Comparative analysis of the structural organization of the human cerebellar cortex in the upper and lower semilunar lobes in the age aspect

Q4 Biochemistry, Genetics and Molecular Biology
возрастном аспекте, А.А. Баландин, A. A. Balandin
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Abstract

The cerebellum is not just a “coordination node” but phylogenetically the most ancient, multicomponent, complex system. The aim of the study was to carry out a comparative analysis of the structural organization of the cerebellar cortex in the upper and lower semilunar lobes in the age aspect.Material and methods. The data of the sectional study of the cerebellum of 196 men and 180 women who were divided into two groups were analyzed. In the first group, the structural organization of the cerebellar cortex in the area of the upper semilunar lobule and in the second group, in the area of the lower semilunar lobule was studied. The first group included 179 persons (93 men and 86 women) aged 21 to 88 years who died between 2016 and 2018; the second group included 197 persons (103 men and 94 women) aged 22 to 88 years who died between 2019 and 2022. Autopsy material was taken from the upper and lower semilunar lobes in both cerebellar hemispheres, was fixed according to the standard technique, and cortical thickness was determined.Results. Cortical thickness in both upper and lower semilunar lobules of both cerebellar hemispheres in both men and women statistically significantly decreased by senile age. Thus, by senile age, males depleted their cortex by 19.5 and 22.5 % in the upper semilunar lobule of the right and left hemisphere, respectively, and females by 20.4 % and 21.9 %, respectively. In the inferior semilunar lobule the corresponding decrease in cortical thickness was 21.5 and 21.9 % in males and 23.7 and 21.9 % in females. A positive correlation between cortical thickness of the upper and lower semilunar lobes, both in the right and in the left hemisphere was established.Conclusions. The results of the study can become starting points for understanding the processes of age-related neurodegeneration and serve as a scientific basis for further morphofunctional, basic and clinical research.
年龄方面人小脑上半月叶与下半月叶结构组织的比较分析
小脑不仅是一个“协调节点”,而且在系统发育方面是最古老、最多元、最复杂的系统。本研究的目的是从年龄方面对上半月叶和下半月叶小脑皮层的结构组织进行比较分析。材料和方法。对196名男性和180名女性的小脑截面研究数据进行了分析,他们被分为两组。在第一组中,研究了上半月小叶区域和第二组中下半月小叶区域的小脑皮层的结构组织。第一组包括179人(93男86女),年龄在21至88岁之间,于2016年至2018年间死亡;第二组包括197人(103名男性和94名女性),年龄在22至88岁之间,于2019年至2022年间死亡。尸检材料取自小脑两半球的上半月叶和下半月叶,根据标准技术固定,并测定皮质厚度。后果随着年龄的增长,男性和女性小脑半球上下半月小叶的皮质厚度均显著降低。因此,到了老年,男性在右半球和左半球上半月小叶的皮层分别减少19.5%和22.5%,女性分别减少20.4%和21.9%。在下半月小叶中,皮质厚度的相应减少男性为21.5%和21.9%,女性为23.7%和21.9%。左半球和右半球上半月叶和下半月叶的皮质厚度均呈正相关。结论。该研究的结果可以成为理解与年龄相关的神经退行性变过程的起点,并为进一步的形态功能、基础和临床研究提供科学依据。
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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来源期刊
CiteScore
0.40
自引率
0.00%
发文量
54
审稿时长
12 weeks
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