对一名通过慢性和急性吸入接触高浓铀的女工进行四十八年跟踪调查

IF 1.5 4区 环境科学与生态学 Q3 BIOLOGY
Maia Avtandilashvili, Sergey Y. Tolmachev
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引用次数: 0

摘要

美国跨铀和铀登记处 (USTUR) 是研究铀在人体内生物动力学的独特数据和材料资源。在本研究中,使用 IMBA Professional Plus® 软件分析了一名暴露于高浓铀的女性全身 USTUR 捐赠者的生物测定数据和死后器官活动,以得出总摄入量的最佳估计值。根据使用 AIDE® 软件得出的特定病例剂量系数,根据估计摄入量计算出该人全身和主要靶器官的辐射剂量。摄入量和剂量计算均采用了国际辐射防护委员会(ICRP)在其《放射性核素职业摄入量》系列出版物中推荐的生物动力学和剂量学模型。测试了不同的辐照情景,包括慢性和急性吸入辐照。一个慢性吸入摄入量和两个急性吸入摄入量的组合似乎最能说明生物测定数据。为了拟合这名女性的尸检数据,从肝脏到血液的转移率提高了 8 倍,从肾脏到血液的转移率降低了 2.2 倍。这样,所有数据的拟合效果最好(p = 0.519)。总摄入量估计为 44.1 kBq,承诺有效剂量为 211 mSv,其中 96.8% 来自 234U。96.6%的承诺有效剂量来自肺部。其余 3.4%的承诺有效剂量由所有全身组织和器官提供,其中红骨 髓提供的剂量最高(0.40%)。结论是,目前的国际放射防护委员会模型,在对吸烟状况进行调整后,除了在肝脏和肾脏的滞留外,充分描述了该个体的铀生物动力学。然而,这项研究仅基于一个病例,可能不足以确定铀生物动力学中任何明显的性别差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Forty-eight-year follow-up of a female worker exposed to highly enriched uranium via chronic and acute inhalation

Forty-eight-year follow-up of a female worker exposed to highly enriched uranium via chronic and acute inhalation

The United States Transuranium and Uranium Registries (USTUR) is a unique resource of data and materials for studying biokinetics of uranium in the human body. In this study, bioassay data and post-mortem organ activities from a female whole-body USTUR donor who was exposed to highly enriched uranium were analyzed using the IMBA Professional Plus® software to derive the best estimate of the total intake. The resulting radiation doses delivered to this individual’s whole body and major target organs were calculated from estimated intake based on case-specific dose coefficients derived using the AIDE® software. Both intake and dose calculations were carried out using the biokinetic and dosimetric models recommended by the International Commission on Radiological Protection (ICRP) in its Occupational Intakes of Radionuclides publication series. Different exposure scenarios including chronic and acute inhalation intakes were tested. A combination of a chronic inhalation intake and two acute inhalation intakes appears to best describe the bioassay data. To fit this female individual’s autopsy data, the transfer rate from the liver to the blood was increased by a factor of 8 and the transfer rate from the kidneys to the blood was decreased by a factor of 2.2. This resulted in the best fit to all data (p = 0.519). The total intake was estimated to be 44.1 kBq, and the committed effective dose was 211 mSv with 96.8% contributed by 234U. 96.6% of the committed effective dose was contributed by the lungs. The remaining 3.4% of the committed effective dose was contributed by all systemic tissues and organs with the highest contribution (0.40%) from the red bone marrow. It is concluded that the current ICRP models, with the adjustment for smoking status, adequately describe uranium biokinetics for this individual except retention in the liver and kidneys. However, this study was based on a single case and may not be sufficient to identify any apparent sex-specific differences in uranium biokinetics.

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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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