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Synchronized subthreshold oscillations and phase coding in a network model of the entorhinal cortex

机译:内嗅皮层网络模型中的同步亚阈值振荡和相位编码

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A network model of the entorhinal cortex layer II that consisted of stellate cells and an interneuron was constructed. The stellate cell reproduced subthreshold oscillations in the theta range as observed in physiological experiments. The subthreshold oscillations were recurrently synchronized through an inhibitory interneuron, and theta rhythm was generated. Anatomical evidences suggest that the layers II and V of the entorhinal cortex and the hippocampus may form a loop circuit with a delay time of about 25 ms for signals going around. With the loop circuit introduced to the present model, the stellate cells that represent spatial information fired successively at intervals of 25 ms, in depolarized phases of the theta cycles. The present entorhinal cortex model with the loop circuits reproduced the phase precession, which has been observed experimentally as a characteristic of place cells.
机译:构建了由星状细胞和中间神经元组成的内嗅皮质层II的网络模型。生理实验中观察到,星状细胞在阈值范围内再现了亚阈值振荡。通过抑制性中间神经元使亚阈值振荡反复同步,并产生θ节律。解剖学证据表明,内嗅皮层和海马的第II层和第V层可能形成环路,信号绕行的延迟时间约为25毫秒。通过将环路电路引入本模型,代表空间信息的星状细胞在theta周期的去极化阶段以25 ms的间隔连续发射。具有环回路的本内嗅皮层模型再现了相位进动,该相位进动已被实验观察到为位置细胞的特征。

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