693,0.00004416624,0.000028679508,0.000085783424,0.0002295607,0.00036436948,0.00002753994,0.000052649724,0.0009776443],"study_design_scores_gemma":[0.0000010551034,0.000009140303,0.99943525,0.0000015810153,0.000010656461,0.000018426048,0.00008329547,0.00031685494,0.000017741766,0.00001934707,0.000085241816,0.0000014778328],"about_ca_topic_score_codex":0.3970002,"about_ca_topic_score_gemma":0.6931099,"teacher_disagreement_score":0.3970002,"about_ca_system_score_codex":0.0015986101,"about_ca_system_score_gemma":0.0016244736,"threshold_uncertainty_score":0.78937876},"labels":[],"label_agreement":null},{"id":"W4415952038","doi":"10.1016/j.foreco.2025.123320","title":"Spruce budworm outbreaks promote natural regeneration of Eastern white pine","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"Natural Resources Canada; Natural Sciences and Engineering Research Council of Canada; Ontario Ministry of Natural Resources and Forestry","keywords":"Seedling; Balsam; Spruce budworm; Natural regeneration; Regeneration (biology); Disturbance (geology); Abies balsamea; Abiotic component; Outbreak","score_opus":0.0028991209209631125,"score_gpt":0.19763639758429694,"score_spread":0.19473727666333382,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4415952038","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994629,0.000062591316,0.00003233727,0.0000056188874,7.483738e-7,0.000003972819,0.000030372725,0.000006733245,0.00039490045],"genre_scores_gemma":[0.99946994,0.00003967987,0.00007073904,0.000015811494,9.96695e-7,0.0000030882195,0.000079342986,0.0000012068455,0.00031918616],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998896,0.000015289526,0.0000050613467,0.000025739011,0.000024327686,0.000039971343],"domain_scores_gemma":[0.99968886,0.000025993173,0.00010725339,0.000017648968,0.00004933249,0.000110899375],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016837638,0.00021200135,0.0001269464,0.00027103882,0.00027841268,0.0003442716,0.00017514719,0.000104705905,0.00085991435],"category_scores_gemma":[0.00018237096,0.00009648808,0.00013647432,0.0000957727,0.00020537355,0.00013079187,0.00022640848,0.0001621163,0.00010311372],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00053040363,0.00043413384,0.60044354,0.00009082496,0.00009503625,0.00061314774,0.0004819017,0.00048433925,0.38221532,0.00007655481,0.00036547348,0.014169284],"study_design_scores_gemma":[0.0000019087913,0.00008729898,0.9978951,0.0000026514292,0.0000042996376,0.000027950364,0.00016392316,0.00015135958,0.0014848257,0.000006763279,0.00017241617,0.0000014828698],"about_ca_topic_score_codex":0.05587399,"about_ca_topic_score_gemma":0.19527808,"teacher_disagreement_score":0.05587399,"about_ca_system_score_codex":0.0006455468,"about_ca_system_score_gemma":0.0003850622,"threshold_uncertainty_score":0.111097515},"labels":[],"label_agreement":null},{"id":"W4416027533","doi":"10.1016/j.foreco.2025.123307","title":"Effects of an early intervention management strategy for spruce budworm on balsam fir growth","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Memorial University of Newfoundland","funders":"Natural Resources Canada","keywords":"Spruce budworm; Balsam; Choristoneura fumiferana; Abies balsamea; Outbreak; Tortricidae; Population; Forest management","score_opus":0.0035908642638869696,"score_gpt":0.2219885567457269,"score_spread":0.21839769248183993,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4416027533","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993722,0.00007659689,0.00007763664,0.000050754017,0.000004980099,0.000023797184,0.000020293677,0.0000102768445,0.00036342494],"genre_scores_gemma":[0.9989506,0.00009563364,0.00047037078,0.00007364225,0.000005402196,0.000021862896,0.00004425272,7.8777947e-7,0.00033738217],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99978656,0.000058883692,0.000013930262,0.000042377807,0.000033063538,0.000065251945],"domain_scores_gemma":[0.9994252,0.000112147405,0.00018567056,0.000019664496,0.00006667835,0.00019066111],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004020109,0.00029899913,0.00014986783,0.00015916636,0.00024131146,0.00023585702,0.00039720064,0.00022199984,0.00047390175],"category_scores_gemma":[0.0007163873,0.000055424774,0.00016353875,0.00006825714,0.00020163185,0.00015814717,0.00016954425,0.00029488964,0.00003234426],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.015858578,0.023