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The generation mechanism of spike-and-slow wave discharges appearing on thalamic relay nuclei

机译:丘脑中继核上出现尖峰和慢波放电的产生机理

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In this paper, we use a model modified from classic corticothalamic network(CT) to explore the mechanism of absence seizures appearing on specific relay nuclei (SRN) of the thalamus. It is found that typical seizure states appear on SRN through tuning several critical connection strengths in the model. In view of previous experimental and theoretical works which were mainly on epilepsy seizure phenomena appearing on excitatory pyramidal neurons (EPN) of the cortex, this is a novel model to consider the seizure observed on thalamus. In particular, the onset mechanism is different from previous theoretical studies. Inspired by some previous clinical and experimental studies, we employ the external stimuli voltage on EPN and SRN in the network, and observe that the seizure can be well inhibited by tuning the stimulus intensity appropriately. We further explore the effect of the signal transmission delays on seizures, and found that the polyspike phenomenon appears only when the delay is sufficiently large. The experimental data also confirmed our model. Since there is a complex network in the brain and all organizations are interacting closely with each other, the results obtained in this paper provide not only biological insights into the regulatory mechanisms but also a reference for the prevention and treatment of epilepsy in future.
机译:在本文中,我们使用经典皮质丘脑网络(CT)修改的模型来探讨丘脑特定中继核(SRN)上出现癫痫发作的机制。通过调整模型中的几个关键连接强度,发现典型的癫痫发作状态出现在SRN上。鉴于先前的实验和理论工作主要针对皮层的兴奋性锥体神经元(EPN)上出现的癫痫性癫痫发作现象,这是考虑丘脑中观察到的癫痫发作的新型模型。特别是,发病机理与以前的理论研究不同。受以前的一些临床和实验研究的启发,我们在网络中的EPN和SRN上使用了外部刺激电压,并观察到可以通过适当调整刺激强度来很好地抑制癫痫发作。我们进一步探讨了信号传输延迟对癫痫发作的影响,发现多峰现象只有在延迟足够大时才会出现。实验数据也证实了我们的模型。由于大脑中存在一个复杂的网络,并且所有组织之间都紧密相互作用,因此本文获得的结果不仅为调节机制提供了生物学见识,而且还为将来预防和治疗癫痫病提供了参考。

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