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Population Density, Water Supply, and the Risk of Dengue Fever in Vietnam: Cohort Study and Spatial Analysis

BACKGROUND: Aedes aegypti, the major vector of dengue viruses, often breeds in water storage containers used by households without tap water supply, and occurs in high numbers even in dense urban areas. We analysed the interaction between human population density and lack of tap water as a cause of...

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Autores principales: Schmidt, Wolf-Peter, Suzuki, Motoi, Dinh Thiem, Vu, White, Richard G., Tsuzuki, Ataru, Yoshida, Lay-Myint, Yanai, Hideki, Haque, Ubydul, Huu Tho, Le, Anh, Dang Duc, Ariyoshi, Koya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3168879/
https://www.ncbi.nlm.nih.gov/pubmed/21918642
http://dx.doi.org/10.1371/journal.pmed.1001082
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author Schmidt, Wolf-Peter
Suzuki, Motoi
Dinh Thiem, Vu
White, Richard G.
Tsuzuki, Ataru
Yoshida, Lay-Myint
Yanai, Hideki
Haque, Ubydul
Huu Tho, Le
Anh, Dang Duc
Ariyoshi, Koya
author_facet Schmidt, Wolf-Peter
Suzuki, Motoi
Dinh Thiem, Vu
White, Richard G.
Tsuzuki, Ataru
Yoshida, Lay-Myint
Yanai, Hideki
Haque, Ubydul
Huu Tho, Le
Anh, Dang Duc
Ariyoshi, Koya
author_sort Schmidt, Wolf-Peter
collection PubMed
description BACKGROUND: Aedes aegypti, the major vector of dengue viruses, often breeds in water storage containers used by households without tap water supply, and occurs in high numbers even in dense urban areas. We analysed the interaction between human population density and lack of tap water as a cause of dengue fever outbreaks with the aim of identifying geographic areas at highest risk. METHODS AND FINDINGS: We conducted an individual-level cohort study in a population of 75,000 geo-referenced households in Vietnam over the course of two epidemics, on the basis of dengue hospital admissions (n = 3,013). We applied space-time scan statistics and mathematical models to confirm the findings. We identified a surprisingly narrow range of critical human population densities between around 3,000 to 7,000 people/km(2) prone to dengue outbreaks. In the study area, this population density was typical of villages and some peri-urban areas. Scan statistics showed that areas with a high population density or adequate water supply did not experience severe outbreaks. The risk of dengue was higher in rural than in urban areas, largely explained by lack of piped water supply, and in human population densities more often falling within the critical range. Mathematical modeling suggests that simple assumptions regarding area-level vector/host ratios may explain the occurrence of outbreaks. CONCLUSIONS: Rural areas may contribute at least as much to the dissemination of dengue fever as cities. Improving water supply and vector control in areas with a human population density critical for dengue transmission could increase the efficiency of control efforts. Please see later in the article for the Editors' Summary
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spelling pubmed-31688792011-09-14 Population Density, Water Supply, and the Risk of Dengue Fever in Vietnam: Cohort Study and Spatial Analysis Schmidt, Wolf-Peter Suzuki, Motoi Dinh Thiem, Vu White, Richard G. Tsuzuki, Ataru Yoshida, Lay-Myint Yanai, Hideki Haque, Ubydul Huu Tho, Le Anh, Dang Duc Ariyoshi, Koya PLoS Med Research Article BACKGROUND: Aedes aegypti, the major vector of dengue viruses, often breeds in water storage containers used by households without tap water supply, and occurs in high numbers even in dense urban areas. We analysed the interaction between human population density and lack of tap water as a cause of dengue fever outbreaks with the aim of identifying geographic areas at highest risk. METHODS AND FINDINGS: We conducted an individual-level cohort study in a population of 75,000 geo-referenced households in Vietnam over the course of two epidemics, on the basis of dengue hospital admissions (n = 3,013). We applied space-time scan statistics and mathematical models to confirm the findings. We identified a surprisingly narrow range of critical human population densities between around 3,000 to 7,000 people/km(2) prone to dengue outbreaks. In the study area, this population density was typical of villages and some peri-urban areas. Scan statistics showed that areas with a high population density or adequate water supply did not experience severe outbreaks. The risk of dengue was higher in rural than in urban areas, largely explained by lack of piped water supply, and in human population densities more often falling within the critical range. Mathematical modeling suggests that simple assumptions regarding area-level vector/host ratios may explain the occurrence of outbreaks. CONCLUSIONS: Rural areas may contribute at least as much to the dissemination of dengue fever as cities. Improving water supply and vector control in areas with a human population density critical for dengue transmission could increase the efficiency of control efforts. Please see later in the article for the Editors' Summary Public Library of Science 2011-08-30 /pmc/articles/PMC3168879/ /pubmed/21918642 http://dx.doi.org/10.1371/journal.pmed.1001082 Text en Schmidt et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Schmidt, Wolf-Peter
Suzuki, Motoi
Dinh Thiem, Vu
White, Richard G.
Tsuzuki, Ataru
Yoshida, Lay-Myint
Yanai, Hideki
Haque, Ubydul
Huu Tho, Le
Anh, Dang Duc
Ariyoshi, Koya
Population Density, Water Supply, and the Risk of Dengue Fever in Vietnam: Cohort Study and Spatial Analysis
title Population Density, Water Supply, and the Risk of Dengue Fever in Vietnam: Cohort Study and Spatial Analysis
title_full Population Density, Water Supply, and the Risk of Dengue Fever in Vietnam: Cohort Study and Spatial Analysis
title_fullStr Population Density, Water Supply, and the Risk of Dengue Fever in Vietnam: Cohort Study and Spatial Analysis
title_full_unstemmed Population Density, Water Supply, and the Risk of Dengue Fever in Vietnam: Cohort Study and Spatial Analysis
title_short Population Density, Water Supply, and the Risk of Dengue Fever in Vietnam: Cohort Study and Spatial Analysis
title_sort population density, water supply, and the risk of dengue fever in vietnam: cohort study and spatial analysis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3168879/
https://www.ncbi.nlm.nih.gov/pubmed/21918642
http://dx.doi.org/10.1371/journal.pmed.1001082
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