Zoonoses and Climate Variability
- 15 December 2008
- journal article
- research article
- Published by Wiley in Annals of the New York Academy of Sciences
- Vol. 1149 (1) , 326-330
- https://doi.org/10.1196/annals.1428.094
Abstract
Leishmaniasis in the Americas is transmitted by Lutzomyia spp., which have many animal reservoirs. Previous studies indicated potential changes in vectors of climate‐related distribution, but impact outcomes need to be further studied. We report climatic and El Niño events during 1985–2002 that may have had an impact on leishmaniasis in 11 southern departments of Colombia: Amazonas, Caquetá, Cauca (Ca), Huila, Meta (Mt), Nariño, Putumayo (Py), Tolima, Valle (Va), Vaupes (Vp), and Vichada. Climatic data were obtained by satellite and epidemiologic data were obtained from the Health Ministry. NOAA climatic classification and SOI/ONI indexes were used as indicators of global climate variability. Yearly variation comparisons and median trend deviations were made for disease incidence and climatic variability. During this period there was considerable climatic variability, with a strong El Niño for 6 years and a strong La Niña for 8. During this period, 19,212 cases of leishmaniasis were registered, for a mean of 4756.83 cases/year. Disease in the whole region increased (mean of 4.98%) during the El Niño years in comparison to the La Niña years, but there were differences between departments with increases during El Niño (Mt 6.95%, Vp 4.84%), but the rest showed an increase during La Niña (1.61%–64.41%). Differences were significant in Va (P= 0.0092), Py (P= 0.0001), Ca (P= 0.0313), and for the whole region (P= 0.0023), but not in the rest of the departments. The importance of climate change is shown by shifts in insect and animal distributions. These data reflect the importance of climate on transmission of leishmaniasis and open further investigations related to forecasting and monitoring systems, where understanding the relationship between zoonoses and climate variability could help to improve the management of these emerging and reemerging diseases.Keywords
This publication has 9 references indexed in Scilit:
- Climate Cycles and Forecasts of Cutaneous Leishmaniasis, a Nonstationary Vector-Borne DiseasePLoS Medicine, 2006
- IMPACT OF CLIMATE VARIABILITY IN THE OCCURRENCE OF LEISHMANIASIS IN NORTHEASTERN COLOMBIAThe American Journal of Tropical Medicine and Hygiene, 2006
- PARAMETERS OF LEISHMANIA BRAZILIENSIS TRANSMISSION BY INDOOR LUTZOMYIA OVALLESI IN VENEZUELAThe American Journal of Tropical Medicine and Hygiene, 2004
- Natural breeding places of phlebotomine sandfliesMedical and Veterinary Entomology, 2004
- Spatial and Temporal Patterns of Phlebotomine Sand Flies (Diptera: Psychodidae) in a Cutaneous Leishmaniasis Focus in Northern ArgentinaJournal of Medical Entomology, 2004
- Seasonal abundance patterns of the sandfly Phlebotomus papatasi in climatically distinct foci of cutaneous leishmaniasis in Israeli desertsMedical and Veterinary Entomology, 2003
- Impact of El Niño/Southern Oscillation on Visceral Leishmaniasis, BrazilEmerging Infectious Diseases, 2002
- Abundance of Lutzomyia ovallesi but not Lu. gomezi (Diptera: Psychodidae) correlated with cutaneous leishmaniasis incidence in north‐central VenezuelaMedical and Veterinary Entomology, 1998
- The potential effect of global warming on the geographic and seasonal distribution of Phlebotomus papatasi in southwest Asia.Environmental Health Perspectives, 1996