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Mechanisms of replacement of circulating viruses by seasonal and pandemic influenza A viruses

机译:季节性和大流行性甲型流感病毒替代循环病毒的机制

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Background: Seasonal influenza causes annual epidemics by the accumulation of antigenic changes. Pandemic influenza occurs through a major antigenic change of the influenza A virus, which can originate from other hosts. Although new antigenic variants of the influenza A virus replace formerly circulating seasonal and pandemic viruses, replacement mechanisms remain poorly understood. Methods: A stochastic individual-based SEIR (susceptible-exposed-infectious-recovered) model with two viral strains (formerly circulating old strain and newly emerged strain) was developed for simulations to elucidate the replacement mechanisms. Results: Factors and conditions of virus and host populations affecting the replacement were identified. Replacement is more likely to occur in tropical regions than temperate regions. The magnitude of the ongoing epidemic by the old strain, herd immunity against the old strain, and timing of appearance of the new strain are not that important for replacement. It is probable that the frequency of replacement by a pandemic virus is higher than a seasonal virus because of the high initial susceptibility and high basic reproductive number of the pandemic virus. Conclusions: The findings of this study on replacement mechanisms could lead to a better understanding of virus transmission dynamics and may possibly be helpful in establishing an effective strategy to mitigate the impact of seasonal and pandemic influenza.
机译:背景:季节性流感通过抗原变化的积累而导致年度流行病。大流行性流感是通过甲型流感病毒的主要抗原变化而发生的,而甲型流感病毒可能源于其他宿主。尽管甲型流感病毒的新抗原变体替代了以前传播的季节性和大流行性病毒,但对替代机制的了解仍然很少。方法:建立了一个随机的基于个体的具有两个病毒株(以前循环的旧株和新出现的株)的SEIR(易感暴露传染恢复)模型,用于模拟,以阐明其替代机制。结果:确定了影响替代的病毒和宿主种群的因素和条件。与温带地区相比,热带地区更容易发生替换。旧菌株持续流行的程度,对旧菌株的牛群免疫力以及新菌株的出现时间对于更换来说并不那么重要。由于大流行病毒的高初始易感性和高基本繁殖数,大流行病毒的替换频率可能高于季节性病毒。结论:本研究关于替代机制的研究结果可以使人们更好地了解病毒传播动态,并可能有助于建立减轻季节性和大流行性流感影响的有效策略。

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