The chikungunya disease: modeling, vector and transmission global dynamics.
Identifieur interne : 000672 ( France/Analysis ); précédent : 000671; suivant : 000673The chikungunya disease: modeling, vector and transmission global dynamics.
Auteurs : D. Moulay [France] ; M A Aziz-Alaoui ; M. CadivelSource :
- Mathematical biosciences [ 1879-3134 ] ; 2011.
English descriptors
- KwdEn :
- MESH :
- physiology : Aedes.
- transmission : Alphavirus Infections.
- virology : Aedes.
- Algorithms, Animals, Chikungunya Fever, Computer Simulation, Disease Vectors, Humans, Models, Biological, Population Dynamics.
Abstract
Models for the transmission of the chikungunya virus to human population are discussed. The chikungunya virus is an alpha arbovirus, first identified in 1953. It is transmitted by Aedes mosquitoes and is responsible for a little documented uncommon acute tropical disease. Models describing the mosquito population dynamics and the virus transmission to the human population are discussed. Global analysis of equilibria are given, which use on the one hand Lyapunov functions and on the other hand results of the theory of competitive systems and stability of periodic orbits.
DOI: 10.1016/j.mbs.2010.10.008
PubMed: 21070789
Affiliations:
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pubmed:21070789Le document en format XML
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<front><div type="abstract" xml:lang="en">Models for the transmission of the chikungunya virus to human population are discussed. The chikungunya virus is an alpha arbovirus, first identified in 1953. It is transmitted by Aedes mosquitoes and is responsible for a little documented uncommon acute tropical disease. Models describing the mosquito population dynamics and the virus transmission to the human population are discussed. Global analysis of equilibria are given, which use on the one hand Lyapunov functions and on the other hand results of the theory of competitive systems and stability of periodic orbits.</div>
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