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丘脑神经元模型中的爆发分析。

Analysis of bursting in a thalamic neuron model.

作者信息

Rush M E, Rinzel J

机构信息

Mathematical Research Branch, NIDDK, National Institutes of Health, Bethesda, MD 20892.

出版信息

Biol Cybern. 1994;71(4):281-91. doi: 10.1007/BF00239616.

Abstract

We extend a quantitative model for low-voltage, slow-wave excitability based on the T-type calcium current (Wang et al. 1991) by juxtaposing it with a Hodgkin-Huxley-like model for fast sodium spiking in the high voltage regime to account for the distinct firing modes of thalamic neurons. We employ bifurcation analysis to illustrate the stimulus-response behavior of the full model under both voltage regimes. The model neuron shows continuous sodium spiking when depolarized sufficiently from rest. Depending on the parameters of calcium current inactivation, there are two types of low-voltage responses to a hyperpolarizing current step: a single rebound low threshold spike (LTS) upon release of the step and periodic LTSs. Bursting is seen as sodium spikes ride the LTS crest. In both cases, we analyze the LTS burst response by projecting its trajectory into a fast/slow phase plane. We also use phase plane methods to show that a potassium A-current shifts the threshold for sodium spikes, reducing the number of fast sodium spikes in an LTS burst. It can also annihilate periodic bursting. We extend the previous work of Rose and Hindmarsh (1989a-c) for a thalamic neuron and propose a simpler model for thalamic activity. We consider burst modulation by using a neuromodulator-dependent potassium leakage conductance as a control parameter. These results correspond with experiments showing that the application of certain neurotransmitters can switch firing modes.

摘要

我们将基于T型钙电流的低电压、慢波兴奋性定量模型(Wang等人,1991年)与高压状态下类似霍奇金-赫胥黎模型的快速钠峰放电模型并列,以解释丘脑神经元的不同放电模式,从而扩展了该模型。我们采用分岔分析来说明全模型在两种电压状态下的刺激-反应行为。模型神经元在从静息状态充分去极化时会出现连续的钠峰放电。根据钙电流失活的参数,对超极化电流阶跃有两种类型的低电压反应:阶跃释放时的单个反弹低阈值尖峰(LTS)和周期性LTS。当钠峰出现在LTS波峰上时会出现爆发。在这两种情况下,我们通过将其轨迹投影到快/慢相平面来分析LTS爆发反应。我们还使用相平面方法表明,钾A电流会改变钠峰的阈值,减少LTS爆发中快速钠峰的数量。它还可以消除周期性爆发。我们扩展了Rose和Hindmarsh(1989a - c)之前关于丘脑神经元的工作,并提出了一个更简单的丘脑活动模型。我们通过使用依赖神经调质的钾泄漏电导作为控制参数来考虑爆发调制。这些结果与实验结果相符,实验表明应用某些神经递质可以切换放电模式。

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