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猴子海马结构的连合连接

The commissural connections of the monkey hippocampal formation.

作者信息

Amaral D G, Insausti R, Cowan W M

出版信息

J Comp Neurol. 1984 Apr 10;224(3):307-36. doi: 10.1002/cne.902240302.

DOI:10.1002/cne.902240302
PMID:6715582
Abstract

The commissural connections of the hippocampal formation have been analyzed in the monkey (Macaca fascicularis) using both anterograde and retrograde labeling techniques. We have observed a number of striking differences between the organization of the commissural projections in the monkey and that observed in the rodent brain. In particular, only the rostral (or uncal) part of Ammon's horn (or hippocampus proper) and the associated part of the dentate gyrus have been found to be connected by commissural fibers. This is in marked contrast to the organization of the crossed connections in the rodent brain where both major fields of the hippocampus (i.e., the regio superior and the regio inferior) receive a strong, topographically organized, projection throughout their rostrocaudal extent from the regio inferior of the opposite side, while the inner third of the molecular layer of the entire dentate gyrus receives a topographically organized input from cells in the hilar region of the contralateral dentate gyrus. The subicular complex of the monkey gives rise to a substantially greater number of commissurally directed fibers. The subiculum itself projects to the posterior portion of the contralateral medial entorhinal cortex and receives a less substantial reciprocal projection from this same area; the subiculum does not appear to be homotopically interconnected. The presubiculum gives rise to the major commissural projection of the monkey hippocampal formation. From all rostrocaudal levels of the presubiculum there is a robust projection to the contralateral medial entorhinal cortex. This projection seems to be topographically organized and terminates most heavily in layers III and IV of the entorhinal cortex. This crossed presubiculo-entorhinal projection is paralleled in its organization by an associational projection from the presubiculum to the ipsilateral entorhinal cortex, but interestingly, the presubiculum does not seem to project to the presubiculum of the opposite side. The parasubiculum projects to neither the contralateral entorhinal cortex nor the contralateral parasubiculum. However, the subicular complex as a whole appears to be in receipt of a minor input from the contralateral parahippocampal gyrus (fields TF and TH of Bonin and Bailey). Cells primarily in layer III of the medial entorhinal cortex (area 28a) project homotopically to the contralateral entorhinal cortex where they terminate in layer III. The medial entorhinal cortex also gives rise to a minor projection to the contralateral parasubiculum and to the regio superior of the contralateral hippocampus and the caudalmost part of the outer molecular layer of the dentate gyrus.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

利用顺行和逆行标记技术,对猕猴(食蟹猴)海马结构的连合连接进行了分析。我们观察到,猕猴连合投射的组织与啮齿动物大脑中观察到的组织之间存在一些显著差异。特别是,仅发现海马角(或固有海马)的嘴侧(或钩)部分以及齿状回的相关部分通过连合纤维相连。这与啮齿动物大脑中交叉连接的组织形成显著对比,在啮齿动物大脑中,海马的两个主要区域(即上区和下区)在其整个前后范围内都接受来自对侧下区的强烈的、按拓扑结构组织的投射,而整个齿状回分子层的内三分之一接受来自对侧齿状回门区细胞的按拓扑结构组织的输入。猕猴的下托复合体产生的连合定向纤维数量要多得多。下托本身投射到对侧内侧内嗅皮质的后部,并从同一区域接受较少的反向投射;下托似乎不是同位相互连接的。前下托产生猕猴海马结构的主要连合投射。从前下托的所有前后水平都有强大的投射到对侧内侧内嗅皮质。这种投射似乎是按拓扑结构组织的,并且在嗅皮质的III层和IV层终止最为密集。这种交叉的前下托 - 内嗅投射在其组织上与从前下托到同侧内嗅皮质的联合投射平行,但有趣的是,前下托似乎不投射到对侧的前下托。旁下托既不投射到对侧内嗅皮质也不投射到对侧旁下托。然而,下托复合体作为一个整体似乎接受来自对侧海马旁回(博宁和贝利的TF和TH区)的少量输入。主要在内侧内嗅皮质(28a区)III层的细胞同位投射到对侧内嗅皮质,它们在III层终止。内侧内嗅皮质也向对侧旁下托、对侧海马的上区以及齿状回外分子层的最尾端部分发出少量投射。(摘要截断于400字)

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