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An Evaluation of the Effect of Stimulation Parameters and Electrode Type on Bicep Muscle Response for a Voltage-controlled Functional Electrical Stimulator

机译:电压控制功能电刺激器的刺激参数和电极类型对二头肌肌肉反应影响的评估

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Millions of dollars worldwide are spent on electrodes for Functional Electrical Stimulation (FES) every year. With aging populations the increasing costs faced by healthcare providers are of significant concern. Conventional electrodes used for FES are of limited use and deteriorate with use. Washable E-textile electrodes have recently been used successfully for monitoring applications such as electromyography (EMG). E-textile electrodes could potentially reduce the costs faced by healthcare providers. However limited investigation has been conducted into the use of e-textile electrodes for actuation applications such as FES. This paper compares the effectiveness of e-textile electrodes with conventional hydrogel electrodes at a range of stimulation parameters. The electrodes performed similarly under variation of frequency (20-50 Hz) and ramp rate parameters (2-10 V/s). The e-textiles produced a stronger response at a lower voltage than the hydrogels (3-4 V difference for a stimulation intensity voltage range of 8-22 V), however they must be wet to work which may be a barrier to their uptake.
机译:每年全球在用于功能性电刺激(FES)的电极上花费数百万美元。随着人口的老龄化,医疗保健提供者面临的不断增加的成本引起了人们的极大关注。用于FES的常规电极用途有限,并且随着使用而劣化。最近,可清洗的电子纺织电极已成功用于监测肌电图(EMG)等应用。电子纺织电极可以潜在地降低医疗保健提供者面临的成本。然而,对于将电子纺织电极用于诸如FES的致动应用已经进行了有限的研究。本文在一系列刺激参数下比较了电子纺织电极与常规水凝胶电极的有效性。电极在频率(20-50 Hz)和斜率参数(2-10 V / s)的变化下表现相似。电子纺织品在比水凝胶更低的电压下产生了更强的响应(对于8-22 V的刺激强度电压范围,其差异为3-4 V),但是它们必须湿润才能工作,这可能会阻碍其吸收。

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