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Effects of Biotic Interactions, Abiotic Environments and Harvesting on the Spread of Hantavirus Infection

机译:生物相互作用,非生物环境与收获对汉坦病毒感染蔓延的影响

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In this paper, the combined influences of biotic interactions, environmental components and harvesting strategy on the spread of Hantavirus are investigated. By employing a multi-species model consisting of (susceptible and infected) rodents and alien species, we show that interspecific competition from alien species has an effect in reducing the spread of infection, and this species could be employed as a potential biocontrol agent. Our analysis using numerical continuation and simulation also reveals the conditions under which Hantavirus infection occurs and disappears as the environmental conditions and the intensity of harvesting change. Without harvesting, infection emerges when environments are conducive. Inclusion of moderate harvesting in favourable environments can lead to disappearance of infection among rodent species. However, as the intensity of harvesting increases, this situation can cause extinction of all rodents species and consequently, jeopardise biodiversity. Overall, our results demonstrate how the interplay of different factors can combine to determine the spread of infectious diseases.
机译:本文研究了生物相互作用,环境成分和收获策略对汉坦病毒蔓延的综合影响。通过采用由(易感和感染的)啮齿动物和外星物种组成的多种模型,我们表明来自外星物种的间隙竞争对减少感染的传播有效,并且该物种可用作潜在的生物控制剂。我们使用数值延续和模拟的分析还揭示了汉坦病毒感染发生的条件,并作为环境条件和收获变化的强度消失。没有收获,感染时会出现在环境中有利于。在有利环境中包含适度收获可能导致啮齿动物物种中感染的消失。然而,随着收获的强度增加,这种情况会导致所有啮齿动物物种的灭绝,从而危及生物多样性。总体而言,我们的结果表明了不同因素的相互作用如何结合以确定传染病的传播。

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