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Topography-dependent spatio-temporal correlations in the entorhinal-dentate-CA3 circuit in a large-scale computational model of the Rat Hippocampus

机译:大鼠海马的大规模计算模型中内嗅齿-CA3电路中地形依赖的时空相关性

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The correlation due to different topographies was characterized in a large-scale, biologically-realistic, computational model of the rat hippocampus using a spatio-temporal correlation analysis. The effect of the topographical projection between the following subregions of the hippocampus was investigated: the entorhinal to dentate projection, the entorhinal to CA3 projection, and the mossy fiber to CA3 projection. Through this work, analysis was performed on the individual and combined effects of these projections on the activity of the principal neurons of the dentate gyrus and CA3. The simulations show that uncorrelated input transmitted through the entorhinal-to-dentate or entorhinal-to-CA3 projection causes spatio-temporally correlated activity in the principal neurons that manifest as spike clusters. However, if the mossy fiber system provides uncorrelated input to the CA3, then the CA3 activity remains uncorrelated. When considering the transfer of correlation through the dentate, this analysis suggests that the mossy fiber system do not imbue any correlation to the activity as it propagates from the granule cells of the dentate to the CA3. With the spatio-temporal correlation analysis, the influence of each topographical projection on the transfer of correlation can be investigated as additional subregions and neuron types are added to the large-scale model.
机译:使用时空相关分析,在大鼠海马的大规模,生物现实的计算模型中对由于不同地形引起的相关性进行了描述。研究了海马以下子区域之间的地形投影的影响:内嗅到齿状投影,内嗅到CA3投影以及苔藓纤维到CA3投影。通过这项工作,对这些预测对齿状回和CA3的主要神经元活动的个体和综合影响进行了分析。模拟显示,通过内嗅到齿状或内嗅到CA3投影传输的不相关输入会导致主要神经元中时空相关的活动,这些活动表现为尖峰簇。但是,如果生苔纤维系统向CA3提供不相关的输入,则CA3的活动仍然不相关。当考虑通过齿状体的相关性转移时,该分析表明,生苔纤维系统不会从活动中获得任何相关性,因为它是从齿状体的颗粒细胞传播到CA3的。通过时空相关性分析,可以在将其他子区域和神经元类型添加到大规模模型时研究每个地形投影对相关性传递的影响。

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