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Effects of channel noise on synchronization transitions in Newman-Watts neuronal network with time delays

机译:信道噪声对Newman-Watts神经元网络中具有时滞的同步过渡的影响

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In this paper, we numerically study the effect of ion channel noise on the synchronization of delayed Newman-Watts network of stochastic Hodgkin-Huxley neurons. It is found that time delay can induce synchronization transitions only when channel noise intensity is intermediate, and the synchronization transitions become most obvious when channel noise intensity is optimal. As channel noise intensity is varied, the neurons can also exhibit synchronization transitions, and the phenomenon is enhanced when time delay is tuned at around time delays that can induce synchronization transitions. Moreover, this phenomenon becomes most obvious when the value of coupling strength or the value of network randomness is optimal. These results show that channel noise has a subtle regulation effect on the synchronization of the neuronal network. These findings may find potential implications for the normal and pathological functions in the brain and the information processing and transmission in neural systems.
机译:在本文中,我们通过数值研究了离子通道噪声对随机Hodgkin-Huxley神经元延迟Newman-Watts网络同步的影响。结果发现,只有当信道噪声强度处于中等水平时,时延才能引起同步跃迁,而当信道噪声强度达到最佳时,同步跃迁变得最为明显。随着通道噪声强度的变化,神经元也可能表现出同步跃迁,并且当将时延调整到大约可以引起同步跃迁的时延时,这种现象就会加剧。此外,当耦合强度值或网络随机性值最佳时,此现象最明显。这些结果表明,通道噪声对神经网络的同步具有微妙的调节作用。这些发现可能会发现对大脑的正常和病理功能以及神经系统中信息处理和传递的潜在影响。

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