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Spatial-Temporal Epidemiology of Tuberculosis in Mainland China: An Analysis Based on Bayesian Theory

机译:中国大陆结核病的时空流行病学:基于贝叶斯理论的分析

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摘要

Objective: To explore the spatial-temporal interaction effect within a Bayesian framework and to probe the ecological influential factors for tuberculosis. Methods: Six different statistical models containing parameters of time, space, spatial-temporal interaction and their combination were constructed based on a Bayesian framework. The optimum model was selected according to the deviance information criterion (DIC) value. Coefficients of climate variables were then estimated using the best fitting model. Results: The model containing spatial-temporal interaction parameter was the best fitting one, with the smallest DIC value (−4,508,660). Ecological analysis results showed the relative risks (RRs) of average temperature, rainfall, wind speed, humidity, and air pressure were 1.00324 (95% CI, 1.00150–1.00550), 1.01010 (95% CI, 1.01007–1.01013), 0.83518 (95% CI, 0.93732–0.96138), 0.97496 (95% CI, 0.97181–1.01386), and 1.01007 (95% CI, 1.01003–1.01011), respectively. Conclusions: The spatial-temporal interaction was statistically meaningful and the prevalence of tuberculosis was influenced by the time and space interaction effect. Average temperature, rainfall, wind speed, and air pressure influenced tuberculosis. Average humidity had no influence on tuberculosis.
机译:目的:探讨贝叶斯框架内的时空相互作用效应,探讨结核病的生态影响因素。方法:基于贝叶斯框架,建立了六个包含时间,空间,时空相互作用参数及其组合的统计模型。根据偏差信息标准(DIC)值选择最佳模型。然后使用最佳拟合模型估算气候变量的系数。结果:包含时空相互作用参数的模型是最合适的模型,其DIC值最小(-4,508,660)。生态分析结果表明,平均温度,降雨量,风速,湿度和气压的相对风险(RRs)分别为1.00324(95%CI,1.00150–1.00550),1.01010(95%CI,1.01007–1.01013),0.83518(95 CI分别为0.93732-0.96138、0.97496(95%CI,0.97181-1.01386)和1.01007(95%CI,1.01003-1.01011)。结论:时空相互作用具有统计学意义,时空相互作用影响结核病的流行。平均温度,降雨,风速和气压影响了结核病。平均湿度对结核病没有影响。

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