Side-to-Side Tendon Coaptation Yields Greater Load to Failure and Stiffness Than Pulvertaft Weave: A Systematic Review and Meta-Analysis of Biomechanical Studies.
meta_analysis · Level I
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- Record sourced from PubMed, PMID 40832947.
- Also identified by DOI 10.1177/15589447251360264 and PMC identifier 12367711.
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Abstract
Two of the most prevalent techniques for tendon transfer are Pulvertaft weave (PTW) and side-to-side (STS) constructs. Our purpose was to compare pooled results from reported biomechanical properties of these approaches by a meta-analysis. Our null hypothesis was there are no significant differences in load to failure (LTF), initial construct stiffness, or cross-sectional area (CSA) between these techniques. We performed a systematic review following Preferred Reporting Items for Systematic Reviews and Meta-Analyses guidelines to identify candidate studies. We included studies with direct LTF comparisons of PTW and STS constructs. We performed a meta-analysis of pooled data comparing the 2 techniques for initial construct LTF (N), stiffness (N/mm), and CSA (mm<sup>2</sup>). Eight studies with a total of 235 tested human or porcine tendon reconstruction constructs (107 PTW, 128 STS) met our inclusion criteria. Eight studies reported initial construct LTF, with weighted mean values of 103 (±36) and 198 (±61) N for the PTW and STS groups, respectively (<i>P</i> < .05). Four studies reported initial construct stiffness, with weighted mean values of 16 (±4) and 34 (±16) N/mm for the PTW and STS groups, respectively (<i>P</i> < .05). Five studies evaluated initial transfer bulk as measured by CSA, with weighted mean values of 28 (±14) and 29 (±13) mm<sup>2</sup> for the PTW and STS groups, respectively (<i>P</i> > .05). Our meta-analysis demonstrated significant increased initial construct LTF and stiffness with STS tendon coaptation as compared with PTW. We found no difference for initial CSA between the 2 techniques.