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Transient Resetting: A Novel Mechanism for Synchrony and Its Biological Examples

机译:瞬时重置:一种新的同步机制及其生物学实例

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The study of synchronization in biological systems is essential for the understanding of the rhythmic phenomena of living organisms at both molecular and cellular levels. In this paper, by using simple dynamical systems theory, we present a novel mechanism, named transient resetting, for the synchronization of uncoupled biological oscillators with stimuli. This mechanism not only can unify and extend many existing results on (deterministic and stochastic) stimulus-induced synchrony, but also may actually play an important role in biological rhythms. We argue that transient resetting is a possible mechanism for the synchronization in many biological organisms, which might also be further used in the medical therapy of rhythmic disorders. Examples of the synchronization of neural and circadian oscillators as well as a chaotic neuron model are presented to verify our hypothesis.
机译:对生物系统同步性的研究对于在分子和细胞水平上了解活生物体的节律现象至关重要。在本文中,通过使用简单的动力学系统理论,我们提出了一种新颖的机制,称为瞬态重置,用于将未耦合的生物振荡器与刺激进行同步。这种机制不仅可以统一和扩展(确定性和随机性)刺激诱发的同步性的许多现有结果,而且实际上可能在生物节律中起重要作用。我们认为,短暂复位是许多生物体内同步的可能机制,也可能在节奏性疾病的医学治疗中进一步使用。提出了神经和生物钟振荡器以及混沌神经元模型的同步示例,以验证我们的假设。

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