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坐姿MIRD体模在有效剂量计算中的应用。

Application of a sitting MIRD phantom for effective dose calculations.

作者信息

Olsher Richard H, Van Riper Kenneth A

机构信息

Health Physics Consulting, P.O. Box 4940, Los Alamos, NM 87544, USA.

出版信息

Radiat Prot Dosimetry. 2005;116(1-4 Pt 2):392-5. doi: 10.1093/rpd/nci087.

Abstract

In typical realistic scenarios, dose factors due to 60Co contaminated steel, used in consumer products, cannot be approximated by standard exposure geometries. It is then necessary to calculate the effective dose using an appropriate anthropomorphic phantom. MCNP calculations were performed using a MIRD human model in two settings. In the first, a male office worker is sitting in a chair containing contaminated steel, surrounded by contaminated furniture. In the second, a male driver is seated inside an automobile, the steel of which is uniformly contaminated. To accurately calculate the dose to lower body organs, especially the gonads, it was essential to modify the MIRD model to simulate two sitting postures: chair and driving position. The phantom modifications are described, and the results of the calculations are presented. In the case of the automobile scenarios, results are compared to those obtained using an isotropic fluence-to-dose conversion function.

摘要

在典型的实际场景中,消费品中使用的60Co污染钢所导致的剂量因子无法通过标准照射几何形状来近似。因此,有必要使用合适的人体模型来计算有效剂量。使用MIRD人体模型在两种情况下进行了MCNP计算。第一种情况是,一名男性办公室工作人员坐在一把装有污染钢的椅子上,周围是受污染的家具。第二种情况是,一名男性司机坐在一辆汽车内,汽车的钢被均匀污染。为了准确计算下半身器官尤其是性腺的剂量,对MIRD模型进行修改以模拟两种坐姿(椅子坐姿和驾驶坐姿)至关重要。描述了模型的修改情况,并给出了计算结果。在汽车场景的情况下,将结果与使用各向同性注量-剂量转换函数获得的结果进行了比较。

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