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Increasing Dengue Incidence in Singapore over the Past 40 Years: Population Growth, Climate and Mobility

In Singapore, the frequency and magnitude of dengue epidemics have increased significantly over the past 40 years. It is important to understand the main drivers for the rapid increase in dengue incidence. We studied the relative contributions of putative drivers for the rise of dengue in Singapore:...

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Autores principales: Struchiner, Claudio Jose, Rocklöv, Joacim, Wilder-Smith, Annelies, Massad, Eduardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4554991/
https://www.ncbi.nlm.nih.gov/pubmed/26322517
http://dx.doi.org/10.1371/journal.pone.0136286
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author Struchiner, Claudio Jose
Rocklöv, Joacim
Wilder-Smith, Annelies
Massad, Eduardo
author_facet Struchiner, Claudio Jose
Rocklöv, Joacim
Wilder-Smith, Annelies
Massad, Eduardo
author_sort Struchiner, Claudio Jose
collection PubMed
description In Singapore, the frequency and magnitude of dengue epidemics have increased significantly over the past 40 years. It is important to understand the main drivers for the rapid increase in dengue incidence. We studied the relative contributions of putative drivers for the rise of dengue in Singapore: population growth, climate parameters and international air passenger arrivals from dengue endemic countries, for the time period of 1974 until 2011. We used multivariable Poisson regression models with the following predictors: Annual Population Size; Aedes Premises Index; Mean Annual Temperature; Minimum and Maximum Temperature Recorded in each year; Annual Precipitation and Annual Number of Air Passengers arriving from dengue-endemic South-East Asia to Singapore. The relative risk (RR) of the increase in dengue incidence due to population growth over the study period was 42.7, while the climate variables (mean and minimum temperature) together explained an RR of 7.1 (RR defined as risk at the end of the time period relative to the beginning and goodness of fit associated with the model leading to these estimates assessed by pseudo-R2 equal to 0.83). Estimating the extent of the contribution of these individual factors on the increasing dengue incidence, we found that population growth contributed to 86% while the residual 14% was explained by increase in temperature. We found no correlation with incoming air passenger arrivals into Singapore from dengue endemic countries. Our findings have significant implications for predicting future trends of the dengue epidemics given the rapid urbanization with population growth in many dengue endemic countries. It is time for policy-makers and the scientific community alike to pay more attention to the negative impact of urbanization and urban climate on diseases such as dengue.
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spelling pubmed-45549912015-09-10 Increasing Dengue Incidence in Singapore over the Past 40 Years: Population Growth, Climate and Mobility Struchiner, Claudio Jose Rocklöv, Joacim Wilder-Smith, Annelies Massad, Eduardo PLoS One Research Article In Singapore, the frequency and magnitude of dengue epidemics have increased significantly over the past 40 years. It is important to understand the main drivers for the rapid increase in dengue incidence. We studied the relative contributions of putative drivers for the rise of dengue in Singapore: population growth, climate parameters and international air passenger arrivals from dengue endemic countries, for the time period of 1974 until 2011. We used multivariable Poisson regression models with the following predictors: Annual Population Size; Aedes Premises Index; Mean Annual Temperature; Minimum and Maximum Temperature Recorded in each year; Annual Precipitation and Annual Number of Air Passengers arriving from dengue-endemic South-East Asia to Singapore. The relative risk (RR) of the increase in dengue incidence due to population growth over the study period was 42.7, while the climate variables (mean and minimum temperature) together explained an RR of 7.1 (RR defined as risk at the end of the time period relative to the beginning and goodness of fit associated with the model leading to these estimates assessed by pseudo-R2 equal to 0.83). Estimating the extent of the contribution of these individual factors on the increasing dengue incidence, we found that population growth contributed to 86% while the residual 14% was explained by increase in temperature. We found no correlation with incoming air passenger arrivals into Singapore from dengue endemic countries. Our findings have significant implications for predicting future trends of the dengue epidemics given the rapid urbanization with population growth in many dengue endemic countries. It is time for policy-makers and the scientific community alike to pay more attention to the negative impact of urbanization and urban climate on diseases such as dengue. Public Library of Science 2015-08-31 /pmc/articles/PMC4554991/ /pubmed/26322517 http://dx.doi.org/10.1371/journal.pone.0136286 Text en © 2015 Struchiner 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
Struchiner, Claudio Jose
Rocklöv, Joacim
Wilder-Smith, Annelies
Massad, Eduardo
Increasing Dengue Incidence in Singapore over the Past 40 Years: Population Growth, Climate and Mobility
title Increasing Dengue Incidence in Singapore over the Past 40 Years: Population Growth, Climate and Mobility
title_full Increasing Dengue Incidence in Singapore over the Past 40 Years: Population Growth, Climate and Mobility
title_fullStr Increasing Dengue Incidence in Singapore over the Past 40 Years: Population Growth, Climate and Mobility
title_full_unstemmed Increasing Dengue Incidence in Singapore over the Past 40 Years: Population Growth, Climate and Mobility
title_short Increasing Dengue Incidence in Singapore over the Past 40 Years: Population Growth, Climate and Mobility
title_sort increasing dengue incidence in singapore over the past 40 years: population growth, climate and mobility
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4554991/
https://www.ncbi.nlm.nih.gov/pubmed/26322517
http://dx.doi.org/10.1371/journal.pone.0136286
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