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儿童良性癫痫伴中央颞区棘波发作间期棘波周围同步化的局部和远距离失调

Local and Distant Dysregulation of Synchronization Around Interictal Spikes in BECTS.

作者信息

Bourel-Ponchel Emilie, Mahmoudzadeh Mahdi, Berquin Patrick, Wallois Fabrice

机构信息

Institut National de la Santé et de la Recherche Médicale U 1105, GRAMFC, CURS, CHU Amiens Picardie - Site SudSalouël, Amiens, France; Fonctional Exploration of the Pediatric Nervous System, CHU Amiens Picardie - Site SudSalouël, Amiens, France.

Institut National de la Santé et de la Recherche Médicale U 1105, GRAMFC, CURS, CHU Amiens Picardie - Site SudSalouël, Amiens, France; Neuropediatry Unit, CHU Amiens Picardie - Site SudSalouël, Amiens, France.

出版信息

Front Neurosci. 2017 Feb 10;11:59. doi: 10.3389/fnins.2017.00059. eCollection 2017.

Abstract

High Density electroencephalography (HD EEG) is the reference non-invasive technique to investigate the dynamics of neuronal networks in Benign Epilepsy with Centro-Temporal Spikes (BECTS). Analysis of local dynamic changes surrounding Interictal Epileptic Spikes (IES) might improve our knowledge of the mechanisms that propel neurons to the hypersynchronization of IES in BECTS. Transient distant changes in the dynamics of neurons populations may also interact with neuronal networks involved in various functions that are impaired in BECTS patients. HD EEG (64 electrodes) of eight well-characterized BECTS patients (8 males; mean age: 7.2 years, range: 5-9 years) were analyzed. Unilateral IES were selected in 6 patients. They were bilateral and independent in 2 other patients. This resulted in a total of 10 groups of IES. Time-frequency analysis was performed on HD EEG epochs around the peak of the IES (±1000 ms), including phase-locked and non-phase-locked activities to the IES. The time frequency analyses were calculated for the frequencies between 4 and 200 Hz. Time-frequency analysis revealed two patterns of dysregulation of the synchronization between neuronal networks preceding and following hypersynchronization of interictal spikes (±400 ms) in the epileptogenic zone. Dysregulation consists of either desynchronization ( = 6) or oscillating synchronization ( = 4) (4-50 Hz) surrounding the IES. The 2 patients with bilateral IES exhibited only local desynchronization whatever the IES considered. Distant desynchronization in low frequencies within the same window occurs simultaneously in bilateral frontal, temporal and occipital areas ( = 7). Using time-frequency analysis of HD EEG data in a well-defined population of BECTS, we demonstrated repeated complex changes in the dynamics of neuronal networks not only during, but also, before and after the IES. In the epileptogenic zone, our results found more complex reorganization of the local network than initially thought. In line with previous results obtained at a microscopic or macroscopic level, these changes suggested the variability strategies of neuronal assemblies to raise IES. Distant changes from the epileptogenic zone in desynchronization observed in the same time window suggested interactions between larger embedded networks and opened new avenues about their possible role in the underlying mechanism leading to cognitive deficits.

摘要

高密度脑电图(HD EEG)是研究中央颞区棘波良性癫痫(BECTS)中神经网络动态变化的参考性非侵入性技术。分析发作间期癫痫样放电(IES)周围的局部动态变化,可能会增进我们对BECTS中促使神经元达到IES超同步化机制的了解。神经元群体动态的短暂远距离变化,也可能与BECTS患者中受损的各种功能所涉及的神经网络相互作用。对8例特征明确的BECTS患者(8名男性;平均年龄:7.2岁,范围:5 - 9岁)的HD EEG(64电极)进行了分析。6例患者中选取了单侧IES。另外2例患者的IES为双侧且相互独立。这总共产生了10组IES。对IES峰值(±1000毫秒)周围的HD EEG时段进行时频分析,包括与IES锁相和非锁相的活动。对4至200赫兹之间的频率进行时频分析。时频分析揭示了癫痫发作区发作间期棘波超同步化前后(±400毫秒)神经网络同步失调的两种模式。失调包括IES周围的去同步化( = 6)或振荡同步化( = 4)(4 - 50赫兹)。2例双侧IES患者无论考虑哪个IES,均仅表现出局部去同步化。在同一窗口内,双侧额叶、颞叶和枕叶区域同时出现低频远距离去同步化( = 7)。通过对明确的BECTS患者群体的HD EEG数据进行时频分析,我们证明了神经网络动态不仅在IES期间,而且在IES之前和之后都反复出现复杂变化。在癫痫发作区,我们的结果发现局部网络的重组比最初认为的更为复杂。与之前在微观或宏观层面获得的结果一致,这些变化表明神经元集合提高IES的可变策略。在同一时间窗口观察到的远离癫痫发作区的去同步化远距离变化,提示了更大的嵌入式网络之间的相互作用,并为它们在导致认知缺陷的潜在机制中可能发挥的作用开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ce7/5301021/0e17727d7b89/fnins-11-00059-g0001.jpg

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