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首页> 外文期刊>Physics in medicine and biology. >Fluence-to-dose conversion coefficients for heavy ions calculated using the PHITS code and the ICRP/ICRU adult reference computational phantoms.
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Fluence-to-dose conversion coefficients for heavy ions calculated using the PHITS code and the ICRP/ICRU adult reference computational phantoms.

机译:使用PHITS代码和ICRP / ICRU成人参考计算体模计算出的重离子的量通量转换系数。

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摘要

The fluence to organ-absorbed-dose and effective-dose conversion coefficients for heavy ions with atomic numbers up to 28 and energies from 1 MeVucleon to 100 GeVucleon were calculated using the PHITS code coupled to the ICRP/ICRU adult reference computational phantoms, following the instruction given in ICRP Publication 103 (2007 (Oxford: Pergamon)). The conversion coefficients for effective dose equivalents derived using the radiation quality factors of both Q(L) and Q(y) relationships were also estimated, utilizing the functions for calculating the probability densities of absorbed dose in terms of LET (L) and lineal energy (y), respectively, implemented in PHITS. The calculation results indicate that the effective dose can generally give a conservative estimation of the effective dose equivalent for heavy-ion exposure, although it is occasionally too conservative especially for high-energy lighter-ion irradiations. It is also found from the calculation that the conversion coefficients for the Q(y)-based effective dose equivalents are generally smaller than the corresponding Q(L)-based values because of the conceptual difference between LET and y as well as the numerical incompatibility between the Q(L) and Q(y) relationships. The calculated data of these dose conversion coefficients are very useful for the dose estimation of astronauts due to cosmic-ray exposure.
机译:使用与ICRP / ICRU成人参考计算耦合的PHITS代码计算原子序数高达28,能量从1 MeV /核子到100 GeV /核子的重离子对器官吸收剂量和有效剂量转换系数的影响。按照ICRP出版物103(2007(Oxford:Pergamon))中的说明进行操作。还利用函数来计算根据LET(L)和线性能量计算吸收剂量的概率密度的函数,得出了使用Q(L)和Q(y)关系的辐射质量因子得出的有效剂量当量的转换系数。 (y)分别在PHITS中实现。计算结果表明,有效剂量通常可以对重离子暴露给出有效剂量当量的保守估计,尽管有时过于保守,尤其是对于高能轻离子辐照。从计算中还发现,由于LET和y之间的概念差异以及数值不兼容,基于Q(y)的有效剂量当量的转换系数通常小于对应的基于Q(L)的值。 Q(L)和Q(y)关系之间的关系。这些剂量转换系数的计算数据对于宇宙射线暴露对宇航员的剂量估算非常有用。

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