Dynamical behavior of SEIR-SVS epidemic models with nonlinear incidence and vaccination
DOI10.1007/s10255-022-1075-7zbMath1492.35363OpenAlexW4226089553MaRDI QIDQ2125645
Xiaomei Feng, Fengqin Zhang, Li-Li Liu
Publication date: 14 April 2022
Published in: Acta Mathematicae Applicatae Sinica. English Series (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10255-022-1075-7
stabilityLyapunov functionalvaccinationdelay differential equation modelage-structured epidemic model
Epidemiology (92D30) Smoothness and regularity of solutions to PDEs (35B65) Asymptotic behavior of solutions to PDEs (35B40) Stability in context of PDEs (35B35) PDEs in connection with biology, chemistry and other natural sciences (35Q92) Computational methods for problems pertaining to biology (92-08) PDEs on time scales (35R07)
Related Items (2)
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Global analysis of an SIR epidemic model with infection age and saturated incidence
- Lyapunov functions and global stability for \(SIR\) and \(SIRS\) epidemiological models with non-linear transmission
- Global stability of a multi-group SVEIR epidemiological model with the vaccination age and infection age
- Global stability of an SVIR model with age of vaccination
- On the definition and the computation of the basic reproduction ratio \(R_ 0\) in models for infectious diseases in heterogeneous populations
- Global stability of an age-structured virus dynamics model with Beddington-DeAngelis infection function
- Global stability of an SEIR epidemic model with age-dependent latency and relapse
- Stability and bifurcation of an SIVS epidemic model with treatment and age of vaccination
- Influence of nonlinear incidence rates upon the behavior of SIRS epidemiological models
- A generalization of the Kermack-McKendrick deterministic epidemic model
- Introduction to functional differential equations
- Modeling the transmission dynamics and control of hepatitis B virus in China
- Assessing the efficiency of \textit{Wolbachia} driven \textit{Aedes} mosquito suppression by delay differential equations
- Reproduction numbers and sub-threshold endemic equilibria for compartmental models of disease transmission
- Dynamical behavior of an epidemic model with a nonlinear incidence rate
- Modeling mosquito population control by a coupled system
- Global analysis of an epidemic model with nonmonotone incidence rate
- Strain replacement in an epidemic model with super-infection and perfect vaccination
- Vaccination policies and nonlinear force of infection: generalization of an observation by Alexander and Moghadas (2004)
- Two-Group Infection Age Model Including an Application to Nosocomial Infection
- Lyapunov Functions and Global Stability for Age-Structured HIV Infection Model
- Persistence in Infinite-Dimensional Systems
- The stability analysis of an SVEIR model with continuous age-structure in the exposed and infectious classes
- Lyapunov functional and global asymptotic stability for an infection-age model
- Contributions to the mathematical theory of epidemics. III.—Further studies of the problem of endemicity
- Global Attractors and Steady States for Uniformly Persistent Dynamical Systems
- The population‐level impact of HBV and its vaccination on HIV transmission dynamics
This page was built for publication: Dynamical behavior of SEIR-SVS epidemic models with nonlinear incidence and vaccination