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Analysis of the role of the low threshold currents I T and I h in intrinsic delta oscillations of thalamocortical neurons

机译:低阈值电流I T 和I h 在丘脑皮质神经元内在δ振荡中的作用分析

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Thalamocortical neurons are involved in the generation and maintenance of brain rhythms associated with global functional states. The repetitive burst firing of TC neurons at delta frequencies (1–4 Hz) has been linked to the oscillations recorded during deep sleep and during episodes of absence seizures. To get insight into the biophysical properties that are the basis for intrinsic delta oscillations in these neurons, we performed a bifurcation analysis of a minimal conductance-based thalamocortical neuron model including only the I_(T)channel and the sodium and potassium leak channels. This analysis unveils the dynamics of repetitive burst firing of TC neurons, and describes how the interplay between the amplifying variable m_(T)and the recovering variable h_(T)of the calcium channel I_(T)is sufficient to generate low threshold oscillations in the delta band. We also explored the role of the hyperpolarization activated cationic current I_(h)in this reduced model and determine that, albeit not required, I_(h)amplifies and stabilizes the oscillation.
机译:丘脑皮质神经元参与与整体功能状态相关的脑节律的产生和维持。 TC神经元在Delta频率(1-4 Hz)处的重复爆发触发与深度睡眠和失神发作期间记录的振荡有关。为了深入了解作为这些神经元内在δ振荡基础的生物物理特性,我们对基于最小电导的丘脑皮层神经元模型进行了分叉分析,该模型仅包括I_(T)通道以及钠和钾泄漏通道。该分析揭示了TC神经元重复爆发的动力学,并描述了钙离子通道I_(T)的放大变量m_(T)和恢复变量h_(T)之间的相互作用如何足以产生低阈值振荡。三角洲。我们还探讨了超极化激活的阳离子电流I_(h)在此简化模型中的作用,并确定,尽管不是必需的,但I_(h)放大并稳定了振荡。

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