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Time-varying delay estimators for measuring muscle fiber conduction velocity from the surface electromyogram

机译:用于根据表面肌电图测量肌肉纤维传导速度的时变延迟估计器

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摘要

Muscle fiber conduction velocity (MFCV) can be measured by estimating the time delay between surface EMG signals recorded by electrodes aligned with the fiber direction. In the case of dynamic contractions, the EMG signal is highly non-stationary and the time delay between recording sites may vary rapidly over time. Thus, the processing methods usually applied in the case of static contractions do not hold anymore and the delay estimation requires processing techniques that are adapted to non-stationary conditions. The current paper investigates several methods based on time-frequency approaches or adaptive filtering in order to solve the time-varying delay estimation problem. These approaches are theoretically analyzed and compared by Monte-Carlo simulations in order to determine if their performance is sufficient for practical applications. Moreover, results obtained on experimental signals recorded during cycling from the vastus medialis muscle are also shown. The study presents for the first time a set of approaches for instantaneous delay estimation from two-channels EMG signals. (C) 2015 Elsevier Ltd. All rights reserved.
机译:肌纤维传导速度(MFCV)可以通过估算与纤维方向对齐的电极记录的表面肌电信号之间的时间延迟来测量。在动态收缩的情况下,EMG信号非常不稳定,并且记录位点之间的时间延迟可能会随时间快速变化。因此,通常在静态收缩的情况下应用的处理方法不再适用,并且延迟估计需要适用于非平稳条件的处理技术。为了解决时变时延估计问题,本文研究了几种基于时频方法或自适应滤波的方法。对这些方法进行了理论分析,并通过蒙特卡洛仿真进行了比较,以确定它们的性能是否足以满足实际应用。此外,还显示了在骑车过程中从股内侧肌记录的实验信号获得的结果。这项研究首次提出了一套从两通道EMG信号进行瞬时延迟估计的方法。 (C)2015 Elsevier Ltd.保留所有权利。

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