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Modelling the effects of contaminated environments onudHFMD infections in mainland China

机译:建模受污染环境对 ud的影响中国大陆手足口病感染

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摘要

Hand-foot-mouth disease (HFMD) has spread widely in mainland China increasing in prevalence in most years with serious consequences for child health. The HFMD virus can survive for a long period outside the host in suitable conditions, and hence contaminated environments may play important roles in HFMD infection. A new mathematical model was proposed and used to investigate the roles that asymptomatic individuals and contaminated environments played in HFMD dynamics. The model includes both direct transmission between susceptible and infected individuals and indirect transmission via free-living infectious unites in the environment. Theoretical analysis shows that the disease goes to extinction if the basic reproduction number is less than unity, whilst otherwise the disease persists. By fitting the proposed model to surveillance data we estimated the basic reproduction number as 1.509. Numerical simulations show that increasing the rate of virus clearance and decreasing transmission rates can delay epidemic outbreaks and weaken the severity of HFMD. Sensitivity analysis indicated that the basic reproduction number is sensitive to the transmission rate induced by asymptomatic infectious individuals and parameters associated with contaminated environments such as the indirect transmission rate, the rate of clearance and the virus shedding rates. This implies that asymptomatic infectious individuals and contaminated environments contribute substantially to new HFMD infections, and so would be targets for effective control measures.
机译:手足口病(HFMD)在中国大陆广泛传播,在大多数年份中,流行率不断上升,对儿童健康造成严重影响。 HFMD病毒可以在合适的条件下在宿主体外长期存活,因此受污染的环境可能在HFMD感染中起重要作用。提出了一种新的数学模型,并用于研究无症状个体和受污染环境在手足口病动力学中的作用。该模型既包括易感人群和受感染个体之间的直接传播,也包括环境中通过自由生存的传染单位间接传播。理论分析表明,如果基本繁殖数小于1,则该疾病灭绝,否则该疾病继续存在。通过将建议的模型拟合到监视数据,我们估计基本复制数为1.509。数值模拟表明,提高病毒清除率和降低传播率可以延迟流行病的爆发并削弱手足口病的严重性。敏感性分析表明,基本繁殖数量对无症状感染者引起的传播速率以及与污染环境相关的参数敏感,例如间接传播速率,清除率和病毒脱落率。这意味着无症状的传染性个体和受污染的环境在很大程度上造成了新的手足口病感染,因此将成为有效控制措施的目标。

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