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Phase synchronizing in Hindmarsh-Rose neural networks with delayed chemical coupling

机译:具有延迟化学耦合的Hindmarsh-Rose神经网络中的相位同步

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Although diffusive electrical connections in neuronal networks are instantaneous, excitatory/inhibitory couplings via chemical synapses encompass a transmission time-delay. In this paper neural networks with instantaneous electrical couplings and time-delayed excitatory/inhibitory chemical connections are considered and scaling of the spike phase synchronization with the unified time-delay in the network is investigated. The findings revealed that in both excitatory and inhibitory chemical connections, the phase synchronization could be enhanced by introducing time-delay. The role of the variability of the neuronal external current in the phase synchronization is also investigated. As individual neuron models, Hindmarsh-Rose model is adopted and the network structure of the electrical and chemical connections is considered to be Watts-Strogatz and directed random networks, respectively.
机译:尽管神经元网络中的扩散电连接是瞬时的,但通过化学突触进行的兴奋性/抑制性偶联涵盖了传输时延。在本文中,考虑了具有瞬时电耦合和时滞的兴奋性/抑制性化学连接的神经网络,并研究了具有统一时滞的尖峰相位同步的定标。研究结果表明,在兴奋性和抑制性化学连接中,都可以通过引入时间延迟来增强相位同步。还研究了神经元外部电流的可变性在相位同步中的作用。作为单个神经元模型,采用Hindmarsh-Rose模型,并且电连接和化学连接的网络结构分别视为Watts-Strogatz和有向随机网络。

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