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职业风险评估与接触限值推导中吸入剂量测定模型及方法的进展

Advances in Inhalation Dosimetry Models and Methods for Occupational Risk Assessment and Exposure Limit Derivation.

作者信息

Kuempel Eileen D, Sweeney Lisa M, Morris John B, Jarabek Annie M

机构信息

a National Institute for Occupational Safety and Health , Education and Information Division , Cincinnati , Ohio.

b Henry M. Jackson Foundation for the Advancement of Military Medicine , Naval Medical Research Unit Dayton, Wright-Patterson Air Force Base , Ohio.

出版信息

J Occup Environ Hyg. 2015;12 Suppl 1(sup1):S18-40. doi: 10.1080/15459624.2015.1060328.

Abstract

The purpose of this article is to provide an overview and practical guide to occupational health professionals concerning the derivation and use of dose estimates in risk assessment for development of occupational exposure limits (OELs) for inhaled substances. Dosimetry is the study and practice of measuring or estimating the internal dose of a substance in individuals or a population. Dosimetry thus provides an essential link to understanding the relationship between an external exposure and a biological response. Use of dosimetry principles and tools can improve the accuracy of risk assessment, and reduce the uncertainty, by providing reliable estimates of the internal dose at the target tissue. This is accomplished through specific measurement data or predictive models, when available, or the use of basic dosimetry principles for broad classes of materials. Accurate dose estimation is essential not only for dose-response assessment, but also for interspecies extrapolation and for risk characterization at given exposures. Inhalation dosimetry is the focus of this paper since it is a major route of exposure in the workplace. Practical examples of dose estimation and OEL derivation are provided for inhaled gases and particulates.

摘要

本文旨在为职业健康专业人员提供关于吸入性物质职业接触限值(OELs)风险评估中剂量估算的推导及应用的概述和实用指南。剂量学是测量或估算个体或人群体内物质剂量的研究与实践。因此,剂量学为理解外部暴露与生物反应之间的关系提供了关键联系。通过提供靶组织内剂量的可靠估算,剂量学原理和工具的应用可提高风险评估的准确性,并降低不确定性。这可通过特定测量数据或预测模型(若有),或对各类材料运用基本剂量学原理来实现。准确的剂量估算不仅对剂量反应评估至关重要,对于种间外推以及给定暴露水平下的风险特征描述也必不可少。吸入剂量学是本文的重点,因为它是工作场所的主要暴露途径。本文提供了吸入气体和颗粒物剂量估算及OEL推导的实际示例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b9b/4685615/b2016a5f8f62/uoeh_a_1060328_f0001_oc.jpg

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