795396,0.40133327,0.00089544244,0.0006531229,0.0010189116,0.0012719148,0.02224462,0.24441582,0.0006115992,0.0017538216,0.28614748],"study_design_scores_gemma":[0.0004695503,0.04047034,0.9314213,0.0000669746,0.0002508664,0.00011393913,0.0005297538,0.008532183,0.016764574,0.00007635984,0.0012851933,0.000019060182],"about_ca_topic_score_codex":0.040801868,"about_ca_topic_score_gemma":0.124192804,"teacher_disagreement_score":0.040801868,"about_ca_system_score_codex":0.0011282966,"about_ca_system_score_gemma":0.0012034717,"threshold_uncertainty_score":0.081128776},"labels":[],"label_agreement":null},{"id":"W4416181556","doi":"10.1016/j.foreco.2025.123317","title":"Synergistic interactions: Population origin, chemical traits, and endophytic fungi shape white spruce adaptation across environments","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant and fungal interactions","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; University of Alberta","keywords":"Herbivore; Population; Taiga; Terpene; Adaptation (eye); Plant use of endophytic fungi in defense; Black spruce; Ecosystem; Threatened species","score_opus":0.015250874751180352,"score_gpt":0.24103533895528095,"score_spread":0.2257844642041006,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4416181556","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991586,0.00013207053,0.00033054638,0.000016337153,0.0000032308362,0.000004786164,0.00006122645,0.000009025753,0.00028415798],"genre_scores_gemma":[0.99935395,0.00003056656,0.0002940501,0.000019299925,0.0000023259236,0.000004110453,0.00006886494,0.000005405346,0.00022142619],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9992481,0.0002458833,0.000035286597,0.00028293033,0.00009874594,0.000089038],"domain_scores_gemma":[0.9990206,0.0002585409,0.00021677247,0.00014731962,0.00012031883,0.00023654806],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00073620153,0.0004555866,0.00049503625,0.0005673784,0.0004978862,0.00105511,0.00035185664,0.00040051676,0.001313478],"category_scores_gemma":[0.0010609551,0.00019550965,0.0005507667,0.00041114198,0.0005516104,0.00043937942,0.0010864841,0.0005855985,0.00018264122],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031903604,0.00021570863,0.8900003,0.000039626768,0.0006313556,0.0002748865,0.0006978965,0.00032137058,0.09826362,0.00016110763,0.00013994431,0.008935073],"study_design_scores_gemma":[0.0000026944274,0.00008896369,0.9980153,0.00000287235,0.000056683315,0.000091001086,0.00032476182,0.00061698153,0.0005615541,0.00004947124,0.00018188462,0.0000077378],"about_ca_topic_score_codex":0.003823746,"about_ca_topic_score_gemma":0.012473718,"teacher_disagreement_score":0.003823746,"about_ca_system_score_codex":0.00028644633,"about_ca_system_score_gemma":0.00037142937,"threshold_uncertainty_score":0.0076029897},"labels":[],"label_agreement":null},{"id":"W4416304785","doi":"10.1016/j.foreco.2026.123881","title":"American beech sapling dominance: Stand-scale insights from mobile laser scanning","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Outaouais","funders":"Natural Sciences and Engineering Research Council of Canada; Ministère de l'Énergie et des Ressources Naturelles","keywords":"Beech; Canopy; Dominance (genetics); Fagaceae; Mast (botany); Yellow birch","score_opus":0.003114671735105852,"score_gpt":0.2216423440104611,"score_spread":0.21852767227535524,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4416304785","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9981148,0.0003344316,0.00059661025,0.000019965984,0.000001323098,0.000005151918,0.00019294673,0.000011494886,0.0007233608],"genre_scores_gemma":[0.99856,0.00015137957,0.00097789,0.000013364341,0.0000044567114,0.0000060447155,0.00015712084,0.000003393101,0.00012645703],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989307,0.00002554079,0.0000057898474,0.000029027695,0.000027810383,0.00001872604],"domain_scores_gemma":[0.9997261,0.0000838012,0.00007848166,0.000014395455,0.00006332925,0.000033867203],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031923616,0.00013445885,0.00018817133,0.0016331442,0.00024795832,0.00046100604,0.0002481617,0.00017682723,0.0005601136],"category_scores_gemma":[0.0003787043,0.00012899937,0.00014659866,0.0012176237,0.00021335574,0.000427391,0.0003276018,0.00015853143,0.00013793095],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013688552,0.000082153674,0.8957965