首页> 外文会议>Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Force-Temporal Characteristics of EEG-EMG Coherence during Isometric Contraction of Lateral Head of Gastrocnemius Muscle*
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Force-Temporal Characteristics of EEG-EMG Coherence during Isometric Contraction of Lateral Head of Gastrocnemius Muscle*

机译:等长腓肠肌外侧头等速收缩过程中脑电-脑电相关性的时空特征*

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Coherence between an electroencephalogram (EEG) and an electromyogram (EMG) of the soleus (SOL) muscle during an isometric contraction is observed in the beta-band (15 to 35 Hz) regardless of the contraction force. However, the dynamics on how a variation in coherence occurs over time in the head of the gastrocnemius (GLH) muscle, which is also known to have the same role as the soleus muscle, have yet to be considered. In this study, we focused on GLH and measured an EEG and EMG taken of the GLH muscle when executing an isometric contraction through the dorsiflexion of the right ankle joint for a 1-min period. Moreover, we investigated changes in the EEG-EMG coherence based on the contraction force and elapsed time. As a result, in most subjects, the peak coherence during a weak contraction force was continuously observed in the β-band, whereas the peak coherence during a strong contraction force was observed in the γ-band (35 to 60 Hz) for only the first 12 s. In addition, no significant coherence was observed. Therefore, it was suggested that muscle fatigue induced by a strong contraction force affects the peak coherence. Meanwhile, the inconsistencies observed between the properties of the peak coherence and SOL might be due to the differences in muscle composition.
机译:在β波段(15到35 Hz)中,无论收缩力如何,在等轴测收缩过程中都可以观察到比目鱼肌(SOL)的脑电图(EEG)和比目鱼肌(SOL)的肌电图(EMG)之间的连贯性。但是,尚未考虑到腓肠肌(GLH)头部随着时间的变化如何发生连贯变化的动力学,众所周知,腓肠肌(GLH)的头部与比目鱼肌具有相同的作用。在这项研究中,我们专注于GLH,并测量了通过右踝关节背屈进行等距收缩1分钟后,GLH肌肉的EEG和EMG。此外,我们研究了基于收缩力和经过时间的EEG-EMG相干性的变化。结果,在大多数受试者中,在β谱带中连续观察到弱收缩力时的峰值相干性,而对于γ谱带(35至60 Hz),仅在γ谱带中观察到强收缩力时的峰值相干性(35至60 Hz)。前12秒。另外,未观察到明显的连贯性。因此,建议由强的收缩力引起的肌肉疲劳会影响峰值相干性。同时,观察到的峰值相干性和SOL之间的不一致可能是由于肌肉成分的差异。

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