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Force-Temporal Characteristics of EEG-EMG Coherence During Isometric Contraction of the Tibialis Anterior Muscle

机译:胫骨前肌肉等距收缩期间EEG-EG-EGG-EMG相干的力 - 时间特征

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The coherence between electroencephalogram (EEG) and electromyogram (EMG) of the tibialis anterior (TA) muscle during isometric contraction is observed in the beta band (15 to 35 Hz). When the contraction force becomes stronger, the peak coherence frequency shifts to the gamma band (35 to 60 Hz). In contrast, based on the maintenance of contraction with the weak force, the peak coherence value increases. However, the manner in which coherence changes according to the maintenance of contraction with strong force remains unknown. In this study, five healthy male university students were directed to execute isometric contraction by dorsiflexion of their right ankle joint for 1 min with forces of 10 to 60% of the maximum voluntary contraction. During dorsiflexion, EEG and EMG of the TA muscle were performed. Then, the changes in coherence between EEG and EMG were examined, corresponding to the changes in contraction force and time course. In the majority of subjects, the peak coherence during the weak contraction force was observed in the beta band and lasted for 12 to 60 s. However, the peak coherence during the strong contraction force was observed in the gamma band only for the first 12 s. Subsequently, no significant coherence was observed. Therefore, muscle fatigue due to strong contraction forces and/or maintenance of the weak contraction force may have been observed as a different property of the peak coherence.
机译:在β波段(15至35Hz)中观察到在等距收缩期间胫骨前(TA)肌肉的脑电图(EEG)和肌电图(EMG)之间的相干性。当收缩力变强时,峰值相干频率转移到伽马带(35至60Hz)。相反,基于与弱力的收缩的维持,峰值相干值增加。然而,相干关系根据维持与强大的力的维持变化的方式仍然未知。在这项研究中,五名健康的男性大学学生被右侧踝关节的背部反映了1分钟,其力量的最大自愿收缩的力量为10%至60%。在背屈期间,进行TA肌肉的EEG和EMG。然后,检查EEG和EMG之间的相干变化,对应于收缩力和时间过程的变化。在大多数受试者中,在β波段中观察到弱收缩力期间的峰间相干性,并持续12至60秒。然而,仅在前12秒的伽马带中观察到强不良收缩力期间的峰间相干性。随后,没有观察到显着的相干性。因此,可能已经观察到由于强烈收缩力和/或维持弱收缩力而导致的肌肉疲劳作为峰相干的不同性质。

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