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首页> 外文期刊>Mathematical Biosciences: An International Journal >Relations between deterministic and stochastic thresholds for disease extinction in continuous-and discrete-time infectious disease models
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Relations between deterministic and stochastic thresholds for disease extinction in continuous-and discrete-time infectious disease models

机译:连续和离散时间传染病模型中疾病灭绝的确定性和随机性阈值之间的关系

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摘要

Thresholds for disease extinction provide essential information for control, eradication or management of diseases. Through relations between branching process theory and the corresponding deterministic model, it is shown that the deterministic and stochastic thresholds are in agreement for discrete-time and continuous-time infectious disease models with multiple infectious groups. Branching process theory can be applied in conjunction with the deterministic model to give additional information about disease extinction. These relations are illustrated, analytically and numerically, in two settings, a general stage-structured model and a vector-host model applied to West Nile virus in mosquitoes and birds.
机译:疾病灭绝阈值为控制,根除或管理疾病提供了重要信息。通过分支过程理论与相应的确定性模型之间的关系,表明对于具有多个传染群的离散时间和连续时间传染病模型,确定性和随机阈值是一致的。分支过程理论可以与确定性模型一起应用,以提供有关疾病灭绝的其他信息。这些关系在两种情况下以分析和数字方式进行了说明,它们是应用于蚊子和鸟类的西尼罗河病毒的一般阶段结构模型和载体-宿主模型。

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