Cycling by means of functional electrical stimulation.

M Gföhler, P Lugner
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引用次数: 45

Abstract

The goal of this paper was the development of an optimized stimulation pattern of leg muscles that would allow paraplegic subjects to perform the movement of pedaling and thereby to drive a tricycle by means of functional electrical stimulation (FES). To obtain maximum average power output with minimum muscle force, the start, duration and amplitude of the stimulation signal applied to the individual muscles had to be optimized depending on the pedaling frequency. For the basic theoretical investigations the rider-tricycle system was modeled as a rigid body system on which the muscle forces are applied as joint moments. The muscles gluteus maximus, rectus femoris, vastii, and hamstrings were stimulated and the passive forces of some other muscles were considered. The modeling and simulation approach was then used to produce maximum power pedaling and steady-state pedaling at 35 rpm. Hamstrings (41.9%) and vastii (35.8%) were the primary contributors to the optimization cost function of maximum power with minimum muscle loading. Based on these theoretical investigations an efficient stimulation pattern could be provided, taking into account the realistic possibilities of today's practical applications.

通过功能性电刺激进行循环。
本文的目标是开发一种优化的腿部肌肉刺激模式,使截瘫患者能够通过功能性电刺激(FES)来完成踩踏板的运动,从而驱动三轮车。为了以最小的肌肉力量获得最大的平均功率输出,必须根据踏板频率优化施加于单个肌肉的刺激信号的开始、持续时间和幅度。为了进行基础理论研究,将骑手-三轮车系统建模为刚体系统,将肌肉力作为关节力矩施加在其上。刺激臀大肌、股直肌、腹肌和腘绳肌,并考虑其他一些肌肉的被动力。然后使用建模和仿真方法来产生最大功率踏板和35 rpm的稳态踏板。腘绳肌(41.9%)和腹股沟(35.8%)是最小肌肉负荷下最大功率优化成本函数的主要贡献者。在这些理论研究的基础上,考虑到当今实际应用的现实可能性,可以提供一种有效的增产模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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