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Correlation between EEG-EMG coherence during isometric contraction and its imaginary execution.

机译:等距收缩过程中脑电图-心电图相关性与虚构执行之间的相关性。

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To assess the similarity between cortical activities observed during actual and imaginary motor tasks, we evaluated electroencephalography-electromyography (EEG-EMG) coherence during motor task execution (ME) and the same taskrelated EEG power increase (TRPI) during kinesthetic motor imagery (MI). EEGs recorded at the vertex and EMGs recorded at the right tibialis anterior muscle (TA) were analyzed in 13 healthy subjects. Subjects were requested to perform: (1) isometric TA contraction, (2) imagery of the same movement without overt motor behavior, and (3) rest without MI. The results show significant EEG-EMG coherence during ME, as well as TRPI during both ME and MI tasks within a similar 14-30 Hz band. The magnitude of EEG-EMG coherence and TRPI varied among the subjects. Intersubject analysis revealed a significant correlation between EEG-EMG coherence and TRPI. These results support the hypothesis that ME and MI tasks involve overlapping neural networks in the perirolandic cortical areas.
机译:为了评估在实际和虚构的运动任务中观察到的皮质活动之间的相似性,我们评估了运动任务执行(ME)期间的脑电图-肌电图(EEG-EMG)相干性以及运动感觉运动成像(MI)中与任务相关的EEG功率增加(TRPI) 。在13位健康受试者中分析了记录在顶点的EEG和记录在右胫骨前肌(TA)的EMG。要求受试者进行:(1)等距TA收缩;(2)相同运动的影像,没有明显的运动行为;(3)休息,没有MI。结果显示,在相似的14-30 Hz频带内,ME期间的MEG和EMG相干性很高,ME和MI任务期间的TRPI也很明显。脑电图-EMG连贯性和TRPI的幅度因受试者而异。受试者间分析显示,EEG-EMG一致性与TRPI之间存在显着相关性。这些结果支持这样的假设,即ME和MI任务在Perlandolandic皮质区域涉及重叠的神经网络。

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