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三维逆动力学方法对步态期间关节力和力矩的影响。

Influence of the 3D inverse dynamic method on the joint forces and moments during gait.

作者信息

Dumas R, Nicol E, Chèze L

机构信息

Univerité de Lyon, Laboratoire de Biomécanique et Mécanique des Chocs, UMR_T 9406-Universite Lyon 1 /INRETS, Bât. Oméga, Bd du 11 Novembre 1918, Villeurbanne, F-69622, France.

出版信息

J Biomech Eng. 2007 Oct;129(5):786-90. doi: 10.1115/1.2768114.

Abstract

The joint forces and moments are commonly used in gait analysis. They can be computed by four different 3D inverse dynamic methods proposed in the literature, either based on vectors and Euler angles, wrenches and quaternions, homogeneous matrices, or generalized coordinates and forces. In order to analyze the influence of the inverse dynamic method, the joint forces and moments were computed during gait on nine healthy subjects. A ratio was computed between the relative dispersions (due to the method) and the absolute amplitudes of the gait curves. The influence of the inverse dynamic method was negligible at the ankle (2%) but major at the knee and the hip joints (40%). This influence seems to be due to the dynamic computation rather than the kinematic computation. Compared to the influence of the joint center location, the body segment inertial parameter estimation, and more, the influence of the inverse dynamic method is at least of equivalent importance. This point should be confirmed with other subjects, possibly pathologic, and other movements.

摘要

关节力和力矩常用于步态分析。它们可以通过文献中提出的四种不同的三维逆动力学方法来计算,这些方法要么基于向量和欧拉角、扳手和四元数、齐次矩阵,要么基于广义坐标和力。为了分析逆动力学方法的影响,在九个健康受试者的步态过程中计算了关节力和力矩。计算了相对离散度(由于方法不同)与步态曲线绝对幅值之间的比率。逆动力学方法的影响在踝关节处可忽略不计(2%),但在膝关节和髋关节处较大(40%)。这种影响似乎是由于动力学计算而非运动学计算。与关节中心位置、身体节段惯性参数估计等的影响相比,逆动力学方法的影响至少具有同等重要性。这一点应该通过其他受试者(可能是病理受试者)和其他运动来加以证实。

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