首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Time and frequency domain responses of the mechanomyogram and electromyogram during isometric ramp contractions: A comparison of the short-time Fourier and continuous wavelet transforms
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Time and frequency domain responses of the mechanomyogram and electromyogram during isometric ramp contractions: A comparison of the short-time Fourier and continuous wavelet transforms

机译:等距斜波收缩过程中机电图和肌电图的时域和频域响应:短时傅立叶变换和连续小波变换的比较

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The purposes of this study were to examine the mechanomyographic (MMG) and electromyographic (EMG) time and frequency domain responses of the vastus lateralis (VL) and rectus femoris (RF) muscles during isometric ramp contractions and compare the time-frequency of the MMG and EMG signals generated by the short-time Fourier transform (STFT) and continuous wavelet transform (CWT). Nineteen healthy subjects (mean +/- SD age = 24 +/- 4 years) performed two isometric maximal voluntary contractions (MVCs) before and after completing 2-3, 6-s isometric ramp contractions from 5% to 100% MVC with the right leg extensors. MMG and surface EMG signals were recorded from the VL and RF muscles. Time domains were represented as root mean squared amplitude values, and time-frequency representations were generated using the STFT and CWT. Polynomial regression analyses indicated cubic increases in MMG amplitude, MMG frequency, and EMG frequency, whereas EMG amplitude increased quadratically. From 5% to 24-28% MVC, MMG amplitude remained stable while MMG frequency increased. From 24-28% to 76-78% MVC, MMG amplitude increased rapidly while MMG frequency plateaued. From 76-78% to 100% MVC, MMG amplitude plateaued (VL) or decreased (RF) while MMG frequency increased. EMG amplitude increased while EMG frequency changed only marginally across the force spectrum with no clear deflection points. Overall, these findings suggested that MMG may offer more unique information regarding the interactions between motor unit recruitment and firing rate that control muscle force production during ramp contractions than traditional surface EMG. In addition, although the STFT frequency patterns were more pronounced than the CWT, both algorithms produced similar time-frequency representations for tracking changes in MMG or EMG frequency. (C) 2006 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是检查等轴坡道收缩过程中股外侧肌(VL)和股直肌(RF)的肌电图(MMG)和肌电图(EMG)时域和频域响应,并比较MMG的时频短时傅立叶变换(STFT)和连续小波变换(CWT)生成的EMG信号。 19名健康受试者(平均+/- SD年龄= 24 +/- 4岁)在完成2-3次等轴测斜面收缩(从5%到100%MVC)之前和之后进行了两次等轴测最大自愿收缩(MVC),从5%到100%右腿伸肌。从VL和RF肌肉记录了MMG和表面EMG信号。时域表示为均方根振幅值,并使用STFT和CWT生成时频表示。多项式回归分析表明,MMG振幅,MMG频率和EMG频率呈三次增加,而EMG振幅呈二次增加。从5%MVC到24-28%MVC,MMG振幅保持稳定,而MMG频率增加。从MVC的24-28%上升到76-78%,MMG的振幅迅速增加,而MMG的频率却稳定下来。从MVC的76-78%到100%,MMG振幅达到稳定(VL)或下降(RF),而MMG频率却增加。 EMG振幅增加,而EMG频率在整个力谱上仅略有变化,没有清晰的偏转点。总体而言,这些发现表明,与传统的表面肌电图相比,MMG可以提供更多有关运动单元募集与发动速率之间的相互作用的独特信息,这些信息控制斜坡收缩期间肌肉力量的产生。另外,尽管STFT频率模式比CWT更为明显,但是两种算法都产生了类似的时频表示,用于跟踪MMG或EMG频率的变化。 (C)2006 Elsevier Ltd.保留所有权利。

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