Deprecated: $wgMWOAuthSharedUserIDs=false is deprecated, set $wgMWOAuthSharedUserIDs=true, $wgMWOAuthSharedUserSource='local' instead [Called from MediaWiki\HookContainer\HookContainer::run in /var/www/html/w/includes/HookContainer/HookContainer.php at line 135] in /var/www/html/w/includes/Debug/MWDebug.php on line 372
Structured and unstructured continuous models for \(Wolbachia\) infections - MaRDI portal

Structured and unstructured continuous models for \(Wolbachia\) infections

From MaRDI portal
Publication:611106

DOI10.1007/s11538-010-9528-1zbMath1201.92044arXiv0906.1676OpenAlexW2089521561WikidataQ45884748 ScholiaQ45884748MaRDI QIDQ611106

Peter Hinow, József Z. Farkas

Publication date: 14 December 2010

Published in: Bulletin of Mathematical Biology (Search for Journal in Brave)

Full work available at URL: https://arxiv.org/abs/0906.1676




Related Items (44)

Mosquito control based on pesticides and endosymbiotic bacterium \textit{Wolbachia}\textit{Wolbachia} spread dynamics in stochastic environmentsModels to assess the effects of non-identical sex ratio augmentations of Wolbachia-carrying mosquitoes on the control of dengue disease\textit{Wolbachia} dynamics in mosquitoes with incomplete CI and imperfect maternal transmission by a DDE systemUniqueness and stability of periodic solutions for an interactive wild and Wolbachia-infected male mosquito modelModelling \textit{Wolbachia} infection in a sex-structured mosquito population carrying West Nile virusModelling a wolbachia invasion using a slow-fast dispersal reaction-diffusion approachAn impulsive model for Wolbachia infection control of mosquito-borne diseases with general birth and death rate functionsModelling the use of \textit{Wolbachia} to control dengue fever transmission\textit{Wolbachia} spreading dynamics in \textit{Nilaparvata lugens} with two strainsThe impact of \textit{Wolbachia} on dengue transmission dynamics in an SEI-SIS modelComplex Wolbachia infection dynamics in mosquitoes with imperfect maternal transmissionThreshold dynamics of a stochastic mathematical model for Wolbachia infectionsWolbachia spreading dynamics in mosquitoes with imperfect maternal transmissionThe impact of incomplete cytoplasmic incompatibility on mosquito population suppression by \textit{Wolbachia}Modeling mosquito control by an impulsive reaction-diffusion mosquito model with periodic evolution domainModels to assess how best to replace dengue virus vectors with \textit{Wolbachia}-infected mosquito populationsA mosquito population suppression model with a saturated \textit{Wolbachia} release strategy in seasonal successionModeling the Transmission of Wolbachia in Mosquitoes for Controlling Mosquito-Borne DiseasesThe threshold infection level for \textit{Wolbachia} invasion in random environmentsMathematical modelling of the sterile insect technique using different release strategies\textit{Wolbachia} spread dynamics in multi-regimes of environmental conditionsBirth-pulse models of \textit{Wolbachia}-induced cytoplasmic incompatibility in mosquitoes for dengue virus controlTwo-sex mosquito model for the persistence ofWolbachiaModeling and control of mosquito-borne diseases with \textit{Wolbachia} and insecticidesOptimal control approach for establishing wMelpop Wolbachia infection among wild Aedes aegypti populationsModeling the effects of augmentation strategies on the control of dengue fever with an impulsive differential equationSteady states in a structured epidemic model with Wentzell boundary conditionThe threshold infection level for Wolbachia invasion in a two-sex mosquito population modelWolbachia infection dynamics by reaction-diffusion equations\textit{Wolbachia} infection dynamics in mosquito population with the CI effect suffering by uninfected ova produced by infected femalesA feedback control perspective on biological control of dengue vectors by \textit{Wolbachia} infectionMosquito population control strategies for fighting against arbovirusesOptimization of spatial control strategies for population replacement, application toWolbachiaOn the use of the sterile insect release technique to reduce or eliminate mosquito populationsOptimal Releases for Population Replacement Strategies: Application to WolbachiaExistence and stability of periodic solutions in a mosquito population suppression model with time delayEffects of sterile males and fertility of infected mosquitoes on mosquito-borne disease dynamicsImplementation of control strategies for sterile insect techniquesModeling and dynamics of Wolbachia-infected male releases and mating competition on mosquito controlModeling the dynamics ofWolbachia-infected and uninfectedAedes aegypti populations by delay differential equationsAnalysis of impulse release of \textit{Wolbachia} to control \textit{Nilaparvata lugens}An optimal control problem for dengue transmission model with \textit{Wolbachia} and vaccinationOptimal control strategies for bistable ODE equations: application to mosquito population replacement




Cites Work




This page was built for publication: Structured and unstructured continuous models for \(Wolbachia\) infections