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Uncertainty analysis in internal dose calculations for cerium considering the uncertainties of biokinetic parameters andSvalues

机译:考虑到铈的内部剂量计算中的不确定性分析,了解杀虫参数和尺度的不确定性

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Radioactive cerium and other lanthanides can be transported through the aquatic system into foodstuffs and then be incorporated by humans. Information on the uncertainty of reported dose coefficients for exposed members of the public is then needed for risk analysis. In this study, uncertainties of dose coefficients due to the ingestion of the radionuclides(141)Ce and(144)Ce were estimated. According to the schema of internal dose calculation, a general statistical method based on the propagation of uncertainty was developed. The method takes into account the uncertainties contributed by the biokinetic models and by the so-calledSvalues. These S-values were derived by using Monte Carlo radiation transport simulations with five adult non-reference voxel computational phantoms that have been developed at Helmholtz Zentrum Munchen, Germany. Random and Latin hypercube sampling techniques were applied to sample parameters of biokinetic models and S values. The uncertainty factors, expressed as the square root of the 97.5th and 2.5th percentile ratios, for organ equivalent dose coefficients of(141)Ce were found to be in the range of 1.2-5.1 and for(144)Ce in the range of 1.2-7.4. The uncertainty factor of the detriment-weighted dose coefficient for(141)Ce is 2.5 and for(144)Ce 3.9. It is concluded that a general statistical method for calculating the uncertainty of dose coefficients was developed and applied to the lanthanide cerium. The dose uncertainties obtained provide improved dose coefficients for radiation risk analysis of humans. Furthermore, these uncertainties can be used to identify those parameters most important in internal dose calculations by applying sensitivity analyses.
机译:放射性铈和其他镧系元素可以通过水生系统输送到食品中,然后通过人体结合。有关报告公众曝光成员的报告剂量系数的不确定性的信息,因此风险分析需要。在该研究中,估计了由于摄入放射性核素(141)Ce和(144)Ce而引起的剂量系数的不确定性。根据内剂量计算的模式,开发了一种基于不确定性传播的一般统计方法。该方法考虑了生物内模型和所谓的值贡献的不确定性。通过使用Monte Carlo辐射传输模拟来源于德国Helmholtz Zentrum Munchen的五个成年非参考体素计算幻影来源的这些S值。将随机和拉丁超立体采样技术应用于生物漏模型和S值的样本参数。发现(141)Ce的器官当量剂量系数的97.5th和2.5百分位比率的不确定性因素被发现为1.2-5.1和(144)CE的范围内1.2-7.4。 (141)Ce的损伤加权剂量系数的不确定因子为2.5,适用于(144)CE 3.9。得出结论,开发了一种用于计算剂量系数不确定性的一般统计方法并施加到镧系里铈。所获得的剂量不确定性提供了用于人类的辐射风险分析的改善剂量系数。此外,通过应用敏感性分析,这些不确定性可用于识别内部剂量计算中最重要的参数。

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