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Synchronization of 'light-sensitive' Hindmarsh-Rose neurons

机译:“光敏感”的Hindmarsh-Rose神经元的同步

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The suprachiasmatic nucleus is a network of synchronized neurons whose electrical activity follows a 24 h cycle. The synchronization phenomenon (among these neurons) is not completely understood. In this work we study, via experiments and numerical simulations, the phenomenon in which the synchronization threshold changes under the influence of an external (bifurcation) parameter in coupled Hindmarsh-Rose neurons. This parameter "shapes" the activity of the individual neurons the same way as some neurons in the brain react to light. We corroborate this experimental finding with numerical simulations by quantifying the amount of synchronization using Pearson's correlation coefficient. In order to address the local stability problem of the synchronous state, Floquet theory is applied in the case where the dynamic systems show continuous periodic solutions. These results show how the sufficient coupling strength for synchronization between these neurons is affected by an external cue (e.g. light). (c) 2017 Elsevier B.V. All rights reserved.
机译:视交叉上核是同步神经元的网络,其电活动遵循24小时周期。 (在这些神经元中)同步现象尚未完全理解。在这项工作中,我们通过实验和数值模拟研究了耦合Hindmarsh-Rose神经元中同步阈值在外部(分叉)参数的影响下发生变化的现象。该参数“塑造”单个神经元的活动,就像大脑中某些神经元对光做出反应的方式一样。通过使用Pearson相关系数量化同步量,我们通过数值模拟证实了这一实验结果。为了解决同步状态的局部稳定性问题,在动态系统显示连续周期解的情况下,应用了Floquet理论。这些结果表明外部线索(例如光)如何影响这些神经元之间同步的足够的耦合强度。 (c)2017 Elsevier B.V.保留所有权利。

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