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Spatial coherence resonance on diffusive and small-world networks of Hodgkin-Huxley neurons

机译:Hodgkin-Huxley神经元的扩散和小世界网络上的空间相干共振

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Spatial coherence resonance in a spatially extended system that is locally modeled by Hodgkin-Huxley (HH) neurons is studied in this paper. We focus on the ability of additive temporally and spatially uncorrelated Gaussian noise to extract a particular spatial frequency of excitatory waves in the medium, whereby examining the impact of diffusive and small-world network topology that determines the interactions amongst coupled HH neurons. We show that there exists an intermediate noise intensity that is able to extract a characteristic spatial frequency of the system in a resonant manner provided the latter is diffusively coupled, thus indicating the existence of spatial coherence resonance. However, as the diffusive topology of the medium is relaxed via the introduction of shortcut links introducing small-world properties amongst coupled HH neurons, the ability of additive Gaussian noise to evoke ordered excitatory waves deteriorates rather spectacularly, leading to the decoherence of the spatial dynamics and with it related absence of spatial coherence resonance. In particular, already a minute fraction of shortcut links suffices to substantially disrupt coherent pattern formation in the examined system. (C) 2008 American Institute of Physics.
机译:本文研究了由霍奇金-赫克斯利(HH)神经元局部建模的空间扩展系统中的空间相干共振。我们专注于在时间和空间上不相关的高斯噪声相加的能力,以提取介质中兴奋性波的特定空间频率,从而研究确定耦合HH神经元之间相互作用的扩散和小世界网络拓扑的影响。我们表明,存在一个中间噪声强度,如果该介质是扩散耦合的,则能够以共振的方式提取系统的特征空间频率,从而表明存在空间相干共振。但是,由于通过引入快捷链接在耦合的HH神经元之间引入小世界特性而放松了介质的扩散拓扑,加性高斯噪声引起有序励磁波的能力显着下降,从而导致空间动力学的去相干性与之相关的是缺乏空间相干共振。尤其是,已经存在的一小部分快捷链接就足以基本上破坏所检查系统中的连贯图案的形成。 (C)2008美国物理研究所。

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