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具有混合突触的神经元网络中延迟诱导的同步间歇转变。

Delay-induced intermittent transition of synchronization in neuronal networks with hybrid synapses.

机构信息

Department of Dynamics and Control, Beihang University, Beijing 100191, China.

出版信息

Chaos. 2011 Mar;21(1):013123. doi: 10.1063/1.3562547.

Abstract

We study the dependence of synchronization transitions in scale-free networks of bursting neurons with hybrid synapses on the information transmission delay and the probability of inhibitory synapses. It is shown that, irrespective of the probability of inhibitory synapses, the delay always plays a subtle role during synchronization transition of the scale-free neuronal networks. In particular, regions of irregular and regular propagating excitatory fronts appear intermittently as the delay increases. These delay-induced synchronization transitions are manifested as well-expressed minima in the measure for spatiotemporal synchrony. In addition, it is found that, for smaller and larger probability of inhibitory synapses, intermittent synchronization transition is relatively profound, while for the moderate probability of inhibitory synapses, synchronization transition seems less profound. More interestingly, it is found that as the probability of inhibitory synapses is large, regions of synchronization are upscattering.

摘要

我们研究了具有混合突触的爆发神经元无标度网络中同步跃迁对信息传输延迟和抑制性突触概率的依赖性。结果表明,无论抑制性突触的概率如何,延迟在无标度神经元网络的同步跃迁中总是起着微妙的作用。特别是,随着延迟的增加,不规则和规则传播的兴奋性前沿的区域间歇性地出现。这些由延迟引起的同步跃迁表现为时空同步度量中表达良好的最小值。此外,还发现,对于较小和较大的抑制性突触概率,间歇性同步跃迁相对较深,而对于中等抑制性突触概率,同步跃迁似乎不那么深。更有趣的是,我们发现随着抑制性突触概率的增大,同步区域呈散射状。

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