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Sensitivity of EMG-EMG coherence to detect the common oscillatory drive to hand muscles in young and older adults

机译:EMG-EMG相干的灵敏度,可以检测出年轻人和老年人中常见的振动对手部肌肉的驱动

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Multichannel surface electromyograms (EMGs) were used to examine the sensitivity of EMG-EMG coherence to infer changes in common oscillatory drive to hand muscles in young and older adults. Previous research has shown that measures of coherence calculated from different neurophysiological signals are influenced by the age of the subject, the visual feedback provided to the subject, and the task being performed. The change in the magnitude of EMG-EMG coherence across experimental conditions is often interpreted as a change in the oscillatory drive to motoneuron pools of a pair of muscles. However, signal processing (e.g., full-wave rectification) and electrode location are also reported to influence EMG-EMG coherence, which could decrease the sensitivity of EMG-EMG coherence to infer a change in common oscillatory drive to motoneurons. In this study, multichannel EMGs were used to compare EMG-EMG coherence in young (n = 11) and older (n = 10) adults during index finger abduction and pinch grip tasks performed at 2 and 3.5 N with a low and a high visual feedback gain. We found that, across all conditions, EMG-EMG coherence was influenced by electrode location (P < 0.001) but not by subject age, visual feedback gain, task, or signal processing. These results suggest that EMG-EMG coherence is most sensitive to electrode location. The results are discussed in terms of the potential issues related to inferring a common oscillatory drive to hand muscles with surface EMGs.
机译:多通道表面肌电图(EMG)用于检查EMG-EMG相干性的敏感性,以推断年轻人和老年人中常见的振动对手部肌肉的变化。先前的研究表明,从不同的神经生理信号计算出的连贯性度量受受试者的年龄,提供给受试者的视觉反馈以及所执行任务的影响。在整个实验条件下,EMG-EMG相干性的大小变化通常被解释为对一对肌肉的运动神经元池的振荡驱动的变化。然而,据报道,信号处理(例如,全波整流)和电极位置也会影响EMG-EMG相干性,这会降低EMG-EMG相干性的敏感性,从而推断出普通振荡驱动对运动神经元的变化。在这项研究中,多通道肌电图用于比较在2和3.5 N下进行的食指外展和捏握任务在低视觉和高视觉下在年轻(n = 11)和老年人(n = 10)成年人中的EMG-EMG相干性反馈增益。我们发现,在所有情况下,EMG-EMG相干性均受电极位置的影响(P <0.001),但不受受试者年龄,视觉反馈增益,任务或信号处理的影响。这些结果表明,EMG-EMG相干性对电极位置最敏感。讨论了与潜在的问题有关的结果,这些问题与推断使用表面EMG的手部肌肉的共同振动驱动有关。

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