zhuolinqu/Wolbachia-Spatial: Multistage Spatial Model for Wolbachia-Infected Mosquito Release

Fuente: Zenodo
Saved in:
Bibliographic Details
Main Authors: Zhuolin Qu, Tong Wu
Format: Recurso digital
Published: Zenodo 2026
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866901512983150592
author Zhuolin Qu
Tong Wu
author_facet Zhuolin Qu
Tong Wu
contents <h2>Description</h2> <p>Code accompanying the paper:</p> <p><strong>"Multistage spatial model for informing release of Wolbachia-infected mosquitoes as disease control"</strong> Zhuolin Qu & Tong Wu, Department of Mathematics, University of Texas at San Antonio</p> <h2>Overview</h2> <p>This repository contains MATLAB 2024b code to simulate the spatial spread of Wolbachia infection in Aedes aegypti mosquito populations using a reaction-diffusion PDE model. The model tracks infected and uninfected mosquitoes across all life stages (eggs, larvae/pupae, adult males, adult females) with two-dimensional spatial dispersion.</p> <h2>Key features</h2> <ul> <li>8-PDE reaction-diffusion model incorporating full mosquito life stages and Wolbachia maternal transmission</li> <li>Numerical identification of the "critical bubble" spatial threshold for Wolbachia invasion</li> <li>Global sensitivity analysis (LHS/PRCC) on critical bubble and infection wave properties</li> <li>Simulations of pre-release mitigation strategies (adult-stage, aquatic-stage, and habitat modification)</li> <li>Heterogeneous habitat (dry/wet region) simulations</li> <li>Seasonal forcing based on climate data from Yogyakarta, Indonesia and Cairns, Australia</li> </ul> <h2>Parametrisation</h2> <p>Baseline parameters correspond to the wMel strain of Wolbachia in Aedes aegypti mosquitoes.</p> <h2>Requirements</h2> <p>MATLAB 2024b</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19189237
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle zhuolinqu/Wolbachia-Spatial: Multistage Spatial Model for Wolbachia-Infected Mosquito Release
Zhuolin Qu
Tong Wu
<h2>Description</h2> <p>Code accompanying the paper:</p> <p><strong>"Multistage spatial model for informing release of Wolbachia-infected mosquitoes as disease control"</strong> Zhuolin Qu & Tong Wu, Department of Mathematics, University of Texas at San Antonio</p> <h2>Overview</h2> <p>This repository contains MATLAB 2024b code to simulate the spatial spread of Wolbachia infection in Aedes aegypti mosquito populations using a reaction-diffusion PDE model. The model tracks infected and uninfected mosquitoes across all life stages (eggs, larvae/pupae, adult males, adult females) with two-dimensional spatial dispersion.</p> <h2>Key features</h2> <ul> <li>8-PDE reaction-diffusion model incorporating full mosquito life stages and Wolbachia maternal transmission</li> <li>Numerical identification of the "critical bubble" spatial threshold for Wolbachia invasion</li> <li>Global sensitivity analysis (LHS/PRCC) on critical bubble and infection wave properties</li> <li>Simulations of pre-release mitigation strategies (adult-stage, aquatic-stage, and habitat modification)</li> <li>Heterogeneous habitat (dry/wet region) simulations</li> <li>Seasonal forcing based on climate data from Yogyakarta, Indonesia and Cairns, Australia</li> </ul> <h2>Parametrisation</h2> <p>Baseline parameters correspond to the wMel strain of Wolbachia in Aedes aegypti mosquitoes.</p> <h2>Requirements</h2> <p>MATLAB 2024b</p>
title zhuolinqu/Wolbachia-Spatial: Multistage Spatial Model for Wolbachia-Infected Mosquito Release
url https://doi.org/10.5281/zenodo.19189237