Il'icheva V N, Ushakov B N
Aviakosm Ekolog Med. 2013 Nov-Dec;47(6):46-9.
Goal and objectives of the study was comparative description and establishment of dose-time dependence of changes in permeability of the hemato-encephalic barrier (HEB) in phylogenetically different parts of the brain cortex, i.e. new (Fr2 and Cg3), old (hippocampal fields CA1-CA4 and dentate fascia) and paleocortex (piriform cortex) following exposure to 0.1; 0.2; 0.5 and 1 Gy of ionizing radiation (dose rate = 50 cGy). Dependence of microvessels permeability on dose, post-exposure time and cortex phylogenetic age was established. Changes in brain microvessels, in the phylogenetically young cortex in particular, produced by 0.5 Gy and 1 Gy remained uncompensated till the end of investigation. Pronounced changes persisted over the period of one year after radiation exposure; complete recovery was not observed even in the phylogenetically old cortex.
本研究的目的和目标是对脑皮质系统发育不同部位,即新皮质(额中回2区和中央旁小叶3区)、旧皮质(海马CA1-CA4区和齿状回)和古皮质(梨状皮质),在受到0.1;0.2;0.5和1 Gy电离辐射(剂量率 = 50 cGy)后血脑屏障(HEB)通透性变化的剂量-时间依赖性进行比较描述和确定。确定了微血管通透性对剂量、照射后时间和皮质系统发育年龄的依赖性。0.5 Gy和1 Gy辐射对脑微血管,尤其是系统发育年轻的皮质所产生的变化,直至研究结束仍未得到代偿。辐射暴露一年后仍存在明显变化;即使在系统发育古老的皮质中也未观察到完全恢复。