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Functional differentiation in the transverse plane of the hippocampus: An update on activity segregation within the DG and CA3 subfields

机译:海马横向平面中的功能分化:DG和CA3子场内活动偏析的更新

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Decades of neuroscience research in rodents have established an essential role of the hippocampus in the processing of episodic memories. Based on accumulating evidence of functional segregation in the hippocampus along the longitudinal axis, this role has been primarily ascribed to the dorsal hippocampus. More recent findings, however, demonstrate that functional segregation also occurs along transverse axis of the hippocampus, within the hippocampal subfields CA1, CA2, CA3, and the dentate gyrus (DG). Because the functional heterogeneity within CA1 has been addressed in several recent articles, here we discuss behavioral findings and putative mechanisms supporting generation of asymmetrical activity patterns along the transverse axis of DG and CA3. While transverse subnetworks appear to discretely contribute to the processing of spatial, non-spatial, temporal, and social components of episodic memories, integration of these components also occurs, especially in the CA3 subfield and possibly downstream, in the cortical targets of the hippocampus.
机译:啮齿动物的神经科学研究几十年已经在加工剧院的过程中建立了海马的重要作用。基于沿着纵向轴线在海马中的功能偏析的累积证据,这一作用主要归因于背侧海马。然而,更新的发现表明,在海马子场Ca1,Ca2,Ca 3和牙齿过滤(DG)内也发生了功能性偏析。因为CA1中的功能异质性已经在最近的几篇文章中得到了解决,所以我们在这里讨论了沿DG和Ca3的横向轴线支持产生不对称活性模式的行为发现和推定机制。虽然横向子网似乎离散地有助于加工的空间,非空间,时间和社交分量的ePisodic存储器的处理,但是这些组分的整合也发生,特别是在海马的皮质靶标中的CA3子场和可能下游。

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