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Assessing Changing Weather and the El Niño Southern Oscillation Impacts on Cattle Rabies Outbreaks and Mortality in Costa Rica (1985-2016)

Overview
Journal BMC Vet Res
Publisher Biomed Central
Date 2018 Sep 19
PMID 30223839
Citations 10
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Abstract

Background: Rabies is a major zoonotic disease affecting humans, domestic and wildlife mammals. Cattle are the most important domestic animals impacted by rabies virus in the New World, leading to thousands of cattle deaths per year and eliciting large economic losses. In the New World, virus transmission in cattle is primarily associated with Desmodus rotundus, the common vampire bat. This study analyses the association of weather fluctuations and the El Niño Southern Oscillation (ENSO), with the occurrence and magnitude, in terms of associated mortality, of cattle rabies outbreaks. Data from the 100 cattle rabies outbreaks recorded between 1985 and 2016 in Costa Rica were analyzed. Periodograms for time series of rabies outbreaks and the El Niño 4 index were estimated. Seasonality was studied using a seasonal boxplot. The association between epidemiological and climatic time series was studied via cross wavelet coherence analysis. Retrospective space-time scan cluster analyses were also performed. Finally, seasonal autoregressive time series models were fitted to study linear associations between monthly number of outbreaks, monthly mortality rates and the El Niño 4 index, temperature, and rainfall.

Results: Large rabies mortality occurred towards the Atlantic basin of the country. Outbreak occurrence and size were not directly associated with ENSO, but were sensitive to weather variables impacted by ENSO. Both, ENSO phases and rabies outbreaks, showed a similar 5 year period in their oscillations. Cattle rabies mortality and outbreak occurrence increased with temperature, whereas outbreak occurrence decreased with rainfall. These results suggest that special weather conditions might favor the occurrence of cattle rabies outbreaks.

Conclusions: Further efforts are necessary to articulate the mechanisms underpinning the association between weather changes and cattle rabies outbreaks. One hypothesis is that exacerbation of cattle rabies outbreaks might be mediated by impacts of weather conditions on common vampire bat movement and access to food resources on its natural habitats. Further eco-epidemiological field studies could help to understand rabies virus transmission ecology, and to propose sound interventions to control this major veterinary public health problem.

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References
1.
Chaves L, Calzada J, Valderrama A, Saldana A . Cutaneous leishmaniasis and sand fly fluctuations are associated with el niño in panamá. PLoS Negl Trop Dis. 2014; 8(10):e3210. PMC: 4183471. DOI: 10.1371/journal.pntd.0003210. View

2.
Lee D, Papes M, Van Den Bussche R . Present and potential future distribution of common vampire bats in the Americas and the associated risk to cattle. PLoS One. 2012; 7(8):e42466. PMC: 3416852. DOI: 10.1371/journal.pone.0042466. View

3.
Smith D, Lucey B, Waller L, Childs J, Real L . Predicting the spatial dynamics of rabies epidemics on heterogeneous landscapes. Proc Natl Acad Sci U S A. 2002; 99(6):3668-72. PMC: 122581. DOI: 10.1073/pnas.042400799. View

4.
Anderson A, Gebhardt K, Ramirez A, Shwiff S, Kohler D, Lecuona L . Economic evaluation of vampire bat (Desmodus rotundus) rabies prevention in Mexico. Transbound Emerg Dis. 2012; 61(2):140-6. DOI: 10.1111/tbed.12007. View

5.
Escobar L, Peterson A, Papes M, Favi M, Yung V, Restif O . Ecological approaches in veterinary epidemiology: mapping the risk of bat-borne rabies using vegetation indices and night-time light satellite imagery. Vet Res. 2015; 46:92. PMC: 4558958. DOI: 10.1186/s13567-015-0235-7. View