Please use this identifier to cite or link to this item: http://repositorio.ufla.br/jspui/handle/1/40346
Title: Mathematical modeling of dengue epidemic: control methods and vaccination strategies
Keywords: Dengue - Controle
Aedes aegypti
Vaccines
Modelagem matemática
Epidemia - Controle
Vacinas
Issue Date: 2019
Publisher: Springer Nature
Citation: CARVALHO, S. A.; SILVA, S. O. da; CHARRET, I. da C. Mathematical modeling of dengue epidemic: control methods and vaccination strategies. Theory in Biosciences, [S.I.], v. 138, p. 223-239, 2019.
Abstract: Dengue is, in terms of death and economic cost, one of the most important infectious diseases in the world. So, its mathematical modeling can be a valuable tool to help us to understand the dynamics of the disease and to infer about its spreading by the proposition of control methods. In this paper, control strategies, which aim to eliminate the Aedes aegypti mosquito, as well as proposals for the vaccination campaign are evaluated. In our mathematical model, the mechanical control is accomplished through the environmental support capacity afected by a discrete function that represents the removal of breedings. Chemical control is carried out using insecticide and larvicide. The efciency of vaccination is studied through the transfer of a fraction of individuals, proportional to the vaccination rate, from the susceptible to the recovered compartments. Our major fnd is that the dengue fever epidemic is only eradicated with the use of an immunizing vaccine because control measures, directed against its vector, are not enough to halt the disease spreading. Even when the infected mosquitoes are eliminated from the system, the susceptible ones are still present, and infected humans cause dengue fever to reappear in the human population.
URI: https://link.springer.com/article/10.1007/s12064-019-00273-7
http://repositorio.ufla.br/jspui/handle/1/40346
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