AbstractIn this paper, we introduce a basic reproduction number for a multigroup epidemic model with nonlinear incidence. Then, we establish that global dynamics are completely determined by the basic reproduction number R0. It shows that, the basic reproduction number R0 is a global threshold parameter in the sense that if it is less than or equal to one, the disease free equilibrium is globally stable and the disease dies out; whereas if it is larger than one, there is a unique endemic equilibrium which is globally stable and thus the disease persists in the population. Finally, a numerical example is also included to illustrate the effectiveness of the proposed result
The goal of this paper is the establishment of the global asymptotic stability of the model SI with ...
An SIQ epidemic model with isolation and nonlinear incidence rate is studied. We have obtained a thr...
An SIQ epidemic model with isolation and nonlinear incidence rate is studied. We have obtained a thr...
AbstractIn this paper, we introduce a basic reproduction number for a multigroup epidemic model with...
In this paper, we introduce a basic reproduction number for a multi-group SIR model with general rel...
Abstract The dynamics of many epidemic models for infectious diseases that spread in a single host ...
In this article, we study an SIR model with nonlinear incidence rate. By defining the Filippov solu...
We consider a family of periodic SEIRS epidemic models with a fairly general incidence rate of the f...
In this article, we establish the global asymptotic stability of a disease-free equilibrium and an e...
An SIQ epidemic model with isolation and nonlinear incidence rate is studied. We have obtained a thr...
The dynamics of many epidemic models for infectious diseases that spread in a single host population...
In this research work, we study the global stability of the SIR model which describes the dynamics o...
The dynamics of many epidemic models for infectious diseases that spread in a single host population...
The dynamics of many epidemic models for infectious diseases that spread in a single host population...
In this paper, we present the global dynamics of an SEIRS epidemic model for an infectious disease n...
The goal of this paper is the establishment of the global asymptotic stability of the model SI with ...
An SIQ epidemic model with isolation and nonlinear incidence rate is studied. We have obtained a thr...
An SIQ epidemic model with isolation and nonlinear incidence rate is studied. We have obtained a thr...
AbstractIn this paper, we introduce a basic reproduction number for a multigroup epidemic model with...
In this paper, we introduce a basic reproduction number for a multi-group SIR model with general rel...
Abstract The dynamics of many epidemic models for infectious diseases that spread in a single host ...
In this article, we study an SIR model with nonlinear incidence rate. By defining the Filippov solu...
We consider a family of periodic SEIRS epidemic models with a fairly general incidence rate of the f...
In this article, we establish the global asymptotic stability of a disease-free equilibrium and an e...
An SIQ epidemic model with isolation and nonlinear incidence rate is studied. We have obtained a thr...
The dynamics of many epidemic models for infectious diseases that spread in a single host population...
In this research work, we study the global stability of the SIR model which describes the dynamics o...
The dynamics of many epidemic models for infectious diseases that spread in a single host population...
The dynamics of many epidemic models for infectious diseases that spread in a single host population...
In this paper, we present the global dynamics of an SEIRS epidemic model for an infectious disease n...
The goal of this paper is the establishment of the global asymptotic stability of the model SI with ...
An SIQ epidemic model with isolation and nonlinear incidence rate is studied. We have obtained a thr...
An SIQ epidemic model with isolation and nonlinear incidence rate is studied. We have obtained a thr...