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混沌的途径由混合尖峰神经元模型中的不连续重置过程引起。

Routes to Chaos Induced by a Discontinuous Resetting Process in a Hybrid Spiking Neuron Model.

机构信息

Department of Computer Science, Chiba Institute of Technology, 2-17-1 Tsudanuma, Narashino, Chiba, 275-0016, Japan.

Graduate School of Applied Informatics, University of Hyogo, 7-1-28 Chuo-ku, Kobe, Hyogo, 650-8588, Japan.

出版信息

Sci Rep. 2018 Jan 10;8(1):379. doi: 10.1038/s41598-017-18783-z.

Abstract

Several hybrid spiking neuron models combining continuous spike generation mechanisms and discontinuous resetting processes following spiking have been proposed. The Izhikevich neuron model, for example, can reproduce many spiking patterns. This model clearly possesses various types of bifurcations and routes to chaos under the effect of a state-dependent jump in the resetting process. In this study, we focus further on the relation between chaotic behaviour and the state-dependent jump, approaching the subject by comparing spiking neuron model versions with and without the resetting process. We first adopt a continuous two-dimensional spiking neuron model in which the orbit in the spiking state does not exhibit divergent behaviour. We then insert the resetting process into the model. An evaluation using the Lyapunov exponent with a saltation matrix and a characteristic multiplier of the Poincar'e map reveals that two types of chaotic behaviour (i.e. bursting chaotic spikes and near-period-two chaotic spikes) are induced by the resetting process. In addition, we confirm that this chaotic bursting state is generated from the periodic spiking state because of the slow- and fast-scale dynamics that arise when jumping to the hyperpolarization and depolarization regions, respectively.

摘要

已经提出了几种混合尖峰神经元模型,这些模型结合了连续尖峰产生机制和尖峰后不连续重置过程。例如,Izhikevich 神经元模型可以再现许多尖峰模式。在重置过程中状态依赖跳跃的影响下,该模型明显具有各种类型的分岔和通向混沌的路径。在这项研究中,我们进一步关注混沌行为与状态依赖跳跃之间的关系,通过比较具有和不具有重置过程的尖峰神经元模型版本来探讨这个问题。我们首先采用了一个连续的二维尖峰神经元模型,其中在尖峰状态下的轨道不会表现出发散行为。然后,我们将重置过程插入到模型中。使用带有跳跃矩阵的 Lyapunov 指数和 Poincaré 映射的特征乘数进行评估表明,重置过程会引发两种类型的混沌行为(即爆发混沌尖峰和近周期二混沌尖峰)。此外,我们还证实,这种混沌爆发状态是由于分别跳跃到超极化和去极化区域时出现的慢和快尺度动力学而从周期性尖峰状态产生的。

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