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Hypoxia Induces Emergence of Adult‐like Respiratory Motor Patterns in Pre‐metamorphic Bullfrog Brainstem Preparations

2019· article· en· W3176411210 on OpenAlexafffundabout
Tara A. Janes, Richard Kinkead

Bibliographic record

VenueThe FASEB Journal · 2019
Typearticle
Languageen
FieldNeuroscience
TopicNeuroscience of respiration and sleep
Canadian institutionsUniversité LavalInstitut universitaire de cardiologie et de pneumologie de Québec
FundersFonds de Recherche du Québec - SantéNatural Sciences and Engineering Research Council of Canada
KeywordsRespiratory systemBullfrogHypoxia (environmental)LungBiologyBrainstemMetamorphosisControl of respirationVentilation (architecture)AnatomyInternal medicineEndocrinologyOxygenNeuroscienceChemistryMedicineEcology

Abstract

fetched live from OpenAlex

Vertebrate respiratory development involves the gradual transformation of primal respiratory behaviours into mature forms with specific, measurable characteristics. Yet, the impacts of environmental factors on respiratory maturation remain enigmatic. In pre‐metamorphic tadpoles of Lithobates catesbeianus (American bullfrog), gill ventilation predominates, while lung breathing is rarely observed. Following metamorphosis, lung breathing emerges as the dominant respiratory behaviour. Since accelerated metamorphosis (including respiratory development) constitutes an adaptive response to deterioration of the milieu, we hypothesized that hypoxia is sufficient to accelerate maturation of the motor command for lung breathing. Specifically, we predicted that hypoxia would elicit an “adult‐like” motor pattern in pre‐metamorphic tadpoles, including high amplitude lung bursts occurring episodically with a “ramping up” of burst amplitude within episodes. Using early‐stage tadpoles (Taylor‐Kollros: VI–IX), we recorded respiratory motor activity from cranial nerves V, VII and X in isolated brainstems before, during, and 2h after exposure to 15 min of moderate hypoxia (PwO 2 range: 45–76 Torr). To test for long‐term effects brainstems were then incubated overnight in oxygenated artificial cerebral spinal fluid at 17°C and motor activity recorded 24h post‐hypoxia. In line with our predictions, lung motor activity in brainstems exposed to hypoxia exhibited characteristics of adult breathing while that of time‐matched controls resembled typical tadpoles. Lung burst amplitude was increased relative to baseline (+90%) at 2h post‐hypoxia. Additionally, hypoxia increased the incidence of lung burst episodes more than 300%, with a concurrent increase in the number of breaths per episode from an average of 2.2 at baseline to 3.3 at 2h post‐hypoxia (controls: 1.9 at 2h). The “ramping up” of lung burst amplitude during episodes was variable over time but gradually increased in prevalence above control levels by 24h post‐hypoxia. These data demonstrate that central hypoxia induces the emergence of “adult‐like” lung motor patterns in early pre‐metamorphic tadpoles. Support or Funding Information This work was supported by a Fonds de Recherche du Québec ‐ Santé (FRQS) Collaborative Scholarship awarded to T. Janes and an NSERC Discovery Grant awarded to R. Kinkead. This abstract is from the Experimental Biology 2019 Meeting. There is no full text article associated with this abstract published in The FASEB Journal .

Fetched live from OpenAlex and de-inverted. Abstracts are not stored in this database: the inverted indexes are 8.6 GB of the frame’s 9.3 GB of text, and the host has 13 GB free.

How this classification was reachedexpand

Full frame machine prediction

Teacher imitation

Not calibrated prevalence, not ground truth. Human validation pending. The Gemma side is a direct model label for every work in the frame, read from the title-only record. The Codex side is a classifier learned from the 10,348 direct Codex labels and calibrated to design-weighted sample rates; fields without enough sample support carry no Codex call. Candidate is the union of the two sides; consensus is their intersection. These outputs are machine_predicted_unvalidated and are not human labels.

metaresearch head score (Codex)0.000
metaresearch head score (Gemma)0.000
Version: metacan-v3-hybrid-931329e0061cValidation status: machine_predicted_unvalidated
Candidate categoriesnone
Consensus categoriesnone
DomainCandidate signal: none · Consensus signal: none
Study designCandidate signal: Bench or experimental · Consensus signal: Bench or experimental
GenreCandidate signal: Empirical · Consensus signal: Empirical
Teacher disagreement score0.003
Threshold uncertainty score0.007

Distilled classifier scores by category (both heads)

CategoryCodexGemma
Metaresearch0.0000.000
Meta-epidemiology (narrow)0.0000.000
Meta-epidemiology (broad)0.0000.000
Bibliometrics0.0000.000
Science and technology studies0.0000.000
Scholarly communication0.0000.000
Open science0.0000.000
Research integrity0.0000.000
Insufficient payload (model declined to judge)0.0010.000

Machine scores (provisional)

The two teacher heads of the student model, read on this work. A score orders the frame for review; it never asserts a category, and the validation status ships verbatim with every row.

Baseline scores from an immature model (maturity gate not passed, 7 training rounds). Scores rank; they never assert a category.

Opus teacher head0.041
GPT teacher head0.283
Teacher spread0.242 · how far apart the two teachers sit on this one work
Validation statusscore_only:v0-immature-baseline · verbatim from the scoring run: score_only means the number may rank works, and no category label ships from it

Classification

machine, unvalidated

Machine predicted; a candidate call from one source (direct Gemma or distilled Codex), not a consensus.

The models applied no category: nothing in the taxonomy fit this work.
Study designBench or experimental
Domainnot available
GenreEmpirical

How this classification was reached, model by model and score by score, is at the end of the page under "How this classification was reached".

Quick stats

Citations0
Published2019
Admission routes3
Has abstractyes

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