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Coexistence of different serotypes of dengue virus

机译:血清型不同的登革热病毒并存

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We formulate a non-linear system of differential equations that models the dynamics of dengue fever. This disease is produced by any of the four serotypes of dengue arbovirus. Each serotype produces permanent immunity to it, but only a certain degree of cross-immunity to heterologous serotypes. In our model we consider the relation between two serotypes. Our interest is to analyze the factors that allow the invasion and persistence of different serotypes in the human population. Analysis of the model reveals the existence of four equilibrium points, which belong to the region of biological interest. One of the equilibrium points corresponds to the disease-free state, the other three equilibria correspond to the two states where just one serotype is present, and the state where both serotypes coexist, respectively. We discuss conditions for the asymptotic stability of equilibria, supported by analytical and numerical methods. We find that coexistence of both serotypes is possible for a large range of parameters. [References: 14]
机译:我们制定了一个非线性的微分方程系统,用于模拟登革热的动力学。该疾病是由四种血清型登革虫病毒产生的。每种血清型都会对其产生永久性免疫,但对异源血清型只会产生一定程度的交叉免疫。在我们的模型中,我们考虑了两种血清型之间的关系。我们的兴趣是分析允许不同血清型入侵和持久存在的因素。对模型的分析揭示了四个平衡点的存在,它们属于生物学关注区域。平衡点之一对应于无病状态,其他三个平衡分别对应于仅存在一种血清型的两个状态和两种血清型共存的状态。我们讨论了由分析和数值方法支持的平衡点渐近稳定性的条件。我们发现,对于大量参数,两种血清型可以共存。 [参考:14]

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