Please use this identifier to cite or link to this item: http://repositorio.unicamp.br/jspui/handle/REPOSIP/199740
Type: Artigo de periódico
Title: Follow Up Estimation Of Aedes Aegypti Entomological Parameters And Mathematical Modellings.
Author: Yang, Hyun Mo
Macoris, Maria de Lourdes da Graça
Galvani, Karen Cristina
Andrighetti, Maria Teresa Macoris
Abstract: The dengue virus is a vector-borne disease transmitted by mosquito Aedes aegypti and the incidence is strongly influenced by temperature and humidity which vary seasonally. To assess the effects of temperature on dengue transmission, mathematical models are developed based on the population dynamics theory. However, depending on the hypotheses of the modelling, different outcomes regarding to the risk of epidemics are obtained. We address this question comparing two simple models supplied with model's parameters estimated from temperature-controlled experiments, especially the entomological parameters regarded to the mosquito's life cycle in different temperatures. Once obtained the mortality and transition rates of different stages comprising the life cycle of mosquito and the oviposition rate, we compare the capacity of vector reproduction (the basic offspring number) and the risk of infection (basic reproduction number) provided by two models. The extended model, which is more realistic, showed that both mosquito population and dengue risk are situated at higher values than the simplified model, even that the basic offspring number is lower.
Subject: Aedes
Animals
Basic Reproduction Number
Dengue
Dengue Virus
Insect Vectors
Life Cycle Stages
Models, Biological
Population Dynamics
Reproduction
Temperature
Rights: fechado
Identifier DOI: 10.1016/j.biosystems.2010.11.002
Address: http://www.ncbi.nlm.nih.gov/pubmed/21093536
Date Issue: 2011
Appears in Collections:Artigos e Materiais de Revistas Científicas - Unicamp

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