Hashimoto Yasunari, Ushiba Junichi, Kimura Akio, Liu Meigen, Tomita Yukata
School of Fundamental Science and Technology, Graduate School of Science and Technology, Keio University, Kanagawa, Japan.
Acta Neurobiol Exp (Wars). 2010;70(1):76-85. doi: 10.55782/ane-2010-1776.
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.
为评估在实际运动任务和想象运动任务期间观察到的皮质活动之间的相似性,我们在运动任务执行(ME)期间评估了脑电图-肌电图(EEG-EMG)相干性,并在动觉运动想象(MI)期间评估了相同任务相关的脑电图功率增加(TRPI)。对13名健康受试者记录于头顶的脑电图和记录于右胫骨前肌(TA)的肌电图进行了分析。受试者被要求执行:(1)TA等长收缩,(2)相同运动的想象且无明显运动行为,以及(3)无运动想象的休息。结果显示,在ME期间EEG-EMG有显著相干性,并且在ME和MI任务期间,在相似的14-30Hz频段内均有TRPI。EEG-EMG相干性和TRPI的幅度在受试者之间有所不同。受试者间分析显示EEG-EMG相干性与TRPI之间存在显著相关性。这些结果支持了ME和MI任务在中央前回周围皮质区域涉及重叠神经网络的假设。