Spreading speed of a cholera epidemic model in a periodic environment
From MaRDI portal
Publication:2699201
DOI10.1007/s12346-023-00753-8OpenAlexW4321351863MaRDI QIDQ2699201
Guo Lin, Shuxia Pan, Xue-ying Wang
Publication date: 26 April 2023
Published in: Qualitative Theory of Dynamical Systems (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s12346-023-00753-8
Related Items (1)
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- The mathematics behind biological invasions
- Spatial propagation for a two component reaction-diffusion system arising in population dynamics
- A reaction-convection-diffusion model for cholera spatial dynamics
- Convergence to generalized transition waves for some Holling-Tanner prey-predator reaction-diffusion system
- Multiple transmission pathways and disease dynamics in a waterborne pathogen model
- Thresholds and travelling waves for the geographical spread of infection
- Spreading speeds and traveling waves for periodic evolution systems
- Influence of human behavior on cholera dynamics
- Biological growth and spread modeled by systems of recursions. I: Mathematical theory
- Threshold dynamics for compartmental epidemic models in periodic environments
- On a differential equation arising from compartmental analysis
- Run for your life. A note on the asymptotic speed of propagation of an epidemic
- Asymptotic speeds of spread and traveling waves for integral equations and delayed reaction--diffusion models.
- Mathematical biology. Vol. 2: Spatial models and biomedical applications.
- Global dynamics of a reaction-diffusion waterborne pathogen model with general incidence rate
- Mathematical modelling and numerical simulations of the influence of hygiene and seasons on the spread of cholera
- A cholera epidemic model in a spatiotemporally heterogeneous environment
- Analysis of linear determinacy for spread in cooperative models
- Dynamics of a reaction-diffusion waterborne pathogen model with direct and indirect transmission
- Spreading properties of a three-component reaction-diffusion model for the population of farmers and hunter-gatherers
- Spreading speeds of epidemic models with nonlocal delays
- A reaction-advection-diffusion model of cholera epidemics with seasonality and human behavior change
- Risk structured model of cholera infections in Cameroon
- Spreading speed in a farmers and hunter-gatherers model arising from Neolithic transition in Europe
- Analysis of a reaction-diffusion cholera model with distinct dispersal rates in the human population
- Threshold dynamics of a nonlocal and delayed cholera model in a spatially heterogeneous environment
- Disease extinction versus persistence in discrete-time epidemic models
- Dynamics of a waterborne pathogen model with spatial heterogeneity and general incidence rate
- Impact of bacterial hyperinfectivity on cholera epidemics in a spatially heterogeneous environment
- Invasion speed of a predator-prey system
- A general multipatch cholera model in periodic environments
- Some dependence results between the spreading speed and the coefficients of the space–time periodic Fisher–KPP equation
- Modelling cholera in periodic environments
- Analysis of cholera epidemics with bacterial growth and spatial movement
- Asymptotic speeds of spread and traveling waves for monotone semiflows with applications
- Systems of Differential Equations that are Competitive or Cooperative II: Convergence Almost Everywhere
- Non-cooperative Fisher–KPP systems: traveling waves and long-time behavior
- Propagation Dynamics for Time-Periodic and Partially Degenerate Reaction-Diffusion Systems
- Traveling Waves for Monotone Semiflows with Weak Compactness
- Traveling waves for a diffusive SIR-B epidemic model with multiple transmission pathways
- Non-linear incidence and stability of infectious disease models
- Spreading speeds and traveling wave solutions of diffusive vector-borne disease models without monotonicity
This page was built for publication: Spreading speed of a cholera epidemic model in a periodic environment