Histological structure of intercellular fluid circulation pathways

Yurii Kondor, V. Tykholaz, Y. Guminskyi
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Abstract

Studies of the nervous system today are quite relevant and important. There are a large number of methods of studying and researching the brain, among which the histological method is widely used. Despite the variety of methods, in the possible practical application of histological examination of the central nervous system and brain in particular there are problems encountered by researchers: the complexity of the method, a large number of conventions to consider when working with nerve tissue, methods of fixation. Among other research methods, there is a group of histological methods, united by a common feature – in vivo staining of the nervous system, among which there is also a method of in vivo staining with methylene blue. The aim of the study was to establish the morphological features of the structure of the intercellular fluid circulation of the brain in experimental animals. The article describes a new method of injectable in vivo staining of the brains of laboratory animals with methylene blue. It is relevant for studying the morphology of the intercellular fluid circulation of the brain and the study of the structure of the microcirculatory tract. In our work it is offered to combine already known methods of perfusion fixation and a technique of supravital staining with methylene blue. Since most scientific studies of the brain use conventional research methods without a comprehensive study of the entire microcirculatory tract and intercellular fluid circulation, there is a need for more detailed study of the histological structure and topography of microcirculatory brain complexes to establish their normal structure. The results of the study confirm the researchers' observation that methylene blue has a high affinity for nerve fibers in the brain. In addition, it is obvious that the additional use of formalin as a solvent increases the resistance of methylene blue to leaching and the ability to stain the structures of the microcirculatory tract. In addition, the lifetime application of this technique allows you to visualize the morphological features of the microcirculation pathways of the intercellular fluid of the brain, Virchow-Robin space and capillary walls.
细胞间液体循环通路的组织学结构
今天对神经系统的研究是非常相关和重要的。研究大脑的方法有很多,其中组织学方法被广泛使用。尽管方法多种多样,但在中枢神经系统特别是大脑的组织学检查的可能实际应用中,研究人员遇到了一些问题:方法的复杂性,在处理神经组织时要考虑的大量惯例,固定方法。在其他研究方法中,有一组组织学方法,它们有一个共同的特点——神经系统的体内染色,其中也有一种亚甲基蓝的体内染色方法。本研究的目的是建立实验动物脑细胞间液循环结构的形态学特征。本文介绍了一种用亚甲基蓝对实验动物大脑进行体内注射染色的新方法。这对研究脑细胞间液循环的形态和微循环束结构的研究具有重要意义。在我们的工作中,提供了已经知道的灌注固定方法和亚甲基蓝染色技术的结合。由于大多数对大脑的科学研究采用常规的研究方法,而没有对整个微循环束和细胞间液循环进行全面的研究,因此需要对大脑微循环复合物的组织学结构和形貌进行更详细的研究,以建立其正常结构。研究结果证实了研究人员的观察,即亚甲基蓝对大脑中的神经纤维具有很高的亲和力。此外,很明显,额外使用福尔马林作为溶剂增加了亚甲基蓝的抗浸出能力和染色微循环道结构的能力。此外,该技术的终身应用使您能够可视化脑细胞间液、Virchow-Robin空间和毛细血管壁微循环途径的形态学特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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