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Influence of temperature and rainfall on the evolution of cholera epidemics in Lusaka, Zambia, 2003-2006: analysis of a time series.

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dc.contributor National Centre of Epidemiology (CNE), Programa de Epidemiología Aplicada de Campo, Instituto de Salud Carlos III, C/Sinesio Delgado 6, Pabellón 12, 28029 Madrid, Spain. fmiguelangel@isciii.es
dc.creator Luque Fernández, M A
dc.creator Bauernfeind, A
dc.creator Jiménez, J D
dc.creator Gil, C L
dc.creator El Omeiri, N
dc.creator Guibert, D H
dc.date 2009-02-13
dc.date.accessioned 2017-01-31T07:13:21Z
dc.date.available 2017-01-31T07:13:21Z
dc.identifier Influence of temperature and rainfall on the evolution of cholera epidemics in Lusaka, Zambia, 2003-2006: analysis of a time series. 2009, 103 (2):137-43 Trans. R. Soc. Trop. Med. Hyg.
dc.identifier 0035-9203
dc.identifier 18783808
dc.identifier 10.1016/j.trstmh.2008.07.017
dc.identifier http://hdl.handle.net/10144/49058
dc.identifier http://fieldresearch.msf.org/msf/handle/10144/49058
dc.identifier Transactions of the Royal Society of Tropical Medicine and Hygiene
dc.identifier.uri http://dspace.mediu.edu.my:8181/xmlui/handle/10144/49058
dc.description In this study, we aimed to describe the evolution of three cholera epidemics that occurred in Lusaka, Zambia, between 2003 and 2006 and to analyse the association between the increase in number of cases and climatic factors. A Poisson autoregressive model controlling for seasonality and trend was built to estimate the association between the increase in the weekly number of cases and weekly means of daily maximum temperature and rainfall. All epidemics showed a seasonal trend coinciding with the rainy season (November to March). A 1 degrees C rise in temperature 6 weeks before the onset of the outbreak explained 5.2% [relative risk (RR) 1.05, 95% CI 1.04-1.06] of the increase in the number of cholera cases (2003-2006). In addition, a 50 mm increase in rainfall 3 weeks before explained an increase of 2.5% (RR 1.02, 95% CI 1.01-1.04). The attributable risks were 4.9% for temperature and 2.4% for rainfall. If 6 weeks prior to the beginning of the rainy season an increase in temperature is observed followed by an increase in rainfall 3 weeks later, both exceeding expected levels, an increase in the number of cases of cholera within the following 3 weeks could be expected. Our explicative model could contribute to developing a warning signal to reduce the impact of a presumed cholera epidemic.
dc.language en
dc.rights Published by Elsevier Archived on this site with the kind permission of Elsevier Ltd. ([url]http://www.sciencedirect.com/science/journal/00359203[/url]) and the Royal Society of Tropical Medicine and Hygiene ([url]http://www.rstmh.org/transactions.asp[/url])
dc.title Influence of temperature and rainfall on the evolution of cholera epidemics in Lusaka, Zambia, 2003-2006: analysis of a time series.


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