拟周期强迫Hindmarsh-Rose神经元的奇异非混沌爆发

W. Lim, Sang-Yoon Kim
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引用次数: 2

摘要

我们通过改变准周期刺激下Hindmarsh-Rose神经元的直流刺激,研究了该神经元从静止状态到爆发状态的转变。在这种准周期强迫情况下,发现了一种新型的奇异非混沌爆发态,发生在混沌爆发态和静默爆发态之间。这与周期性强制情况相反,在周期性强制情况下,沉默状态直接转变为混沌爆发状态。利用准周期力的合理近似,研究了这种SN破裂状态的形成机制。因此,发现了一个光滑环面(对应于静默状态)通过相相关的次临界倍周期分岔转变为SN爆发吸引子。这些SN爆发状态以及混沌爆发状态的特征包括爆发间隔、爆发长度和每次爆发中的尖峰数。发现这两种爆破状态都是非周期的复杂爆破状态。因此,非周期复杂爆发可能是由两种具有奇怪几何形状的动态不同状态(一种是混沌状态,另一种是非混沌状态)产生的。因此,除了混沌爆发外,SN爆发可能成为生物体中普遍存在的复杂生理节律的动力学起源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strange Nonchaotic Bursting in A Quasiperiodially-Forced Hindmarsh-Rose Neuron
We study the transition from a silent state to a bursting state by varying the dc stimulus in the Hindmarsh-Rose neuron under quasiperiodic stimulation. For this quasiperiodically forced case, a new type of strange nonchaotic (SN) bursting state is found to occur between the silent state and the chaotic bursting state. This is in contrast to the periodically forced case where the silent state transforms directly to a chaotic bursting state. Using a rational approximation to the quasiperiodic forcing, the mechanism for the appearance of such an SN bursting state is investigated. Thus, a smooth torus (corresponding to a silent state) is found to transform to an SN bursting attractor through a phase-dependent subcritical period-doubling bifurcation. These SN bursting states, together with chaotic bursting states, are characterized in terms of the interburst interval, the bursting length, and the number of spikes in each burst. Both bursting states are found to be aperiodic complex ones. Consequently, aperiodic complex burstings may result from two dynamically different states with strange geometry (one is chaotic and the other one is nonchaotic). Thus, in addition to chaotic burstings, SN burstings may become a dynamical origin for complex physiological rhythms which are ubiquitous in organisms.
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