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间歇性刺激瘫痪的人股四头肌在强制周期性小腿运动中的疲劳。

Fatigue of intermittently stimulated paralyzed human quadriceps during imposed cyclical lower leg movements.

机构信息

Department of Electrical Engineering, University of Twente, The Netherlands.

出版信息

J Electromyogr Kinesiol. 1993;3(1):3-12. doi: 10.1016/1050-6411(93)90018-R.

Abstract

In this study the torque output of intermittently stimulated paralyzed human knee extensor muscles during imposed isokinetic cyclical lower leg movements was investigated in four paraplegic subjects. During prolonged (10 min) experiments the influence of knee angular velocity and stimulation parameters on fatigue-induced torque decline was studied. Pulse width and amplitude were set to obtain maximal recruitment. The cycle time was maintained constant at 2 s, comparable to a walking cycle. The maximum torque and averaged torque per cycle were estimated to determine the muscle's performance during sustained intermittent stimulation. The overall loss in time of these parameters had a typical exponential decay reaching asymptotic values. Additionally, larger knee velocities resulted in a significantly faster and relatively larger decay of maximum and averaged torque. Also, the rate and relative decrement of torque output during concentric contractions increased with increasing number of pulses in a cycle. Identification trials, determining the (isometric) torque-angle and (isokinetic) torque-angular velocity relation, were performed. The relations appeared to change due to fatigue. The results might be valuable in the design of optimal control systems for functional electrical stimulation which pursue minimization of muscle fatigue. They may contribute to the derivation of a cost criterion, describing muscle fatigue as a function of both joint movement and stimulation parameters.

摘要

在这项研究中,研究人员调查了四名截瘫患者在施加等速循环小腿运动时间歇性刺激瘫痪的人类膝关节伸肌的扭矩输出。在长时间(10 分钟)的实验中,研究了膝关节角速度和刺激参数对疲劳引起的扭矩下降的影响。脉宽和幅度设置为获得最大募集。循环时间保持在 2 秒不变,与步行周期相当。估计最大扭矩和每个循环的平均扭矩,以确定肌肉在持续间歇性刺激下的性能。这些参数的时间整体损失呈典型的指数衰减,达到渐近值。此外,较大的膝关节速度导致最大和平均扭矩的衰减速度更快,相对更大。此外,在同心收缩期间,随着一个周期中脉冲数的增加,输出扭矩的速率和相对减少增加。进行了确定(等长)扭矩-角度和(等速)扭矩-角速度关系的鉴定试验。由于疲劳,这些关系似乎发生了变化。这些结果对于设计追求最小化肌肉疲劳的功能性电刺激的最佳控制系统可能具有重要价值。它们可能有助于推导出一个成本标准,将肌肉疲劳描述为关节运动和刺激参数的函数。

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