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Assessment of environmental radon hazard using human respiratory tract models

机译:使用人类呼吸道模型评估环境ra危害

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Radon is a natural radioactive gas derived from geological materials. It has been estimated that about half of the total effective dose received by human beings from all sources of ionizing radiation is attributed to ~(222)Rn and its short-lived progeny. In this paper, the use of human respiratory tract models to assess the health hazard from environmental radon is reviewed. A short history of dosimetric models for the human respiratory tract from the International Commission on Radiological Protection (ICRP) is first presented. The most important features of the newest model published by ICRP in 1994 (as ICRP Publication 66) are then described, including the morphometric model, physiological parameters, radiation biology, deposition of aerosols, clearance model and dose weighting. Comparison between different morphometric models and comparison between different deposition models are then given. Finally, the significance of various parameters in the lung model is discussed, including aerosol parameters, subject related parameters, target and cell related parameters, and parameters that define the absorption of radon from the lungs to blood. Dosimetric calculations gave a dose conversion coefficient of 15 mSv/WLM, which is higher than the value 5 mSv/WLM derived from epidemiological studies. ICRP stated that dosimetric models should only be used for comparison of doses in the human lungs resulted from different exposure conditions.
机译:on是一种来自地质材料的天然放射性气体。据估计,人类从所有电离辐射源接收到的总有效剂量的大约一半归因于〜(222)Rn及其寿命短的子代。本文综述了使用人类呼吸道模型评估环境ra对健康的危害。首先介绍了国际放射防护委员会(ICRP)的人类呼吸道剂量模型的简短历史。然后描述了ICRP在1994年发布的最新模型(作为ICRP出版物66)的最重要特征,包括形态模型,生理参数,放射生物学,气溶胶沉积,清除模型和剂量加权。然后给出了不同形态模型之间的比较以及不同沉积模型之间的比较。最后,讨论了肺模型中各种参数的重要性,包括气溶胶参数,与受试者相关的参数,与靶标和细胞相关的参数以及定义define从肺向血液吸收的参数。剂量学计算得出的剂量转换系数为15 mSv / WLM,高于从流行病学研究得出的值5 mSv / WLM。 ICRP表示,剂量模型仅应用于比较不同暴露条件导致的人肺剂量。

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