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内嗅皮层的结构:对啮齿动物内嗅解剖学的综述及一些比较说明

Architecture of the Entorhinal Cortex A Review of Entorhinal Anatomy in Rodents with Some Comparative Notes.

作者信息

Witter Menno P, Doan Thanh P, Jacobsen Bente, Nilssen Eirik S, Ohara Shinya

机构信息

Functional Neuroanatomy, KavlI Institute for Systems Neuroscience, Center for Computational Neuroscience, Egil and Pauline Braathen and Fred Kavli Center for Cortical Microcircuits, NTNU Norwegian University of Science and TechnologyTrondheim, Norway.

Division of Systems Neuroscience, Tohoku University Graduate School of Life ScienceSendai, Japan.

出版信息

Front Syst Neurosci. 2017 Jun 28;11:46. doi: 10.3389/fnsys.2017.00046. eCollection 2017.

Abstract

The entorhinal cortex (EC) is the major input and output structure of the hippocampal formation, forming the nodal point in cortico-hippocampal circuits. Different division schemes including two or many more subdivisions have been proposed, but here we will argue that subdividing EC into two components, the lateral EC (LEC) and medial EC (MEC) might suffice to describe the functional architecture of EC. This subdivision then leads to an anatomical interpretation of the different phenotypes of LEC and MEC. First, we will briefly summarize the cytoarchitectonic differences and differences in hippocampal projection patterns on which the subdivision between LEC and MEC traditionally is based and provide a short comparative perspective. Second, we focus on main differences in cortical connectivity, leading to the conclusion that the apparent differences may well correlate with the functional differences. Cortical connectivity of MEC is features interactions with areas such as the presubiculum, parasubiculum, retrosplenial cortex (RSC) and postrhinal cortex, all areas that are considered to belong to the "spatial processing domain" of the cortex. In contrast, LEC is strongly connected with olfactory areas, insular, medial- and orbitofrontal areas and perirhinal cortex. These areas are likely more involved in processing of object information, attention and motivation. Third, we will compare the intrinsic networks involving principal- and inter-neurons in LEC and MEC. Together, these observations suggest that the different phenotypes of both EC subdivisions likely depend on the combination of intrinsic organization and specific sets of inputs. We further suggest a reappraisal of the notion of EC as a layered input-output structure for the hippocampal formation.

摘要

内嗅皮质(EC)是海马结构的主要输入和输出结构,是皮质-海马回路的节点。人们已经提出了不同的划分方案,包括两个或更多的细分,但在这里我们认为,将EC细分为两个部分,即外侧内嗅皮质(LEC)和内侧内嗅皮质(MEC),可能足以描述EC的功能结构。这种细分进而导致对LEC和MEC不同表型的解剖学解释。首先,我们将简要总结传统上用于区分LEC和MEC的细胞结构差异以及海马投射模式的差异,并提供一个简短的比较视角。其次,我们关注皮质连接性的主要差异,得出明显的差异可能与功能差异密切相关的结论。MEC的皮质连接特征是与诸如前下托、下托旁区、压后皮质(RSC)和嗅后皮质等区域相互作用,所有这些区域都被认为属于皮质的“空间处理域”。相比之下,LEC与嗅觉区域、岛叶、内侧和眶额区域以及嗅周皮质有很强的连接。这些区域可能更多地参与物体信息、注意力和动机的处理。第三,我们将比较LEC和MEC中涉及主神经元和中间神经元的内在网络。总之,这些观察结果表明,EC两个细分的不同表型可能取决于内在组织和特定输入集的组合。我们进一步建议重新评估EC作为海马结构的分层输入-输出结构的概念。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/877f/5488372/d98c8acebc0b/fnsys-11-00046-g0001.jpg

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