Switching of brain networks across different cerebral perfusion states: insights from EEG dynamic microstate analyses

地方政府 脑电图 神经科学 灌注 灌注扫描 心理学 默认模式网络 功能磁共振成像 医学 心脏病学
作者
Xiaoying Qi,Xin Zhang,H. F. Shen,Jiabin Su,Xinjie Gao,Yanjiang Li,Heng Yang,Chao Gao,Wei Ni,Lei Yu,Yuxiang Gu,Ying Mao,Yuguo Yu
出处
期刊:Cerebral Cortex [Oxford University Press]
卷期号:34 (2)
标识
DOI:10.1093/cercor/bhae035
摘要

The alteration of neural interactions across different cerebral perfusion states remains unclear. This study aimed to fulfill this gap by examining the longitudinal brain dynamic information interactions before and after cerebral reperfusion. Electroencephalogram in eyes-closed state at baseline and postoperative 7-d and 3-month follow-ups (moyamoya disease: 20, health controls: 23) were recorded. Dynamic network analyses were focused on the features and networks of electroencephalogram microstates across different microstates and perfusion states. Considering the microstate features, the parameters were disturbed of microstate B, C, and D but preserved of microstate A. The transition probabilities of microstates A-B and B-D were increased to play a complementary role across different perfusion states. Moreover, the microstate variability was decreased, but was significantly improved after cerebral reperfusion. Regarding microstate networks, the functional connectivity strengths were declined, mainly within frontal, parietal, and occipital lobes and between parietal and occipital lobes in different perfusion states, but were ameliorated after cerebral reperfusion. This study elucidates how dynamic interaction patterns of brain neurons change after cerebral reperfusion, which allows for the observation of brain network transitions across various perfusion states in a live clinical setting through direct intervention.

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