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Autapse-induced multiple coherence resonance in single neurons and neuronal networks

机译:Autapse诱导单个神经元和神经元网络中的多个相干共振

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摘要

We study the effects of electrical and chemical autapse on the temporal coherence or firing regularity of single stochastic Hodgkin-Huxley neurons and scale-free neuronal networks. Also, we study the effects of chemical autapse on the occurrence of spatial synchronization in scale-free neuronal networks. Irrespective of the type of autapse, we observe autaptic time delay induced multiple coherence resonance for appropriately tuned autaptic conductance levels in single neurons. More precisely, we show that in the presence of an electrical autapse, there is an optimal intensity of channel noise inducing the multiple coherence resonance, whereas in the presence of chemical autapse the occurrence of multiple coherence resonance is less sensitive to the channel noise intensity. At the network level, we find autaptic time delay induced multiple coherence resonance and synchronization transitions, occurring at approximately the same delay lengths. We show that these two phenomena can arise only at a specific range of the coupling strength, and that they can be observed independently of the average degree of the network.
机译:我们研究了电气和化学自给对单个随机霍奇金-赫克斯利神经元和无鳞神经元网络的时间连贯性或激发规律的影响。此外,我们研究了化学自给对无标度神经元网络中空间同步发生的影响。不管autapse的类型如何,我们都观察到针对单个神经元中适当调整的autaptic电导水平,Autaptic时间延迟引起了多个相干共振。更精确地,我们表明在存在电自足的情况下,存在诱导多相干共振的最佳通道噪声强度,而在存在化学自足的情况下,多相干共振的发生对通道噪声强度较不敏感。在网络级别,我们发现自发时间延迟引起了多个相干共振和同步跃迁,它们以大约相同的延迟长度发生。我们表明,这两种现象只能在耦合强度的特定范围内出现,并且可以独立于网络的平均程度进行观察。

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