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Theta phase coding in a network model of the entorhinal cortex layer II with entorhinal-hippocampal loop connections

机译:具有内海马-海马环连接的内嗅皮质第二层网络模型中的Theta相位编码

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摘要

We investigated successive firing of the stellate cells within a theta cycle, which replicates the phase coding of place information, using a network model of the entorhinal cortex layer II with loop connections. Layer II of the entorhinal cortex (ECII) sends signals to the hippocampus, and the hippocampus sends signals back to layer V of the entorhinal cortex (ECV). In addition to this major pathway, projection from ECV to ECII also exists. It is, therefore, inferred that reverberation activity readily appears if projections from ECV to ECII are potentiated. The frequency of the reverberation would be in a gamma range because it takes signals 20–30 ms to go around the entorhinal-hippocampal loop circuits. On the other hand, it has been suggested that ECII is a theta rhythm generator. If the reverberation activity appears in the entorhinal-hippocampal loop circuits, gamma oscillation would be superimposed on a theta rhythm in ECII like a gamma-theta oscillation. This is a reminiscence of the theta phase coding of place information. In this paper, first, a network model of ECII will be developed in order to reproduce a theta rhythm. Secondly, we will show that loop connections from one stellate cell to the other one are selectively potentiated by afferent signals to ECII. Frequencies of those afferent signals are different, and transmission delay of the loop connections is 20 ms. As a result, stellate cells fire successively within one cycle of the theta rhythm. This resembles gamma-theta oscillation underlying the phase coding. Our model also replicates the phase precession of stellate cell firing within a cycle of subthreshold oscillation (theta rhythm).
机译:我们研究了使用循环连接的内嗅皮质层II网络模型,在theta周期内连续触发星状细胞,从而复制了位置信息的相位编码。内嗅皮质(ECII)的第II层将信号发送到海马,海马将信号发送回内嗅皮质(ECV)的第V层。除了这一主要途径,还存在从ECV到ECII的预测。因此,可以推断出,如果增强从ECV到ECII的投射,混响活动就容易出现。混响的频率在伽马范围内,因为它需要20到30毫秒的信号才能绕过内海马-海马回路。另一方面,有人提出ECII是theta节奏发生器。如果混响活动出现在内海马循环回路中,则伽玛振荡将像伽玛-θ振荡一样叠加在ECII中的θ节奏上。这使人联想到位置信息的theta相位编码。在本文中,首先,将开发ECII的网络模型以重现theta节奏。其次,我们将显示从一个星状细胞到另一个星状细胞的环路连接会通过传入ECII的信号选择性增强。这些传入信号的频率不同,环路连接的传输延迟为20毫秒。结果,星状细胞在theta节奏的一个周期内连续发射。这类似于相位编码下的伽马θ振荡。我们的模型还复制了亚阈值振荡(θ节奏)周期内星状细胞发射的相位进动。

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