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EEG analysis reveals reduced seizure activity by optogenetic inhibition of GABAergic interneurons

机译:脑电图分析表明,通过光遗传抑制GABA能的中间神经元,降低了癫痫发作的活动

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Among the many cell types involved in epileptogenesis, the GABAergic interneurons are of great interests, largely due to their context-dependent role in controlling cellular excitability and dynamic behavior in seizure. By controlling GABAergic interneuron activity with optogenetic technology, we sought to block seizure activity in the hippocampus in a 4-aminopyridine induced seizure model in mice. This paper introduces an experiment where intracranial electroencephalogram (EEG) was acquired from the hippocampal CA3 area during seizure while the GABAergic interneurons were optically altered. EEG segments during GABAergic interneurons inhibition (Laser ON) was compared to the condition when GABAergic interneurons were not inhibited by the light (Laser OFF). We utilized an adaptive Amplitude Correlation Threshold metric to define certain Seizure Level as a key parameter for epileptic detection. We also quantified the degree of inhibition as an evaluation parameter for the laser-interfered treatment. We found that both the frequency and strength of the ictal events were evidently reduced when the GABAergic interneurons were optically inhibited. This work reveals a novel functional role of GABAergic interneurons in seizure.
机译:在涉及癫痫发生的许多细胞类型中,GABA能中间神经元引起了人们的极大兴趣,这主要是由于它们在控制癫痫发作中细胞兴奋性和动态行为方面的背景依赖性作用。通过使用光遗传学技术控制GABA能中间神经元的活性,我们试图在4-氨基吡啶诱发的癫痫发作模型中阻断海马的癫痫发作活性。本文介绍了一项实验,在癫痫发作期间从海马CA3区获得了颅内脑电图(EEG),而GABA能神经元发生了光学改变。将GABA能级中间神经抑制(激光开启)期间的脑电图段与GABA能级中间神经不受光抑制(激光关闭)的条件进行了比较。我们利用自适应幅度相关阈值度量将某些癫痫发作级别定义为癫痫检测的关键参数。我们还对抑制程度进行了量化,作为激光干扰治疗的评估参数。我们发现,当光学抑制GABA能中间神经元时,发作事件的频率和强度均明显降低。这项工作揭示了GABA能神经元在癫痫发作中的新型功能作用。

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