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Real-time closed-loop FES control of muscle activation with evoked EMG feedback

机译:带有EMG反馈的肌肉激活的实时闭环FES控制

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Functional electrical stimulation (FES) is a useful technique for restoring motor functions for spinal cord injured (SCI) patients. Muscle contractions can be artificially driven through delivery of electrical pulses to impaired muscles, and the electrical activity of contracted muscles under stimulus recorded by electromyography (EMG) is called M-wave. The FES-induced muscle activation which is represented by evoked EMG recordings can indicate the muscle state. Accurate control of muscle activation level by FES is the preliminary step for achieving more complicated FES control tasks. This paper proposes a real-time FES system for control of muscle activation by online modulating pulse width of stimulus. The excitation muscle dynamics is modelled by Hammerstain system with stimulus pulse width and eEMG as input and output respectively. The model predictive control strategy is adopted to compute the pulse width command sent to the Vivaltis wireless stimulator. Four reference muscle activation patterns are provided to test and validate the real-time closed-loop FES control system. Real-time control results on one able-bodied subject show promising control performances.
机译:功能性电刺激(FES)是恢复脊髓受伤(SCI)患者运动功能的有用技术。可以通过将电脉冲传递到受损的肌肉来人工驱动肌肉收缩,并且通过肌电图(EMG)记录的刺激下收缩肌肉的电活动称为M波。由诱发的EMG记录表示的FES诱导的肌肉激活可以指示肌肉状态。通过FES精确控制肌肉激活水平是完成更复杂的FES控制任务的第一步。本文提出了一种实时FES系统,用于通过在线调制刺激脉冲宽度来控制肌肉激活。通过Hammerstain系统对刺激肌肉动力学进行建模,将刺激脉冲宽度和eEMG分别作为输入和输出。采用模型预测控制策略来计算发送到Vivaltis无线刺激器的脉宽命令。提供了四个参考肌肉激活模式来测试和验证实时闭环FES控制系统。对一个健全主体的实时控制结果显示出有希望的控制性能。

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