[Interneurons Brainstem of the Human].

V. Chertok, A. Kotsyuba, M. Startseva
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引用次数: 3

Abstract

OBJECTIVE To conduct a comparative study of the structural organization of internuclear interneurons involved in the metabolism of nitrogen monoxide, hydrogen sulphide and carbon monoxide in the caudal brain stem humans. METHODS The cross-sectional study was performed. We used histochemical and immunohistochemical methods to study the internuclear interneurons expressing neuronal nitric oxide synthase, cystathionine β-synthase and heme oxygenase-2 which are located between the giant and small cell reticular nuclei (cell group 1), small cell reticular nucleus and the nucleus of the solitary tract (cell group 2) or is surrounded by reticular lateral nucleus (cell group 3). RESULTS The work was carried out on the corpses of 6 men 18-44 years old who died from causes unrelated to the damage of the central nervous system. We revealed the differences between internuclear organization and intranuclear interneurons and local structural features of internuclear interneurons that are more clearly visible between the cell group 1 including a relatively large number of large neurons and cell groups 2 and 3 (p < 0.001). In the latter two groups small cells with high concentrations of the neuronal nitric oxide synthase and heme oxygenase-2 dominated. CONCLUSION Despite the fact that the number of internuclear interneurons significantly is less than the number of intranuclear cells, they have structural prerequisites to control integration processes in the brain. Internuclear interneurons produce gasotransmitters and classical mediators of nerve impulse, form a local chain of interneurons between vasomotor nuclei, share many links with the above and the lower parts of the brain.
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[人类脑干的中间神经元]。
目的对尾侧脑干人参与一氧化氮、硫化氢和一氧化碳代谢的核间神经元结构组织进行比较研究。方法采用横断面研究。我们用组织化学和免疫组织化学方法研究了位于大细胞和小细胞网状核之间的表达神经元一氧化氮合酶、半胱硫氨酸β合酶和血红素加氧酶-2的核间神经元(细胞组1)。小细胞网状核和孤立束核(细胞组2)或被网状外侧核包围(细胞组3)。结果对18-44岁非中枢神经系统损伤死亡的6例男性尸体进行了研究。我们揭示了核间组织和核内中间神经元之间的差异,以及核间中间神经元的局部结构特征,在细胞组1(包括相对大量的大神经元)和细胞组2和3之间更为清晰可见(p < 0.001)。在后两组中,小细胞以高浓度的神经元一氧化氮合酶和血红素加氧酶-2为主。结论尽管核间中间神经元的数量明显少于核内细胞的数量,但它们具有控制脑内整合过程的结构先决条件。核间中间神经元产生气体递质和神经冲动的经典介质,在血管舒缩核之间形成局部的中间神经元链,与大脑的上下部分共享许多联系。
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来源期刊
CiteScore
1.50
自引率
0.00%
发文量
31
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