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Strain Interactions as a Mechanism for Dominant Strain Alternation and Incidence Oscillation in Infectious Diseases: Seasonal Influenza as a Case Study

机译:菌株相互作用作为传染病中主要菌株交替和发病振荡的机制:以季节性流感为例

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摘要

BackgroundMany human infectious diseases are caused by pathogens that have multiple strains and show oscillation in infection incidence and alternation of dominant strains which together are referred to as epidemic cycling. Understanding the underlying mechanisms of epidemic cycling is essential for forecasting outbreaks of epidemics and therefore important for public health planning. Current theoretical effort is mainly focused on the factors that are extrinsic to the pathogens themselves (“extrinsic factors”) such as environmental variation and seasonal change in human behaviours and susceptibility. Nevertheless, co-circulation of different strains of a pathogen was usually observed and thus strains interact with one another within concurrent infection and during sequential infection. The existence of these intrinsic factors is common and may be involved in the generation of epidemic cycling of multi-strain pathogens.
机译:背景技术许多人类传染病是由具有多种毒株的病原体引起的,这些病原体在感染发生率和占主导地位的毒株交替出现振荡的过程中,统称为流行周期。了解流行病循环的基本机制对于预测流行病的爆发至关重要,因此对于公共卫生规划也很重要。当前的理论努力主要集中在病原体本身的外部因素(“外部因素”),例如环境变化以及人类行为和易感性的季节性变化。然而,通常观察到病原体不同菌株的共同循环,因此在并发感染期间和在顺序感染期间,菌株彼此相互作用。这些内在因素的存在是普遍的,并且可能与多菌株病原体的流行循环的产生有关。

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    Xu-Sheng Zhang;

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  • 年(卷),期 -1(10),11
  • 年度 -1
  • 页码 e0142170
  • 总页数 25
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