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北京鸭室旁核中脑脊液接触神经元的高尔基染色研究

A Golgi study on the cerebrospinal fluid (CSF)-contacting neurons in the paraventricular nucleus of the Pekin duck.

作者信息

Korf H W, Viglietti-Panzica C, Panzica G C

出版信息

Cell Tissue Res. 1983;228(1):149-63. doi: 10.1007/BF00206273.

Abstract

The present investigation based on classical neurohistological techniques (Nissl-staining, Golgi-impregnation) was focussed on the cytoarchitecture of the periventricular layer of the paraventricular nucleus in the Pekin duck. This region is endowed with intraependymal neurons, the perikarya of which are mostly covered by a thin ependymal lamella. Several of the intraependymal neurons were shown to give rise to dendrites extending into the third ventricle. An additional population of nerve cells located in the deeper layers of the periventricular region also gained direct access to the cerebrospinal fluid by means of long dendrites terminating with a bulbous-like swelling in the third ventricle. This cerebrospinal fluid (CSF)-contacting dendrite branched off several times in a rectangular fashion to give rise to collaterals running in the subependymal or periventricular layers. The axons of these CSF-contacting neurons were followed into the magnocellular portion of the paraventricular nucleus. Small bipolar nerve cells with processes parallel to the surface of the third ventricle occupied a subependymal position. The isodendritic magnocellular neurons of the paraventricular nucleus emitted dendritic processes that reached the basal pole of the ependymal cells. The complex arrangement of the periventricular layer of the paraventricular nucleus might provide the structural basis for the mechanisms of cerebral osmoreception defined by means of physiological parameters.

摘要

本研究基于经典神经组织学技术(尼氏染色、高尔基浸染),聚焦于北京鸭室旁核室周层的细胞结构。该区域存在室管膜内神经元,其胞体大多被一层薄的室管膜薄片覆盖。部分室管膜内神经元发出的树突延伸至第三脑室。室周区域较深层的另一群神经细胞也通过其长树突直接与脑脊液接触,这些树突在第三脑室末端呈球状膨大。这种与脑脊液(CSF)接触的树突以矩形方式多次分支,形成在室管膜下或室周层走行的侧支。这些与脑脊液接触的神经元的轴突延伸至室旁核的大细胞部分。小双极神经细胞的突起与第三脑室表面平行,位于室管膜下位置。室旁核的等树突大细胞神经元发出的树突突起可到达室管膜细胞的基极。室旁核室周层的复杂结构可能为通过生理参数定义的脑渗透压感受机制提供结构基础。

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