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自体解剖重建在外侧踝关节不稳定中的生物力学研究。

Biomechanical study of autograft anatomic reconstruction in lateral ankle instability.

机构信息

Unidad de Pie y Tobillo, Servicio de Cirugía Ortopédica y Traumatología, Hospital Universitario 12 de Octubre, Madrid, España.

Hospital Ortopédico de Sant'Ana, Parede, Portugal; Nova Medical School, Universidad de Portugal, Lisboa, Portugal.

出版信息

Rev Esp Cir Ortop Traumatol (Engl Ed). 2021 Mar-Apr;65(2):124-131. doi: 10.1016/j.recot.2020.06.010. Epub 2020 Dec 15.

Abstract

INTRODUCTION

The purpose of this work is perform a biomechanical comparison of anatomic reconstruction of the anterior talofibular ligament (ATFL) with the intact ATFL.

MATERIALS AND METHODS

We studied 18 fresh cadaveric ankles with intact ATFL. Each specimen was clinically assessed with the anterior drawer (AD) and varus tilt (VT) tests and the angular movement in the three spatial planes (axial, coronal and sagittal) was measured with an arthrometer using a sensor located in the talus.

RESULTS

Statistically significant differences were found in the axial plane, between the intact ATFL versus the sectioned ATFL for AD test with p = 0.012, and for VT test with p = 0.013. Regarding the coronal plane, we also observed a statistically significant difference for VT test with p = 0.016. In the sagittal plane, there are no statistically significant differences in both maneuvers. No statistically significant differences were found when comparing the biomechanics of anatomic ligament reconstruction versus the intact ATFL.

CONCLUSION

Autograft anatomic reconstruction of the ATFL showed biomechanical properties similar to those of the native ATFL, at the zero moment in a cadaveric model.

摘要

简介

本研究旨在对解剖重建前距腓韧带(ATFL)与完整 ATFL 进行生物力学比较。

材料与方法

我们研究了 18 个完整 ATFL 的新鲜尸体踝关节。每个标本均进行了临床前抽屉试验(ADT)和内翻倾斜试验(VTT)评估,并使用位于距骨上的传感器,通过关节测量仪测量三个空间平面(轴向、冠状和矢状)的角度运动。

结果

在轴向平面上,与完整 ATFL 相比,切断 ATFL 的 ADT 试验有统计学显著差异(p=0.012),VTT 试验有统计学显著差异(p=0.013)。在冠状平面上,VTT 试验也有统计学显著差异(p=0.016)。在矢状平面上,两种运动均无统计学显著差异。解剖重建 ATFL 与完整 ATFL 的生物力学比较无统计学显著差异。

结论

在尸体模型的零时刻,自体解剖重建 ATFL 显示出与天然 ATFL 相似的生物力学特性。

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