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A model for Aedes aegypti control (Diptera: culicidae) with resistance to chemicals and phytocompounds

Jamboos Toledo, Juan Carlos | Manrique A., Oscar A [autor/a] | Raigosa O., Steven [autor/a] | Muñoz P., Dalia M [autor/a] | Muñoz L., Anibal [autor/a] | Zuluaga Z., Valentina [autor/a] | Ropero P., Mauricio [autor/a] | Betancourt B., Francisco [autor/a] | Meyer C., Hans [autor/a].
Tipo de material: Artículo
 en línea Artículo en línea Tema(s): Aedes aegypti | Población de insectos | Control de insectos | Resistencia a los insecticidasTema(s) en inglés: Aedes aegypti | Insect populations | Insect control | Insecticide resistanceNota de acceso: Acceso en línea sin restricciones En: Applied Mathematical Sciences. volumen 12, número 22 (2018), páginas 1085-1097. --ISSN: 1312-885XNúmero de sistema: 59010Resumen:
Inglés

It is formulated a stability analysis of a mathematical model to interpret the dynamics of the population growth including resistance to chemicals and phytocompounds. The threshold of the population growth of A. aegypti is determined. A sensitivity analysis and simulations of the model were developed. We conclude that the control focused in the non-resistant mosquitoes lead to a decrease in the resistant mosquitoes as well as the immature stages.

Recurso en línea: http://www.m-hikari.com/ams/ams-2018/ams-21-24-2018/p/munozAMS21-24-2018-2.pdf
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Acceso en línea sin restricciones

It is formulated a stability analysis of a mathematical model to interpret the dynamics of the population growth including resistance to chemicals and phytocompounds. The threshold of the population growth of A. aegypti is determined. A sensitivity analysis and simulations of the model were developed. We conclude that the control focused in the non-resistant mosquitoes lead to a decrease in the resistant mosquitoes as well as the immature stages. eng

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