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Rectification of the EMG Signal Impairs the Identification of Oscillatory Input to the Muscle

机译:EMG信号的校正会损害对肌肉的振荡输入的识别

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摘要

Rectification of EMG signals is a common processing step used when performing electroencephalographic–electromyographic (EEG–EMG) coherence and EMG–EMG coherence. It is well known, however, that EMG rectification alters the power spectrum of the recorded EMG signal (interference EMG). The purpose of this study was to determine whether rectification of the EMG signal influences the capability of capturing the oscillatory input to a single EMG signal and the common oscillations between two EMG signals. Several EMG signals were reconstructed from experimentally recorded EMG signals from the surface of the first dorsal interosseus muscle and were manipulated to have an oscillatory input or common input (for pairs of reconstructed EMG signals) at various frequency bands (in Hz: 0–12, 12–30, 30–50, 50–100, 100–150, 150–200, 200–250, 250–300, and 300–400), one at a time. The absolute integral and normalized integral of power, peak power, and peak coherence (for pairs of EMG signals) were quantified from each frequency band. The power spectrum of the interference EMG accurately detected the changes to the oscillatory input to the reconstructed EMG signal, whereas the power spectrum of the rectified EMG did not. Similarly, the EMG–EMG coherence between two interference EMG signals accurately detected the common input to the pairs of reconstructed EMG signals, whereas the EMG–EMG coherence between two rectified EMG signals did not. The frequency band from 12 to 30 Hz in the power spectrum of the rectified EMG and the EMG–EMG coherence between two rectified signals was influenced by the input from 100 to 150 Hz but not from the input from 12 to 30 Hz. The study concludes that the power spectrum of the EMG and EMG–EMG coherence should be performed on interference EMG signals and not on rectified EMG signals because rectification impairs the identification of the oscillatory input to a single EMG signal and the common oscillatory input between two EMG signals.
机译:EMG信号的整流是执行脑电图-肌电图(EEG-EMG)相干性和EMG-EMG相干性时常用的处理步骤。然而,众所周知,EMG整流会改变所记录的EMG信号的功率谱(干扰EMG)。这项研究的目的是确定对EMG信号的整流是否会影响捕获单个EMG信号的振荡输入以及两个EMG信号之间共同振荡的能力。从第一背骨间肌表面的实验记录的EMG信号中重建了几个EMG信号,并对其进行了处理,使其在不同的频段(Hz:0-12, 12–30、30–50、50–100、100–150、150–200、200–250、250–300和300–400),一次一次。从每个频带量化功率,峰值功率和峰值相干性的绝对积分和归一化积分(对于EMG信号对)。干扰EMG的功率谱可以准确地检测到重构EMG信号的振荡输入的变化,而整流EMG的功率谱则不能。类似地,两个干扰EMG信号之间的EMG-EMG相干性可以准确地检测出成对重构EMG信号对的公共输入,而两个整流EMG信号之间的EMG-EMG相干性却没有。整流的EMG的功率谱中12至30 Hz的频带以及两个整流信号之间的EMG-EMG相干性受输入100至150 Hz的影响,但不受输入12至30 Hz的影响。研究得出的结论是,应在干扰的EMG信号上而不是在整流的EMG信号上执行EMG和EMG-EMG相干的功率谱,因为整流会损害对单个EMG信号的振荡输入的识别以及两个EMG之间的公共振荡输入的识别。信号。

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