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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >A priori prediction of disease invasion dynamics in a novel environment
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A priori prediction of disease invasion dynamics in a novel environment

机译:在新环境中疾病入侵动态的先验预测

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摘要

Directly transmitted infectious diseases spread through wildlife populations as travelling waves away from the sites of original introduction. These waves often become distorted through their interaction with environmental and population heterogeneities and by long-distance translocation of infected individuals. Accurate a priori predictions of travelling waves of infection depend upon understanding and quantifying these distorting factors. We assess the effects of anisotropies arising from the orientation of rivers in relation to the direction of disease-front propagation and the damming effect of mountains on disease movement in natural populations. The model successfully predicts the local and large-scale prevaccination spread of raccoon rabies through New York State, based on a previous spatially heterogeneous model of raccoon-rabies invasion across the state of Connecticut. Use of this model provides a rare example of a priori prediction of an epidemic invasion over a naturally heterogeneous landscape. Model predictions matched to data can also be used to evaluate the most likely points of disease introduction. These results have general implications for predicting future pathogen invasions and evaluating potential containment strategies. [References: 18]
机译:直接传播的传染病以传播波的形式传播,从野生生物种群中传播出去,远离原先的引进地点。这些波通常由于与环境和种群异质性的相互作用以及受感染个体的远距离转移而变得失真。感染传播波的准确先验预测取决于对这些扭曲因素的理解和量化。我们评估了由于河流相对于疾病锋面传播的方向以及山脉对自然种群中疾病运动的抑制作用而引起的各向异性的影响。该模型基于先前整个康涅狄格州浣熊-狂犬病入侵的空间异质模型,成功地预测了浣熊狂犬病在纽约州的局部和大规模预疫苗传播。该模型的使用提供了一个罕见的事例,可以对自然异质景观上的流行病侵袭进行先验预测。与数据匹配的模型预测也可以用于评估疾病引入的最可能点。这些结果对于预测未来的病原体入侵和评估潜在的遏制策略具有一般意义。 [参考:18]

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