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An evaluation of toxicity extrapolation methods used to develop toxicity reference values for ecological risk assessments.

机译:对毒性外推方法的评估,用于开发毒性参考值以进行生态风险评估。

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The objective of this thesis was to review and comment on the various methods available for the extrapolation of laboratory toxicity data and to determine which extrapolation method (for a select number of species and chemicals) most accurately represents available wildlife toxicity data. To do this, wildlife and laboratory toxicity data were complied for one organic and two inorganic chemicals (i.e., methylmercury, selenium and cadmium). Toxicity reference values (TRVs) for each of these chemicals were derived for a variety of species using species-specific toxicity data (i.e., data from toxicity studies conducted on the wildlife species of interest). TRVs were also derived for a variety of wildlife species using non-species-specific laboratory data (e.g., toxicity data on laboratory rodents) and by applying either the uncertainty factor or allometric scaling approach to extrapolate toxicity data from one species to another. The species-specific TRVs were then compared to the laboratory-derived wildlife TRVs to observe how well the wildlife TRVs were predicted by the toxicity extrapolation methods. (Abstract shortened by UMI.)
机译:本文的目的是审查和评论可用于实验室毒性数据外推的各种方法,并确定哪种外推方法(针对一定数量的物种和化学物质)最准确地代表可用的野生生物毒性数据。为此,针对一种有机和两种无机化学品(即甲基汞,硒和镉),编制了野生动植物和实验室毒性数据。使用特定于物种的毒性数据(即,对感兴趣的野生动植物物种进行的毒性研究得出的数据),得出了每种化学物质对每种物种的毒性参考值(TRV)。还使用非特定物种的实验室数据(例如,实验室啮齿动物的毒性数据),并通过应用不确定性因子或异度缩放方法将一种物种的毒性数据外推到各种野生动物物种,得出了TRV。然后将特定物种的TRV与实验室衍生的野生动物TRV进行比较,以观察通过毒性外推法对野生动物TRV的预测程度。 (摘要由UMI缩短。)

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