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首页> 外文期刊>Frontiers in Computational Neuroscience >Disinhibition-Induced Delayed Onset of Epileptic Spike-Wave Discharges in a Five Variable Model of Cortex and Thalamus
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Disinhibition-Induced Delayed Onset of Epileptic Spike-Wave Discharges in a Five Variable Model of Cortex and Thalamus

机译:皮层和丘脑的五变量模型中的去抑制诱导的癫痫突波放电延迟发作。

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Based on a modified neural field network model composed of cortex and thalamus, we here propose a computational framework to investigate the onset control of absence seizure, which is characterized by the spike-wave discharges. Firstly, we briefly demonstrate the existence of various transition types in Taylor's model by increasing the thalamic input. Furthermore, after the disinhibitory function is reasonably introduced into the Taylor's model, we can observe the occurrence of various transition states of firing patterns with different dominant frequencies as the thalamic input is varied under different disinhibitory effects onto the pyramidal neural population. Interestingly, it is found that the onset of spike-wave discharges can be delayed as the disinhibitory input is considered. More importantly, we explore bifurcation mechanism of firing transitions as some key parameters are changed. And also, we observe other dynamical states, such as simple oscillations and saturated discharges with different spatial scales, which are consistent with previous theoretical or experimental findings.
机译:基于由皮层和丘脑组成的改进的神经场网络模型,我们在此提出一个计算框架,以研究失神发作的发作控制,其特征在于尖峰波放电。首先,我们通过增加丘脑输入来简要说明泰勒模型中各种过渡类型的存在。此外,在将抑制功能合理地引入泰勒模型后,随着丘脑输入在对锥体神经群体的不同抑制作用下发生变化,我们可以观察到具有不同主导频率的发射模式的各种过渡状态的发生。有趣的是,发现在考虑抑制性输入时,尖峰波放电的发生可能会延迟。更重要的是,随着一些关键参数的改变,我们探索了点火过渡的分叉机制。而且,我们还观察到其他动力学状态,例如简单的振荡和具有不同空间尺度的饱和放电,这与先前的理论或实验结果是一致的。

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