Vasilyev Anatoly N, Yashin Artem S, Shishkin Sergei L
MEG Center, Moscow State University of Psychology and Education, 123290 Moscow, Russia.
Department of Human and Animal Physiology, Faculty of Biology, M.V. Lomonosov Moscow State University, 119234 Moscow, Russia.
Life (Basel). 2023 Jan 21;13(2):303. doi: 10.3390/life13020303.
Quasi-movements (QM) are observed when an individual minimizes a movement to an extent that no related muscle activation is detected. Likewise to imaginary movements (IM) and overt movements, QMs are accompanied by the event-related desynchronization (ERD) of EEG sensorimotor rhythms. Stronger ERD was observed under QMs compared to IMs in some studies. However, the difference could be caused by the remaining muscle activation in QMs that could escape detection. Here, we re-examined the relation between the electromyography (EMG) signal and ERD in QM using sensitive data analysis procedures. More trials with signs of muscle activation were observed in QMs compared with a visual task and IMs. However, the rate of such trials was not correlated with subjective estimates of actual movement. Contralateral ERD did not depend on the EMG but still was stronger in QMs compared with IMs. These results suggest that brain mechanisms are common for QMs in the strict sense and "quasi-quasi-movements" (attempts to perform the same task accompanied by detectable EMG elevation) but differ between them and IMs. QMs could be helpful in research aimed at better understanding motor action and at modeling the use of attempted movements in the brain-computer interfaces with healthy participants.
当个体将动作最小化到未检测到相关肌肉激活的程度时,会观察到准运动(QM)。与想象运动(IM)和明显运动一样,准运动伴随着脑电图感觉运动节律的事件相关去同步化(ERD)。在一些研究中,与想象运动相比,准运动下观察到更强的事件相关去同步化。然而,这种差异可能是由准运动中残留的肌肉激活引起的,而这些激活可能未被检测到。在此,我们使用灵敏的数据分析程序重新审视了准运动中肌电图(EMG)信号与事件相关去同步化之间的关系。与视觉任务和想象运动相比,在准运动中观察到更多带有肌肉激活迹象的试验。然而,此类试验的发生率与实际运动的主观估计无关。对侧事件相关去同步化并不依赖于肌电图,但与想象运动相比,在准运动中仍然更强。这些结果表明,严格意义上,大脑机制对准运动和“准准运动”(尝试执行相同任务并伴有可检测到的肌电图升高)是相同的,但在它们与想象运动之间存在差异。准运动可能有助于旨在更好地理解运动动作以及模拟健康参与者在脑机接口中尝试运动使用情况的研究。