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Visualizing the impact of space-time uncertainties on dengue fever patterns

机译:可视化时空不确定性对登革热模式的影响

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In this article, we evaluate the impact of positional and temporal inaccuracies on the mapping and detection of potential outbreaks of dengue fever in Cali, an urban environment of Colombia. Positional uncertainties in input data are determined by comparison between coordinates following an automated geocoding process and those extracted from on-field GPS measurements. Temporal uncertainties are modeled around the incubation period for dengue fever. To test the robustness of disease intensities in space and time when accounting for the potential space-time error, each dengue case is perturbed using Monte Carlo simulations. A space-time kernel density estimation (STKDE) is conducted on both perturbed and observed sets of dengue cases. To reduce the computational effort, we use a parallel spatial computing solution. The results are visualized in a 3D framework, which facilitates the discovery of new, significant space-time patterns and shapes of dengue outbreaks while enhancing our understanding of complex and uncertain dynamics of vector-borne diseases.
机译:在本文中,我们评估了位置和时间上的不准确性对哥伦比亚城市环境卡利市中登革热潜在爆发的定位和检测的影响。输入数据中的位置不确定性是通过自动地理编码过程中的坐标与从现场GPS测量中提取的坐标之间的比较来确定的。在登革热潜伏期周围建立时间不确定性模型。为了在考虑潜在的时空误差时测试时空疾病强度的稳健性,使用蒙特卡洛模拟对每个登革热病例进行扰动。对受感染的登革热病例组和观察到的登革热病例进行时空核密度估计(STKDE)。为了减少计算量,我们使用并行空间计算解决方案。结果在3D框架中可视化,这有助于发现新的重要时空模式和登革热暴发形式,同时增强我们对媒介传播疾病复杂和不确定动态的理解。

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