Regional response of dengue fever epidemics to interannual variation and related climate variability

被引:0
|
作者
Chung-Min Liao
Tang-Luen Huang
Yi-Jun Lin
Shu-Han You
Yi-Hsien Cheng
Nan-Hung Hsieh
Wei-Yu Chen
机构
[1] National Taiwan University,Department of Bioenvironmental Systems Engineering
[2] Ministry of Labor,Institute of Labor, Occupational Safety and Health
[3] Kaohsiung Medical University,Department of Biomedical Science and Environmental Biology
来源
Stochastic Environmental Research and Risk Assessment | 2015年 / 29卷
关键词
Dengue; Mosquito; Climate variability; Interannual variation; Statistical indicator; Vector-borne diseases;
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学科分类号
摘要
Dengue is a major international public health concern and one of the most important vector-borne diseases. The purpose of this article is to investigate the association among temperature, rainfall, relative humidity, and dengue fever by incorporating the lag effect and examining the dominant interannual model of the modern climate, the El Niño Southern Oscillation (ENSO), in the southern region of Taiwan. We built a linear Poisson regression model by including linear time treads and statistical indicators, verified with disease data in the 2004–2013 period. Here we showed that regional climatic factors in association with the interannual climate variability expressed by the ENSO phenomenon had a significant influence on the dynamics of urban dengue fever in southern Taiwan. The 2–4-month lag of statistical indicators of regional climate factors together with the 4-month lagged Pacific surface temperature (SST) anomaly in the proposed Poisson regression model could capture the regional dengue incidence patterns well. The statistical indicators of mean and coefficient of variation of temperature showed the greatest impact on the dengue incidence rate. We also found that the dengue incidence rate increased significantly with the lag effect of the warmer SST. The ability to forecast regional dengue incidence in southern Taiwan could permit pretreatment of mosquito habitats adjacent to human habitations with highly effective insecticides that would be released at the time of the high-temperature season.
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页码:947 / 958
页数:11
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