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The interactions and dissociations of the dorsal hippocampus subregions: How the dentate gyrus, CA3, and CA1 process spatial information

机译:背海马亚区的相互作用和分离:齿状回,CA3和CA1如何处理空间信息

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摘要

Several studies have demonstrated the significance of a spatial cognitive map and its role for guided and accurate navigation through the environment. Learning and recalling spatial knowledge depends upon proper topological and metric spatial information processing. The present objectives are to better characterize the role of the hippocampus for processing topological and metric spatial information. Rats with dorsal hippocampal subregional lesions (dDG, dCA3, dCA1) were tested on a previously established metric task and topological task. The results of the present study suggest that dCA1, but not dDG or dCA3, mediates topological memory. Furthermore, dDG, dCA3, and dCA1 mediate metric memory. Dorsal DG is required for spatial information processing via pattern separation or orthogonalization of sensory inputs to generate metric representations. Dorsal CA3 and dCA1 then receive these metric representations transmitted from dDG along the trisynaptic loop. The present data add to a growing body of literature suggesting a diversity of function among the hippocampal subregions.
机译:多项研究已经证明了空间认知图的重要性及其在引导和准确导航整个环境中的作用。学习和回忆空间知识取决于适当的拓扑和度量空间信息处理。目前的目标是更好地表征海马在处理拓扑和度量空间信息中的作用。在先前建立的度量任务和拓扑任务中对具有海马背侧区域损伤(dDG,dCA3,dCA1)的大鼠进行了测试。本研究的结果表明dCA1,而不是dDG或dCA3,介导拓扑记忆。此外,dDG,dCA3和dCA1可以充当度量标准内存。通过图案分离或感觉输入的正交化来生成度量指标,空间信息处理需要背面DG。然后,背侧CA3和dCA1接收从dDG沿三突触环传送的这些度量表示。目前的数据增加了越来越多的文献,表明海马次区域之间功能的多样性。

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