牛(Bos Taurus)脊髓灰质的组织结构

I. Sokulskyi, L. P. Goralskyi, N. Kolesnik, O. Dunaievska, N. Radzikhovsky
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引用次数: 3

摘要

这篇科学文章介绍了对一头家牛(Bos Taurus)脊髓形态的研究结果。脊髓的组织和细胞结构数据是根据组织学、神经组织学和形态计量学研究的结果给出的。为了实现它们,选择的材料(脊髓n = 8)在10 - 12%的中性福尔马林溶液中固定,然后倒入石蜡中。石蜡块在MS-2滑动切片机上切片,切片厚度不大于10 μm。根据Van Gieson的方法,用苏木精和伊红染色切片,以及根据bilshovsky - gross方法,用硝酸银浸渍神经组织的神经组织学方法,进行形态学研究,研究细胞的形态,进行并获得组织学准备。用光镜观察脊髓的组织结构、神经元在灰质中的定位以及结构元素的形态计量学研究。研究的整个实验部分是按照“欧洲保护脊椎动物实验和其他科学目的公约”(斯特拉斯堡,1986年)的国际原则的要求进行的。脊髓是脊椎动物中枢神经系统的一个器官,位于椎管中。脊髓在外部由软的、蛛网膜的和硬的脑膜保护。脑膜和椎管之间的空隙充满了脑脊液。众所周知,具有相同功能价值的多极神经细胞群构成了脊髓灰质的细胞核。根据我们的组织学研究结果,神经细胞有明显的分化,它们有不同的形状和大小。其中有大、中、小神经细胞。神经细胞的形状是不同的,这反过来又取决于它们在脊髓灰质的某些区域的位置和细胞的大小。一般来说,神经元有多面、星状、梭形、细长、圆形和椭圆形。小神经细胞呈椭圆形或圆形,不常呈不规则圆形,中圆形、椭圆形、纺锤形。大的神经细胞以具有不同突起的多面形状为主。大的神经细胞的细胞核,在大多数情况下呈圆形,很少呈椭圆形,多数在细胞的中心,很少呈偏心形状。形态学研究结果表明,脊髓灰质神经元具有不同的形状和大小。因此,在灰质中,小细胞数量最多(47.91±0.32%)。其次是平均神经元(33.70±0.46%)。大细胞的检出量最少(18.37±0.50%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Histostructure of the gray matter of the spinal cord in cattle (Bos Taurus)
The scientific article presents the results of investigating the spinal cord`s morphology of a domestic bull (Bos Taurus). Data on the histo- and cytostructure of the spinal cord are given according to the results of histological, neurohistological, and morphometric studies. For their implementation, the selected material (spinal cord n = 8) was subjected to fixation in 10–12 % neutral formalin solution, followed by pouring into paraffin. Histological sections were made from paraffin blocks on a sliding microtome MS-2 with a thickness of not more than ten μm. Staining of sections with hematoxylin and eosin, according to Van Gieson's methods, as well as neuro-histological methods of impregnation of nerve tissue with silver nitrate according to the Bilshovskym-Gross method, was used for the morphometric studies, investigating the morphology of the cell, conducting and obtaining the review histological preparations. The histostructure of the spinal cord, the localization of neurons in the gray matter, and morphometric studies of structural elements were examined on histological specimens by light microscopy. The entire experimental part of the research was conducted following the requirements of the international principles of the "European Convention for the Protection of Vertebrate Animals for Experimental and Other Scientific Purposes" (Strasbourg, 1986). The spinal cord, medulla spinalis, an organ of the central nervous system of vertebrates, is located in the spinal canal. The spinal cord is protected externally by soft, arachnoid, and hard meninges. The space between the membranes and the spinal canal is filled with cerebrospinal fluid. It is well known that groups of multipolar nerve cells with the same functional value form the nuclei of the gray matter of the spinal cord. According to the results of our histological studies, a pronounced differentiation of nerve cells, which have different shapes and sizes. Among them are large, medium, and small nerve cells. The shape of nerve cells is different, which, in turn, depends on their location in certain areas of the gray matter of the spinal cord and the size of the cell. In general, there are multifaceted, stellate, spindle-shaped, elongated, rounded, and oval neurons. Small nerve cells have an oval or round, less often – irregularly rounded shape, medium – round, oval, spindle-shaped. Large nerve cells are dominated by a multifaceted shape with distinct processes. The nuclei of large nerve cells, in most cases, have a rounded shape, less often – oval, mostly in the center of the cells, seldom – eccentrically. According to the results of morphological studies, it is noted that the neurons of the gray matter of the spinal cord have different shapes and sizes. Consequently, in the gray matter, small cells are the highest quantity (47.91 ± 0.32 %) of the total number of nerve cells. The second place is occupied by average neurons (33.70 ± 0.46 %). The large cells are detected in the smallest amount (18.37 ± 0.50 %).
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