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Mixed-effects modelling for crossed and nested data: an analysis of dengue fever in the state of Goias, Brazil

机译:交叉和嵌套数据的混合效应建模:巴西吉拉斯状态登革热分析

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Dengue fever is a viral disease transmitted by the mosquito Aedes aegypti. In order to avoid epidemics and deaths, this transmitting vector must be controlled. This work assembles, for the first time, data from multiple governmental bodies describing the number of dengue cases reported, and meteorological conditions in 20 cities in the Goias state, Brazil, from 2008 to 2015. We then apply generalised linear mixed modelling to this novel data set to model dengue occurrences in this state, where the tropical climate favours the proliferation of the main transmitting vector of this disease. The number of reported dengue cases is estimated using meteorological variables as fixed effects, and city and year data are included in the model as random effects. The proposed models can cope with complex data structures, such as nested data, while taking into account the particularities of each year dependent on the city under analysis. The results confirm that precipitation, minimum temperature, and relative air humidity contribute to the increase of dengue cases number, while year and city location are determining factors. Public policies, based on these new results, together with joint actions involving local populations, are essential to combat the vector transmitting dengue and avoid epidemics.
机译:登革热是由蚊子alegypti传播的病毒疾病。为了避免流行病和死亡,必须控制该发射矢量。这项工作首次组建了来自多个政府机构的数据,描述了报告的登革修案件数量,巴西吉拉斯州20个城市的气象状况,从2008年到2015年。然后,我们将广义的线性混合建模应用于这部小说数据设置为在这种状态下模拟登革热事件,热带气候有利于这种疾病的主要传播载体的增殖。使用气象变量作为固定效果估算报告的登革病例的数量,并且城市和年度数据包含在模型中作为随机效应。所提出的模型可以应对复杂的数据结构,例如嵌套数据,同时考虑到在分析下依赖城市的每年的特殊性。结果证实,降水,最低温度和相对空气湿度有助于增加登革病人数量,而年度和城市地点正在确定因素。根据这些新结果的公共政策与涉及当地群体的联合行动,对于打击传输登革热并避免流行病至关重要。

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