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An alternating controlled functional electrical stimulation strategy based on sample entropy for rehabilitation of lower extremity hemiplegia

机译:基于样本熵的交替控制功能性电刺激策略用于下肢偏瘫的康复

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In this study, we present an alternating controlled functional electrical stimulation (FES) strategy for rehabilitation of lower extremity motor function of hemiplegia after stroke. The muscle activity onset time, determined by using sample entropy (SampEn) analysis of an electromyographic (EMG) signal, is used as a trigger for FES to manage stimulations. The EMG-bridge (EMGB) type FES is a novel motor functional rehabilitation idea that it exploits sEMG signal from a healthy limb to regulate the stimulus parameters of stimulations applied to the paralyzed limb, so as to achieve synchronous movement of bilateral or different limbs. The alternating controlled FES strategy was realized on the basis of combing muscle activity onset time with EMGB-type FES system. Using this FES control strategy, experiments on a healthy subject have been carried out successfully to realize alternating stimulation to plantar flexor (PF) and dorsiflexor (DF) muscles of lower limb in sitting position.
机译:在这项研究中,我们提出了中风偏瘫的下肢运动功能康复的交替控制功能性电刺激(FES)策略。通过使用肌电图(EMG)信号的样本熵(SampEn)分析确定的肌肉活动开始时间用作FES管理刺激的触发条件。 EMG桥(EMGB)类型的FES是一种新颖的运动功能康复概念,它利用来自健康肢体的sEMG信号来调节对瘫痪肢体施加的刺激的刺激参数,从而实现双侧或不同肢体的同步运动。交替控制FES策略是在结合肌肉活动开始时间和EMGB型FES系统的基础上实现的。使用这种FES控制策略,已经成功地对健康受试者进行了实验,以实现对坐姿下肢的plant屈(PF)和背屈(DF)肌肉的交替刺激。

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