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Real-time estimation of FES-induced joint torque with evoked EMG

机译:诱发肌电图实时估计FES引起的关节扭矩

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摘要

BackgroundFunctional electrical stimulation (FES) is a neuroprosthetic technique for restoring lost motor function of spinal cord injured (SCI) patients and motor-impaired subjects by delivering short electrical pulses to their paralyzed muscles or motor nerves. FES induces action potentials respectively on muscles or nerves so that muscle activity can be characterized by the synchronous recruitment of motor units with its compound electromyography (EMG) signal is called M-wave. The recorded evoked EMG (eEMG) can be employed to predict the resultant joint torque, and modeling of FES-induced joint torque based on eEMG is an essential step to provide necessary prediction of the expected muscle response before achieving accurate joint torque control by FES.
机译:背景技术功能性电刺激(FES)是一种神经修复技术,可通过向瘫痪的肌肉或运动神经传递短的电脉冲来恢复脊髓损伤(SCI)患者和运动受损的受试者的运动功能丧失。 FES分别在肌肉或神经上感应动作电位,因此肌肉活动可以通过其复合肌电图(EMG)信号称为M波来同步招募运动单位来表征。记录的诱发的EMG(eEMG)可用于预测合成的关节扭矩,基于eEMG的FES诱发的关节扭矩建模是在通过FES实现精确的关节扭矩控制之前提供预期肌肉反应必要预测的必要步骤。

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