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具有细胞外钾动力学的神经元模型中的多重稳定性。

Multistability in a neuron model with extracellular potassium dynamics.

作者信息

Wu Xing-Xing, Shuai J W

机构信息

Department of Physics and Institute of Theoretical Physics and Astrophysics, Xiamen University, Xiamen 361005, People's Republic of China.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Jun;85(6 Pt 1):061911. doi: 10.1103/PhysRevE.85.061911. Epub 2012 Jun 13.

Abstract

Experiments show a primary role of extracellular potassium concentrations in neuronal hyperexcitability and in the generation of epileptiform bursting and depolarization blocks without synaptic mechanisms. We adopt a physiologically relevant hippocampal CA1 neuron model in a zero-calcium condition to better understand the function of extracellular potassium in neuronal seizurelike activities. The model neuron is surrounded by interstitial space in which potassium ions are able to accumulate. Potassium currents, Na{+}-K{+} pumps, glial buffering, and ion diffusion are regulatory mechanisms of extracellular potassium. We also consider a reduced model with a fixed potassium concentration. The bifurcation structure and spiking frequency of the two models are studied. We show that, besides hyperexcitability and bursting pattern modulation, the potassium dynamics can induce not only bistability but also tristability of different firing patterns. Our results reveal the emergence of the complex behavior of multistability due to the dynamical [K{+}]{o} modulation on neuronal activities.

摘要

实验表明,细胞外钾离子浓度在神经元过度兴奋以及癫痫样爆发和去极化阻滞的产生中起主要作用,且无需突触机制。我们采用在零钙条件下具有生理相关性的海马CA1神经元模型,以更好地理解细胞外钾在神经元癫痫样活动中的作用。模型神经元被间质空间包围,钾离子能够在其中积累。钾电流、钠钾泵、胶质细胞缓冲和离子扩散是细胞外钾的调节机制。我们还考虑了一个钾浓度固定的简化模型。研究了这两个模型的分岔结构和放电频率。我们表明,除了过度兴奋和爆发模式调制外,钾动力学不仅可以诱导双稳态,还可以诱导不同放电模式的三稳态。我们的结果揭示了由于动态的细胞外钾离子浓度调制对神经元活动产生的多稳态复杂行为的出现。

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