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人类海马体记忆系统广泛的皮质功能连接性。

Extensive cortical functional connectivity of the human hippocampal memory system.

作者信息

Ma Qing, Rolls Edmund T, Huang Chu-Chung, Cheng Wei, Feng Jianfeng

机构信息

Institute of Science and Technology for Brain Inspired Intelligence, Fudan University, Shanghai, China.

Institute of Science and Technology for Brain Inspired Intelligence, Fudan University, Shanghai, China; Department of Computer Science, University of Warwick, Coventry, UK; Oxford Centre for Computational Neuroscience, Oxford, UK.

出版信息

Cortex. 2022 Feb;147:83-101. doi: 10.1016/j.cortex.2021.11.014. Epub 2021 Dec 17.

Abstract

The cortical connections of the human hippocampal memory system are fundamental to understanding its operation in health and disease, especially in the context of the great development of the human cortex. The functional connectivity of the human hippocampal system was analyzed in 172 participants imaged at 7T in the Human Connectome Project. The human hippocampus has high functional connectivity not only with the entorhinal cortex, but also with areas that are more distant in the ventral 'what' stream including the perirhinal cortex and temporal cortical visual areas. Parahippocampal gyrus TF in humans has connectivity with this ventral 'what' subsystem. Correspondingly for the dorsal stream, the hippocampus has high functional connectivity not only with the presubiculum, but also with areas more distant, the medial parahippocampal cortex TH which includes the parahippocampal place or scene area, the posterior cingulate including retrosplenial cortex, and the parietal cortex. Further, there is considerable cross connectivity between the ventral and dorsal streams with the hippocampus. The findings are supported by anatomical connections, which together provide an unprecedented and quantitative overview of the extensive cortical connectivity of the human hippocampal system that goes beyond hierarchically organised and segregated pathways connecting the hippocampus and neocortex, and leads to new concepts on the operation of the hippocampal memory system in humans.

摘要

人类海马体记忆系统的皮质连接对于理解其在健康和疾病状态下的运作至关重要,尤其是在人类皮质发生重大发育的背景下。在人类连接组计划中,对172名在7T磁场下进行成像的参与者的人类海马体系统的功能连接性进行了分析。人类海马体不仅与内嗅皮质具有高度的功能连接,还与腹侧“什么”通路中距离更远的区域具有功能连接,这些区域包括嗅周皮质和颞叶皮质视觉区域。人类海马旁回TF与这个腹侧“什么”子系统存在连接。相应地,对于背侧通路,海马体不仅与前下托具有高度的功能连接,还与距离更远的区域具有功能连接,这些区域包括内侧海马旁皮质TH(其中包括海马旁位置或场景区域)、包括压后皮质的后扣带回以及顶叶皮质。此外,腹侧和背侧通路与海马体之间存在相当多的交叉连接。这些发现得到了解剖学连接的支持,它们共同提供了对人类海马体系统广泛皮质连接的前所未有的定量概述,超越了连接海马体和新皮质的分层组织和分离的通路,从而产生了关于人类海马体记忆系统运作的新观念。

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