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哺乳动物上丘向背外侧膝状核的投射:19个物种中视顶盖 - 膝状体通路的组织架构

Projection of the mammalian superior colliculus upon the dorsal lateral geniculate nucleus: organization of tectogeniculate pathways in nineteen species.

作者信息

Harting J K, Huerta M F, Hashikawa T, van Lieshout D P

机构信息

Department of Anatomy, University of Wisconsin, Madison 53706.

出版信息

J Comp Neurol. 1991 Feb 8;304(2):275-306. doi: 10.1002/cne.903040210.

DOI:10.1002/cne.903040210
PMID:1707899
Abstract

Anterograde and retrograde transport methods have been used to analyze the projection of the superior colliculus upon the dorsal lateral geniculate nucleus in 19 mammalian species. Our retrograde findings reveal that tectogeniculate neurons are relatively small, and lie dorsally within the superficial gray. These small tectogeniculate neurons are spatially related to a dense tier of W-cell retinal input. Our anterograde tracing results show that tectogeniculate axons are visuotopically distributed to small-celled regions of the lateral geniculate in all nineteen species. In the majority of these species, the small-celled, tectally innervated regions of the lateral geniculate lie adjacent to the optic tract and contain W-cell-like neurons. Our findings suggest that neuroanatomical demonstration of the tectogeniculate projection is a relatively simple and straightforward way of revealing regions of the lateral geniculate which contain W-cells. This is true even in species in which the lateral geniculate lacks obvious cellular laminae, and in regions of the lateral geniculate where W-cells are few in number. The present data are especially interesting in light of the cortical projections of tectally innervated, small-celled regions of the lateral geniculate to the patches or puffs within layer III of area 17. Since these regions of small-celled geniculocortical axons are co-extensive with zones ("blobs") rich in cytochrome oxidase, it might be that information carried over the tectogeniculate circuitry plays an important role in the functions of the blob system.

摘要

顺行和逆行运输方法已被用于分析19种哺乳动物中,上丘向背外侧膝状核的投射。我们的逆行研究结果显示,上丘-膝状核神经元相对较小,位于浅灰质的背侧。这些小的上丘-膝状核神经元在空间上与密集的W细胞视网膜输入层相关。我们的顺行追踪结果表明,在所有19个物种中,上丘-膝状核轴突在视皮层上呈拓扑分布至外侧膝状体的小细胞区域。在这些物种中的大多数,外侧膝状体接受上丘支配的小细胞区域位于视束附近,并含有类似W细胞的神经元。我们的研究结果表明,上丘-膝状核投射的神经解剖学证明是揭示外侧膝状体中含有W细胞区域的一种相对简单直接的方法。即使在外侧膝状体缺乏明显细胞层的物种中,以及在外侧膝状体中W细胞数量较少的区域中也是如此。鉴于外侧膝状体接受上丘支配的小细胞区域向17区第III层内的斑块或膨体的皮层投射,目前的数据尤其有趣。由于这些小细胞膝状体-皮层轴突区域与富含细胞色素氧化酶的区域(“斑点”)共同延伸,通过上丘-膝状核回路传递的信息可能在斑点系统的功能中起重要作用。

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