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剂量、剂量率和粒子碎片化对高能铁离子诱发白内障的影响。

The influence of dose, dose-rate and particle fragmentation on cataract induction by energetic iron ions.

作者信息

Medvedovsky C, Worgul B V, Huang Y, Brenner D J, Tao F, Miller J, Zeitlin C, Ainsworth E J

机构信息

The Eye Radiation and Environmental Research Laboratory, Columbia University, New York, USA.

出版信息

Adv Space Res. 1994;14(10):475-82. doi: 10.1016/0273-1177(94)90502-9.

Abstract

Because activities in space necessarily involve chronic exposure to a heterogeneous charged particle radiation field it is important to assess the influence of dose-rate and the possible modulating role of heavy particle fragmentation on biological systems. Using the well-studied cataract model, mice were exposed to plateau 600 MeV/amu 56Fe ions either as acute or fractionated exposures at total doses of 5 - 504 cGy. Additional groups of mice received 20, 360 and 504 cGy behind 50 mm of polyethylene, which simulates body shielding. The reference radiation consisted of 60Co gamma radiation. The animals were examined by slit lamp biomicroscopy over their three year life spans. In accordance with our previous observations with heavy particles, the cataractogenic potential of the 600 MeV/amu 56Fe ions was greater than for low-LET radiation and increased with decreasing dose relative to gamma-rays. Fractionation of a given dose of 56Fe ions did not reduce the cataractogenicity of the radiation compared to the acute regimen. Fragmentation of the beam in the polyethylene did not alter the cataractotoxicity of the ions, either when administered singly or in fractions.

摘要

由于太空活动必然涉及长期暴露于异质带电粒子辐射场,因此评估剂量率的影响以及重粒子碎片化对生物系统可能的调节作用非常重要。利用经过充分研究的白内障模型,将小鼠暴露于能量为600 MeV/amu的56Fe离子束下,分别进行单次急性照射或分次照射,总剂量为5 - 504 cGy。另外几组小鼠在50毫米厚的聚乙烯屏蔽层后接受20、360和504 cGy的照射,聚乙烯模拟人体屏蔽。参考辐射为60Coγ射线。在动物三年的寿命期内,通过裂隙灯生物显微镜检查对其进行观察。与我们之前对重粒子的观察结果一致,能量为600 MeV/amu的56Fe离子致白内障的潜力大于低传能线密度辐射,并且相对于γ射线,随着剂量降低致白内障潜力增加。与单次急性照射方案相比,给定剂量的56Fe离子分次照射并未降低辐射的致白内障性。无论是单次还是分次给予离子束,聚乙烯中的束流碎片化都不会改变离子的致白内障毒性。

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