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首页> 外文期刊>Bulletin of experimental biology and medicine >Structure of Interneuronal Contacts in the Neuropil of the Oculomotor Nuclei in Mouse Brain under Conditions of Long-Term Microgravity
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Structure of Interneuronal Contacts in the Neuropil of the Oculomotor Nuclei in Mouse Brain under Conditions of Long-Term Microgravity

机译:在长期微刻度下小鼠脑中血管核神经核细胞核中的细胞间接触的结构

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Ultrastructure of the neuropil of the brain oculomotor nuclei was studied in mice after 30-day exposure to microgravity on Bion-M1 biosatellite and after 13-h exposure to Earth gravity. The number of axo-dendritic synapses in the neuropil of the oculomotor nucleus significantly decreased after the flight. Degenerated axon terminals containing conglomerates of presynaptic vesicles appeared. The number of synapses with high functional activity increased and the length of active zones of the axo-dendritic synapses significantly increased. The observed ultrastructural changes of the neuropil of the oculomotor nuclei of mice exposed to microgravity reflect the development of long-term deafferentation of the analyzed brain structures. These changes in the neuropil ultrastructure can determine the disturbances in the oculomotor system, e.g. development of atypical nystagmus under conditions of microgravity.
机译:在30天暴露于Bion-M1生物卫星和13-H暴露于地球重力之后,在小鼠中研究了脑动眼核的神经核细胞核的超微结构。 在飞行后,动眼细胞核神经核细胞核的神经毛虫的数量显着降低。 含有突触囊泡的砾岩的退化的轴突末端出现。 具有高功能活动的突触的数量增加,并且腋生突变突变的有源区的长度显着增加。 观察到微小的小鼠心肌细胞核的神经孔的超微结构变化反映了分析的脑结构的长期脱染的发展。 这些变化在神经疏松超微结构中可以确定眼动脉系统中的干扰,例如, 在微普吉条件下开发非典型眼球菌。

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