Qiu Shuang, Wang Shengpei, Yi Weibo, Zhang Chuncheng, He Huiguang
Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:3549-3552. doi: 10.1109/EMBC44109.2020.9176673.
Repetitive Transcranial magnetic stimulation (rTMS) is a noninvasive brain stimulation technique that can influence cortical excitability. Low-frequency rTMS (stimulation frequency ≤1Hz) induces long-lasting inhibitory effects on cortical excitability. At the same time, EEG microstates have been studied and have been thought to corresponding to functional relevant brain-states. In order to investigate dynamic changes in EEG microstates after low-frequency rTMS, 20 healthy subjects received 1-Hz rTMS over the right motor area, and electroencephalography (EEG) in resting condition with eyes open was recorded before rTMS (Pre) and at 0 min, 20 min, 40 min, and 60 min after rTMS (Post0, Post20, Post40, and Post60). Resting state EEG data of all five sessions were computed using a clustering algorithm. Four EEG microstates were found and labeled with the letters A, B, C and D. No significant difference in duration was found among five sessions for four microstates. For microstates A, and B, there is an increase in the mean duration immediately after rTMS. And for microstate C, the mean duration at Post0 and Post60 was significantly higher than that before rTMS. For microstate D, there is an increase in the mean duration at 60min after rTMS. These results showed that we reproduced the same four microstate maps best representing the resting state EEG as found by others and that low-frequency rTMS produced long-lasting alterations in the mean duration of EEG microstates. It implies that low-frequency rTMS increases the stability of EEG microstates.
重复经颅磁刺激(rTMS)是一种可影响皮层兴奋性的非侵入性脑刺激技术。低频rTMS(刺激频率≤1Hz)可对皮层兴奋性产生持久的抑制作用。同时,脑电图微状态已得到研究,并被认为与功能相关的脑状态相对应。为了研究低频rTMS后脑电图微状态的动态变化,20名健康受试者在右侧运动区接受1Hz的rTMS,并在rTMS前(Pre)以及rTMS后0分钟、20分钟、40分钟和60分钟(Post0、Post20、Post40和Post60)记录睁眼静息状态下的脑电图(EEG)。使用聚类算法计算所有五个时段的静息态EEG数据。发现了四种脑电图微状态,并用字母A、B、C和D进行标记。四种微状态在五个时段的持续时间无显著差异。对于微状态A和B,rTMS后即刻平均持续时间增加。对于微状态C,Post0和Post60时的平均持续时间显著高于rTMS前。对于微状态D,rTMS后60分钟时平均持续时间增加。这些结果表明,我们重现了与其他人发现的最能代表静息态EEG的相同四种微状态图,并且低频rTMS使脑电图微状态的平均持续时间产生了持久变化。这意味着低频rTMS增加了脑电图微状态的稳定性。