,0.000118422744,0.00006943182,0.00032029868,0.0018807325,0.0013618647,0.047464427,0.00025791835,0.00038335685,0.05212813],"study_design_scores_gemma":[9.71969e-7,0.000023494324,0.9963188,0.0000068860936,0.000011555045,0.00011578283,0.00051193463,0.0021271994,0.00043712507,0.00010218948,0.00033674805,0.0000073004194],"about_ca_topic_score_codex":0.014524068,"about_ca_topic_score_gemma":0.05259204,"teacher_disagreement_score":0.014524068,"about_ca_system_score_codex":0.0002589019,"about_ca_system_score_gemma":0.00016563793,"threshold_uncertainty_score":0.028879046},"labels":[],"label_agreement":null},{"id":"W4416428720","doi":"10.1016/j.foreco.2025.123355","title":"Impacts of partial cuts on aboveground carbon stocks in esker forests","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Biomass Utilization and Management","field":"Engineering","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Abitibi-Témiscamingue; Université du Québec à Montréal","funders":"Natural Sciences and Engineering Research Council of Canada; Medical Research Council Canada; Ministère des Forêts, de la Faune et des Parcs; Ontario Ministry of Natural Resources and Forestry","keywords":"Thinning; Snag; Carbon fibers; Biomass (ecology); Hectare; Carbon sequestration; Carbon stock","score_opus":0.004776611991325135,"score_gpt":0.22290769784305767,"score_spread":0.21813108585173252,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4416428720","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9998677,0.000027979719,0.00002629537,0.0000012256181,5.5895566e-7,0.0000010748394,0.000017834825,0.0000011697351,0.00005610626],"genre_scores_gemma":[0.9995535,0.00003462418,0.00007921806,0.0000059843674,0.0000014948183,0.0000030024612,0.00013096172,0.0000011530434,0.00018997843],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983656,0.000027633167,0.000012284101,0.000036708054,0.000035153796,0.0000516486],"domain_scores_gemma":[0.99951005,0.00008036911,0.00013417986,0.000039877144,0.00005803086,0.00017745422],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030822548,0.00025424582,0.00026009738,0.00019972552,0.0002148777,0.00037062343,0.00015625582,0.00015734727,0.0006010575],"category_scores_gemma":[0.00037055716,0.000106603984,0.00017996381,0.00013093463,0.00023617543,0.00028022594,0.0002948736,0.000222853,0.00008297227],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0036357297,0.0007787568,0.77805316,0.00009921486,0.00028499923,0.0005652076,0.00020826863,0.0024703646,0.18373847,0.00012977677,0.00010694557,0.029929167],"study_design_scores_gemma":[0.0000044959115,0.00051462115,0.9966389,0.0000020719244,0.000014575606,0.000060682658,0.00008215517,0.00040456824,0.0021747767,0.000031063268,0.00006885321,0.0000032462303],"about_ca_topic_score_codex":0.0032262146,"about_ca_topic_score_gemma":0.014143581,"teacher_disagreement_score":0.0032262146,"about_ca_system_score_codex":0.00028693423,"about_ca_system_score_gemma":0.00019958062,"threshold_uncertainty_score":0.0064148903},"labels":[],"label_agreement":null},{"id":"W4416452242","doi":"10.1016/j.foreco.2025.123372","title":"Species-specific modeling of tree diameter at breast height using tree height and relative density with implications for remote sensing-based forest inventory","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of New Brunswick","funders":"Department of Natural Resources","keywords":"Diameter at breast height; Tree (set theory); Temperate forest; Biomass (ecology); Forest inventory; Temperate rainforest; Temperate climate; Lidar","score_opus":0.016913627513847316,"score_gpt":0.2245380006295124,"score_spread":0.2076243731156651,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4416452242","genre_codex":"empirical","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.89630586,0.00061698345,0.09848557,0.00033221208,0.000028690138,0.000059872415,0.0013950664,0.000309105,0.0024665622],"genre_scores_gemma":[0.9775638,0.00017676524,0.020291882,0.000048181075,0.000011046183,0.000036093807,0.00093581114,0.00003308025,0.00090322987],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9996517,0.00009525532,0.000019524547,0.00014688938,0.000040637387,0.000046023077],"domain_scores_gemma":[0.9993618,0.00026470362,0.0001265453,0.00007353513,0.00012765585,0.000045674155],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.001583171,0.00079764647,0.00041102112,0.0006358136,0.00036346255,0.