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Modelling and Monte Carlo organ dose calculations for workers walking on ground contaminated with Cs-137 and Co-60 gamma sources

机译:在受Cs-137和Co-60γ源污染的地面上行走的工人的建模和蒙特卡洛器官剂量计算

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摘要

A pair of walking phantoms was developed from deformable mesh phantoms to represent individuals walking on contaminated ground. The Monte Carlo N-particle extended version code was used to calculate organ doses from ground contamination scenarios involving parallel and isotropic planar sources of Cs-137 and Co-60 with concentrations of 30 kBqm−2. For the parallel plane source case, the organ doses were up to 78 % greater for walking phantoms than those for the standing phantoms. The dose difference is because the widely open legs during walking provide less shielding to several organs, especially the kidneys, ovaries and liver, from parallel sources. The effective doses of the walking phantoms were on average 15 % higher than the standing phantoms. On the other hand, when isotropic planar sources were considered, no significant dose difference was observed. This study demonstrated the feasibility of using deformable phantoms to represent realistic postures for organ dose calculations in environmental dosimetry studies.
机译:从变形的网格体模开发出一对行走体模,以代表在受污染地面上行走的个体。蒙特卡罗N粒子扩展版本代码用于根据地面污染场景(涉及Cs-137和Co-60的平行和各向同性平面源,浓度为30 kBqm-2)来计算器官剂量。对于平行平面源的情况,行走体模的器官剂量比站立体模的器官剂量高78%。剂量差异是因为步行过程中双腿张开使平行器官对几个器官(尤其是肾脏,卵巢和肝脏)的屏蔽作用降低。行走体模的有效剂量平均比站立体模高15%。另一方面,当考虑各向同性平面源时,未观察到明显的剂量差异。这项研究证明了在环境剂量学研究中使用可变形体模代表逼真的姿势进行器官剂量计算的可行性。

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