Altered peri-seizure EEG microstate dynamics in patients with absence epilepsy

地方政府 发作性 脑电图 癫痫 心理学 听力学 麻醉 神经科学 医学
作者
Hong Liu,Haoling Tang,Wei Wei,Gesheng Wang,Yong Du,Jianghai Ruan
出处
期刊:Seizure-european Journal of Epilepsy [Elsevier BV]
卷期号:88: 15-21 被引量:24
标识
DOI:10.1016/j.seizure.2021.03.020
摘要

ObjectiveTo investigate whether the parameters of EEG microstates changed before and after an absence seizure episode.MethodsAE patients with a current high frequency of seizures were included (n=21). Each included subject underwent a two-hour and 19-channel video EEG examination. Five epochs of 10-second EEG data in interictal, pre-seizure, and post-seizure states were collected from each AE patient. Five 10-second resting-state EEG epochs from sex- and age-matched HCs who reported no history of neurological or psychiatric disorders and visited the hospital for routine physical examinations were collected. Microstate analysis and source localization of microstates were performed using the LORETA KEY tool.ResultsCompared with the resting-state EEGs of HCs, the interictal EEGs of AE patients showed a higher relative transition rate from microstates B to D (p<0.05). From interictal to pre-seizure EEG, the total time ratio of microstate C and the occurrence of microstate B decreased significantly, while the duration of microstate B increased significantly (p<0.05). Compared with pre-seizure EEGs, microstate C in post-seizure EEGs showed a significantly downregulated total time percentage and occurrence (p<0.05). The source localization of each microstate in each condition also varied and showed spatial recovery tends from pre- to post-seizure states.ConclusionAltered EEG microstate dynamics exist between inter-ictal EEGs of AE patients and resting-state EEGs of HCs and between pre- and post-seizure EEGs in AE patients. The EEG microstates of epileptic patients before and after absence seizures are characterized by a “slowdown” in transitions between microstates. Microstates might be used as an index to evaluate the temporal and spatial recovery process of absence seizures in AE.
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