A diffusive epidemic model with two delays subjecting to Neumann boundary conditions is considered. First we obtain the existence and the stability of the positive constant steady state. Then we investigate the existence of Hopf bifurcations by analyzing the distribution of the eigenvalues. Furthermore, we derive the normal form on the center manifold near the Hopf bifurcation singularity. Finally, some numerical simulations are carried out to illustrate the theoretical results
In this paper, a delayed SIS (Susceptible Infectious Susceptible) model with stage structure is inv...
Abstract In this paper, we consider a model of plant virus propagation with two delays and Holling t...
To understand the interaction between the insects and the plants, a system of delay differential equ...
Epidemic models are normally used to describe the spread of infectious diseases. In this paper, we w...
Abstract. In this paper, a class of delayed epidemic model with diffusion is investigated. By analyz...
In this paper, a vector-borne disease model with two delays and reinfection is established and consi...
In this article, we study a reaction-diffusion system for a SIRS epidemic model with time delay and...
We study stability and Hopf bifurcation analysis of a model that refers to the competition between t...
We study stability and Hopf bifurcation analysis of a model that refers to the competition between t...
We study stability and Hopf bifurcation analysis of a model that refers to the competition between t...
In this paper, a computer virus propagation model with two delays and infectivity in latent period i...
A SIS epidemic model proposed by Cooke et al. [2] is investigated. Using time delay as the control p...
Abstract In this paper, we analyze a delayed SEIR epidemic model in which the latent and infected st...
A delayed epidemic model with nonlinear incidence rate which depends on the ratio of the numbers of ...
We present an algorithm for determining the existence of a Hopf bifurcation of a system of delayed r...
In this paper, a delayed SIS (Susceptible Infectious Susceptible) model with stage structure is inv...
Abstract In this paper, we consider a model of plant virus propagation with two delays and Holling t...
To understand the interaction between the insects and the plants, a system of delay differential equ...
Epidemic models are normally used to describe the spread of infectious diseases. In this paper, we w...
Abstract. In this paper, a class of delayed epidemic model with diffusion is investigated. By analyz...
In this paper, a vector-borne disease model with two delays and reinfection is established and consi...
In this article, we study a reaction-diffusion system for a SIRS epidemic model with time delay and...
We study stability and Hopf bifurcation analysis of a model that refers to the competition between t...
We study stability and Hopf bifurcation analysis of a model that refers to the competition between t...
We study stability and Hopf bifurcation analysis of a model that refers to the competition between t...
In this paper, a computer virus propagation model with two delays and infectivity in latent period i...
A SIS epidemic model proposed by Cooke et al. [2] is investigated. Using time delay as the control p...
Abstract In this paper, we analyze a delayed SEIR epidemic model in which the latent and infected st...
A delayed epidemic model with nonlinear incidence rate which depends on the ratio of the numbers of ...
We present an algorithm for determining the existence of a Hopf bifurcation of a system of delayed r...
In this paper, a delayed SIS (Susceptible Infectious Susceptible) model with stage structure is inv...
Abstract In this paper, we consider a model of plant virus propagation with two delays and Holling t...
To understand the interaction between the insects and the plants, a system of delay differential equ...