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大鼠的内嗅皮质:内在连接的组织架构

Entorhinal cortex of the rat: organization of intrinsic connections.

作者信息

Dolorfo C L, Amaral D G

机构信息

Group in Neuroscience, University of California at San Diego, La Jolla 92193, USA.

出版信息

J Comp Neurol. 1998 Aug 17;398(1):49-82. doi: 10.1002/(sici)1096-9861(19980817)398:1<49::aid-cne4>3.0.co;2-9.

Abstract

Two sets of experiments were carried out to examine the organization of associational connections within the rat entorhinal cortex. First, a comprehensive analysis of the areal and laminar distribution of intrinsic projections was performed by using the anterograde tracers Phaseolus vulgaris-leuocoagglutinin (PHA-L) and biotinylated dextran amine (BDA). Second, retrograde tracers were injected into the dentate gyrus and PHA-L and BDA were injected into the entorhinal cortex to determine the extent to which entorhinal neurons that project to different septotemporal levels of the dentate gyrus are linked by intrinsic connections. The regional distribution of intrinsic projections within the entorhinal cortex was related to the location of the cells of origin along the mediolateral axis of the entorhinal cortex. Cells located in the lateral regions of the entorhinal cortex gave rise to intrinsic connections that largely remained within the lateral reaches of the entorhinal cortex, i.e., within the rostrocaudally situated entorhinal band of cells that projected to septal levels of the dentate gyrus. Cells located in the medial regions of the entorhinal cortex gave rise to intrinsic projections confined to the medial portion of the entorhinal cortex. Injections made into mid-mediolateral regions of the entorhinal cortex mainly gave rise to projections to mid-mediolateral levels, although some fibers did enter either lateral or medial portions of the entorhinal cortex. These patterns were the same regardless of whether the projections originated from the superficial (II-III) or deep (V-VI) layers of the entorhinal cortex. This organizational scheme indicates, and our combined retrograde/anterograde labeling studies confirmed, that laterally situated entorhinal neurons that project to septal levels of the dentate gyrus are not in direct communication with neurons projecting to the temporal portions of the dentate gyrus. These results suggest that entorhinal intrinsic connections allow for both integration (within a band) and segregation (across bands) of entorhinal cortical information processing.

摘要

进行了两组实验来研究大鼠内嗅皮质内联合连接的组织方式。首先,通过使用顺行示踪剂菜豆白细胞凝集素(PHA-L)和生物素化葡聚糖胺(BDA),对内源性投射的区域和层状分布进行了全面分析。其次,将逆行示踪剂注入齿状回,并将PHA-L和BDA注入内嗅皮质,以确定投射到齿状回不同前后颞叶水平的内嗅神经元通过内源性连接相连的程度。内嗅皮质内源性投射的区域分布与沿内嗅皮质中外侧轴的起源细胞位置有关。位于内嗅皮质外侧区域的细胞产生的内源性连接主要保留在内嗅皮质的外侧范围内,即在向齿状回的隔区水平投射的细胞的前后排列的内嗅带内。位于内嗅皮质内侧区域的细胞产生的内源性投射局限于内嗅皮质的内侧部分。向内嗅皮质中外侧中部区域的注射主要产生向中外侧水平的投射,尽管一些纤维确实进入了内嗅皮质的外侧或内侧部分。无论这些投射是源自内嗅皮质的浅层(II-III)还是深层(V-VI),这些模式都是相同的。这种组织模式表明,并且我们的逆行/顺行联合标记研究证实,投射到齿状回隔区水平的外侧内嗅神经元与投射到齿状回颞叶部分的神经元没有直接联系。这些结果表明,内嗅皮质的内源性连接允许内嗅皮质信息处理的整合(在一个带内)和分离(跨带)。

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