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A Topological Model of the Hippocampal Cell Assembly Network

机译:海马细胞装配网络的拓扑模型

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摘要

It is widely accepted that the hippocampal place cells' spiking activity produces a cognitive map of space. However, many details of this representation's physiological mechanism remain unknown. For example, it is believed that the place cells exhibiting frequent coactivity form functionally interconnected groups—place cell assemblies—that drive readout neurons in the downstream networks. However, the sheer number of coactive combinations is extremely large, which implies that only a small fraction of them actually gives rise to cell assemblies. The physiological processes responsible for selecting the winning combinations are highly complex and are usually modeled via detailed synaptic and structural plasticity mechanisms. Here we propose an alternative approach that allows modeling the cell assembly network directly, based on a small number of phenomenological selection rules. We then demonstrate that the selected population of place cell assemblies correctly encodes the topology of the environment in biologically plausible time, and may serve as a schematic model of the hippocampal network.
机译:海马位置细胞的突刺活性产生了空间的认知图,这一点已被广泛接受。但是,这种表示的生理机制的许多细节仍然未知。例如,据信表现出频繁协作性的位置细胞形成了功能上相互联系的群体-位置细胞集合体-驱动下游网络中的读出神经元。然而,活性组合的绝对数目非常大,这意味着它们中只有一小部分实际上会引起细胞组装。负责选择获胜组合的生理过程非常复杂,通常通过详细的突触和结构可塑性机制进行建模。在这里,我们提出了一种替代方法,该方法允许基于少量的现象学选择规则直接对细胞装配网络进行建模。然后,我们证明所选择的位置细胞装配体在生物学上合理的时间内正确地编码了环境的拓扑结构,并且可以用作海马网络的示意图模型。

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