SIR epidemic models with distributed delay are proposed. Firstly, the dynamical behaviors of the model without vaccination are studied. Using the Jacobian matrix, the stability of the equilibrium points of the system without vaccination is analyzed. The basic reproduction number R is got. In order to study the important role of vaccination to prevent diseases, the model with distributed delay under impulsive vaccination is formulated. And the sufficient conditions of globally asymptotic stability of “infection-free” periodic solution and the permanence of the model are obtained by using Floquet’s theorem, small-amplitude perturbation skills, and comparison theorem. Lastly, numerical simulation is presented to illustrate our main conclusions...
This paper discusses the disease-free and endemic equilibrium points of a SVEIRS propagation disease...
AbstractIn this paper, we consider the permanence of a modified delayed SIR epidemic model with dens...
This paper discusses the disease-free and endemic equilibrium points of a SVEIRS propagation diseas...
AbstractWe derive a discretized SIR epidemic model with pulse vaccination and time delay from the or...
We first propose a new epidemic disease model governed by system of impulsive delay differential equ...
Special Issue on Biomedical Systems, Signals and Control Extended Selected papers from the IFAC Worl...
In this paper, a new high-dimensional SIR epidemic model with double epidemic hypothesis and delays ...
International audienceThis paper introduces a new model for disease outbreaks. This model describes ...
This paper aims to discuss the delay epidemic model with vertical transmission, constant input, and ...
AbstractIn this study, we propose a new SVEIR epidemic disease model with time delay, and analyze th...
A delay SEIRS model with pulse vaccination incorporating a general media coverage function and satur...
In this paper, we establish the global asymptotic stability of equi-libria for an SIR model of infec...
We consider permanence of an SIR epidemic model with distributed time delays. Based on some known te...
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
In this paper, by taking full consideration of distributed delay, demographics and contact heterogen...
This paper discusses the disease-free and endemic equilibrium points of a SVEIRS propagation disease...
AbstractIn this paper, we consider the permanence of a modified delayed SIR epidemic model with dens...
This paper discusses the disease-free and endemic equilibrium points of a SVEIRS propagation diseas...
AbstractWe derive a discretized SIR epidemic model with pulse vaccination and time delay from the or...
We first propose a new epidemic disease model governed by system of impulsive delay differential equ...
Special Issue on Biomedical Systems, Signals and Control Extended Selected papers from the IFAC Worl...
In this paper, a new high-dimensional SIR epidemic model with double epidemic hypothesis and delays ...
International audienceThis paper introduces a new model for disease outbreaks. This model describes ...
This paper aims to discuss the delay epidemic model with vertical transmission, constant input, and ...
AbstractIn this study, we propose a new SVEIR epidemic disease model with time delay, and analyze th...
A delay SEIRS model with pulse vaccination incorporating a general media coverage function and satur...
In this paper, we establish the global asymptotic stability of equi-libria for an SIR model of infec...
We consider permanence of an SIR epidemic model with distributed time delays. Based on some known te...
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
In this paper, by taking full consideration of distributed delay, demographics and contact heterogen...
This paper discusses the disease-free and endemic equilibrium points of a SVEIRS propagation disease...
AbstractIn this paper, we consider the permanence of a modified delayed SIR epidemic model with dens...
This paper discusses the disease-free and endemic equilibrium points of a SVEIRS propagation diseas...