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首页> 外文期刊>Risk analysis >Stochastic, Compartmental, and Dynamic Modeling of Cross-Contamination During Mechanical Smearing of Cheeses
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Stochastic, Compartmental, and Dynamic Modeling of Cross-Contamination During Mechanical Smearing of Cheeses

机译:奶酪机械涂片过程中交叉污染的随机,区划和动态建模

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摘要

Cheese smearing is a complex process and the potential for cross-contamination with pathogenic or undesirable microorganisms is critical. During ripening, cheeses are salted and washed with brine to develop flavor and remove molds that could develop on the surfaces. Considering the potential for cross-contamination of this process in quantitative risk assessments could contribute to a better understanding of this phenomenon and, eventually, improve its control. The purpose of this article is to model the cross-contamination of smear-ripened cheeses due to the smearing operation under industrial conditions. A compartmental, dynamic, and stochastic model is proposed for mechanical brush smearing. This model has been developed to describe the exchange of microorganisms between compartments. Based on the analytical solution of the model equations and on experimental data collected with an industrial smearing machine, we assessed the values of the transfer parameters of the model. Monte Carlo simulations, using the distributions of transfer parameters, provide the final number of contaminated products in a batch and their final level of contamination for a given scenario taking into account the initial number of contaminated cheeses of the batch and their contaminant load. Based on analytical results, the model provides indicators for smearing efficiency and propensity of the process for cross-contamination. Unlike traditional approaches in mechanistic models, our approach captures the variability and uncertainty inherent in the process and the experimental data. More generally, this model could represent a generic base to use in modeling similar processes prone to cross-contamination.
机译:奶酪涂抹是一个复杂的过程,与致病性或不良微生物交叉污染的可能性至关重要。在成熟过程中,将奶酪腌制并用盐水洗涤,以产生风味并去除可能在表面上形成的霉菌。在定量风险评估中考虑此过程的交叉污染的可能性可能有助于更好地理解此现象,并最终改善其控制。本文的目的是对由于工业条件下的涂抹操作而造成的涂抹奶酪的交叉污染进行建模。提出了一种用于机械刷涂的间隔,动态和随机模型。已经开发出该模型来描述隔室之间的微生物交换。基于模型方程的解析解和基于工业涂片机收集的实验数据,我们评估了模型传递参数的值。蒙特卡洛模拟法使用传递参数的分布,提供了批次中受污染产品的最终数量及其在给定情况下的最终污染水平,同时考虑了批次中受污染奶酪的初始数量及其污染物负荷。基于分析结果,该模型提供了涂抹效率和交叉污染过程倾向性的指标。与机械模型中的传统方法不同,我们的方法捕获了过程和实验数据中固有的可变性和不确定性。更一般而言,该模型可以代表通用基础,用于对易于发生交叉污染的相似过程进行建模。

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