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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Modeling of time delay-induced multiple synchronization behavior of interneuronal networks with the Izhikevich neuron model
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Modeling of time delay-induced multiple synchronization behavior of interneuronal networks with the Izhikevich neuron model

机译:Izhikevich神经元模型对神经网络间时延诱导的多重同步行为建模

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The synchronization behavior of the networks of fast-spiking interneurons is investigated by using one of the phenomenological neural network models, the Izhikevich model. Since electrical and chemical synapses exist within the same networks of inhibitory cells, delayed inhibitory and fast electrical synapses are coupled in the simulations. The effects of hybrid synapses in promoting synchronous activity in neural networks are investigated with short and long time delays. The distinct frequency bands observed in electroencephalography and magnetoencephalography signals are determined using the raster plots of neural networks. For quantitative comparison of activities in networks, the degree of synchrony in the network is calculated. The influences of several network parameters such as inhibitory synaptic strength, electrical synaptic strength, synaptic time constant, and time delay on the network activity are investigated. It is observed that the coupling of electrical and chemical synapses promotes multiple synchronous behaviors in the network. Another important finding is that even though the synchronization measure is highly dependent on inhibitory synaptic strengths at low electrical synaptic strength and synaptic time constant, not much dependence on inhibitory synaptic strengths is observed at high electrical synaptic strength.
机译:通过使用一种现象学神经网络模型Izhikevich模型,研究了快速加标中枢神经网络的同步行为。由于电和化学突触存在于抑制细胞的同一网络中,因此在模拟中将延迟的抑制突触和快速电突触耦合在一起。研究了短时间和长时间延迟的混合突触在促进神经网络同步活动中的作用。使用神经网络的栅格图确定在脑电图和脑磁图信号中观察到的不同频段。为了定量比较网络中的活动,计算网络中的同步程度。研究了抑制性突触强度,电突触强度,突触时间常数和时间延迟等网络参数对网络活动的影响。观察到电和化学突触的耦合促进了网络中的多个同步行为。另一个重要发现是,即使同步措施在低电突触强度和突触时间常数下高度依赖于抑制突触强度,在高电突触强度下也观察不到抑制突触强度的依赖性。

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