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新型锆体内剂量学生物动力学模型的可靠性:第一部分,参数不确定性分析。

Reliability of a new biokinetic model of zirconium in internal dosimetry: part I, parameter uncertainty analysis.

机构信息

Research Unit Medical Radiation Physics and Diagnostics, Helmholtz Zentrum München-German Research Center for Environmental Health (GmbH), D-85764 Neuherberg, Germany.

出版信息

Health Phys. 2011 Dec;101(6):660-76. doi: 10.1097/HP.0b013e3181fbfba9.

Abstract

The reliability of biokinetic models is essential in internal dose assessments and radiation risk analysis for the public, occupational workers, and patients exposed to radionuclides. In this paper, a method for assessing the reliability of biokinetic models by means of uncertainty and sensitivity analysis was developed. The paper is divided into two parts. In the first part of the study published here, the uncertainty sources of the model parameters for zirconium (Zr), developed by the International Commission on Radiological Protection (ICRP), were identified and analyzed. Furthermore, the uncertainty of the biokinetic experimental measurement performed at the Helmholtz Zentrum München-German Research Center for Environmental Health (HMGU) for developing a new biokinetic model of Zr was analyzed according to the Guide to the Expression of Uncertainty in Measurement, published by the International Organization for Standardization. The confidence interval and distribution of model parameters of the ICRP and HMGU Zr biokinetic models were evaluated. As a result of computer biokinetic modelings, the mean, standard uncertainty, and confidence interval of model prediction calculated based on the model parameter uncertainty were presented and compared to the plasma clearance and urinary excretion measured after intravenous administration. It was shown that for the most important compartment, the plasma, the uncertainty evaluated for the HMGU model was much smaller than that for the ICRP model; that phenomenon was observed for other organs and tissues as well. The uncertainty of the integral of the radioactivity of Zr up to 50 y calculated by the HMGU model after ingestion by adult members of the public was shown to be smaller by a factor of two than that of the ICRP model. It was also shown that the distribution type of the model parameter strongly influences the model prediction, and the correlation of the model input parameters affects the model prediction to a certain extent depending on the strength of the correlation. In the case of model prediction, the qualitative comparison of the model predictions with the measured plasma and urinary data showed the HMGU model to be more reliable than the ICRP model; quantitatively, the uncertainty model prediction by the HMGU systemic biokinetic model is smaller than that of the ICRP model. The uncertainty information on the model parameters analyzed in this study was used in the second part of the paper regarding a sensitivity analysis of the Zr biokinetic models.

摘要

生物动力学模型的可靠性对于评估公众、职业工人和接受放射性核素照射的患者的内照射剂量和辐射风险至关重要。本文开发了一种通过不确定性和敏感性分析来评估生物动力学模型可靠性的方法。本文分为两部分。在本文发表的第一部分中,确定并分析了国际辐射防护委员会(ICRP)开发的锆(Zr)生物动力学模型参数的不确定性来源。此外,根据国际标准化组织发布的《测量不确定度表示指南》,分析了在德国慕尼黑亥姆霍兹环境健康研究中心(HMGU)进行的开发 Zr 新生物动力学模型的生物动力学实验测量的不确定性。评估了 ICRP 和 HMGU Zr 生物动力学模型的模型参数置信区间和分布。作为计算机生物动力学建模的结果,根据模型参数不确定性计算出的模型预测的平均值、标准不确定度和置信区间与静脉注射后测量的血浆清除率和尿排泄率进行了比较。结果表明,对于最重要的腔室-血浆,HMGU 模型评估的不确定性比 ICRP 模型小得多;这种现象在其他器官和组织中也存在。与 ICRP 模型相比,通过公众成年成员经口摄入后 HMGU 模型计算得出的至 50 年的 Zr 放射性积分的不确定性要小两倍。还表明,模型参数的分布类型强烈影响模型预测,模型输入参数的相关性在一定程度上取决于相关性的强度,从而影响模型预测。在模型预测方面,与测量的血浆和尿液数据的定性比较表明,HMGU 模型比 ICRP 模型更可靠;定量地,HMGU 全身生物动力学模型的不确定性模型预测比 ICRP 模型小。本研究分析的模型参数的不确定性信息用于本文第二部分关于 Zr 生物动力学模型的敏感性分析。

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