一种基于系统识别的水下表面肌电图信号处理方法。

S Uehara, Y Muraoka, S Tanabe, T Ota, A Kimura
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引用次数: 0

摘要

目的:目前,为了记录水下表面肌电图(EMG),电极被防水胶带覆盖。短期测量时,使用防水胶带防止漏电。然而,在长期测量过程中,水或汗水会接触电极,改变测量条件,逐渐影响肌电数据。本研究的目的是设计一种新的水下肌电信号长时间记录方法,利用系统识别技术从非防水电极记录的水下肌电信号中估计旱地肌电信号。方法:1名健康男性参与本研究。利用系统辨识将水下肌电信号转换为估计的陆地信号。在同一肌肉上平行放置两对表面记录电极,推导传递函数。系统输入是使用非防水电极记录的肌电图;输出的信号是用防水电极在水下记录的信号(应该和陆地上的信号一样)。为了检验该方法的有效性,进行了三个实验。结果:不防水电极测得的旱地肌电与防水电极测得的肌电呈高度正相关。为了验证该方法长期记录的有效性,在水下行走30分钟时测量了估计的旱地肌电信号,结果是稳定的。结论:采用非防水电极和系统识别技术的新方法消除了测量条件变化的影响,对于长期水下水面肌电记录是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel signal processing method using system identification for underwater surface electromyography.

Purpose: Currently, to record underwater surface electromyography (EMG), electrodes are covered with waterproof tape. For short-term measurement, waterproof tape prevents electrical leakage. However, during long-term measurement, water or sweat can contact the electrodes, changing the measurement conditions and gradually affecting the EMG data. The purpose of present study was to devise a novel method for prolonged underwater EMG recording, which estimate dry-land EMG from underwater EMG recorded by non-waterproofed electrodes using system identification techniques.

Method: One healthy male participated in this study. System identification was used to convert underwater EMG signals to the estimated dry-land signals. Transfer functions were derived using two pairs of surface recording electrodes on the same muscle in parallel. System input was the EMG recorded using non-waterproofed electrodes; the output was the signal recorded underwater using waterproofed electrodes (supposed to be the same as dry-land signals). To examine the validity of the present method, three experiments were conducted.

Result: There was a high positive correlation between the estimated dry-land EMG based on the non-waterproofed electrodes and the EMG obtained using waterproofed electrodes. To test the validity of long-term recording using the novel method, the estimated dry-land EMG signals were measured during 30 minutes of underwater stepping and were stable.

Conclusion: The novel method using non-waterproofed electrodes with system identification techniques eliminated the effect of changes in measurement conditions and appears effective for long-term, underwater surface EMG recording.

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