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Phase-Noise-Induced Resonance in Arrays of Coupled Excitable Neural Models

机译:耦合激励神经模型阵列中的相位噪声引起的共振

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Recently, it is observed that, in a single neural model, phase noise (time-varying signal phase) arising from an external stimulating signal can induce regular spiking activities even if the signal is subthreshold. In addition, it is also uncovered that there exists an optimal phase noise intensity at which the spiking rhythm coincides with the frequency of the subthreshold signal, resulting in a phase-noise-induced resonance phenomenon. However, neurons usually do not work alone, but are connected in the form of arrays or blocks. Therefore, we study the spiking activity induced by phase noise in arrays of globally and locally coupled excitable neural models. We find that there also exists an optimal phase noise intensity for generating large neural response and such an optimal value is significantly decreased compared to an isolated single neuron case, which means the detectability in response to the subthreshold signal of neurons is sharply improved because of the coupling. In addition, we reveal two new resonance behaviors in the neuron ensemble with the presence of phase noise: there exist optimal values of both coupling strength and system size, where the coupled neurons generate regular spikes under subthreshold stimulations, which are called as coupling strength and system size resonance, respectively. Finally, the dependence of phase-noise-induced resonance on signal frequency is also examined.
机译:最近,观察到,在单个神经模型中,即使信号低于阈值,由外部刺激信号引起的相位噪声(随时间变化的信号相位)也可以引起规律的尖峰活动。此外,还发现存在最佳的相位噪声强度,在该频率处,尖峰节奏与亚阈值信号的频率一致,从而导致相位噪声引起的共振现象。但是,神经元通常不是单独工作,而是以阵列或块的形式连接。因此,我们研究了在全局和局部耦合的可激发神经模型阵列中由相位噪声引起的尖峰活动。我们发现,还存在一个用于产生较大神经反应的最佳相位噪声强度,与孤立的单个神经元情况相比,该最佳值明显降低,这意味着对神经元亚阈值信号的可检测性大大提高了,因为耦合。此外,我们揭示了在存在相位噪声的情况下神经元集合中的​​两个新的共振行为:存在耦合强度和系统大小的最佳值,其中耦合神经元在低于阈值的刺激下生成规则的尖峰,称为耦合强度和系统大小共振。最后,还检查了相位噪声引起的共振对信号频率的依赖性。

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