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外侧膝状体核传出投射的分析,特别提及连合下器官及相关区域的神经支配。

Analysis of the efferent projections of the lateral geniculate nucleus with special reference to the innervation of the subcommissural organ and related areas.

作者信息

Mikkelsen J D

机构信息

Institute of Medical Anatomy B, University of Copenhagen, Denmark.

出版信息

Cell Tissue Res. 1994 Sep;277(3):437-45. doi: 10.1007/BF00300216.

Abstract

In order to define central neurons projecting to the subcommissural organ (SCO) and to related areas in the postero-medial diencephalon, Phaseolus vulgaris-leucoagglutinin (PHA-L) was injected into the lateral geniculate nucleus of the rat. PHA-L-labelled neurons send axonal processes medially through the posterior thalamic nuclei and the posterior commissure to the other hemisphere. Branches of fibres originating from this projection form a plexus of nerve terminals in the underlying precommissural nucleus and in the nucleus of the posterior commissure. A small number of PHA-L-immunoreactive nerve fibres penetrate from the precommissural nucleus into the lateral part of the SCO. A few labelled fibres penetrate directly from the posterior commissure into the medial part of the caudal SCO. Most of the PHA-L-immunoreactive fibres occur in the hypendymal layer, although a few terminate near the ependymal cells of the organ. Many labelled fibres are found in the ventricular ependyma adjacent to the SCO, some fibres lying close to the ventricular lumen. These results were obtained only if the tracer was delivered into the intergeniculate leaflet of the lateral geniculate nucleus (IGL). The IGL innervates both the suprachiasmatic nucleus and the pineal organ; the connections between the IGL and the midline structures, including the SCO, suggest that these areas are influenced by the circadian system.

摘要

为了确定投射到连合下器官(SCO)以及后内侧间脑相关区域的中枢神经元,将菜豆白细胞凝集素(PHA-L)注入大鼠外侧膝状核。PHA-L标记的神经元发出轴突向内侧穿过丘脑后核和后连合到达对侧半球。源自该投射的纤维分支在下方的连合前核和后连合核中形成神经终末丛。少数PHA-L免疫反应性神经纤维从连合前核穿入SCO的外侧部分。一些标记纤维直接从后连合穿入尾侧SCO的内侧部分。大多数PHA-L免疫反应性纤维出现在室管膜下层,尽管有少数在该器官的室管膜细胞附近终末。在与SCO相邻的脑室室管膜中发现许多标记纤维,一些纤维靠近脑室腔。仅当示踪剂注入外侧膝状核的间膝小叶(IGL)时才获得这些结果。IGL支配视交叉上核和松果体;IGL与包括SCO在内的中线结构之间的联系表明这些区域受昼夜节律系统影响。

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