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Periodic coupling strength-dependent multiple coherence resonance by time delay in Newman-Watts neuronal networks

机译:纽曼-瓦茨神经网络中时滞的周期性依赖于强度的多重相干共振

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Recently, multiple coherence resonance induced by time delay has been observed in neuronal networks with constant coupling strength. In this paper, by employing Newman-Watts Hodgkin-Huxley neuron networks with time-periodic coupling strength, we study how the temporal coherence of spiking behavior and coherence resonance by time delay change when the frequency of periodic coupling strength is varied. It is found that delay induced coherence resonance is dependent on periodic coupling strength and increases when the frequency of periodic coupling strength increases. Periodic coupling strength can also induce multiple coherence resonance, and the coherence resonance occurs when the frequency of periodic coupling strength is approximately multiple of the spiking frequency. These results show that for periodic coupling strength time delay can more frequently optimize the temporal coherence of spiking activity, and periodic coupling strength can repetitively optimize the temporal coherence of spiking activity as well. Frequency locking may be the mechanism for multiple coherence resonance induced by periodic coupling strength. These findings imply that periodic coupling strength is more efficient for enhancing the temporal coherence of spiking activity of neuronal networks, and thus it could play a more important role in improving the time precision of information processing and transmission in neural networks.
机译:最近,在具有恒定耦合强度的神经元网络中观察到了由时延引起的多重相干共振。在本文中,通过使用具有时间-周期耦合强度的纽曼-瓦特霍奇金-赫克斯利神经网络,我们研究了当周期性耦合强度的频率变化时,尖峰行为的时间相干性和时延引起的相干共振如何变化。发现延迟引起的相干共振取决于周期性耦合强度,并且当周期性耦合强度的频率增加时增加。周期性耦合强度还可以引起多重相干共振,并且当周期性耦合强度的频率大约是尖峰频率的倍数时,就会发生相干共振。这些结果表明,对于周期性耦合强度,时间延迟可以更频繁地优化尖峰活动的时间连贯性,而周期性耦合强度也可以重复地优化尖峰活动的时间连贯性。频率锁定可能是周期性耦合强度引起的多重相干共振的机制。这些发现暗示周期性的耦合强度对于增强神经网络的尖峰活动的时间连贯性是更有效的,因此在提高神经网络中信息处理和传输的时间精度方面可以发挥更重要的作用。

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