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三种手术治疗腕掌关节炎后模拟关键捏法的比较:尸体研究。

Comparison of simulated key pinch after three surgical procedures for trapeziometacarpal osteoarthritis: a cadaver study.

机构信息

Department of Hand Surgery, Geneva University Hospitals, Geneva, Switzerland.

Department of Anatomy, University of Geneva, Geneva, Switzerland.

出版信息

J Hand Surg Eur Vol. 2021 Dec;46(10):1088-1095. doi: 10.1177/17531934211015915. Epub 2021 May 18.

Abstract

We performed a cadaver study using 18 fresh-frozen adult forearms and hands to compare the tendon loads required to generate progressively greater key pinch (0.5 kg to 2 kg) after three different surgical procedures to treat trapeziometacarpal osteoarthritis: isolated trapeziectomy, trapeziectomy followed by ligament reconstruction with tendon interposition and total joint arthroplasty using a Touch® implant. Thumb pinch was simulated by loading the main actuator tendons involved in the key pinch. Six specimens were randomly assigned to each of the three surgical procedure groups. Measurements were made before and after the joint surgery. Specimens that underwent trapeziectomy with or without ligament reconstruction with tendon interposition required significantly higher tendon loads than those with the implant to achieve the same pinch force. There was no significant difference between the isolated trapeziectomy and ligament reconstruction groups. Using the implant resulted in similar median tendon loads compared with those of the intact sample. Total joint arthroplasty with a Touch® prosthesis may yield a superior biomechanical profile in which the tendon loads needed to achieve a certain key pinch force are lower and better distributed between the actuator muscles compared with trapeziectomy with or without ligament reconstruction.

摘要

我们进行了一项尸体研究,使用 18 个新鲜冷冻的成人前臂和手,比较了三种不同手术治疗腕掌关节炎后的肌腱负荷:单纯腕骨切除术、韧带重建伴肌腱间置术和使用 Touch®植入物的全关节置换术。通过加载参与关键捏合的主要执行器肌腱来模拟拇指捏合。六个标本被随机分配到三个手术组中的每一个。在关节手术后进行测量。接受单纯腕骨切除术或韧带重建伴肌腱间置术的标本与植入物相比,需要更高的肌腱负荷才能达到相同的捏合力。孤立的腕骨切除术和韧带重建组之间没有显著差异。与完整样本相比,使用植入物导致的中位肌腱负荷相似。与单纯腕骨切除术或韧带重建相比,使用 Touch®假体进行全关节置换可能会产生更好的生物力学特征,因为实现一定关键捏合力所需的肌腱负荷较低,并且在执行器肌肉之间的分布更好。

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