In this paper, we study the bifurcation of an epidemic model with sub-optimal immunity and saturated treatment/recovery rate. Different from classical models, suboptimal models are more realistic to explain the microparasite infections disease such as Pertussis and Influenza A. By carrying out the bifurcation analysis of the model, we show that for certain values of the model parameters, Hopf bifurcation, Bogdonov-Takens bifurcation and its associated homoclinic bifurcation occur. By studying the bifurcation curves, we can predict the persistence or extinction of diseases
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
A host-parasite model is proposed that incorporates a nonlinear incidence rate. Under the influence ...
It was shown in [11] that in an epidemic model with a nonlinear incidence and two compartments some ...
In this thesis we consider an epidemic model with a constant removal rate of infective individuals i...
In this thesis we consider an epidemic model with a constant removal rate of infective individuals i...
The transmission of infectious diseases has been studied by mathematical methods since 1760s, among ...
AbstractIn this paper, we study the global dynamics of an epidemic model with vital dynamics and non...
AbstractAn epidemic model with saturated incidence rate and saturated treatment function is studied....
AbstractAn epidemic model with a constant removal rate of infective individuals is proposed to under...
Susceptible-infectious-removed (SIR) epidemic models are proposed to consider the impact of availabl...
ABSTRACT. An epidemic model with Classical Kermack-Mckendrick incidence rate under a limited resourc...
ABSTRACT. An epidemic model with Classical Kermack-Mckendrick incidence rate under a limited resourc...
Modeling insights for epidemiological scenarios characterized by chaotic dynamics have been largely ...
The total population of the model is divided into five mutually exclusive classes: Vaccinated V ( t)...
The total population of the model is divided into five mutually exclusive classes: Vaccinated V ( t)...
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
A host-parasite model is proposed that incorporates a nonlinear incidence rate. Under the influence ...
It was shown in [11] that in an epidemic model with a nonlinear incidence and two compartments some ...
In this thesis we consider an epidemic model with a constant removal rate of infective individuals i...
In this thesis we consider an epidemic model with a constant removal rate of infective individuals i...
The transmission of infectious diseases has been studied by mathematical methods since 1760s, among ...
AbstractIn this paper, we study the global dynamics of an epidemic model with vital dynamics and non...
AbstractAn epidemic model with saturated incidence rate and saturated treatment function is studied....
AbstractAn epidemic model with a constant removal rate of infective individuals is proposed to under...
Susceptible-infectious-removed (SIR) epidemic models are proposed to consider the impact of availabl...
ABSTRACT. An epidemic model with Classical Kermack-Mckendrick incidence rate under a limited resourc...
ABSTRACT. An epidemic model with Classical Kermack-Mckendrick incidence rate under a limited resourc...
Modeling insights for epidemiological scenarios characterized by chaotic dynamics have been largely ...
The total population of the model is divided into five mutually exclusive classes: Vaccinated V ( t)...
The total population of the model is divided into five mutually exclusive classes: Vaccinated V ( t)...
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
A host-parasite model is proposed that incorporates a nonlinear incidence rate. Under the influence ...
It was shown in [11] that in an epidemic model with a nonlinear incidence and two compartments some ...