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The dynamics of measles in sub-Saharan Africa

机译:撒哈拉以南非洲的麻疹动态

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Although vaccination has almost eliminated measles in parts of the world, the disease remains a major killer in some high birth rate countries of the Sahel. On the basis of measles dynamics for industrialized countries, high birth rate regions should experience regular annual epidemics. Here, however, we show that measles epidemics in Niger are highly episodic, particularly in the capital Niamey. Models demonstrate that this variability arises from powerful seasonality in transmission-generating high amplitude epidemics-within the chaotic domain of deterministic dynamics. In practice, this leads to frequent stochastic fadeouts, interspersed with irregular, large epidemics. A metapopulation model illustrates how increased vaccine coverage, but still below the local elimination threshold, could lead to increasingly variable major outbreaks in highly seasonally forced contexts. Such erratic dynamics emphasize the importance both of control strategies that address build-up of susceptible individuals and efforts to mitigate the impact of large outbreaks when they occur.
机译:尽管在世界部分地区接种疫苗已几乎消除了麻疹,但该疾病仍然是萨赫勒地区一些高出生率国家的主要杀手。根据工业化国家的麻疹动态,高出生率地区应每年定期流行。但是,在这里,我们表明尼日尔的麻疹流行是高度流行的,尤其是在首都尼亚美。模型表明,这种变异性是由于在确定性动力学的混沌域内,传播产生的高振幅流行病中强大的季节性而产生的。在实践中,这会导致随机的淡入淡出,并散布着不规则的大流行病。一个荟萃模型说明了疫苗覆盖率的增加,但仍低于局部消除阈值,如何在高度季节性迫使的情况下导致不断变化的重大疫情。这种不稳定的动态既强调了应对易感人群的控制策略的重要性,也要求努力减轻大规模爆发时的影响。

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