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国际放射防护委员会(ICRP)针对铅的年龄特异性生物动力学模型:验证、实证比较与探索。

The ICRP age-specific biokinetic model for lead: validations, empirical comparisons, and explorations.

作者信息

Pounds J G, Leggett R W

机构信息

Institute of Chemical Toxicology, Wayne State University, Detroit, MI 48201-2654, USA.

出版信息

Environ Health Perspect. 1998 Dec;106 Suppl 6(Suppl 6):1505-11. doi: 10.1289/ehp.98106s61505.

Abstract

The objective of this manuscript is to provide a description of the International Commission for Radiation Protection (ICRP) model and a comparison to other models (the integrated exposure uptake biokinetic [IEUBK] and O'Flaherty models), including the software used with the models, and a comparison of the model predictions for selected situations. The ICRP biokinetic model for Pb is a multicompartmental model for Pb uptake and disposition in children and in adults. The model describes deposition and retention of absorbed Pb in numerous tissues, removal from tissues to plasma, and movement along various routes of excretion. Long-term skeletal behavior of Pb is described in terms of age-specific rates of restructuring of compact and trabecular bone. The ICRP model is more flexible and has wider applicability than the IEUBK model. The major disadvantages are that application of the computer model requires some basic computer skills, and the user must convert the Pb concentrations in food, air, soil, dust, paint, or other media to the amount of Pb ingested or inhaled per day. Direct comparisons between the ICRP model and the IEUBK model are provided by modeling blood Pb levels using the IEUBK v0.99d default Pb uptakes and intake values. The model is used to simulate occupational exposure cases and a controlled Pb inhalation experiment in adult humans. Finally, use of the model to explore situations with limited data is illustrated by simulating the kinetics and disposition of Pb during acute Pb poisoning and chelation therapy in a child.

摘要

本手稿的目的是描述国际辐射防护委员会(ICRP)模型,并与其他模型(综合暴露摄入生物动力学[IEUBK]模型和奥弗莱厄蒂模型)进行比较,包括与这些模型一起使用的软件,以及对选定情况的模型预测进行比较。ICRP的铅生物动力学模型是一个多室模型,用于描述儿童和成人对铅的摄取和处置。该模型描述了吸收的铅在众多组织中的沉积和滞留、从组织到血浆的清除以及沿各种排泄途径的移动。铅在骨骼中的长期行为是根据致密骨和小梁骨特定年龄的重塑速率来描述的。ICRP模型比IEUBK模型更灵活,适用性更广。主要缺点是计算机模型的应用需要一些基本的计算机技能,而且用户必须将食物、空气、土壤、灰尘、油漆或其他介质中的铅浓度转换为每天摄入或吸入的铅量。通过使用IEUBK v0.99d默认的铅摄取和摄入量值对血铅水平进行建模,提供了ICRP模型与IEUBK模型之间的直接比较。该模型用于模拟职业暴露案例以及成年人体内的一次受控铅吸入实验。最后,通过模拟儿童急性铅中毒和螯合治疗期间铅的动力学和处置情况,说明了使用该模型探索数据有限情况的方法。

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