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痉挛性人类受试者小腿钟摆运动的定量分析。

A quantitative analysis of pendular motion of the lower leg in spastic human subjects.

作者信息

Lin D C, Rymer W Z

机构信息

Rehabilitation Institute of Chicago, IL.

出版信息

IEEE Trans Biomed Eng. 1991 Sep;38(9):906-18. doi: 10.1109/10.83611.

Abstract

The purpose of this study was to examine gravity-induced oscillations of the lower leg in normal and spastic subjects, with a view towards evaluating a clinical test of spasticity called the "pendulum" test. Motivations for studying the pendulum test were to determine if realistic aspects of spasticity and neuromuscular control could be incorporated into a description of the motion, and to better understand the underlying neurophysiological disturbances in spasticity. For passive limb motion (in which no reflex excitation occurred), a second-order linear model did not provide an adequate description of the motion for either spastic or normal legs. Instead, system equations including nonlinear mechanical properties simulating asymmetries in the swing and amplitude dependent variations in stiffness and damping provided a more accurate description. For spastic limb motion (in which reflex excitation did occur), accurate simulation required components accounting for abnormal reflex activation, coinciding with the time course of EMG activation. These included increased stiffness and damping with their gains related to reflex EMG magnitude, and changes in the rest length of the stiffness. Comparison of numerical solutions of the equations with experimental data showed our nonlinear model simulated the motion accurately, with the variance accounted for usually exceeding 90%.

摘要

本研究的目的是检查正常受试者和痉挛受试者小腿的重力诱导振荡,以评估一种称为“钟摆”试验的痉挛临床测试。研究钟摆试验的动机是确定痉挛和神经肌肉控制的实际方面是否可以纳入运动描述中,并更好地理解痉挛潜在的神经生理紊乱。对于被动肢体运动(其中没有反射兴奋发生),二阶线性模型对于痉挛或正常腿部的运动都没有提供充分的描述。相反,包含模拟摆动不对称以及刚度和阻尼与振幅相关变化的非线性力学特性的系统方程提供了更准确的描述。对于痉挛性肢体运动(其中确实发生了反射兴奋),精确模拟需要考虑异常反射激活的组件,这与肌电图激活的时间过程一致。这些包括刚度和阻尼增加,其增益与反射肌电图幅度相关,以及刚度静止长度的变化。将方程的数值解与实验数据进行比较表明,我们的非线性模型能够准确模拟运动,通常解释的方差超过90%。

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