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Record W3195653860 · doi:10.1097/corr.0000000000001933

Cochrane in CORR ®: Internal Fixation Implants for Intracapsular Hip Fractures in Older Adults

2021· letter· en· W3195653860 on OpenAlexaff
Daniel Axelrod, Mohit Bhandari

Bibliographic record

VenueClinical Orthopaedics and Related Research · 2021
Typeletter
Languageen
FieldMedicine
TopicHip and Femur Fractures
Canadian institutionsMcMaster University
Fundersnot available
KeywordsMedicineInternal fixationHip fractureRehabilitationOrthopedic surgeryPopulationFixation (population genetics)SurgeryPhysical therapyOsteoporosisInternal medicine

Abstract

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Importance of the Topic Hip fractures are a major health concern that primarily affect older adults and can result in devastating outcomes, primarily for older adults, including severe pain, loss of mobility and subsequent inability to return to preinjury residence, and loss of independence [1, 2]. Hip fractures are associated with a high 30-day mortality, though operative treatment substantially reduces year-end mortality attributable to the fracture itself [8, 14]. Hip fractures are a substantial challenge to hospitals and local healthcare networks, with each patient often requiring weeks of inpatient admission and subsequent months of multidisciplinary rehabilitation and care. Furthermore, it is likely that we will see an increase in the number of hip fractures over time, owing to an aging population in most countries of the world [3]. Hip fractures can broadly be described as those occurring within the hip joint capsule (intracapsular) or outside of the capsule [10]. For both intra- and extracapsular fractures where the bone architecture and alignment are minimally disturbed (or nondisplaced), internal fixation with pins, screws, or plates can maintain the alignment of the fracture until it heals. However, subsequent displacement of the fracture after internal fixation often results in a second, more substantial operation, both to remove hardware and to replace part of the hip joint [15]. The morbidity, mortality, and complication rates associated with revision surgery following internal fixation are substantially higher than they are with primary internal fixation [11]. Thus, it is crucial to understand what type of internal fixation yields the most benefits and least harms to patients who experience this common but severe injury. Upon Closer Inspection This Cochrane review included both randomized and quasi-randomized studies comparing internal fixation techniques for managing low-energy intracapsular hip fractures, mostly in older adults [9]. Implants were broadly grouped into three categories: smooth pins, screws, or fixed-angle plates. Thirty-eight studies with 8585 participants were included, with 38% of fractures being nondisplaced. Study outcomes were grouped into seven groups: activities of daily living, delirium, functional status, health-related quality of life, mobility, mortality, and unplanned reoperation. Because it is impossible to blind outcomes assessment in these types of studies, all studies were found to be at a high risk of bias in this domain. However, it is unlikely that this type of bias is of great importance given that patients are unlikely to have a strong preference for one type of implant over another. Furthermore, only six studies were at low risk of both selection bias and bias due to inappropriate allocation concealment. Selection bias is likely to be more of a concern in these studies because inappropriate randomization sequence generation and allocation concealment can lead to surgeons selectively giving patients their preferred treatment (inadvertently or on purpose), thereby undoing the randomization process. Overall, every included study had high risk or unsure risk of bias in at least two risk of bias categories. When comparing smooth pins versus fixed angle plates, there was no evidence of difference in mobility, mortality, or need for reoperation between any of the three major groups of interventions. Moreover, there were extremely limited data on activities of daily living, delirium, functional status, and health-related quality of life, and as such, no comparisons could be undertaken between these interventions. The FAITH trial found a significant difference in health-related quality of life for sliding hip screws and cancellous screws, particularly for current smokers [13], so it would be of value to explore this association further in additional studies. When comparing screws to fixed angle plates, there was a slight improvement in health-related quality of life and functional status when screws were used, but neither difference was large enough to be clinically important (effect sizes were characterized by whether they reached predefined minimum clinically important difference thresholds). Additionally, the evidence suggesting differences was deemed low-certainty because of imprecision (wide confidence intervals, usually related to small sample sizes) and study limitations (particularly selection bias and lack of blinding outcomes assessors). An assessment of the remaining critical outcomes did not produce any meaningful differences. Lastly, when comparing smooth pins to screws, there were no observed differences in any critical outcome domain, with mostly low or very low certainty of evidence. It was not possible to conduct any subgroup analyses (for example, by age, gender, prefracture mobility, smoking status) because there were not enough studies in each category reporting on the same outcome to conduct meaningful analyses. Unfortunately, by combining randomized trials with both low and high methodological rigor together, the overall pool of evidence is at higher risk of bias. For example, the FAITH trial provided both the largest cohort of patients to the meta-analysis (1079 of 3057 patients total) and was the trial at lowest risk of all forms of bias among studies included [12]. Pooling results with varying levels of risk of bias can lead to misleading conclusions [4]. Rather, presenting meta-analyses stratified by risk of bias or incorporating sensitivity analyses can provide a better assessment of true risk or benefit for an intervention [5, 6]. Take-home Messages The main finding of this Cochrane review—which summarized the best-available evidence from randomized trials—was that no type of implant used for internal fixation of hip fractures was demonstrably superior to any other. Although the Cochrane review concluded that the evidence was of low quality and that further studies are needed, there is one large high-quality study that concluded that there is no important difference between sliding hip screws and cancellous screws, and further trials are unlikely to change this conclusion. The other trials in this meta-analysis are smaller and of higher risk of bias, but their conclusions are generally the same. Therefore, we believe that surgeons can be relatively confident that there are no substantial differences between implant types and can use their preferred implant. Future randomized controlled trials should include a validated hip fracture core outcome set. For example, Haywood et al. [7] recommends a core outcome set for hip fracture trials that includes mortality, pain, activities of daily living, mobility, and health-related quality of life. Individual trials may use such a core outcome set in addition to any trial-specific outcomes to improve ability to pool data in future meta-analyses.

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)0.002
metaresearch head score (Gemma)0.024
Version: metacan-v3-hybrid-931329e0061cValidation status: machine_predicted_unvalidated
Candidate categoriesnone
Consensus categoriesnone
DomainCandidate signal: none · Consensus signal: none
Study designCandidate signal: Not applicable · Consensus signal: Not applicable
GenreCandidate signal: Commentary · Consensus signal: none
Teacher disagreement score0.091
Threshold uncertainty score0.305

Distilled classifier scores by category (both heads)

CategoryCodexGemma
Metaresearch0.0020.024
Meta-epidemiology (narrow)0.0010.000
Meta-epidemiology (broad)0.0020.001
Bibliometrics0.0050.004
Science and technology studies0.0010.001
Scholarly communication0.0030.002
Open science0.0020.001
Research integrity0.0040.003
Insufficient payload (model declined to judge)0.0910.021

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 head0.059
GPT teacher head0.449
Teacher spread0.390 · 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 designNot applicable
Domainnot available
GenreCommentary

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".

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Published2021
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