首页> 外文期刊>Fluctuation and Noise Letters: FNL: An Interdisciplinary Scientific Journal on Random Processes in Physical, Biological and Technological Systems >Channel Noise-Enhanced Synchronization Transitions Induced by Time Delay in Adaptive Neuronal Networks with Spike-Timing-Dependent Plasticity
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Channel Noise-Enhanced Synchronization Transitions Induced by Time Delay in Adaptive Neuronal Networks with Spike-Timing-Dependent Plasticity

机译:具有尖峰定时依赖性可塑性的自适应神经元网络中时滞的频率噪声增强同步转换

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摘要

In this paper, we numerically study the effect of channel noise on synchronization transitions induced by time delay in adaptive scale-free Hodgkin-Huxley neuronal networks with spiketiming-dependent plasticity (STDP). It is found that synchronization transitions by time delay vary as channel noise intensity is changed and become most pronounced when channel noise intensity is optimal. This phenomenon depends on STDP and network average degree, and it can be either enhanced or suppressed as network average degree increases depending on channel noise intensity. These results show that there are optimal channel noise and network average degree that can enhance the synchronization transitions by time delay in the adaptive neuronal networks. These findings could be helpful for better understanding of the regulation effect of channel noise on synchronization of neuronal networks. They could find potential implications for information transmission in neural systems.
机译:在本文中,我们在数值上研究了信道噪声对自适应尺度的霍奇金 - Huxley网络时间延迟诱导的同步转变的影响,具有尖峰依赖性可塑性(STDP)。 结果发现,当信道噪声强度最佳时,通过时间延迟随时间延迟变化随着频道噪声强度而变化。 这种现象取决于STDP和网络平均程度,并且由于网络平均度因信道噪声强度而增加,因此可以增强或抑制。 这些结果表明,有最佳的信道噪声和网络平均程度,可以通过自适应神经网络中的时间延迟增强同步转换。 这些发现可以有助于更好地理解通道噪声对神经元网络同步的调控作用。 他们可以找到对神经系统中信息传输的潜在影响。

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