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Are the Breaks Breaking Down?

机译:休息分手了吗?

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摘要

>Altered Hippocampal Interneuron Activity Precedes Ictal Onset Miri ML, Vinck M, Pant R, Cardin JA. Elife. 2018;7. pii: e40750. doi:10.7554/eLife.40750.Although failure of GABAergic inhibition is a commonly hypothesized mechanism underlying seizure disorders, the series of events that precipitates a rapid shift from healthy to ictal activity remains unclear. Furthermore, the diversity of inhibitory interneuron populations poses a challenge for understanding local circuit interactions during seizure initiation. Using a combined optogenetic and electrophysiological approach, we examined the activity of identified mouse hippocampal interneuron classes during chemoconvulsant seizure induction in vivo. Surprisingly, synaptic inhibition from parvalbumin-(PV) and somatostatin-expressing (SST) interneurons remained intact throughout the preictal period and early ictal phase. However, these 2 sources of inhibition exhibited cell type–specific differences in their preictal firing patterns and sensitivity to input. Our findings suggest that the onset of ictal activity is not associated with loss of firing by these interneurons or a failure of synaptic inhibition but is instead linked with disruptions of the respective roles these interneurons play in the hippocampal circuit.
机译:>改变的海马中神经元活动先于发作发作 Miri ML,Vinck M,Pant R和Cardin JA。生命。 2018; 7。 pii:e40750。 doi:10.7554 / eLife.40750。尽管GABA能抑制的失败是癫痫发作的一种常见的推测机制,但一系列导致从健康状态向发作状态迅速转变的事件仍不清楚。此外,抑制性中间神经元种群的多样性为理解癫痫发作起始过程中的局部回路相互作用提出了挑战。使用组合的光遗传学和电生理学方法,我们检查了体内化学惊厥性癫痫发作诱导期间小鼠海马中间神经元类的活性。出人意料的是,在整个发作前期和早期发作期,小白蛋白-(PV)和生长抑素表达(SST)中神经元对突触的抑制作用仍然完整。但是,这两种抑制源在其发作前放电模式和输入敏感性方面表现出细胞类型特异性差异。我们的发现表明,发作期活动与这些中间神经元的放电丧失或突触抑制失败无关,而与这些中间神经元在海马回路中发挥的各自作用的破坏有关。

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