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首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >The Bayesian population approach to physiological toxicokinetic-toxicodynamic models-an example using the MCSim software.
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The Bayesian population approach to physiological toxicokinetic-toxicodynamic models-an example using the MCSim software.

机译:贝叶斯群体方法对生理毒性动力学-毒性动力学模型的研究-使用MCSim软件的示例。

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摘要

The calibration of physiologically based toxicokinetic models against experimental data encompasses the merging of prior knowledge with information present in the data. This prior knowledge is manifested in the scientific literature and associated with various degrees of uncertainty. The most convenient way to combine these sources of information is via the use of Bayesian statistical methods. Furthermore, toxicokinetic models are subject to both inter- and intra-individual variability. This variability may be handled statistically by the use of a population model. The MCSim software, which is available for free download on the Internet, permits the use of a population model in combination with a Bayesian statistical approach. An example of the use of MCSim in a recent model-based risk assessment of dichloromethane (DCM) is given and discussed.
机译:根据实验数据对基于生理学的毒代动力学模型进行的校准包括将先验知识与数据中存在的信息进行合并。这种先验知识在科学文献中得到体现,并与各种程度的不确定性有关。组合这些信息源的最便捷方法是使用贝叶斯统计方法。此外,毒物动力学模型受个体间和个体内变异性的影响。可以通过使用总体模型来统计处理此可变性。 MCSim软件可从Internet上免费下载,该软件允许将人口模型与贝叶斯统计方法结合使用。给出并讨论了在最近的基于模型的二氯甲烷风险评估中使用MCSim的示例。

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