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Second-Order Modeling of Variability and Uncertainty in Microbial Hazard Characterization

机译:微生物危害表征中变异性和不确定性的二阶建模

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This study describes an analytical framework that permits quantitative consideration of variability and uncertainty in microbial hazard characterization. Second-order modeling that used two-dimensional Monte Carlo simulation and stratification into homogeneous population subgroups was applied to integrate uncertainty and variability. Specifically, the bootstrap method was used to simulate sampling error due to the limited sample size in microbial dose-response modeling. A data set from human feeding trials with Campylobacter jejuni was fitted to the log-logistic dose-response model, and results from the analysis of FoodNet surveillance data provided further information on variability and uncertainty in Campylobacter susceptibility due to the effect of age. Results of our analyses indicate that uncertainty associated with dose-response modeling has a dominating influence on the analytical outcome. In contrast, inclusion of the age factor has a limited impact. While the advocacy of more closely modeling variability in hazard characterization is warranted, the characterization of key sources of uncertainties and their consistent propagation throughout a microbial risk assessment actually appear of greater importance.
机译:这项研究描述了一个分析框架,该框架允许对微生物危害特征描述中的变异性和不确定性进行定量考虑。二阶建模使用了二维蒙特卡罗模拟和分层方法,将其分为同质总体子组,以整合不确定性和可变性。具体而言,自举方法用于模拟由于微生物剂量反应模型中有限的样本量而引起的抽样误差。来自空肠弯曲菌的人类喂养试验的数据集被拟合为对数逻辑剂量反应模型,FoodNet监测数据的分析结果提供了关于年龄影响引起弯曲菌敏感性的可变性和不确定性的进一步信息。我们的分析结果表明,与剂量反应模型相关的不确定性对分析结果具有主要影响。相反,年龄因素的影响有限。尽管有必要提倡在危险性特征描述中对变异性进行更紧密的建模,但实际上,鉴定不确定性的关键来源及其在整个微生物风险评估中的持续传播的特征似乎更为重要。

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