Reinhold H S, Calvo W, Hopewell J W, van der Berg A P
Radiobiological Institute TNO, Rijswijk, The Netherlands.
Int J Radiat Oncol Biol Phys. 1990 Jan;18(1):37-42. doi: 10.1016/0360-3016(90)90264-k.
The identification problem of the dose-limiting tissue component was investigated in the CNS of rats. Moderate single doses of radiation, ranging from 20 to 25 Gy were applied to the brain of adult female rats. The sequence of events was analyzed by scoring a series of morphological changes in one of the white matter structures that appears to represent a sensitive location, that is the fimbria hippocampi. The previously defined "Tissue Injury Unit", characterized by a dilation of the blood vessel lumen, a thickening of the blood vessel wall, an enlargement of endothelial cell nuclei, and a hypertrophy of the adjacent astrocytes which represents a combined score of four different, but related histological changes, proved to be slightly more sensitive and responsive than the earliest recognizable changes in the neurological structures, that is demyelination. In addition, the incidence of demyelination could be expressed as a function of the intensity of the "Tissue Injury Unit". These findings can be interpreted as an additional indication that blood vessel changes and the hypertrophy of the perivascular astrocytes precede degenerative changes in the white matter of the CNS after moderate doses of X rays.
在大鼠中枢神经系统中研究了剂量限制组织成分的识别问题。对成年雌性大鼠的脑部施加20至25 Gy的中等单次辐射剂量。通过对一个似乎代表敏感部位的白质结构(即海马伞)中的一系列形态学变化进行评分来分析事件顺序。先前定义的“组织损伤单位”,其特征为血管腔扩张、血管壁增厚、内皮细胞核增大以及相邻星形胶质细胞肥大,这代表了四种不同但相关的组织学变化的综合评分,事实证明其比神经结构中最早可识别的变化(即脱髓鞘)略微更敏感且反应更明显。此外,脱髓鞘的发生率可以表示为“组织损伤单位”强度的函数。这些发现可以解释为另一个迹象,即中等剂量X射线照射后,中枢神经系统白质中的血管变化和血管周围星形胶质细胞肥大先于退行性变化。