Sihn Duho, Kim Sung-Phil
Department of Biomedical Engineering, Ulsan National Institute of Science and Technology, Ulsan, Republic of Korea.
PeerJ. 2022 Feb 1;10:e12875. doi: 10.7717/peerj.12875. eCollection 2022.
The oscillation phase of electroencephalograms (EEGs) is associated with behavioral performance. Several studies have demonstrated this association for relatively fast oscillations (>1 Hz); a similar finding has also been reported for slower oscillations, showing that behavioral performance is correlated with the phase of infraslow activity (ISA, 0.01-0.1 Hz) of electroencephalography (EEG). However, the previous study only investigated ISA in a local brain region using a relatively simple task (somatosensory discrimination task), leaving it difficult to determine how the EEG ISA for various brain regions is associated with behavioral performance. In addition, it is not known whether the EEG ISA phase modulates more complex behavioral task performance. In the present study, we analyzed the ISA of whole-brain EEG of participants performing various behaviors while playing video games. We found that behavior was associated with the specific oscillation phase of EEG ISA when that behavior was independent of other behaviors. In addition, we found that the EEG ISA oscillation phases modulating the different behaviors varied across brain regions. Our results suggest that the EEG ISA for different brain regions modulates behavioral performance in different ways and such modulation of EEG ISA can be generalized to diverse behaviors. This study may deepen the understanding of how EEG ISA modulates behavior and increases the applicability of EEG ISA.
脑电图(EEG)的振荡相位与行为表现相关。多项研究已证实了这种关联在相对快速振荡(>1Hz)时存在;对于较慢振荡也有类似发现,表明行为表现与脑电图(EEG)的超慢活动(ISA,0.01 - 0.1Hz)相位相关。然而,先前的研究仅使用相对简单的任务(体感辨别任务)在局部脑区研究了ISA,难以确定不同脑区的脑电图ISA如何与行为表现相关。此外,尚不清楚脑电图ISA相位是否调节更复杂的行为任务表现。在本研究中,我们分析了参与者在玩电子游戏时执行各种行为时全脑EEG的ISA。我们发现,当行为独立于其他行为时,行为与脑电图ISA的特定振荡相位相关。此外,我们发现调节不同行为的脑电图ISA振荡相位在不同脑区有所不同。我们的结果表明,不同脑区的脑电图ISA以不同方式调节行为表现,并且这种脑电图ISA调节可推广到多种行为。本研究可能会加深对脑电图ISA如何调节行为的理解,并提高脑电图ISA的适用性。