Modelling the persistence and control of Rift Valley fever virus in a spatially heterogeneous landscape

Rift Valley fever is a zoonotic haemorrhagic fever with complex transmission dynamics influenced by environmental variables and animal movements. Here, the authors develop a metapopulation model incorporating these factors and use it to identify the main drivers of transmission in the Comoros archip...

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Autores principales: Warren S. D. Tennant, Eric Cardinale, Catherine Cêtre-Sossah, Youssouf Moutroifi, Gilles Le Godais, Davide Colombi, Simon E. F. Spencer, Mike J. Tildesley, Matt J. Keeling, Onzade Charafouddine, Vittoria Colizza, W. John Edmunds, Raphaëlle Métras
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/762e86131a524419ba0175fe4aff39dd
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spelling oai:doaj.org-article:762e86131a524419ba0175fe4aff39dd2021-12-02T15:14:38ZModelling the persistence and control of Rift Valley fever virus in a spatially heterogeneous landscape10.1038/s41467-021-25833-82041-1723https://doaj.org/article/762e86131a524419ba0175fe4aff39dd2021-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25833-8https://doaj.org/toc/2041-1723Rift Valley fever is a zoonotic haemorrhagic fever with complex transmission dynamics influenced by environmental variables and animal movements. Here, the authors develop a metapopulation model incorporating these factors and use it to identify the main drivers of transmission in the Comoros archipelago.Warren S. D. TennantEric CardinaleCatherine Cêtre-SossahYoussouf MoutroifiGilles Le GodaisDavide ColombiSimon E. F. SpencerMike J. TildesleyMatt J. KeelingOnzade CharafouddineVittoria ColizzaW. John EdmundsRaphaëlle MétrasNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-13 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Warren S. D. Tennant
Eric Cardinale
Catherine Cêtre-Sossah
Youssouf Moutroifi
Gilles Le Godais
Davide Colombi
Simon E. F. Spencer
Mike J. Tildesley
Matt J. Keeling
Onzade Charafouddine
Vittoria Colizza
W. John Edmunds
Raphaëlle Métras
Modelling the persistence and control of Rift Valley fever virus in a spatially heterogeneous landscape
description Rift Valley fever is a zoonotic haemorrhagic fever with complex transmission dynamics influenced by environmental variables and animal movements. Here, the authors develop a metapopulation model incorporating these factors and use it to identify the main drivers of transmission in the Comoros archipelago.
format article
author Warren S. D. Tennant
Eric Cardinale
Catherine Cêtre-Sossah
Youssouf Moutroifi
Gilles Le Godais
Davide Colombi
Simon E. F. Spencer
Mike J. Tildesley
Matt J. Keeling
Onzade Charafouddine
Vittoria Colizza
W. John Edmunds
Raphaëlle Métras
author_facet Warren S. D. Tennant
Eric Cardinale
Catherine Cêtre-Sossah
Youssouf Moutroifi
Gilles Le Godais
Davide Colombi
Simon E. F. Spencer
Mike J. Tildesley
Matt J. Keeling
Onzade Charafouddine
Vittoria Colizza
W. John Edmunds
Raphaëlle Métras
author_sort Warren S. D. Tennant
title Modelling the persistence and control of Rift Valley fever virus in a spatially heterogeneous landscape
title_short Modelling the persistence and control of Rift Valley fever virus in a spatially heterogeneous landscape
title_full Modelling the persistence and control of Rift Valley fever virus in a spatially heterogeneous landscape
title_fullStr Modelling the persistence and control of Rift Valley fever virus in a spatially heterogeneous landscape
title_full_unstemmed Modelling the persistence and control of Rift Valley fever virus in a spatially heterogeneous landscape
title_sort modelling the persistence and control of rift valley fever virus in a spatially heterogeneous landscape
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/762e86131a524419ba0175fe4aff39dd
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