Malaria early warnings based on seasonal climate forecasts from multi-model ensembles
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- 1 February 2006
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 439 (7076), 576-579
- https://doi.org/10.1038/nature04503
Abstract
The control of epidemic malaria is a priority for the international health community and specific targets for the early detection and effective control of epidemics have been agreed1. Interannual climate variability is an important determinant of epidemics in parts of Africa2 where climate drives both mosquito vector dynamics and parasite development rates3. Hence, skilful seasonal climate forecasts may provide early warning of changes of risk in epidemic-prone regions. Here we discuss the development of a system to forecast probabilities of anomalously high and low malaria incidence with dynamically based, seasonal-timescale, multi-model ensemble predictions of climate, using leading global coupled ocean–atmosphere climate models developed in Europe. This forecast system is successfully applied to the prediction of malaria risk in Botswana, where links between malaria and climate variability are well established4, adding up to four months lead time over malaria warnings issued with observed precipitation and having a comparably high level of probabilistic prediction skill. In years in which the forecast probability distribution is different from that of climatology, malaria decision-makers can use this information for improved resource allocation.Keywords
This publication has 16 references indexed in Scilit:
- USE OF RAINFALL AND SEA SURFACE TEMPERATURE MONITORING FOR MALARIA EARLY WARNING IN BOTSWANAThe American Journal of Tropical Medicine and Hygiene, 2005
- REPRESENTING MODEL UNCERTAINTY IN WEATHER AND CLIMATE PREDICTIONAnnual Review of Earth and Planetary Sciences, 2005
- MalariaThe Lancet, 2005
- THE BURDEN OF MALARIA EPIDEMICS AND COST-EFFECTIVENESS OF INTERVENTIONS IN EPIDEMIC SITUATIONS IN AFRICAThe American Journal of Tropical Medicine and Hygiene, 2004
- DEVELOPMENT OF A EUROPEAN MULTIMODEL ENSEMBLE SYSTEM FOR SEASONAL-TO-INTERANNUAL PREDICTION (DEMETER)Bulletin of the American Meteorological Society, 2004
- Forecast Calibration and Combination: A Simple Bayesian Approach for ENSOJournal of Climate, 2004
- Current approaches to seasonal to interannual climate predictionsInternational Journal of Climatology, 2001
- Global seasonal rainfall forecasts using a coupled ocean–atmosphere modelNature, 1998
- The ecology of malaria—as seen from Earth-observation satellitesPathogens and Global Health, 1996
- Forecasting Zimbabwean maize yield using eastern equatorial Pacific sea surface temperatureNature, 1994