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Preliminary tests of a prototype FES control system for cycling wheelchair rehabilitation

机译:用于自行车轮椅康复的原型FES控制系统的初步测试

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The cycling wheelchair “Profhand” developed by our research group in Japan has been found to be useful in rehabilitation of motor function of lower limbs. It is also expected for rehabilitation of paraplegic subjects to propel the cycling wheelchair by lower limbs controlled by functional electrical stimulation (FES). In this paper, a prototype FES control system for the cycling wheelchair was developed using wireless surface stimulators and wireless inertial sensors and tested with healthy subjects. The stimulation pattern that stimulated the quadriceps femoris and the gluteus maximus at the same time was shown to be effective to propel the Profhand. From the analysis of steady state cycling, it was shown that the cycling speed was smaller and the variation of the speed was larger in FES cycling than those of voluntary cycling. Measured angular velocity of the crank suggested that stimulation timing have to be changed considering delay in muscle response to electrical stimulation and cycling speed in order to improve FES cycling. It was also suggested that angle of the pedal have to be adjusted by controlling ankle joint angle with FES in order to apply force appropriately.
机译:我们的日本研究小组开发的自行车轮椅“ Profhand”已被发现可用于下肢运动功能的康复。截瘫患者的康复也有望通过功能性电刺激(FES)控制的下肢推动自行车轮椅。在本文中,使用无线表面刺激器和无线惯性传感器开发了用于自行车轮椅的FES控制系统原型,并通过健康受试者进行了测试。可以同时刺激股四头肌和臀大肌的刺激模式可以有效地推动Profhand。从稳态自行车的分析可以看出,与自愿自行车相比,FES自行车的自行车速度较小,速度变化较大。测得的曲柄角速度表明,必须考虑肌肉对电刺激的反应延迟和循环速度才能改变刺激时机,以改善FES循环。还建议必须通过用FES控制脚踝关节角度来调节踏板角度,以便适当地施加力。

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