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Effects of electromagnetic induction on vibrational resonance in single neurons and neuronal networks

机译:电磁诱导对单一神经元和神经网络中振动共振的影响

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摘要

In this paper, Vibrational Resonance (VR), in which the response of some dynamical systems to a weak, low frequency signal can be enhanced by the optimal amplitude of high frequency signal, is investigated under the effects of electromagnetic induction in both single neurons and small-world networks. We find that the occurrence of VR in single neurons requires less energy in the presence of electromagnetic induction, although the resonant peak of the response reduces. Besides, VR can be obtained in small-world networks both with and without electromagnetic induction. In small-world neuronal networks, the highest resonance peak of VR enhances with an increase in the probability of adding link in case of without electromagnetic induction. On the other hand, with the increasing of the probability of adding link, VR disappears in the presence of relatively strong electromagnetic induction, while it enhances in the presence of relatively weak electromagnetic induction. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,振动共振(VR),其中一些动力系统到一个弱,低频率信号的响应可以由高频信号的最佳振幅增强,是根据电磁感应的影响,研究了在单神经元和小世界网络。我们发现,VR在单个神经元的发生需要在电磁感应的存在较少的能量,虽然响应的共振峰降低。此外,VR可以在小世界网络既没有电磁感应得到。在小世界神经网络,VR的最高共振峰的增加而增加的情况下链接没有电磁感应的概率提高。在另一方面,与添加链接的概率增加,VR中相对较强的电磁感应的情况下消失,而它相对较弱的电磁感应的存在增强。 (c)2019 Elsevier B.v.保留所有权利。

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