...
首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >UNCERTAINTIES IN DOSE COEFFICIENTS FROM INGESTION OF 131I, 137Cs, AND 90Sr.
【24h】

UNCERTAINTIES IN DOSE COEFFICIENTS FROM INGESTION OF 131I, 137Cs, AND 90Sr.

机译:在从摄入剂量系数的不确定性131年的我,137 c, 90老。

获取原文
获取原文并翻译 | 示例
           

摘要

ABSTRACT-: Quantification of uncertainties in doses from intakes of radionuclides is important in risk assessments and epidemiologic studies of individuals exposed to radiation. In this study, the uncertainties in the doses per unit intake (i.e., dose coefficients) for ingestion of I, Cs, and Sr by healthy individuals have been determined. Age-dependent thyroid dose coefficients were derived for I. The analysis for I uses recent measurements of thyroid volume obtained by ultrasonography, which indicate a thyroid mass lower than that previously obtained using autopsy measurements. The coefficients for Cs are determined using the relationship between the biological half-lives and the amount of potassium in the human body. The most recent International Commission on Radiological Protection biokinetic model was employed to determine the uncertainties for Sr. For Cs and Sr, the dose coefficients represent exposure in adulthood and they were determined for all organs of radiological importance. The uncertainty in the estimated dose coefficients represent state of knowledge estimates for a reference individual, and they are described by lognormal distributions with a specified geometric mean (GM) and geometric standard deviation (GSD). The estimated geometric means vary only slightly from the dose coefficients reported by ICRP publications. The largest uncertainty is observed in the dose coefficients for bone surface (GSD = 2.6), and red bone marrow (GSD = 2.4) in the case of ingestion of Sr. For most other organs, the uncertainty in the Sr dose coefficients is characterized by a GSD of 1.8 (or less for some organs). For I, the uncertainty in the thyroid dose coefficients is well represented by a GSD of 1.7 for both sexes and all ages other than infants for whom a GSD of 1.8 is more appropriate. The lowest uncertainties are obtained for the dose coefficients from ingestion of Cs (GSD = 1.24 for males; 1.4 for females). A dominant source of uncertainty in the ingestion dose coefficients is the variation of the biokinetic parameters. For I, the largest contribution to the uncertainty comes from the variation in the thyroid mass, but the contribution of the biokinetic parameters is comparable. The biokinetic parameters with the largest contribution to the uncertainty are (a) the fractional uptake from blood to thyroid in the case of ingestion of I, (b) the absorbed fraction from the gastrointestinal tract (f1) in the case of Sr, and (c) the amount of potassium in the body for Cs. The contribution to the uncertainty of the absorbed fraction (which accounts for the fraction of energy deposited in the target organ) is the smallest contributor to the uncertainty in the dose coefficients for most organs. To reduce the uncertainty in the dose estimated for a real individual, one should determine the above-mentioned parameters for the specified individual rather than to rely on assumptions for a reference individual.
机译:抽象——:量化的不确定性剂量的摄入放射性核素是很重要的在风险评估和流行病学的研究个人暴露于辐射。单位剂量摄入的不确定性(例如,剂量系数)的摄入,Cs,和老的健康人确定。系数是派生的为我分析我最近使用的测量甲状腺体积通过超声,这表明甲状腺质量低于以前用解剖测量。Cs是使用之间的关系决定的生物半衰期和的数量钾在人体内。国际辐射委员会是用来保护biokinetic模型确定Cs和老的不确定性Sr,剂量系数代表接触成年后,他们决定为所有器官辐射的重要性。估计剂量系数代表国家知识的评估参考个人,他们用对数正态描述与指定的几何分布的意思(GM)和几何标准差(德牧)。估计几何意味着只有轻微的变化剂量系数ICRP报道出版物。在骨表面剂量系数(德牧=2.6),和红色的骨髓(德牧= 2.4)老的摄入对于大多数其他器官,Sr剂量系数的不确定性特点是德牧1.8(或更少一些器官)。剂量系数代表的德牧1.7男女和以外的所有年龄婴儿来说,1.8的德牧是更多合适的。获得从摄入剂量系数男性的Cs(德牧= 1.24;摄入的不确定性的主要来源剂量系数的变化biokinetic参数。贡献来自于不确定性在甲状腺质量变异,但biokinetic参数的贡献具有可比性。贡献最大的不确定性是(一个)从血液中甲状腺部分吸收摄入的情况下的我,(b)的吸收从胃肠道(f1)的一部分老的情况下,(c)钾的量在Cs的身体。不确定性的分数(吸收占的比例存入的能量目标器官)是最小的贡献者剂量的不确定性系数对于大多数器官。估计一个真实的个体,每个人都应该确定上述参数指定的个人,而不是依赖假设一个人参考。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号