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棘波和慢波放电增强和减弱期间皮质-丘脑耦合强度和方向性的区域性特异性。

Regional specificity of cortico-thalamic coupling strength and directionality during waxing and waning of spike and wave discharges.

机构信息

Institute of Physiology I, Westfälische Wilhelms-Universität Münster, Münster, Germany.

出版信息

Sci Rep. 2019 Feb 14;9(1):2100. doi: 10.1038/s41598-018-37985-7.

Abstract

Spike-wave discharges (SWDs) on the EEG during absence epilepsy are waxing and waning stages of corticothalamic hypersynchrony. While the somatosensory cortex contains an epileptic focus, the role of thalamic nuclei in SWD generation is debated. Here we assess the contribution of distinct thalamic nuclei through multiple-site unit recordings in a genetic rat model of absence epilepsy and cross-correlation analysis, revealing coupling strength and directionality of neuronal activity at high temporal resolution. Corticothalamic coupling increased and decreased during waxing and waning of SWD, respectively. A cortical drive on either sensory or higher order thalamic nuclei distinguished between onset and offset of SWD, respectively. Intrathalamic coupling steadily increased during maintained SWD activity, peaked at SWD offset, and subsequently displayed a sharp decline to baseline. The peak in intrathalamic coupling coincided with a sharp increase in coupling strength between reticular thalamic nucleus and somatosensory cortex. This increased influence of the inhibitory reticular thalamic nucleus is suggested to serve as a break for SWD activity. Overall, the data extend the cortical focus theory of absence epilepsy by identifying a regionally specific cortical lead over distinct thalamic nuclei, particularly also during waning of generalized epileptic discharges, thereby revealing a potential window and location for intervention.

摘要

棘波放电 (SWD) 在脑电图中的失神癫痫是皮质丘脑过度同步的起伏阶段。虽然感觉皮层包含一个癫痫灶,但丘脑核在 SWD 产生中的作用仍存在争议。在这里,我们通过失神癫痫的遗传大鼠模型中的多部位单元记录和互相关分析来评估不同丘脑核的贡献,从而以高时间分辨率揭示神经元活动的耦合强度和方向性。皮质丘脑耦合在 SWD 的起伏过程中分别增加和减少。皮质对感觉或更高阶丘脑核的驱动分别区分了 SWD 的起始和结束。在维持的 SWD 活动期间,丘脑内耦合稳定增加,在 SWD 结束时达到峰值,随后急剧下降至基线。丘脑内耦合的峰值与网状丘脑核和感觉皮层之间的耦合强度的急剧增加同时发生。这种抑制性网状丘脑核的影响增加被认为是 SWD 活动的一个中断。总的来说,这些数据通过确定皮质对特定丘脑核的区域特异性主导作用,扩展了失神癫痫的皮质焦点理论,特别是在全身性癫痫放电的消退期间,从而揭示了潜在的干预窗口和位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c38/6375974/3dbf81c20be8/41598_2018_37985_Fig1_HTML.jpg

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