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Transmission Dynamics of the Recently-Identified BYD Virus Causing Duck Egg-Drop Syndrome

机译:最近鉴定出的引起鸭卵综合征的比亚迪病毒的传播动力学

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摘要

Baiyangdian (BYD) virus is a recently-identified mosquito-borne flavivirus that causes severe disease in ducks, with extremely rapid transmission, up to 15% mortality within 10 days and 90% reduction in egg production on duck farms within 5 days of infection. Because of the zoonotic nature of flaviviruses, the characterization of BYD virus and its epidemiology are important public health concerns. Here, we develop a mathematical model for the transmission dynamics of this novel virus. We validate the model against BYD outbreak data collected from duck farms in Southeast China, as well as experimental data obtained from an animal facility. Based on our model, the basic reproductive number of BYD virus is high (R0 = 21) indicating that this virus is highly transmissible, consistent with the dramatic epidemiology observed in BYDV-affected duck farms. Our results indicate that younger ducks are more vulnerable to BYD disease and that ducks infected with BYD virus reduce egg production (to about 33% on average) for about 3 days post-infection; after 3 days infected ducks are no longer able to produce eggs. Using our model, we predict that control measures which reduce contact between mosquitoes and ducks such as mosquito nets are more effective than insecticides.
机译:白洋淀(BYD)病毒是一种最近发现的由蚊子传播的黄病毒,在鸭中引起严重疾病,传播极为迅速,在感染后5天内10天内死亡率高达15%,鸭场产蛋量减少90%。由于黄病毒的人畜共患性质,比亚迪病毒的特征及其流行病学是重要的公共卫生问题。在这里,我们为这种新型病毒的传播动力学建立了数学模型。我们针对从中国东南部鸭场收集的比亚迪暴发数据以及从动物设施获得的实验数据验证了该模型。根据我们的模型,BYD病毒的基本繁殖数量很高(R0 = indicating21),表明该病毒是高度可传播的,与在受BYDV影响的鸭场中观察到的流行病学一致。我们的结果表明,年轻的鸭子更容易受到BYD疾病的感染,感染BYD病毒的鸭子会在感染后约3天减少产蛋量(平均降低到约33%)。 3天后,受感染的鸭子不再能够产卵。使用我们的模型,我们预测减少蚊子和鸭子之间的接触的控制措施(例如蚊帐)比杀虫剂更有效。

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