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Chin. Phys. B, 2014, Vol. 23(10): 108703    DOI: 10.1088/1674-1056/23/10/108703
INTERDISCIPLINARY PHYSICS AND RELATED AREAS OF SCIENCE AND TECHNOLOGY Prev   Next  

Plasticity-induced characteristic changes of pattern dynamics and the related phase transitions in small-world neuronal networks

Huang Xu-Hui (黄旭辉), Hu Gang (胡岗)
Department of Physics, Beijing Normal University, Beijing 100875, China
Abstract  Phase transitions widely exist in nature and occur when some control parameters are changed. In neural systems, their macroscopic states are represented by the activity states of neuron populations, and phase transitions between different activity states are closely related to corresponding functions in the brain. In particular, phase transitions to some rhythmic synchronous firing states play significant roles on diverse brain functions and disfunctions, such as encoding rhythmical external stimuli, epileptic seizure, etc. However, in previous studies, phase transitions in neuronal networks are almost driven by network parameters (e.g., external stimuli), and there has been no investigation about the transitions between typical activity states of neuronal networks in a self-organized way by applying plastic connection weights. In this paper, we discuss phase transitions in electrically coupled and lattice-based small-world neuronal networks (LBSW networks) under spike-timing-dependent plasticity (STDP). By applying STDP on all electrical synapses, various known and novel phase transitions could emerge in LBSW networks, particularly, the phenomenon of self-organized phase transitions (SOPTs): repeated transitions between synchronous and asynchronous firing states. We further explore the mechanics generating SOPTs on the basis of synaptic weight dynamics.
Keywords:  spatiotemporal pattern      self-organized phase transition      small-world neuronal network      spike-timing-dependent plasticity  
Received:  13 May 2014      Revised:  20 August 2014      Accepted manuscript online: 
PACS:  87.19.lp (Pattern formation: activity and anatomic)  
  87.19.lw (Plasticity)  
  87.15.Zg (Phase transitions)  
  87.19.lj (Neuronal network dynamics)  
Fund: Project supported by the National Natural Science Foundation of China (Grant Nos. 11135001 and 11174034).
Corresponding Authors:  Hu Gang     E-mail:  ganghu@bnu.edu.cn
About author:  87.19.lp; 87.19.lw; 87.15.Zg; 87.19.lj

Cite this article: 

Huang Xu-Hui (黄旭辉), Hu Gang (胡岗) Plasticity-induced characteristic changes of pattern dynamics and the related phase transitions in small-world neuronal networks 2014 Chin. Phys. B 23 108703

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