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BIOMECHANICAL MODEL OF THE HUMAN KNEE EVALUATED BY NEUROMUSCULAR STIMULATION

机译:神经肌肉刺激评估人体膝关节的生物力学模型

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A detailed model of the human knee was developed to predict shank motion induced by functional neuromuscular stimulation (FNS). A discrete-time model is used to characterize the relationship between stimulus parameters and muscle activation. A Hill-based model of the musculotendon actuator accounts for nonlinear static and dynamic properties of both muscle and tendon. Muscle fatigue and passive muscle viscosity are modeled in detail. Moment arms are computed from musculotendon paths of 13 actuators and from joint geometry. The model also takes nonlinear body-segmental dynamics into consideration. The simulated motion is visualized by graphic animation. Individual model parameters were identified by specific procedures such as anthropometric measurements, a passive pendulum test, and specific open-loop stimulation experiments. Model results were compared with experimental data obtained by stimulating the quadriceps muscle of paraplegic patients with surface electrodes. The knee moment, under isometric conditions, and the knee angle, under conditions of freely swinging shank, were measured. In view of the good correspondence obtained between model predictions and experimental data, we conclude that a biomechanical model of human motion induced by FNS can be used as a mathematical tool to support and accelerate the development of neural prostheses. Copyright (C) 1996 Elsevier Science Ltd. [References: 37]
机译:开发了详细的人膝模型来预测功能性神经肌肉刺激(FNS)引起的小腿运动。离散时间模型用于表征刺激参数和肌肉激活之间的关系。肌肉末端腱致动器的基于Hill的模型说明了肌肉和腱的非线性静态和动态特性。对肌肉疲劳和被动肌肉黏度进行了详细建模。力矩臂是根据13个执行器的肌腱路径和关节几何形状计算出来的。该模型还考虑了非线性人体分段动力学。通过图形动画将模拟的运动可视化。通过诸如人体测量,被动摆测试和特定开环刺激实验之类的特定程序来识别各个模型参数。将模型结果与通过使用表面电极刺激截瘫患者的股四头肌获得的实验数据进行比较。在等轴测条件下的膝盖力矩和在自由摆动的小腿条件下的膝盖角度被测量。鉴于模型预测和实验数据之间的良好对应关系,我们得出的结论是,FNS诱导的人体运动的生物力学模型可以用作支持和加速神经假体发展的数学工具。版权所有(C)1996 Elsevier Science Ltd. [引用:37]

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