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Transition from double coherence resonances to single coherence resonance in a neuronal network with phase noise

机译:具有相位噪声的神经元网络中从双相干共振到单相干共振的过渡

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The effect of phase noise on the coherence dynamics of a neuronal network composed of FitzHugh-Nagumo (FHN) neurons is investigated. Phase noise can induce dissimilar coherence resonance (CR) effects for different coupling strength regimes. When the coupling strength is small, phase noise can induce double CRs. One corresponds to the average frequency of phase noise, and the other corresponds to the intrinsic firing frequency of the FHN neuron. When the coupling strength is large enough, phase noise can only induce single CR, and the CR corresponds to the intrinsic firing frequency of the FHN neuron. The results show a transition from double CRs to single CR with the increase in the coupling strength. The transition can be well interpreted based on the dynamics of a single neuron stimulated by both phase noise and the coupling current. When the coupling strength is small, the coupling current is weak, and phase noise mainly determines the dynamics of the neuron. Moreover, the phase-noise-induced double CRs in the neuronal network are similar to the phase-noise-induced double CRs in an isolated FHN neuron. When the coupling strength is large enough, the coupling current is strong and plays a key role in the occurrence of the single CR in the network. The results provide a novel phenomenon and may have important implications in understanding the dynamics of neuronal networks. (C) 2015 AIP Publishing LLC.
机译:研究了相位噪声对由FitzHug-Nagumo(FHN)神经元组成的神经元网络的相干动力学的影响。对于不同的耦合强度方案,相位噪声会引起相异的相干共振(CR)效应。当耦合强度较小时,相位噪声会引起双CR。一个对应于相位噪声的平均频率,另一个对应于FHN神经元的固有触发频率。当耦合强度足够大时,相位噪声只能感应单个CR,并且CR对应于FHN神经元的固有触发频率。结果表明,随着耦合强度的增加,从双CR过渡到单CR。基于由相位噪声和耦合电流共同刺激的单个神经元的动力学,可以很好地解释这种转变。当耦合强度较小时,耦合电流较弱,并且相位噪声主要决定了神经元的动力学。此外,神经元网络中的相位噪声诱导的双CR类似于分离的FHN神经元中的相位噪声诱导的双CR。当耦合强度足够大时,耦合电流就很强,并且在网络中单个CR的发生中起关键作用。结果提供了一种新颖的现象,并且可能在理解神经元网络的动力学方面具有重要意义。 (C)2015 AIP Publishing LLC。

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