00084666896,0.0017557993,0.00038006838,0.00074946147],"category_scores_gemma":[0.0019114891,0.00040491068,0.0008088085,0.0008444613,0.00043441326,0.0010082287,0.0005446297,0.00049665954,0.00023768014],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000039517377,0.00010376383,0.26995417,0.00006345503,0.00022123664,0.0000699857,0.00015740568,0.70477736,0.0018721834,0.0022946782,0.0005640799,0.019882318],"study_design_scores_gemma":[0.0000045740235,0.000011667196,0.043186046,0.000011668821,0.00002539185,0.000024289131,0.00006348849,0.9548558,0.000195755,0.0010965362,0.0005072586,0.000017473094],"about_ca_topic_score_codex":0.26723292,"about_ca_topic_score_gemma":0.3359091,"teacher_disagreement_score":0.26723292,"about_ca_system_score_codex":0.002480393,"about_ca_system_score_gemma":0.002290844,"threshold_uncertainty_score":0.5313549},"labels":[],"label_agreement":null},{"id":"W4416814878","doi":"10.1016/j.foreco.2025.123365","title":"Multi-colored traps can enhance monitoring programs for native and non-native longhorn beetles in forest ecosystems","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Forest Insect Ecology and Management","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Natural Resources Canada; Canadian Forest Service","funders":"Natural Resources Canada; Animal and Plant Health Inspection Service; Human Frontier Science Program; European Commission; European Office of Aerospace Research and Development; Air Force Office of Scientific Research; Pennsylvania Department of Agriculture; Canadian Food Inspection Agency; U.S. Department of Agriculture","keywords":"Longhorn beetle; Trap (plumbing); Trapping; Ecological trap; Ecosystem; PEST analysis","score_opus":0.008958421283612981,"score_gpt":0.24962191337042933,"score_spread":0.24066349208681634,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4416814878","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99344265,0.0010067967,0.0039527756,0.000075613156,0.00001813913,0.00014829887,0.0002462595,0.00012660491,0.00098284],"genre_scores_gemma":[0.9773022,0.00037238232,0.021278476,0.00012824347,0.000009113596,0.0001091367,0.00024021952,0.000009634297,0.00055063254],"study_design_codex":"observational","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9992551,0.00026052544,0.000035601,0.0002179387,0.00013145935,0.00009929567],"domain_scores_gemma":[0.99869686,0.00036895295,0.00040643994,0.000072085735,0.00024331675,0.00021234713],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012619247,0.00043327452,0.00045788212,0.00061821175,0.00046589205,0.00054651266,0.0005952868,0.00050439505,0.0011875038],"category_scores_gemma":[0.0008086077,0.00022602863,0.00039369435,0.000285796,0.00017742968,0.0011125687,0.0006059622,0.0003321328,0.00019765957],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0017380529,0.0019735002,0.45955068,0.0015170046,0.00045789717,0.00038400188,0.0012140006,0.003770259,0.29928586,0.00019821805,0.0011137098,0.2287968],"study_design_scores_gemma":[0.000096516866,0.0034054301,0.94189316,0.00027856953,0.00051093416,0.00073328294,0.0015176149,0.01217131,0.033988237,0.00024902937,0.0050405613,0.00011533867],"about_ca_topic_score_codex":0.003168043,"about_ca_topic_score_gemma":0.020161392,"teacher_disagreement_score":0.003168043,"about_ca_system_score_codex":0.0003638685,"about_ca_system_score_gemma":0.00044619432,"threshold_uncertainty_score":0.0066737533},"labels":[],"label_agreement":null},{"id":"W4417442402","doi":"10.1016/j.foreco.2025.123437","title":"Seismic line width and wildfire promote ring growth in regenerating black spruce","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada; Polar Knowledge Canada; University of Alberta; Alberta Conservation Association","keywords":"Black spruce; Peat; Boreal; Taiga; Disturbance (geology); Fragmentation (computing); Dendrochronology","score_opus":0.0047291005761042676,"score_gpt":0.2071989322225176,"score_spread":0.20246983164641333,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4417442402","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994498,0.00009092311,0.00015980314,0.000014608743,0.0000013201619,0.0000017120749,0.000080648875,0.0000067432516,0.0001944308],"genre_scores_gemma":[0.9994948,0.000052113162,0.00012212394,0.000006277825,0.0000018318274,0.0000016107143,0.0001103444,0.0000029322448,0.0002079989],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996319,0.000092769835,0.00001957474,0.00011854685,0.000055243665,0.00008189478],"domain_scores_gemma":[0.9980015,0.00060901843,0.0006771436,0.00012558611,0.00017861764,0.00040808038],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0013241109,0.00039304318,0.00029546148,0.0004638815,0.0003852957,0.00091452047,0.00046336022,0.0002896534,0.0016842947],"category_scores_gemma":[0.0018415994,0.00019103983,0.00090176845,0.00028180855,0.0005138786,0.00024881345,0.0004739354,0.00032289638,0.00019828381],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021639123,0.00004937683,0.99087685,0.000017659646,0.00020991948,0.00013251709,0.00019805072,0.002285731,0.0030823431,0.00009557309,0.00005900009,0.0027765057],"study_design_scores_gemma":[0.0000036897113,0.00009828168,0.9948461,0.000009382366,0.000055324643,0.00006734764,0.000433251,0.0038161974,0.0003769995,0.000099269455,0.00018854675,0.000005699888],"about_ca_topic_score_codex":0.16110718,"about_ca_topic_score_gemma":0.34293407,"teacher_disagreement_score":0.16110718,"about_ca_system_score_codex":0.0012653592,"about_ca_system_score_gemma":0.0011310433,"threshold_uncertainty_score":0.32033885},"labels":[],"label_agreement":null},{"id":"W48028006","doi":"10.1016/j.foreco.2008.06.006","title":"Grizzly bears and forestry","year":2008,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Wildlife-Road Interactions and Conservation","field":"Environmental Science","cited_by":76,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Foothills Medical Centre; University of Alberta","funders":"","keywords":"Ursus; Habitat; Grizzly Bears; Geography; Ecology; Vegetation (pathology); Biology; Population","score_opus":0.00840525702763624,"score_gpt":0.20078763615279482,"score_spread":0.1923823791251586,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W48028006","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.38368043,0.20668572,0.00080232986,0.0717429,0.0018683079,0.000037931088,0.00033613943,0.000023977313,0.33482224],"genre_scores_gemma":[0.89111733,0.06893795,0.00028236854,0.002770946,0.0023081815,0.000011557075,0.00016421913,0.000008344246,0.034399103],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"observational","domain_scores_codex":[0.9996767,0.0001590495,0.000008895306,0.000035708632,0.000040485913,0.000079134334],"domain_scores_gemma":[0.9992161,0.00029253363,0.00020656211,0.000038095244,0.00006779615,0.00017897357],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00086310966,0.00022525046,0.00029765323,0.0009791707,0.001607661,0.002660976,0.0004186877,0.0016699393,0.017145319],"category_scores_gemma":[0.0015767982,0.0001259005,0.00013611263,0.0017332779,0.0026592882,0.0018412241,0.00091131905,0.0010185015,0.00077685836],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00041950704,0.00062707876,0.26168275,0.0005579897,0.00014542224,0.0022061765,0.018488972,0.0018488091,0.0004794193,0.4762484,0.06397594,0.17331958],"study_design_scores_gemma":[0.000039058767,0.00025375144,0.42153016,0.0006344693,0.0000903708,0.0023812794,0.045278993,0.0007087971,0.00013690986,0.14843546,0.38045898,0.000051866147],"about_ca_topic_score_codex":0.027467411,"about_ca_topic_score_gemma":0.07886762,"teacher_disagreement_score":0.027467411,"about_ca_system_score_codex":0.00082551,"about_ca_system_score_gemma":0.00088836433,"threshold_uncertainty_score":0.057356775},"labels":[],"label_agreement":null},{"id":"W584848222","doi":"10.1016/j.foreco.2015.06.005","title":"Comparing patterns in forest stand structure following variable harvests using airborne laser scanning data","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":24,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta; Alberta Ministry of Agriculture and Forestry; University of British Columbia","funders":"Natural Sciences and Engineering Research Council of Canada; Government of Alberta","keywords":"Basal area; Environmental science; Deciduous; Understory; Canopy; Boreal; Vegetation (pathology); Taiga; Lidar; Forest management; Point cloud; Remote sensing; Laser scanning; Forest inventory; Forestry; Ecology; Geography; Agroforestry; Computer