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小鼠全脑X射线照射的晚期血管效应

Late vascular effects of whole brain X-irradiation in the mouse.

作者信息

Yoshii Y, Phillips T L

出版信息

Acta Neurochir (Wien). 1982;64(1-2):87-102. doi: 10.1007/BF01405622.

Abstract

The whole brains of mice were irradiated with 250 kVp X-rays at 120 rads min-1 (1.6 mm Cu HVL, TSD 50 cm), and a histological study was carried out. The dose range of X-irradiation was from 1,300 to 2,500 rads, i.e., 1,300, 1,500, 1,750, 2,000, and 2,500 rads. Eighty-six mice were used for histological examination. For microscopic examination, the mice were killed at regular postirradiation intervals between 15 and 20, 31 and 40, 41 and 50, 51 and 60, 61 and 70, 71 and 80, 81 and 90, 139 and 177 weeks. The brains were removed immediately thereafter, fixed in Bouin's solution, and embedded in paraffin. A histological examination was performed by a morphometric estimation of vascular lesions, in which the degree of the damage to the arterial system was scored in whole serial brain sections. Necrosis (encephalomalacia), atrophy, cell infiltration, and telangiectatic vascular change of the brain, caused as a result of the fibrinoid necrosis of the large arteries, were observed. Dose-dependent incidence of the fibrinoid necrosis increased between 41 and 87 weeks after irradiation. Mean score of fibrinoid necrosis increased dose dependently approximately 60 weeks after irradiation. It is suggested that scores of large vessel damage do relate to dose at 41 to 87 weeks, and can be used to quantify the vessel injury, and that fibrinoid necrosis of the large vessels may relate to the incidence of radionecrosis.

摘要

将小鼠的全脑用250 kVp的X射线以120 rads/min(半值层1.6 mm铜,源皮距50 cm)进行照射,并开展组织学研究。X射线照射剂量范围为1300至2500 rads,即1300、1500、1750、2000和2500 rads。86只小鼠用于组织学检查。为进行显微镜检查,在照射后的15至20周、31至40周、41至50周、51至60周、61至70周、71至80周、81至90周、139至177周的定期间隔处死小鼠。此后立即取出大脑,固定于Bouin氏液中,然后石蜡包埋。通过对血管病变进行形态学评估来进行组织学检查,在整个连续脑切片中对动脉系统的损伤程度进行评分。观察到由于大动脉的纤维蛋白样坏死导致的脑坏死(脑软化)、萎缩、细胞浸润和毛细血管扩张性血管改变。纤维蛋白样坏死的剂量依赖性发生率在照射后41至87周之间增加。照射后约60周,纤维蛋白样坏死的平均评分呈剂量依赖性增加。提示在41至87周时大血管损伤评分确实与剂量相关,可用于量化血管损伤,并且大血管的纤维蛋白样坏死可能与放射性坏死的发生率有关。

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