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Spectral properties of surface electromyogram signal and change in muscle conduction velocity during isometric muscle contraction - Springer

机译:等距肌肉收缩过程中表面肌电图信号的频谱特性和肌肉传导速度的变化-Springer

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It is well known that there is a change in the spectrum of surface electromyogram (sEMG) with the onset of muscle fatigue. This change has largely been attributed to the change in muscle conduction velocity. We have investigated this theory by using our previously developed sEMG model with the various neuromuscular parameters. The change of spectrum of the experimental results has been compared with simulated sEMG in response to the change in muscle conduction velocity using similar conditions. In this study, the designed model implemented the change in the muscle conduction velocity ((Delta v)) as a parameter to simulate the sEMG. The shift in spectrum was identified by computation of the median frequency (MDF) of the sEMG before and after the implementation of the rate of the slow down (RS or (Delta v)) parameter in the model. The results based on the simulation of the model show that the rate of change in MDF was consistent in all levels of contractions and it is not same with experimental conditions. The results also suggest that the large change in MDF in the simulated sEMG than in experimental conditions may be attributable to other factors such as change in the recruitment pattern and the level of contraction not only due to the change in the muscle conduction velocity ((Delta v)).
机译:众所周知,随着肌肉疲劳的发作,表面肌电图(sEMG)的频谱会发生变化。这种变化主要归因于肌肉传导速度的变化。我们已经通过使用我们先前开发的具有各种神经肌肉参数的sEMG模型研究了这一理论。在相似条件下,响应于肌肉传导速度的变化,已将实验结果的频谱变化与模拟的sEMG进行了比较。在这项研究中,设计的模型将肌肉传导速度的变化((Δv))作为模拟sEMG的参数。通过在模型中执行减慢(RS或(Delta v))参数的速率之前和之后计算sEMG的中值频率(MDF),可以确定频谱的偏移。基于模型模拟的结果表明,MDF的变化率在所有收缩水平上均一致,并且与实验条件不同。结果还表明,与实验条件相比,模拟sEMG中MDF的较大变化可能归因于其他因素,例如补充模式的变化和收缩水平的变化不仅是由于肌肉传导速度的变化((Δ v))。

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