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量化失神发作中从发作前期到发作期的神经磁网络变化。

Quantify neuromagnetic network changes from pre-ictal to ictal activities in absence seizures.

机构信息

Department of Neurology, Nanjing Brain Hospital, Nanjing Medical University, Nanjing, Jiangsu 210029, China.

MEG Center, Division of Neurology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45220, USA.

出版信息

Neuroscience. 2017 Aug 15;357:134-144. doi: 10.1016/j.neuroscience.2017.05.038. Epub 2017 May 31.

Abstract

OBJECTIVE

The cortico-thalamo-cortical network plays a key role in childhood absence epilepsy (CAE). However, the exact interaction between the cortex and the thalamus remains incompletely understood. This study aimed to investigate the dynamic changes of frequency-dependent neural networks during the initialization of absence seizures.

METHODS

Magnetoencephalography data from 14 patients with CAE were recorded during and between seizures at a sampling rate of 6000Hz and analyzed in seven frequency bands. Neuromagnetic sources were volumetrically scanned with accumulated source imaging. Effective connectivity networks of the entire brain, including the cortico-thalamo-cortical network, were evaluated at the source level through Granger causality analysis.

RESULTS

The low-frequency (1-80Hz) activities showed significant frontal cortical and parieto-occipito-temporal junction source localization around seizures. The high-frequency (80-250Hz) oscillations showed predominant activities consistently localized in deep brain areas and medial frontal cortex. The increased cortico-thalamic effective connectivity was observed around seizures in both low- and high-frequency ranges. The direction was predominantly from the cortex to the thalamus at the early time, although the cortex that drove connectivity varied among subjects.

CONCLUSIONS

The cerebral cortex plays a key role in driving the cortico-thalamic connections at the early portion of the initialization of absence seizures. The oscillatory activities in the thalamus could be triggered by networks from various regions in the cortex.

SIGNIFICANCE

The dynamic changes of neural network provide evidences that absence seizures are probably resulted from cortical initialized cortico-thalamic network.

摘要

目的

皮质-丘脑-皮质网络在儿童失神癫痫(CAE)中起着关键作用。然而,皮质和丘脑之间的确切相互作用仍不完全清楚。本研究旨在探讨失神发作起始期间频率依赖性神经网络的动态变化。

方法

记录 14 例 CAE 患者发作期间和发作间期的脑磁图数据,采样率为 6000Hz,并在七个频带中进行分析。使用累积源成像对神经磁源进行容积扫描。通过格兰杰因果分析在源水平评估整个大脑的有效连通性网络,包括皮质-丘脑-皮质网络。

结果

低频(1-80Hz)活动在发作前后表现出明显的额皮质和顶枕颞交界区源定位。高频(80-250Hz)振荡表现出一致的深部脑区和内侧额皮质优势活动。在低频和高频范围内,发作前后观察到皮质-丘脑的有效连通性增加。在早期,方向主要是从皮质到丘脑,尽管驱动连通性的皮质因个体而异。

结论

大脑皮质在失神发作起始早期驱动皮质-丘脑连接中起着关键作用。丘脑的振荡活动可能由皮质中来自各个区域的网络触发。

意义

神经网络的动态变化提供了证据,表明失神发作可能是由皮质初始化的皮质-丘脑网络引起的。

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