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大鼠前庭上核与动眼神经核及红核的联系:一项电子显微镜研究

Connections of the superior vestibular nucleus with the oculomotor and red nuclei in the rat: an electron microscopic study.

作者信息

Halasi Gabor, Bácskai Timea, Matesz Clara

机构信息

Department of Anatomy, Histology and Embryology, University of Debrecen, Medical and Health Science Center, Hungary.

出版信息

Brain Res Bull. 2005 Sep 15;66(4-6):532-5. doi: 10.1016/j.brainresbull.2005.02.013. Epub 2005 Mar 4.

Abstract

Phaseolus vulgaris leucoagglutinin (PHA-L) was injected into the individual vestibular nuclei of the rat to study their efferent connections. One of the major differences between the connections of these nuclei was found at the level of the mesencephalon: the eye-moving cranial nerve nuclei received the densest projection from the superior vestibular nucleus (SVN). In the present electron microscopic study, we have found that terminals of SVN origin established symmetric synaptic contacts in the oculomotor nucleus. More than two-thirds of PHA-L-labeled boutons terminated on dendrites, the rest of them established axosomatic contacts. Most of the labeled terminals were GABA-positive, supporting the results of previous physiological experiments, which showed inhibitory effects. In the mesencephalon, the other termination area was found in the red nucleus. The PHA-L-labeled boutons of SVN origin were in close contact with the perikarya and proximal dendrites of the magnocellular part of the red nucleus. The types of synaptic contacts and distribution of terminals of SVN origin were similar to those found in the oculomotor nucleus. Our results indicate that the SVN can modify the activity of the cerebellorubral and corticorubral pathways, exerting inhibitory action on the neurons of the red nucleus.

摘要

将菜豆白细胞凝集素(PHA-L)注入大鼠的各个前庭核,以研究其传出连接。这些核团连接之间的主要差异之一在中脑水平被发现:眼球运动的脑神经核接受来自前庭上核(SVN)最密集的投射。在目前的电子显微镜研究中,我们发现起源于SVN的终末在动眼神经核中形成了对称的突触联系。超过三分之二的PHA-L标记的终末终止于树突,其余的则形成轴-体突触联系。大多数标记的终末是GABA阳性的,这支持了先前生理实验的结果,即显示出抑制作用。在中脑,另一个终止区域位于红核。起源于SVN的PHA-L标记的终末与红核大细胞部的胞体和近端树突紧密接触。起源于SVN的突触联系类型和终末分布与在动眼神经核中发现的相似。我们的结果表明,SVN可以改变小脑红核和皮质红核通路的活动,对红核神经元发挥抑制作用。

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