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失神癫痫发作终止时的动态神经磁网络变化:一项脑磁图研究

Dynamic Neuromagnetic Network Changes of Seizure Termination in Absence Epilepsy: A Magnetoencephalography Study.

作者信息

Jiang Wenwen, Wu Caiyun, Xiang Jing, Miao Ailiang, Qiu Wenchao, Tang Lu, Huang Shuyang, Chen Qiqi, Hu Zheng, Wang Xiaoshan

机构信息

Department of Neurology, The Affiliated Brain Hospital of Nanjing Medical University, Nanjing Medical University, Nanjing, China.

Division of Neurology, MEG Center, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, United States.

出版信息

Front Neurol. 2019 Jul 2;10:703. doi: 10.3389/fneur.2019.00703. eCollection 2019.

Abstract

With increasing efforts devoted to investigating the generation and propagation mechanisms of spontaneous spike and wave discharges (SWDs), little attention has been paid to network mechanisms associated with termination patterns of SWDs to date. In the current study, we aimed to identify the frequency-dependent neural network dynamics during the offset of absence seizures. Fifteen drug-naïve patients with childhood absence epilepsy (CAE) were assessed with a 275-Channel Magnetoencephalography (MEG) system. MEG data were recorded during and between seizures at a sampling rate of 6,000 Hz and analyzed in seven frequency bands. Source localization was performed with accumulated source imaging. Granger causality analysis was used to evaluate effective connectivity networks of the entire brain at the source level. At the low-frequency (1-80 Hz) bands, activities were predominantly distributed in the frontal cortical and parieto-occipito-temporal junction at the offset transition periods. The high-frequency oscillations (HFOs, 80-500 Hz) analysis indicated significant source localization in the medial frontal cortex and deep brain areas (mainly thalamus) during both the termination transition and interictal periods. Furthermore, an enhanced positive cortico-thalamic effective connectivity was observed around the discharge offset at all of the seven analyzed bands, the direction of which was primarily from various cortical regions to the thalamus. Seizure termination is a gradual process that involves both the cortices and the thalamus in CAE. Cortico-thalamic coupling is observed at the termination transition periods, and the cerebral cortex acts as the driving force.

摘要

随着对自发性棘波和慢波放电(SWDs)产生及传播机制的研究投入不断增加,迄今为止,与SWDs终止模式相关的网络机制却很少受到关注。在本研究中,我们旨在确定失神发作终止期间频率依赖性神经网络动力学。使用275通道脑磁图(MEG)系统对15例初治儿童失神癫痫(CAE)患者进行评估。在发作期间和发作间期以6000Hz的采样率记录MEG数据,并在七个频带中进行分析。采用累积源成像进行源定位。使用格兰杰因果分析来评估源水平上全脑的有效连接网络。在低频(1-80Hz)频段,活动主要分布在终止过渡期的额叶皮质和顶枕颞交界处。高频振荡(HFOs,80-500Hz)分析表明,在终止过渡期和发作间期,内侧额叶皮质和深部脑区(主要是丘脑)有明显的源定位。此外,在所有七个分析频段中放电偏移附近均观察到皮质-丘脑有效连接增强,其方向主要是从各个皮质区域到丘脑。癫痫发作终止是一个渐进的过程,在CAE中涉及皮质和丘脑。在终止过渡期观察到皮质-丘脑耦合,且大脑皮质起驱动力作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8075/6626921/ce788717c394/fneur-10-00703-g0001.jpg

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