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首页> 外文期刊>Natural Resource Modeling >A SIMPLE LINEARIZATION PROCEDURE FOR OBTAINING R-0 FROM INVASIVE EPIDEMIC MODELS
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A SIMPLE LINEARIZATION PROCEDURE FOR OBTAINING R-0 FROM INVASIVE EPIDEMIC MODELS

机译:从侵入性流行病模型获得R-0的简单线性化过程

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Plant diseases often cause yield losses in agriculture worldwide. In mathematical ecology, the concept of the basic (or basal) reproduction number, R-0, has received little attention in the scientific literature related to phytopathogen transmission in plants. The spread and magnitude of outbreaks, the rate of invasion and infectivity of the etiologic agent, the contact complexities occurring among parasite and host, and its susceptibility and period of infectiousness are very important factors for epidemiological models. These mathematical models, when applied in ecology, can help to understand the spread of infections from phytopathogens (or pests) to plant hosts as well as detect potential risks of contamination or outbreaks by using the basic reproduction number in effective control strategies. In this study, the Maclaurin series concepts on the Force of Infection were applied to derive R-0 expressions from generic epidemiological SIR (Susceptible-Infected-Removed) models. Consequently, we were able to obtain these relations from three transmission-infection model examples. Then, once the expression of Force of Infection is known from the infectious problem studied, it is possible to apply this technique to formulate the R-0 relation and guide practicable strategies for dispersing invasive phytopathogen controls.
机译:在世界范围内,植物病害常常导致农业产量下降。在数学生态学中,基本(或基础)繁殖数R-0的概念在与植物中植物病原体传播有关的科学文献中很少受到关注。暴发的传播和程度,病原体的侵袭率和传染性,寄生虫与宿主之间发生的接触复杂性,易感性和传染性的时期是流行病学模型的重要因素。这些数学模型在生态学中应用时,可以帮助您了解从植物病原体(或害虫)到植物宿主的感染传播,并通过在有效控制策略中使用基本繁殖数来检测污染或爆发的潜在风险。在这项研究中,关于感染力的Maclaurin系列概念被应用于从通用流行病学SIR(易感性感染去除)模型中得出R-0表达。因此,我们能够从三个传播感染模型实例中获得这些关系。然后,一旦从研究的传染性问题中得知了感染力的表达,便有可能应用该技术制定R-0关系,并为分散侵入性植物病原体控制提供指导可行的策略。

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