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High-frequency oscillations and other electrophysiological biomarkers of epilepsy: underlying mechanisms.

机译:癫痫的高频振荡和其他电生理生物标志物:潜在机​​制。

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In the normal mammalian brain, neuronal synchrony occurs on a spatial scale of submillimeters to centimeters and temporal scale of submilliseconds to seconds that is reflected in the occurrence of high-frequency oscillations, physiological sharp waves and slow wave sleep oscillations referred to as Up-Down states. In the epileptic brain, the well-studied pathologic counterparts to these physiological events are pathological high-frequency oscillations and interictal spikes that could be electrophysiological biomarkers of epilepsy. Establishing these abnormal events as biomarkers of epilepsy will largely depend on a better understanding of the mechanisms underlying their generation, which will not only help distinguish pathological from physiological events, but will also determine what roles these pathological events play in epileptogenesis and epileptogenicity. This article focuses on the properties and neuronal mechanisms supporting the generation of high-frequency oscillations and interictal spikes, and introduces a new phenomenon called Up-spikes.
机译:在正常的哺乳动物大脑中,神经元同步发生在亚毫米到厘米的空间尺度上,而亚毫秒到秒的时间尺度发生在高频振荡,生理性尖锐波和慢波睡眠振荡的发生上,这被称为“上下”状态。在癫痫的大脑中,与这些生理事件有关的经过充分研究的病理对应物是病理性高频振荡和发作间期峰值,它们可能是癫痫的电生理生物标志物。将这些异常事件确定为癫痫的生物标志物在很大程度上取决于对它们产生的机理的更好理解,这不仅有助于区分病理事件与生理事件,而且还将确定这些病理事件在癫痫发生和致痫性中起什么作用。本文重点介绍了支持高频振荡和尖峰尖峰生成的特性和神经元机制,并介绍了一种称为Up-spikes的新现象。

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