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银河系宇宙射线与磁层外的细胞撞击频率。

Galactic cosmic rays and cell-hit frequencies outside the magnetosphere.

作者信息

Curtis S B, Letaw J R

机构信息

Lawrence Berkeley Laboratory, University of California 94720.

出版信息

Adv Space Res. 1989;9(10):293-8. doi: 10.1016/0273-1177(89)90452-3.

Abstract

An evaluation of the exposure of space travelers to galactic cosmic radiation outside the earth's magnetosphere is made by calculating fluences of high-energy primary and secondary particles with various charges traversing a sphere of area 100 microns2. Calculations relating to two shielding configurations are presented: the center of a spherical aluminum shell of thickness 1 g/cm2, and the center of a 4 g/cm2 thick aluminum spherical shell within which there is a 30 g/cm2 diameter spherical water phantom with the point of interest 5 g/cm2 from the surface. The area of 100 microns2 was chosen to simulate the nucleus of a cell in the body. The frequencies as a function of charge component in both shielding configurations reflects the odd-even disparity of the incident particle abundances. For a three-year mission, 33% of the cells in the more heavily shielded configuration would be hit by at least one particle with Z greater than 10. Six percent would be hit by at least two such particles. This emphasizes the importance of studying single high-Z particle effects both on cells which might be "at risk" for cancer induction and on critical neural cells or networks which might be vulnerable to inactivation by heavy charged particle tracks. Synergistic effects with the more numerous high-energy protons and helium ions cannot be ruled out. In terms of more conventional radiation risk assessment, the dose equivalent decreased by a factor of 2.85 from free space to that in the more heavily shielded configuration. Roughly half of this was due to the decrease in energy deposition (absorbed dose) and half to the decrease in biological effectiveness (quality factor).

摘要

通过计算不同电荷的高能初级和次级粒子穿过面积为100平方微米的球体的注量,对地球磁层外太空旅行者所受银河宇宙辐射的暴露情况进行了评估。给出了与两种屏蔽结构相关的计算结果:一种是厚度为1克/平方厘米的球形铝壳的中心,另一种是厚度为4克/平方厘米的铝制球形壳的中心,在该壳内有一个直径为30克/平方厘米的球形水体模,感兴趣点距离表面5克/平方厘米。选择100平方微米的面积来模拟人体细胞的细胞核。两种屏蔽结构中频率作为电荷成分的函数反映了入射粒子丰度的奇偶差异。对于为期三年的任务,在屏蔽更严密的结构中,33%的细胞会被至少一个电荷数大于10的粒子击中。6%的细胞会被至少两个这样的粒子击中。这强调了研究单个高电荷粒子对可能“有致癌风险”的细胞以及可能易受重带电粒子径迹失活影响的关键神经细胞或神经网络的影响的重要性。不能排除与数量更多的高能质子和氦离子的协同效应。就更传统的辐射风险评估而言,剂量当量从自由空间到屏蔽更严密的结构降低了2.85倍。其中大约一半是由于能量沉积(吸收剂量)的减少,另一半是由于生物效应(品质因数)的降低。

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