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A computational model of perirhinal cortex: Gating and repair of input to the hippocampus

机译:周围皮层的计算模型:海马输入的门控和修复

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The medial temporal lobe-which includes the hippocampus, as well as perirhinal, parahippocampal, and entorhinal cortices-is required for declarative memory. We focus on the role of the perirhinal cortex (PRC) in relaying semantic representations from temporal cortex to the ventral hippocampus. It has been argued that the PRC is more than a simple relay. We review evidence that the PRC, in conjunction with the entorhinal cortex, serves to both gate information transfer to the hippocampus in response to an externally generated signal, and to improve the fidelity of this input prior to its mnemonic processing within the hippocampus. We present the first explicit model of externally mediated PRC gating based on several gating mechanisms previously modeled for generic cortical regions; we discuss the merits of our model with respect these existing theoretical gating mechanisms, and also outline three possible external control signals and their functional implications. We constructed a biologically plausible neural network model (InhibGate) based on the available literature, and compared it to a slightly adapted three layer network as a qualitative standard of comparison. In nearly every condition, the InhibGate network was more effective at information gating and pattern repair than the comparison three layer network. Our experiments support the proposal that inhibition within the rhinal cortices can block or admit information transfer to the hippocampus in response to an externally supplied excitatory signal. In addition, our experiments reveal a possible role for the rhinal cortices in repairing noisy or incomplete data: a role that has been previously ascribed to the hippocampus.
机译:声明性记忆需要内侧颞叶(包括海马以及周围神经,海马旁和内嗅皮质)。我们专注于在将语义表示从颞皮层传递到腹侧海马中,周围神经皮层(PRC)的作用。有人认为,中华人民共和国不仅仅是一个简单的中继器。我们审查的证据,中华人民共和国,与内在皮层一起,既可以响应外部生成的信号,将信息传递到海马,也可以改善在海马内部进行助记符处理之前此输入的保真度。我们基于先前为通用皮层区域建模的几种门控机制,提出了第一个外部PRC门控的显式模型。我们将针对这些现有的理论门控机制讨论我们模型的优点,并概述三种可能的外部控制信号及其功能含义。我们根据现有文献构建了生物学上可行的神经网络模型(InhibGate),并将其与稍作修改的三层网络进行比较,以此作为比较的定性标准。在几乎每种情况下,InhibGate网络在信息门控和模式修复方面都比比较三层网络更有效。我们的实验支持这样的建议,即响应外部提供的兴奋性信号,鼻皮质内的抑制作用可以阻止或允许信息转移到海马。此外,我们的实验揭示了鼻皮质在修复嘈杂或不完整数据中的可能作用:先前归因于海马体的作用。

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