science; Biology","score_opus":0.035167390555838056,"score_gpt":0.2625360297306213,"score_spread":0.22736863917478323,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W584848222","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997223,0.000009717831,0.00007718066,0.000002947929,7.3477577e-7,0.0000017043984,0.00009772911,0.0000018508498,0.000085857064],"genre_scores_gemma":[0.99938715,0.000010619154,0.0001888724,0.0000034241816,0.0000011962087,0.0000040252903,0.00030593754,0.0000016292674,0.00009721742],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997888,0.000050085415,0.00001954237,0.00005854886,0.000043388827,0.00003964838],"domain_scores_gemma":[0.99875844,0.0005788729,0.00025260382,0.000101162084,0.00020257564,0.00010640804],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00043070098,0.00009866342,0.0001461247,0.0008746194,0.00026666978,0.0003957879,0.00026500307,0.00024531872,0.0007039241],"category_scores_gemma":[0.001507788,0.00012416035,0.0002639244,0.0007892558,0.00020701044,0.00037725436,0.00024281254,0.00019101614,0.00013233088],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00048316695,0.00013801172,0.98581773,0.000010441917,0.00010270079,0.000039693205,0.00023430062,0.00063251756,0.0050151255,0.00005653671,0.0001001129,0.007369644],"study_design_scores_gemma":[0.000003958332,0.000058292266,0.9984067,0.0000011411504,0.000012760567,0.000026162992,0.00016310488,0.0010067007,0.00024254697,0.000023268469,0.000053036045,0.0000023647012],"about_ca_topic_score_codex":0.014400875,"about_ca_topic_score_gemma":0.04639431,"teacher_disagreement_score":0.014400875,"about_ca_system_score_codex":0.00034701583,"about_ca_system_score_gemma":0.0002132449,"threshold_uncertainty_score":0.028634071},"labels":[],"label_agreement":null},{"id":"W655155944","doi":"10.1016/j.foreco.2015.04.019","title":"Long-term changes in belowground and aboveground resource allocation of boreal forest stands","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":13,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"Natural Sciences and Engineering Research Council of Canada; Université Laval","keywords":"Chronosequence; Taiga; Environmental science; Biomass (ecology); Stand development; Canopy; Productivity; Ecology; Nutrient; Boreal; Biology; Ecosystem; Agronomy","score_opus":0.00991105116957581,"score_gpt":0.221708475873434,"score_spread":0.2117974247038582,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W655155944","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997073,0.000050787057,0.000023614686,0.000011840963,0.0000031085872,8.489931e-7,0.00007517425,0.0000010961355,0.00012614868],"genre_scores_gemma":[0.99958915,0.000020077796,0.000040398907,0.000011756439,0.0000028614663,0.0000022246625,0.00013594187,9.2348427e-7,0.00019662331],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998661,0.000023693021,0.0000111342815,0.00003631653,0.000016915368,0.000045827077],"domain_scores_gemma":[0.9992545,0.000119504904,0.00026172088,0.000057246027,0.000109337205,0.00019768733],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00045686538,0.00015249457,0.00019978399,0.00028551876,0.0004601403,0.00055090874,0.00030462348,0.00037030946,0.0009827707],"category_scores_gemma":[0.0007814074,0.00012655469,0.00018584669,0.0002474168,0.0004055724,0.0005949368,0.00034465618,0.00034658832,0.00014191792],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0013238433,0.0003582166,0.957253,0.000037365025,0.00020684706,0.00017455369,0.00042176645,0.0010102972,0.030189361,0.00023970984,0.0003198145,0.008465216],"study_design_scores_gemma":[0.0000022363204,0.000031962667,0.9994,0.0000012876127,0.000009104182,0.000030260922,0.00008453589,0.00019131383,0.00013836747,0.000023532732,0.00008495331,0.0000022833506],"about_ca_topic_score_codex":0.015528463,"about_ca_topic_score_gemma":0.07394074,"teacher_disagreement_score":0.015528463,"about_ca_system_score_codex":0.000630561,"about_ca_system_score_gemma":0.0002358858,"threshold_uncertainty_score":0.03087616},"labels":[],"label_agreement":null},{"id":"W6903317258","doi":"10.1016/j.foreco.2025.123011","title":"Tamm review: The impact of forest tent caterpillar defoliation on maple fitness and syrup production","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant-Derived Bioactive Compounds","field":"Chemistry","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université du Québec en Outaouais; Université Laval; Université du Québec à Chicoutimi","funders":"Fonds de recherche du Québec – Nature et technologies; Natural Sciences and Engineering Research Council of Canada; Fonds de Recherche du Québec-Société et Culture; University of Vermont","keywords":"Sugar; Maple; Biomass (ecology); Canopy; Stand development; Outbreak; Herbivore; PEST analysis","score_opus":0.008275957675941466,"score_gpt":0.25423916569554694,"score_spread":0.24596320801960547,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W6903317258","genre_codex":"review","genre_gemma":"review","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"review","genre_consensus":"review","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.00020403639,0.9968087,0.000083622166,0.00077967887,0.00077985885,0.000013687236,0.00018467657,0.00001497641,0.0011307743],"genre_scores_gemma":[0.0014334569,0.9959734,0.00015376584,0.00075196533,0.0006689866,0.000017926293,0.00016825755,0.000004643622,0.000827556],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.99953914,0.00009037112,0.000115408424,0.000093037284,0.00012660553,0.000035354144],"domain_scores_gemma":[0.9978769,0.0011638884,0.0003833111,0.00004627662,0.00042529748,0.000104388055],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00070934783,0.00088162883,0.0017387194,0.0031167634,0.00039488418,0.0020998698,0.0010575298,0.0017447976,0.016822904],"category_scores_gemma":[0.0032868017,0.00029898886,0.0012731816,0.0032655394,0.00030432534,0.0013118915,0.0009162626,0.0011347748,0.0026080145],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019409196,0.000084832536,0.00063405134,0.23096994,0.00086584245,0.000353552,0.00023119691,0.0005062161,0.0011437756,0.0020414824,0.10830135,0.65467364],"study_design_scores_gemma":[0.000028274415,0.00013371163,0.003563393,0.06299426,0.0013930248,0.00073768216,0.00016202376,0.00011466765,0.00024843868,0.0010592986,0.92953396,0.000031288986],"about_ca_topic_score_codex":0.0027762135,"about_ca_topic_score_gemma":0.003686453,"teacher_disagreement_score":0.016822904,"about_ca_system_score_codex":0.00078391744,"about_ca_system_score_gemma":0.00356501,"threshold_uncertainty_score":0.05627823},"labels":[],"label_agreement":null},{"id":"W7083691174","doi":"10.1016/j.foreco.2025.123178","title":"Assessing regeneration dynamics post-wildfire: The role of salvage logging and site conditions in southern interior British Columbia","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Ruminant Nutrition and Digestive Physiology","field":"Agricultural and Biological Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia","funders":"","keywords":"Salvage logging; Logging; Regeneration (biology); Seedbed; Natural regeneration; Forest management; Ecosystem; Felling; Disturbance (geology)","score_opus":0.005042837480645737,"score_gpt":0.2126373040590861,"score_spread":0.20759446657844036,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W7083691174","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99893624,0.00013786014,0.000039847255,0.000039610677,0.0000018786527,0.000010997537,0.0002191597,0.000003493712,0.00061094784],"genre_scores_gemma":[0.99788207,0.00017679068,0.00016593967,0.000039218143,0.000001454476,0.000015531257,0.0003633433,0.00000350119,0.0013522035],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99952984,0.000099507466,0.00002759899,0.000082628365,0.00009891716,0.00016155477],"domain_scores_gemma":[0.9973539,0.0004380673,0.00033509432,0.00010915246,0.001056805,0.0007070254],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008881522,0.00028382626,0.00030006887,0.0010542193,0.0017985351,0.0012683619,0.0012114979,0.00042853248,0.0014397955],"category_scores_gemma":[0.0025519938,0.00025697215,0.0001366621,0.0016303578,0.0007925667,0.00040988345,0.0007568806,0.0005992362,0.00023753493],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013363048,0.000088210465,0.9830085,0.00002200096,0.00004199836,0.00014034851,0.0014276801,0.00033819172,0.0007904741,0.000032888303,0.0004976855,0.013478541],"study_design_scores_gemma":[0.0000030261026,0.000012363942,0.9967655,0.000013194715,0.000010633551,0.000019535482,0.0024189,0.00031556888,0.00007024714,0.000011899601,0.000355269,0.0000038315707],"about_ca_topic_score_codex":0.97235423,"about_ca_topic_score_gemma":0.9958106,"teacher_disagreement_score":0.027645767,"about_ca_system_score_codex":0.009080372,"about_ca_system_score_gemma":0.008250307,"threshold_uncertainty_score":0.06588298},"labels":[],"label_agreement":null},{"id":"W7089625506","doi":"10.1016/j.foreco.2025.123235","title":"Mixing tree species and density management to reduce drought susceptibility in coastal plantation forests of British