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Oscillatory phenomena in hippocampal CA3 model with excitatory and inhibitory neurons

机译:具有兴奋性和抑制性神经元的海马CA3模型的振荡现象

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We propose a hippocampal CA3 model with excitatory neurons and inhibitory neurons by using Hodgkin-Huxley equations and investigate oscillatory phenomena in the model. We assume that there are two layers of neurons with inter-layer and intra-layer synaptic connections; one is a layer of excitatory neurons and the other a layer of inhibitory neurons. The results by numerical simulations show that theta and gamma oscillations occur on the layer of excitatory neurons and also on the layer of inhibitory neurons and reveal that synaptic strengths influence dominant oscillations on each layer. This implies that the interplay between the excitatory and the inhibitory neurons is essential for the generation of theta and gamma oscillations.
机译:我们通过使用Hodgkin-Huxley方程提出具有兴奋性神经元和抑制​​性神经元的海马CA3模型,并研究该模型中的振荡现象。我们假设存在两层神经元,它们具有层间和层内突触连接。一个是兴奋性神经元层,另一个是抑制性神经元层。数值模拟结果表明,theta和γ振荡发生在兴奋性神经元层上,同时也出现在抑制性神经元层上,并揭示突触强度影响每一层的显性振荡。这表明,兴奋性神经元和抑制​​性神经元之间的相互作用对于产生θ和γ振荡至关重要。

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