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A closed-loop micro-stimulator controlled by muscle fatigue status and function impairment level for upper limb rehabilitation

机译:由肌肉疲劳状态和上肢康复的肌肉疲劳状态和功能损伤水平控制的闭环微刺激器

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Muscle contractions of upper limbs induced by functional electrical stimulation (FES) is a widely used rehabilitation method for stroke patients. However, FES tends to result in rapid muscle fatigue, which greatly limits activities such as FES-assisted rehabilitation exercises. In order to minimize the effect of muscle fatigue, an intelligent Muscle Fatigue Status (MFS) and an Function Impairment Level (FIL) controlled micro-stimulator are proposed. The stimulation parameters of the FES are updated according to the FIL of stroke patients initially. During the break of stimulation, mean frequency (MNF) and median frequency (MDF) are exacted from an electromyography (EMG) signal, which is directly detected from the stimulated muscle of stroke patients. The MFS that can be generated from MNF and MDF is used to control the operation mode of micro-stimulator. This implantable micro-stimulator will be designed and fabricated using system on chip technology.
机译:通过功能电刺激(FES)引起的上肢肌肉收缩是一种广泛使用的中风患者的康复方法。然而,FES往往会导致快速的肌肉疲劳,这极大地限制了FES辅助康复锻炼等活动。为了最大限度地减少肌肉疲劳的影响,提出了智能肌肉疲劳状态(MF)和函数损伤水平(FIL)控制的微刺激器。根据中风患者最初更新FE的刺激参数。在刺激突破期间,平均频率(MNF)和中值(MDF)从肌电图(EMG)信号中粗略地,从中风患者的刺激肌肉中直接检测到。可以从MNF和MDF生成的MFS来控制微刺激器的操作模式。将使用芯片技术系统设计和制造这种可植入的微刺激器。

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