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突发同步跃迁在子网神经元网络中的出现。

Burst synchronization transitions in a neuronal network of subnetworks.

机构信息

Zhou Pei-Yuan Center for Applied Mathematics, Tsinghua Univeristy, Beijing 100084, People's Republic of China.

出版信息

Chaos. 2011 Mar;21(1):016110. doi: 10.1063/1.3559136.

Abstract

In this paper, the transitions of burst synchronization are explored in a neuronal network consisting of subnetworks. The studied network is composed of electrically coupled bursting Hindmarsh-Rose neurons. Numerical results show that two types of burst synchronization transitions can be induced not only by the variations of intra- and intercoupling strengths but also by changing the probability of random links between different subnetworks and the number of subnetworks. Furthermore, we find that the underlying mechanisms for these two bursting synchronization transitions are different: one is due to the change of spike numbers per burst, while the other is caused by the change of the bursting type. Considering that changes in the coupling strengths and neuronal connections are closely interlaced with brain plasticity, the presented results could have important implications for the role of the brain plasticity in some functional behavior that are associated with synchronization.

摘要

本文探讨了由子网组成的神经元网络中突发同步的转变。所研究的网络由电耦合爆发 Hindmarsh-Rose 神经元组成。数值结果表明,不仅可以通过改变内、外耦合强度,还可以通过改变不同子网之间随机连接的概率和子网的数量来诱导两种类型的突发同步转变。此外,我们发现这两种突发同步转变的潜在机制是不同的:一种是由于每个爆发的脉冲数的变化,另一种是由于爆发类型的变化引起的。考虑到耦合强度和神经元连接的变化与大脑可塑性密切相关,所提出的结果可能对大脑可塑性在与同步相关的某些功能行为中的作用具有重要意义。

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