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睡眠期间癫痫活动的易化由高振幅慢波介导。

Facilitation of epileptic activity during sleep is mediated by high amplitude slow waves.

作者信息

Frauscher Birgit, von Ellenrieder Nicolás, Ferrari-Marinho Taissa, Avoli Massimo, Dubeau François, Gotman Jean

机构信息

1 Montreal Neurological Institute and Hospital, McGill University, H3A 2B4 Montreal, Canada 2 Department of Neurology, Medical University of Innsbruck, A-6020 Innsbruck, Austria

1 Montreal Neurological Institute and Hospital, McGill University, H3A 2B4 Montreal, Canada 3 CONICET - LEICI, Universidad Nacional de La Plata, La Plata, B1900TAG, Argentina.

出版信息

Brain. 2015 Jun;138(Pt 6):1629-41. doi: 10.1093/brain/awv073. Epub 2015 Mar 19.

Abstract

Epileptic discharges in focal epilepsy are frequently activated during non-rapid eye movement sleep. Sleep slow waves are present during this stage and have been shown to include a deactivated ('down', hyperpolarized) and an activated state ('up', depolarized). The 'up' state enhances physiological rhythms, and we hypothesize that sleep slow waves and particularly the 'up' state are the specific components of non-rapid eye movement sleep that mediate the activation of epileptic activity. We investigated eight patients with pharmaco-resistant focal epilepsies who underwent combined scalp-intracerebral electroencephalography for diagnostic evaluation. We analysed 259 frontal electroencephalographic channels, and manually marked 442 epileptic spikes and 8487 high frequency oscillations during high amplitude widespread slow waves, and during matched control segments with low amplitude widespread slow waves, non-widespread slow waves or no slow waves selected during the same sleep stages (total duration of slow wave and control segments: 49 min each). During the slow waves, spikes and high frequency oscillations were more frequent than during control segments (79% of spikes during slow waves and 65% of high frequency oscillations, both P ∼ 0). The spike and high frequency oscillation density also increased for higher amplitude slow waves. We compared the density of spikes and high frequency oscillations between the 'up' and 'down' states. Spike and high frequency oscillation density was highest during the transition from the 'up' to the 'down' state. Interestingly, high frequency oscillations in channels with normal activity expressed a different peak at the transition from the 'down' to the 'up' state. These results show that the apparent activation of epileptic discharges by non-rapid eye movement sleep is not a state-dependent phenomenon but is predominantly associated with specific events, the high amplitude widespread slow waves that are frequent, but not continuous, during this state of sleep. Both epileptic spikes and high frequency oscillations do not predominate, like physiological activity, during the 'up' state but during the transition from the 'up' to the 'down' state of the slow wave, a period of high synchronization. Epileptic discharges appear therefore more associated with synchronization than with excitability. Furthermore, high frequency oscillations in channels devoid of epileptic activity peak differently during the slow wave cycle from those in channels with epileptic activity. This property may allow differentiating physiological from pathological high frequency oscillations, a problem that is unresolved until now.

摘要

局灶性癫痫的癫痫放电在非快速眼动睡眠期间经常被激活。此阶段存在睡眠慢波,且已表明其包括失活状态(“下行”,超极化)和激活状态(“上行”,去极化)。“上行”状态增强生理节律,我们推测睡眠慢波,尤其是“上行”状态是非快速眼动睡眠的特定组成部分,介导癫痫活动的激活。我们研究了8例药物难治性局灶性癫痫患者,他们接受了头皮 - 脑内联合脑电图检查以进行诊断评估。我们分析了259个额叶脑电图通道,并手动标记了在高振幅广泛慢波期间以及在相同睡眠阶段选择的低振幅广泛慢波、非广泛慢波或无慢波的匹配对照片段期间的442个癫痫棘波和8487次高频振荡(慢波和对照片段的总时长均为49分钟)。在慢波期间,棘波和高频振荡比对照片段更频繁(慢波期间79%的棘波和65%的高频振荡,P均约为0)。对于更高振幅的慢波,棘波和高频振荡密度也增加。我们比较了“上行”和“下行”状态之间棘波和高频振荡的密度。棘波和高频振荡密度在从“上行”到“下行”状态的转变期间最高。有趣的是,正常活动通道中的高频振荡在从“下行”到“上行”状态的转变时有不同的峰值。这些结果表明,非快速眼动睡眠对癫痫放电的明显激活不是一种状态依赖性现象,而是主要与特定事件相关,即这种睡眠状态下频繁但不连续的高振幅广泛慢波。癫痫棘波和高频振荡并不像生理活动那样在“上行”状态占主导,而是在慢波从“上行”到“下行”状态的转变期间占主导,这是一个高度同步的时期。因此,癫痫放电似乎更多地与同步性而非兴奋性相关。此外,无癫痫活动通道中的高频振荡在慢波周期中的峰值与有癫痫活动通道中的不同。这一特性可能有助于区分生理性和病理性高频振荡,这是一个至今尚未解决的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fc4/4614129/16411418c758/awv073fig1g.jpg

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