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Organ dose conversion coefficients on an ICRP-based Chinese adult male voxel model from idealized external photons exposures.

机译:基于理想化外部光子曝光的基于ICRP的中国成年男性体素模型上的器官剂量转换系数。

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A high-resolution whole-body voxel model called CAM representing the Chinese adult male was constructed in this paper based on a previous individual voxel model. There are more than 80 tissues and organs in CAM, including almost all organs required in the ICRP new recommendation. The mass of individual organs has been adjusted to the Chinese reference data. Special considerations were given to representing the gross spatial distribution of various bone constituents as realistically as possible during the construction of the site-specific skeleton. Organ dose conversion coefficients were calculated for six idealized external photon exposures from 10 keV to 10 MeV by using Monte Carlo simulation. The resulting dose coefficients were then compared with those from other models, e.g. CMP, ICRP 74, Rex, HDRK-man and VIP-man. Old and new effective male doses of CAM were calculated by using the tissue weighting factors from ICRP 60 and 103 Publications, respectively. Dosimetric differences between mathematical and voxel models, and the differences between Asian and Caucasian models are also discussed in this paper.
机译:本文基于先前的个体体素模型,构建了代表中国成年男性的高分辨率全身体素模型(CAM)。 CAM中有80多个组织和器官,包括ICRP新建议中所需的几乎所有器官。各个器官的质量已根据中国参考数据进行了调整。在构建特定地点的骨骼期间,要特别考虑尽可能真实地表示各种骨骼成分的总体空间分布。使用蒙特卡洛模拟,计算了从10 keV到10 MeV的六种理想的外部光子曝光的器官剂量转换系数。然后将所得的剂量系数与其他模型的剂量系数进行比较。 CMP,ICRP 74,Rex,HDRK-man和VIP-man。分别使用来自ICRP 60和103出版物的组织加权因子来计算新旧有效的男性CAM剂量。本文还讨论了数学模型和体素模型之间的剂量差异,以及亚洲模型和高加索模型之间的差异。

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