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Signal flow in a prefrontal cortical circuit model for working memory loading

机译:前额叶皮质电路模型中的信号流,用于工作记忆加载

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The active storage process for working memory, which is substantiated by a specific sustained activity of a population of neurons in the prefrontal cortex, is a circuit property of the cortex. To analyze the circuit mechanisms of this process, we constructed a two-layer prefrontal cortical circuit model. The network with asymmetric inter-laminar connections produces transient, cur-period activity in one layer and delay-period activity in the other layer. The peak firing rate in the delay-period is low enough even though the model neurons do not have NMDA-type channels. The simulation shows that the postsynaptic currents have layer-specific Spatio-temporal profiles, which are necessary for the postsynaptic currents have layer-specific Spatio-temporal profiles, which are necessary for the coexistence of the different activity Patterns.
机译:工作记忆的主动存储过程由前额叶皮层中神经元群体的特定持续活动所证实,是皮层的电路特性。为了分析此过程的电路机制,我们构建了一个两层的前额叶皮层电路模型。具有不对称层间连接的网络在一层中产生瞬时的周期性活动,而在另一层中产生延迟性活动。即使模型神经元没有NMDA型通道,延迟周期内的峰值激发速率也足够低。仿真表明,突触后电流具有特定于层的时空分布,这对于突触后电流具有特定于层的时空分布,对于不同活动模式的共存是必需的。

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