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Dispersion and time delay effects in synchronized spike–burst networks

机译:同步尖峰脉冲网络中的色散和时间延迟效应

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摘要

We study spike–burst neural activity and investigate its transitions to synchronized states under electrical coupling. Our reported results include the following: (1) Synchronization of spike–burst activity is a multi-time scale phenomenon and burst synchrony is easier to achieve than spike synchrony. (2) Synchrony of networks with time-delayed connections can be achieved at lower coupling strengths than within the same network with instantaneous couplings. (3) The introduction of parameter dispersion into the network destroys the existence of synchrony in the strict sense, but the network dynamics in major regimes of the parameter space can still be effectively captured by a mean field approach if the couplings are excitatory. Our results on synchronization of spiking networks are general of nature and will aid in the development of minimal models of neuronal populations. The latter are the building blocks of large scale brain networks relevant for cognitive processing.
机译:我们研究峰值-爆发神经活动,并研究其在电耦合下向同步状态的转变。我们报告的结果包括:(1)尖峰-爆发活动的同步是一个多时间尺度的现象,突发同步比尖峰同步更容易实现。 (2)与具有瞬时耦合的同一个网络相比,具有延时连接的网络可以以更低的耦合强度实现同步。 (3)将参数分散引入网络严格意义上破坏了同步的存在,但是如果耦合是兴奋的,则可以通过均值场方法有效地捕获参数空间主要状态下的网络动力学。我们关于尖峰网络同步的结果是大自然的结论,将有助于开发神经元种群的最小模型。后者是与认知处理相关的大规模大脑网络的构建块。

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