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In-phase burst synchronization and rhythm dynamics in a two-layer neuronal network are studied. A quantitative characteristic, the width factor, is introduced to describe the rhythm dynamics of an individual neuron, and the average width factor is used to characterize the rhythm dynamics of a neuronal network. In-phase synchronization can be reached by changing the value of the inter-coupling strengths for higher inter-connection probability of different sub-networks. And the bursting type of the network can transform from the short bursting to the long one for higher inter-connection probability of different sub-networks. |
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