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Propagation of Spiking and Burst-Spiking Synchronous States in a Feed-Forward Neuronal Network |
ZHANG Xi1**, HUANG Hong-Bin2, LI Pei-Jun1, WU Fang-Ping1, WU Wang-Jie1, JIANG Min1 |
1College of Sciences, PLA University of Science and Technology, Nanjing 211101 2Department of Physics, Southeast University, Nanjing 210096
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Cite this article: |
ZHANG Xi, HUANG Hong-Bin, LI Pei-Jun et al 2012 Chin. Phys. Lett. 29 120501 |
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Abstract Neuronal firing that carries information can propagate stably in neuronal networks. One important feature of the stable states is their spatiotemporal correlation (STC) developed in the propagation. The propagation of synchronous states of spiking and burst-spiking neuronal activities in a feed-forward neuronal network with high STC is studied. Different dynamic regions and synchronous regions of the second layer are clarified for spiking and burst-spiking neuronal activities. By calculating correlation, it is found that five layers are needed for stable propagation. Synchronous regions of the 4th layer and the 10th layer are compared.
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Received: 01 April 2012
Published: 04 March 2013
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PACS: |
05.45.Xt
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(Synchronization; coupled oscillators)
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87.19.lj
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(Neuronal network dynamics)
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87.18.Sn
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(Neural networks and synaptic communication)
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Abstract
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