Modeling of changes in the cerebral cortex under low radiation exposure

O. Gundarova, V. Fedorov, A. Kvaratskheliya, N. Maslov
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Abstract

The aim of the investigation was to reveal changes in the neurons of the cerebral cortex depending on the dose of γ-irradiation, the dose rate of exposure, the mode of exposure (acute and chronic) and to establish the priority of each of the influencing factors (γ-irradiation, recovery time and their joint impact) in the end result.Material and methods. The experiment, in compliance with the rules of bioethics, was carried out on 300 adult white rats that were exposed to acute and chronic γ-irradiation in total doses from 10 to 100 cGy with a dose rate of 50 to 660 cGy/h. The sensory and motor areas of the cerebral cortex were studied throughout life after exposure to radiation using traditional neuromorphological, histochemical, and statistical methods, followed by mathematical modeling of the obtained evaluation criteria.Results. Despite the peculiarities of the regimes of radiation exposure, all of them did not cause statistically significant changes in functionally different areas of the cerebral cortex. Throughout the entire recovery period, both in control and experimental animals, phase stochastic changes were observed in various neuromorphological indicators of the state of nerve cells, which, as a rule, had a borderline character, and the level of their significance fluctuated in relation to the control within insignificant limits. At the same time, the change in some neuromorphological parameters was more influenced by the dose or dose rate of γ-irradiation, while others were influenced by the recovery time. With the combined effect of the radiation factor and the duration of the recovery period, most of the indicators corresponded to the age control.Conclusion. Statistically significant changes in the state of neurons in both sensory and motor areas of the cerebral cortex under the considered modes of γ-irradiation in total doses up to 100 cGy were not revealed.
低辐射照射下大脑皮层变化的建模
研究的目的是揭示γ辐照剂量、照射剂量率、照射方式(急性和慢性)对大脑皮层神经元的影响,并确定每种影响因素(γ辐照、恢复时间及其联合影响)在最终结果中的优先级。材料和方法。本实验以300只成年大鼠为实验对象,以总剂量为10 ~ 100 cGy、剂量率为50 ~ 660 cGy/h的急性和慢性γ辐射为实验对象,遵循生物伦理学规则。采用传统的神经形态学、组织化学和统计学方法对辐射暴露后终生的大脑皮层感觉区和运动区进行了研究,并对所得的评价标准进行了数学建模。尽管辐射暴露的制度有其特殊性,但所有这些都没有引起大脑皮层功能不同区域的统计显着变化。在整个恢复期,无论是对照动物还是实验动物,神经细胞状态的各种神经形态学指标均出现阶段性随机变化,其规律性具有边缘性,其显著性水平相对于对照在不显著范围内波动。同时,部分神经形态学参数的变化更多地受γ辐照剂量或剂量率的影响,而另一些则受恢复时间的影响。在辐射因素和恢复期持续时间的综合作用下,大部分指标符合年龄控制。在总剂量高达100 cGy的γ辐照模式下,大脑皮层感觉区和运动区神经元状态的统计学显著变化未被发现。
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