Establishing \textit{Wolbachia} in the wild mosquito population: the effects of wind and critical patch size
From MaRDI portal
Publication:2160781
DOI10.3934/mbe.2019219zbMath1497.92359OpenAlexW2945573959WikidataQ93200438 ScholiaQ93200438MaRDI QIDQ2160781
Guowei Sun, Lin Wang, Yunfeng Liu, Zhiming Guo
Publication date: 3 August 2022
Published in: Mathematical Biosciences and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.3934/mbe.2019219
Cites Work
- Mathematical models for the \textit{Aedes aegypti} dispersal dynamics: travelling waves by wing and wind
- \textit{Wolbachia} spread dynamics in stochastic environments
- Qualitative analysis for a Wolbachia infection model with diffusion
- Assessing the efficiency of \textit{Wolbachia} driven \textit{Aedes} mosquito suppression by delay differential equations
- Evolution of passive movement in advective environments: general boundary condition
- Wolbachia spreading dynamics in mosquitoes with imperfect maternal transmission
- Wolbachia infection dynamics by reaction-diffusion equations
- Evolution of dispersal in advective homogeneous environment: the effect of boundary conditions
- The diffusive logistic model with a free boundary in heterogeneous environment
- ModelingWolbachiaSpread in Mosquitoes Through Delay Differential Equations
- Spatial Ecology via Reaction‐Diffusion Equations
- Modeling Mosquito Population Suppression Based on Delay Differential Equations
- Dynamics of Mosquitoes Populations with Different Strategies for Releasing Sterile Mosquitoes
This page was built for publication: Establishing \textit{Wolbachia} in the wild mosquito population: the effects of wind and critical patch size