肌腱翻转腱鞘切除术与直接修复术和 Pulvertaft 编织术的生物力学分析比较。

Anthony Barabas, Manal I A Patel, Michael Sutcliffe
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引用次数: 0

摘要

本研究旨在评估肌腱翻转修复术与直接修复术和 Pulvertaft 编织术相比的生物力学特性。共有 48 条绵羊屈肌腱被分配到 8 个组,包括单或双肌腱翻转修复组、肌腱翻转区段组(无腱鞘切除术)、直接修复组或 Pulvertaft 编织组。拉伸强度、刚度和破坏机制由 500 N 负重传感器进行评估。翻转修复与直接修复在拉伸强度上没有明显差异。翻转修复的失败主要发生在腱鞘撕裂部位,原因是缝线拉穿或缝线断裂。翻转修复后横截面积的增加与直接修复相似,但小于 Pulvertaft 编织后。肌腱翻转修复的拉伸强度与直接修复相似,但不会增加体积。它为肌腱缺损的重建提供了一种生物力学上安全、快速的肌腱移植替代方法,且不会造成供体部位的二次发病:V.
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomechanical analysis of tendon turnover tenorrhaphy compared to direct repair and Pulvertaft weave.

The aim of the present study was to evaluate biomechanical properties of tendon turnover repair in comparison to direct repair and Pulvertaft weave. A total of 48 sheep flexor tendons were assigned to eight groups comprising single or double tendon turnover repair, tendon turnover segment (without tenorrhaphy), direct repair or Pulvertaft weave. Tensile strength, stiffness and failure mechanisms were evaluated with a 500 N load cell. Turnover repair showed no significant difference in tensile strength to direct repair. Failure in turnover repair occurred largely at the site of tenorrhaphy due to suture pull-through or suture rupture. the increase in cross-sectional area after turnover repair was similar to that after direct repair, but less than after Pulvertaft weave. Tendon turnover offers tensile strength similar to direct repair with no associated increase in bulk. It provides a biomechanically secure and quicker alternative to tendon grafting for reconstructing tendon defects, without secondary donor site morbidity.Level of evidence: V.

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