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Construction of A New Dose–Response Model for Staphylococcus aureus Considering Growth and Decay Kinetics on Skin

机译:考虑皮肤生长和衰变动力学的金黄色葡萄球菌剂量-反应模型的构建

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摘要

In order to determine the relationship between an exposure dose of ( ) on the skin and the risk of infection, an understanding of the bacterial growth and decay kinetics is very important. Models are essential tools for understanding and predicting bacterial kinetics and are necessary to predict the dose of organisms post-exposure that results in a skin infection. One of the challenges in modeling bacterial kinetics is the estimation of model parameters, which can be addressed using an inverse problem approach. The objective of this study is to construct a microbial kinetic model of on human skin and use the model to predict concentrations of that result in human infection. In order to model the growth and decay of on skin, a Gompertz inactivation model was coupled with a Gompertz growth model. A series of analyses, including ordinary least squares regression, scaled sensitivity coefficient analysis, residual analysis, and parameter correlation analysis were conducted to estimate the parameters and to describe the model uncertainty. Based on these analyses, the proposed model parameters were estimated with high accuracy. The model was then used to develop a new dose-response model for using the exponential dose–response model. The new model has an optimized k parameter equivalent to 8.05 × 10 with 95 percentile confidence intervals between 6.46 × 10 and 1.00 × 10 .
机译:为了确定()在皮肤上的暴露剂量与感染风险之间的关系,了解细菌的生长和衰变动力学非常重要。模型是理解和预测细菌动力学的重要工具,对于预测导致皮肤感染的接触后生物体的剂量也是必需的。对细菌动力学建模的挑战之一是模型参数的估计,这可以使用反问题方法解决。这项研究的目的是构建人类皮肤上的微生物动力学模型,并使用该模型预测导致人类感染的浓度。为了模拟皮肤上的生长和衰退,将Gompertz灭活模型与Gompertz生长模型耦合。进行了一系列分析,包括普通最小二乘回归,比例灵敏度系数分析,残差分析和参数相关性分析,以估计参数并描述模型的不确定性。基于这些分析,可以对所提出的模型参数进行高精度估计。然后,该模型用于开发使用指数剂量反应模型的新剂量反应模型。新模型的优化k参数等于8.05×10,95%的置信区间在6.46×10和1.00×10之间。

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