Columbia","year":2025,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Government of British Columbia; University of Alberta","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Basal area; Sowing; Soil water; Water content; Water-use efficiency; Range (aeronautics)","score_opus":0.0043088586086947765,"score_gpt":0.19532162887018673,"score_spread":0.19101277026149194,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W7089625506","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99875534,0.00013167007,0.000055629665,0.000041461077,0.0000023480695,0.000015987032,0.00006276714,0.000012606359,0.0009222333],"genre_scores_gemma":[0.99807286,0.00016929912,0.00046929327,0.00005502962,0.0000014421659,0.000020604604,0.00013683992,0.000004287148,0.0010703929],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998547,0.000023894658,0.0000074698373,0.000026509833,0.00003726099,0.000050015493],"domain_scores_gemma":[0.99965537,0.000021888192,0.00004247866,0.000012534665,0.000093945186,0.0001738787],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017611848,0.00024253396,0.00018207246,0.00052784604,0.0010745125,0.00060626987,0.0006720892,0.00014223275,0.001122855],"category_scores_gemma":[0.00051438215,0.00010871409,0.00006999788,0.0006271994,0.00026651574,0.0001342243,0.00036090592,0.00018125107,0.000111189314],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007235541,0.0007992395,0.8400066,0.00012936855,0.00014088015,0.0005313373,0.0014166743,0.0011732978,0.06397939,0.0002250816,0.002996881,0.087877706],"study_design_scores_gemma":[0.00001403035,0.000067797475,0.9966736,0.000012596073,0.00002181897,0.000039159666,0.00080449635,0.0004744517,0.000516863,0.000019522246,0.0013493191,0.000006349404],"about_ca_topic_score_codex":0.797958,"about_ca_topic_score_gemma":0.9604475,"teacher_disagreement_score":0.20204198,"about_ca_system_score_codex":0.004025188,"about_ca_system_score_gemma":0.0027851705,"threshold_uncertainty_score":0.40646368},"labels":[],"label_agreement":null},{"id":"W830770453","doi":"10.1016/j.foreco.2015.05.005","title":"Empirical models for tracing seasonal changes in leaf area index in deciduous broadleaf forests by digital hemispherical photography","year":2015,"lang":"en","type":"article","venue":"Forest Ecology and Management","topic":"Remote Sensing in Agriculture","field":"Environmental Science","cited_by":28,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"Ministry of Science and Technology of the People's Republic of China","keywords":"Deciduous; Leaf area index; Photography; Tracing; Geography; Environmental science; Ecology; Index (typography); Forestry; Remote sensing; Physical geography; Biology; Computer science; Art","score_opus":0.01677704632316219,"score_gpt":0.2334104759236136,"score_spread":0.21663342960045143,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W830770453","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.775083,0.0009207107,0.21978055,0.00044269682,0.000037005266,0.000075537115,0.00081981125,0.0006371266,0.002203508],"genre_scores_gemma":[0.98167384,0.00043487744,0.014560967,0.000051794,0.000019528488,0.000106707324,0.0008226118,0.00007039873,0.0022592817],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9995433,0.00015092579,0.000027912472,0.00016470725,0.000048316128,0.000064921405],"domain_scores_gemma":[0.99733126,0.0018387022,0.00038751093,0.00015108749,0.00020864453,0.000082793216],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0034594347,0.0008419268,0.00057544257,0.0010933497,0.0003044124,0.00090594444,0.0014360195,0.0007953202,0.001658418],"category_scores_gemma":[0.007308844,0.0006830833,0.0007285085,0.00073803955,0.00056992064,0.0009838757,0.0005984737,0.0008727687,0.0005537012],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001272164,0.00009484298,0.09127259,0.00007383245,0.00016062423,0.00016366752,0.00024708814,0.8724624,0.0013750369,0.0035649808,0.000975675,0.029482104],"study_design_scores_gemma":[0.000004939589,0.000009567812,0.007921122,0.000008539363,0.00001171705,0.000023192328,0.000027454375,0.9907354,0.00007510646,0.0009948467,0.00018041725,0.00000758421],"about_ca_topic_score_codex":0.027752735,"about_ca_topic_score_gemma":0.020242795,"teacher_disagreement_score":0.027752735,"about_ca_system_score_codex":0.0010126691,"about_ca_system_score_gemma":0.0009399998,"threshold_uncertainty_score":0.055182397},"labels":[],"label_agreement":null}]}