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On the origin and suddenness of absences in genetic absence models.

机译:关于遗传缺失模型中缺失的起源和突发性。

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The origin of spike-wave discharges (SWDs), typical for absences, has been debated for at least half a century. While most classical views adhere to a thalamic oscillatory machinery and an active role of the cortex in modifying normal oscillations into pathological SWDs, recent studies in genetic models such as WAG/Rij and GAERS rats have challenged this proposal. It seems now well established that SWDs originate from the deep layers of the somatosensory cortex, that the activity quickly spreads over the cortex and invades the thalamus. The reticular thalamic nucleus and other thalamic nuclei provide a resonance circuitry for the amplification, spreading and entrainment of the SWDs. Conclusive evidence has been found that the changed functionality of HCN1 channels is a causative factor for the changes in local excitability and age-dependent increase in SWD. Furthermore, upregulation of two subtypes of Na+ channels, reduction of GABAB and mGlu 2/3 receptors might also play a role in the local increased excitability in WAG/Rij rats. Signal analytical studies have also challenged the view that SWDs occur suddenly from a normal background EEG. SWDs are recruited cortical responses and they develop from increasing associations within and between cortical layers and subsequently subcortical regions, triggered by the simultaneous occurrence of theta and delta precursor activity in the cortex and thalamus in case both structures are in a favorable condition, and increased directional coupling between cortex and thalamus. It is hypothesized that the cortex is the driving force throughout the whole SWD and is also responsible for its end.
机译:尖峰波放电(SWD)的起源(通常是缺席情况)已经争论了至少半个世纪。尽管大多数经典观点都遵循丘脑振荡机制,并且皮质在将正常振荡改变为病理性SWD中起着积极作用,但最近在遗传模型(如WAG / Rij和GAERS大鼠)中的研究对这一提议提出了挑战。现在似乎已经确定,SWD起源于体感皮层的深层,其活动迅速扩散到整个皮层并侵入丘脑。网状丘脑核和其他丘脑核为SWD的扩增,扩散和夹带提供了共振电路。已经确定的证据表明,HCN1通道功能的改变是局部兴奋性改变和SWD的年龄依赖性增加的原因。此外,Na +通道的两个亚型的上调,GABA B和mGlu 2/3受体的减少也可能在WAG / Rij大鼠的局部兴奋性增加中起作用。信号分析研究也挑战了这样的观点:SWD是从正常背景EEG突然发生的。 SWD是募集的皮质反应,它们是通过皮质层和丘脑中同时发生θ和δ前体活动(如果两个结构均处于良好状态)和方向增加而触发的,在皮质层和随后的皮质下区域之内和之间的关联增加而发展皮层和丘脑之间的耦合。假设皮质是整个SWD的驱动力,并且也负责它的终结。

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