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Stimulation artifact in surface EMG signal: effect of the stimulation waveform, detection system, and current amplitude using hybrid stimulation technique

机译:表面肌电信号中的刺激伪像:使用混合刺激技术的刺激波形,检测系统和电流幅度的影响

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The purpose of this study was to investigate the amplitude properties of the artifact generated on the recorded surface electromyography (EMG) signals during transcutaneous electrical muscle stimulation. The factors which were investigated are the shape of the stimulation waveform, the distance of the stimulating electrode from the recording system, the interelectrode distance of the detection system, the spatial filter used for signal detection, and the stimulation current amplitude. Surface EMG signals were recorded during electrical stimulation of the biceps brachii motor point with a linear adhesive array of eight electrodes. Electrical stimulation was applied with seven stimulation waveforms (mono- and biphasic triangular, sinusoidal, and rectangular), generated by a specifically designed neuromuscular stimulator with hybrid output stage. The stimulation peak current was linearly increased from 0 mA to the maximum tolerated by the subject. The detection systems investigated were single and double differential with interelectrode distances multiple of 5 mm. Two trials for each contraction were performed on three different days. The average rectified artifact values (both absolute and normalized with respect to the corresponding M-wave values) were computed to investigate the artifact amplitude properties. Results indicated that, while the artifact average rectified value, normalized with respect to the M-wave amplitude, depended on the distance of the detecting electrodes from the stimulation point, it did not depend on the stimulation waveform, on the current intensity, on the interelectrode distance, and on the spatial filter. It was concluded that, using hybrid stimulation techniques, the selection of particular stimulation waveforms, interelectrode distances, or spatial filters has a minor effect on the reduction of the artifact when recording M-waves.
机译:这项研究的目的是调查经皮电肌刺激过程中在记录的表面肌电图(EMG)信号上生成的伪影的幅度特性。研究的因素是刺激波形的形状,刺激电极与记录系统的距离,检测系统的电极间距离,用于信号检测的空间滤波器以及刺激电流幅度。用八个电极的线性胶粘剂阵列对肱二头肌运动点进行电刺激时,记录了表面肌电信号。通过七种刺激波形(单相和双相三角形,正弦波和矩形)施加电刺激,这些波形由专门设计的具有混合输出级的神经肌肉刺激器产生。刺激峰值电流从0 mA线性增加到受试者可以耐受的最大电流。研究的检测系统是单极和双极差分,电极间距离为5 mm。在三个不同的天进行两次收缩试验。计算平均校正后的伪影值(相对于相应的M波值的绝对值和归一化值),以研究伪影振幅特性。结果表明,相对于M波幅度归一化的伪影平均整流值取决于检测电极与刺激点的距离,而与刺激波形,电流强度和电流无关。电极间距离,并在空间滤波器上。得出的结论是,使用混合刺激技术,在记录M波时,特定刺激波形,电极间距离或空间滤波器的选择对伪影的减少影响很小。

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