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Absence seizure susceptibility correlates with pre-ictal β oscillations

机译:癫痫发作的易感性与发作前β振荡有关

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摘要

Absence seizures are generalized, cortico-thalamo-cortical (CTC) high power electroenecephalographic (EEG) or electrocorticographic (ECoG) events that initiate and terminate suddenly. ECoG recordings of absence seizures in animal models of genetic absence epilepsy show a sudden spike-wave-discharge (SWD) onset that rapidly emerges from normal ECoG activity. However, given that absence seizures occur most often during periods of drowsiness or quiet wakefulness, we wondered whether SWD onset correlates with pre-ictal changes in network activity. To address this, we analyzed ECoG recordings of both spontaneous and induced SWDs in rats with genetic absence epilepsy. We discovered that the duration and intensity of spontaneous SWDs positively correlate with pre-ictal 20–40 Hz (β) spectral power and negatively correlate with 4-7 Hz (Ø) power. In addition, the output of thalamocortical neurons decreases within the same preictal window of time. In separate experiments we found that the propensity for SWD induction was correlated with pre-ictal β power. These results argue that CTC networks undergo a pre-seizure state transition, possibly due to a functional reorganization of cortical microcircuits, which leads to the generation of absence seizures.
机译:失神发作是突然发作和终止的全身性,丘脑-皮质(CTC)高功率脑电图(EEG)或脑电图(ECoG)事件。遗传性癫痫发作动物模型中癫痫发作的ECoG记录显示,突然的尖峰波放电(SWD)发作从正常的ECoG活动迅速出现。但是,鉴于失神发作最常发生于睡意或安静的清醒时期,我们想知道SWD发作是否与网络活动前发作的变化有关。为了解决这个问题,我们分析了遗传性缺乏癫痫大鼠的自发性和诱发性SWD的ECoG记录。我们发现自发性SWD的持续时间和强度与发作前的20–40 Hz(β)频谱功率呈正相关,而与4-7 Hz(Ø)功率呈负相关。此外,丘脑皮质神经元的输出在相同的前期时间窗口内下降。在单独的实验中,我们发现SWD诱导的倾向与发作前的β能量相关。这些结果表明,CTC网络经历了癫痫发作前的状态转变,这可能是由于皮质微电路的功能重组所致,导致了癫痫发作的发生。

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