人体个体特征对氡子体支气管辐射负荷的影响。

IF 2.3 4区 环境科学与生态学 Q3 BIOLOGY
Péter Füri, Árpád Farkas, Werner Hofmann, Balázs G Madas
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引用次数: 0

摘要

人群中与辐射有关的健康风险的可变性和对辐射影响的遗传易感性是辐射防护的一个关键问题。除了相同辐射剂量对健康和生物的影响不同之外,个体差异也可能影响相同照射的剂量分布及其后果。由于氡子代暴露影响大量人口,并具有确定的剂量-效应关系,因此调查氡暴露的个体变异可能特别重要。使用随机肺模型结合黏液纤毛清除率和α粒子微剂量学模型,测定了一名健康成人、一名5岁儿童和一名患有严重哮喘的成人的沉积率和吸收剂量率。结果表明,尽管由于气道较小和黏液层较薄,沉积率较低,但儿童在基底和分泌细胞核中的吸收剂量率明显高于健康成人。对于患有严重哮喘的个体,由于气道收缩和粘液清除缓慢,沉积率和剂量率都较高,尽管粘液厚度增加会降低吸收剂量率。这些发现表明,解剖和生理差异显著影响氡暴露后肺部吸收剂量,并突出了在辐射防护和风险评估中考虑个体差异的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of individual characteristics of human subjects on the radiation burden of the bronchial airways from radon progeny.

Variability in radiation-related health risk and genetic susceptibility to radiation effects within a population is a key issue for radiation protection. Besides differences in the health and biological effects of the same radiation dose, individual variability may also affect dose distribution and its consequences for the same exposure. As exposure to radon progeny affects a large population and has a well-established dose-effect relationship, investigating individual variability upon radon exposure may be particularly important. Using the Stochastic Lung Model combined with mucociliary clearance and alpha-particle microdosimetry models, deposition rates and absorbed dose rates were determined for a healthy adult, a 5-year-old child, and an adult with severe asthma. The results show that children receive significantly higher absorbed dose rates in basal and secretory cell nuclei than healthy adults, despite lower deposition rates, due to smaller airways and thinner mucus layers. For individuals with severe asthma, both deposition rates and dose rates are higher due to airway contraction and slower mucus clearance, although increased mucus thickness reduces absorbed dose rates. These findings demonstrate that anatomical and physiological differences significantly influence absorbed doses in the lungs upon radon exposure and highlight the importance of accounting for individual variability in radiation protection and risk assessment.

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来源期刊
CiteScore
4.00
自引率
5.90%
发文量
53
审稿时长
>36 weeks
期刊介绍: This journal is devoted to fundamental and applied issues in radiation research and biophysics. The topics may include: Biophysics of ionizing radiation: radiation physics and chemistry, radiation dosimetry, radiobiology, radioecology, biophysical foundations of medical applications of radiation, and radiation protection. Biological effects of radiation: experimental or theoretical work on molecular or cellular effects; relevance of biological effects for risk assessment; biological effects of medical applications of radiation; relevance of radiation for biosphere and in space; modelling of ecosystems; modelling of transport processes of substances in biotic systems. Risk assessment: epidemiological studies of cancer and non-cancer effects; quantification of risk including exposures to radiation and confounding factors Contributions to these topics may include theoretical-mathematical and experimental material, as well as description of new techniques relevant for the study of these issues. They can range from complex radiobiological phenomena to issues in health physics and environmental protection.
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