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在真实建模的皮层神经元网络中自组织的双态膜电位转变

Self-organized two-state membrane potential transitions in a network of realistically modeled cortical neurons.

作者信息

Kang Siu, Kitano Katsunori, Fukai Tomoki

机构信息

Department of Information-Communication Engineering, Tamagawa University, 6-1-1 Machidashi, Tamagawa-gakuen, Tokyo, Japan.

出版信息

Neural Netw. 2004 Apr;17(3):307-12. doi: 10.1016/j.neunet.2003.11.010.

Abstract

Recent studies have revealed that in vivo cortical neurons show spontaneous transitions between two subthreshold levels of the membrane potentials, 'up' and 'down' states. The neural mechanism of generating those spontaneous states transitions, however, remains unclear. Recent electrophysiological studies have suggested that those state transitions may occur through activation of a hyperpolarization-activated cation current (H-current), possibly by inhibitory synaptic inputs. Here, we demonstrate that two-state membrane potential fluctuations similar to those exhibited by in vivo neurons can be generated through a spike-timing-dependent self-organizing process in a network of inhibitory neurons and excitatory neurons expressing the H-current.

摘要

最近的研究表明,体内皮质神经元的膜电位在两个阈下水平之间呈现自发转换,即“上”状态和“下”状态。然而,产生这些自发状态转换的神经机制仍不清楚。最近的电生理研究表明,这些状态转换可能通过超极化激活阳离子电流(H电流)的激活而发生,可能是由抑制性突触输入引起的。在这里,我们证明,在表达H电流的抑制性神经元和兴奋性神经元网络中,通过依赖于尖峰时间的自组织过程,可以产生类似于体内神经元所表现出的双态膜电位波动。

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