Desynchronization in an ensemble of globally coupled chaotic bursting neuronal oscillators by dynamic delayed feedback control

Y. Che, Tingting Yang, R. Li, Huiyan Li, Chunxiao Han, Jiang Wang, Xile Wei
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引用次数: 5

Abstract

In this paper, we propose a dynamic delayed feedback control approach for desynchronization of chaotic-bursting synchronous activities in an ensemble of globally coupled neuronal oscillators. We demonstrate that the difference signal between an ensemble's mean field and its time delayed state, filtered and fed back to the ensemble, can suppress the self-synchronization in the ensemble. These individual units are decoupled and stabilized at the desired desynchronized states while the stimulation signal reduces to the noise level. The effectiveness of the method is illustrated by examples of two different populations of globally coupled chaotic-bursting neurons. The proposed method has potential for mild, effective and demand-controlled therapy of neurological diseases characterized by pathological synchronization.
基于动态延迟反馈控制的全局耦合混沌破裂神经元振子集合的去同步
在本文中,我们提出了一种动态延迟反馈控制方法,用于全局耦合神经元振荡器集合中混沌爆发同步活动的去同步。我们证明了将集合的平均场与其延迟状态之间的差信号进行滤波并反馈到集合中,可以抑制集合中的自同步。当刺激信号降低到噪声水平时,这些单独的单元被解耦并稳定在所需的非同步状态。通过两种不同的全局耦合混沌爆发神经元种群的实例说明了该方法的有效性。该方法对以病理同步性为特征的神经系统疾病具有轻度、有效和需求控制的治疗潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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