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Erschienen in: Cognitive Neurodynamics 1/2015

01.02.2015 | Brief Communication

Local and global synchronization transitions induced by time delays in small-world neuronal networks with chemical synapses

verfasst von: Haitao Yu, Jiang Wang, Jiwei Du, Bin Deng, Xile Wei

Erschienen in: Cognitive Neurodynamics | Ausgabe 1/2015

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Abstract

Effects of time delay on the local and global synchronization in small-world neuronal networks with chemical synapses are investigated in this paper. Numerical results show that, for both excitatory and inhibitory coupling types, the information transmission delay can always induce synchronization transitions of spiking neurons in small-world networks. In particular, regions of in-phase and out-of-phase synchronization of connected neurons emerge intermittently as the synaptic delay increases. For excitatory coupling, all transitions to spiking synchronization occur approximately at integer multiples of the firing period of individual neurons; while for inhibitory coupling, these transitions appear at the odd multiples of the half of the firing period of neurons. More importantly, the local synchronization transition is more profound than the global synchronization transition, depending on the type of coupling synapse. For excitatory synapses, the local in-phase synchronization observed for some values of the delay also occur at a global scale; while for inhibitory ones, this synchronization, observed at the local scale, disappears at a global scale. Furthermore, the small-world structure can also affect the phase synchronization of neuronal networks. It is demonstrated that increasing the rewiring probability can always improve the global synchronization of neuronal activity, but has little effect on the local synchronization of neighboring neurons.

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Metadaten
Titel
Local and global synchronization transitions induced by time delays in small-world neuronal networks with chemical synapses
verfasst von
Haitao Yu
Jiang Wang
Jiwei Du
Bin Deng
Xile Wei
Publikationsdatum
01.02.2015
Verlag
Springer Netherlands
Erschienen in
Cognitive Neurodynamics / Ausgabe 1/2015
Print ISSN: 1871-4080
Elektronische ISSN: 1871-4099
DOI
https://doi.org/10.1007/s11571-014-9310-4

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