A stage-structured stochastic model of the population dynamics of Triatoma infestans, the main vector of Chagas disease

We present a stage-structured mathematical model of the population dynamics of Triatoma infestans in a single house, as part of a more complex model incorporating domestic Trypanosoma cruzi transmission. Novel features of this model are a formulation in continuous time accounting for demographic sto...

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Autores principales: Castañera, M.B., Aparicio, J.P., Gürtler, R.E.
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_03043800_v162_n1-2_p33_Castanera
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spelling todo:paper_03043800_v162_n1-2_p33_Castanera2023-10-03T15:20:03Z A stage-structured stochastic model of the population dynamics of Triatoma infestans, the main vector of Chagas disease Castañera, M.B. Aparicio, J.P. Gürtler, R.E. Chagas disease Population dynamics Stochastic model Triatoma infestans Trypanosoma cruzi Vector disease vector numerical model population dynamics Hexapoda Insecta Triatoma infestans Trypanosoma Trypanosoma cruzi We present a stage-structured mathematical model of the population dynamics of Triatoma infestans in a single house, as part of a more complex model incorporating domestic Trypanosoma cruzi transmission. Novel features of this model are a formulation in continuous time accounting for demographic stochasticity, temperature-dependent female fecundity and developmental times, and insect stage-dependent host irritability. The model assumes a closed domestic insect population regulated by insect density and stage-dependent host irritability depressing the insects' feeding success and female fecundity. The model describes that the abundance of T. infestans insects fluctuates seasonally with only one peak in summer, whereas eggs show one peak in spring and another in the fall as a result of two peaks in female fecundity. The proportion of recently fed adult insects peaks in summer and falls close to zero in winter only when the intensity of host irritability differs markedly between small and large insect stages. In our model, the insect carrying capacity is the joint result of density-dependent access to hosts and density-independent mortality rates. Our hypothesis is that refuge quality in the house, not the absolute number of refuges, determined by construction features would translate into differential insect stage mortalities. The presence of only one hen brooding indoors during spring and summer increases insect numbers in a clearly detectable way. Sensitivity analysis showed strong effects on timed-averaged insect abundance of prolonged developmental time induced by low temperatures, the threshold insect density for host irritability, and mean female fecundity. © 2002 Elsevier Science B.V. All rights reserved. Fil:Castañera, M.B. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Aparicio, J.P. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Gürtler, R.E. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_03043800_v162_n1-2_p33_Castanera
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Chagas disease
Population dynamics
Stochastic model
Triatoma infestans
Trypanosoma cruzi
Vector
disease vector
numerical model
population dynamics
Hexapoda
Insecta
Triatoma infestans
Trypanosoma
Trypanosoma cruzi
spellingShingle Chagas disease
Population dynamics
Stochastic model
Triatoma infestans
Trypanosoma cruzi
Vector
disease vector
numerical model
population dynamics
Hexapoda
Insecta
Triatoma infestans
Trypanosoma
Trypanosoma cruzi
Castañera, M.B.
Aparicio, J.P.
Gürtler, R.E.
A stage-structured stochastic model of the population dynamics of Triatoma infestans, the main vector of Chagas disease
topic_facet Chagas disease
Population dynamics
Stochastic model
Triatoma infestans
Trypanosoma cruzi
Vector
disease vector
numerical model
population dynamics
Hexapoda
Insecta
Triatoma infestans
Trypanosoma
Trypanosoma cruzi
description We present a stage-structured mathematical model of the population dynamics of Triatoma infestans in a single house, as part of a more complex model incorporating domestic Trypanosoma cruzi transmission. Novel features of this model are a formulation in continuous time accounting for demographic stochasticity, temperature-dependent female fecundity and developmental times, and insect stage-dependent host irritability. The model assumes a closed domestic insect population regulated by insect density and stage-dependent host irritability depressing the insects' feeding success and female fecundity. The model describes that the abundance of T. infestans insects fluctuates seasonally with only one peak in summer, whereas eggs show one peak in spring and another in the fall as a result of two peaks in female fecundity. The proportion of recently fed adult insects peaks in summer and falls close to zero in winter only when the intensity of host irritability differs markedly between small and large insect stages. In our model, the insect carrying capacity is the joint result of density-dependent access to hosts and density-independent mortality rates. Our hypothesis is that refuge quality in the house, not the absolute number of refuges, determined by construction features would translate into differential insect stage mortalities. The presence of only one hen brooding indoors during spring and summer increases insect numbers in a clearly detectable way. Sensitivity analysis showed strong effects on timed-averaged insect abundance of prolonged developmental time induced by low temperatures, the threshold insect density for host irritability, and mean female fecundity. © 2002 Elsevier Science B.V. All rights reserved.
format JOUR
author Castañera, M.B.
Aparicio, J.P.
Gürtler, R.E.
author_facet Castañera, M.B.
Aparicio, J.P.
Gürtler, R.E.
author_sort Castañera, M.B.
title A stage-structured stochastic model of the population dynamics of Triatoma infestans, the main vector of Chagas disease
title_short A stage-structured stochastic model of the population dynamics of Triatoma infestans, the main vector of Chagas disease
title_full A stage-structured stochastic model of the population dynamics of Triatoma infestans, the main vector of Chagas disease
title_fullStr A stage-structured stochastic model of the population dynamics of Triatoma infestans, the main vector of Chagas disease
title_full_unstemmed A stage-structured stochastic model of the population dynamics of Triatoma infestans, the main vector of Chagas disease
title_sort stage-structured stochastic model of the population dynamics of triatoma infestans, the main vector of chagas disease
url http://hdl.handle.net/20.500.12110/paper_03043800_v162_n1-2_p33_Castanera
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