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Cluster synchronization and rhythm dynamics in a complex neuronal network with chemical synapses

机译:具有化学突触的复杂神经元网络中的簇同步和节律动力学

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Cluster synchronization and rhythm dynamics are studied for a complex neuronal network with the small world structure connected by chemical synapses. Cluster synchronization is considered as that in-phase burst synchronization occurs inside each group of the network but diversity may take place among different groups. It is found that both one-cluster and multi-cluster synchronization may exist for chemically excitatory coupled neuronal networks, however, only multi-cluster synchronization can be achieved for chemically inhibitory coupled neuronal networks. The rhythm dynamics of bursting neurons can be described by a quantitative characteristic, the width factor. We also study the effects of coupling schemes, the intrinsic property of neurons and the network topology on the rhythm dynamics of the small world neuronal network. It is shown that the short bursting type is robust with respect to the coupling strength and the coupling scheme. As for the network topology, more links can only change the type of long bursting neurons, and short bursting neurons are also robust to the link numbers.
机译:研究了一个复杂的神经元网络的簇同步和节奏动力学,该网络具有通过化学突触连接的小世界结构。群集同步被认为是因为同相脉冲串同步发生在网络的每个组内部,但是分集可能会在不同组之间发生。已经发现,对于化学兴奋性耦合的神经元网络,可能同时存在一个集群和多个集群的同步,但是,对于化学抑制性耦合的神经元网络,只能实现多集群的同步。爆发性神经元的节律动力学可以通过定量特征宽度因子来描述。我们还研究了耦合方案,神经元的固有属性以及网络拓扑对小世界神经元网络节奏动态的影响。示出了短脉冲串类型在耦合强度和耦合方案方面是鲁棒的。对于网络拓扑,更多的链接只能更改长脉冲爆发神经元的类型,而短脉冲爆发神经元也对链接数具有鲁棒性。

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