A SIRS epidemic model incorporating media coverage with random perturbation
From MaRDI portal
Publication:2319110
DOI10.1155/2013/792308zbMath1470.34132OpenAlexW1974596854WikidataQ58917477 ScholiaQ58917477MaRDI QIDQ2319110
Publication date: 16 August 2019
Published in: Abstract and Applied Analysis (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1155/2013/792308
Epidemiology (92D30) Stability of solutions to ordinary differential equations (34D20) Ordinary differential equations and systems with randomness (34F05) Qualitative investigation and simulation of ordinary differential equation models (34C60)
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Cites Work
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- Effect of media-induced social distancing on disease transmission in a two patch setting
- Asymptotic properties of a stochastic predator-prey system with Holling II functional response
- Asymptotic behavior of global positive solution to a stochastic SIR model
- The complex dynamics of a stochastic predator-prey model
- Dynamics of infection with nonlinear incidence in a simple vaccination model
- Global stability of two-group SIR model with random perturbation
- Analysis of a stochastic SIR epidemic on a random network incorporating household structure
- Stochastic epidemic models: a survey
- An SIS infection model incorporating media coverage
- Influence of nonlinear incidence rates upon the behavior of SIRS epidemiological models
- Dynamical behavior of epidemiological models with nonlinear incidence rates
- A generalization of the Kermack-McKendrick deterministic epidemic model
- Stability of epidemic model with time delays influenced by stochastic perturbations
- Stochastic models of some endemic infections
- Environmental Brownian noise suppresses explosions in population dynamics.
- Dynamical behavior of an epidemic model with a nonlinear incidence rate
- Long term behavior of solutions of the Lotka-Volterra system under small random perturbations.
- Sliding mode control of outbreaks of emerging infectious diseases
- Dynamics of positive solutions to SIR and SEIR epidemic models with saturated incidence rates
- Dynamics of an infectious diseases with media/psychology induced non-smooth incidence
- Stochastic dynamics of an SIRS epidemic model with ratio-dependent incidence rate
- Stochastic population dynamics under regime switching
- Global analysis of an epidemic model with nonmonotone incidence rate
- The impact of media on the control of infectious diseases
- Media/psychological impact on multiple outbreaks of emerging infectious diseases
- The long time behavior of DI SIR epidemic model with stochastic perturbation
- The Mathematics of Infectious Diseases
- An Algorithmic Introduction to Numerical Simulation of Stochastic Differential Equations
- A Stochastic Differential Equation SIS Epidemic Model
- THE IMPACT OF MEDIA COVERAGE ON THE DYNAMICS OF INFECTIOUS DISEASE
- An Introduction to Stochastic Epidemic Models
- Non-linear incidence and stability of infectious disease models
- Stochastic differential equations. An introduction with applications.