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一种用于模拟膝关节刚度的分析技术——第二部分:韧带几何非线性

An analytical technique for modeling knee joint stiffness--Part II: Ligamentous geometric nonlinearities.

作者信息

Hefzy M S, Grood E S

出版信息

J Biomech Eng. 1983 May;105(2):145-53. doi: 10.1115/1.3138398.

Abstract

An analytical technique previously developed to evaluate the contribution of the ligaments to the nonlinear, coupled stiffness characteristics of the human knee joint [1] is extended here to include geometric nonlinearities. In [1], we assumed that the ligaments act as tensile bands running in a straight line between tibial and femoral insertion sites. Here, two forms of geometric nonlinearities are introduced and analyzed: ligaments wrapping around bone surfaces, such as occurs with the medial collateral ligament, the posterior capsule, and the anterior cruciate in hyperextension, and wrapping of ligaments around each other, such as occurs with the cruciate ligaments as the knee is flexed and internally rotated.

摘要

先前开发的一种用于评估韧带对人体膝关节非线性耦合刚度特性贡献的分析技术[1]在此进行了扩展,以纳入几何非线性。在[1]中,我们假设韧带充当在胫骨和股骨附着点之间直线延伸的拉伸带。在此,引入并分析了两种几何非线性形式:韧带围绕骨表面的缠绕,如内侧副韧带、后关节囊以及膝关节过伸时前交叉韧带的情况;以及韧带相互之间的缠绕,如膝关节屈曲和内旋时交叉韧带的情况。

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