AbstractIn this paper, we investigate global dynamics for a system of delay differential equations which describes a virus-immune interaction in vivo. The model has two distributed time delays describing time needed for infection of cell and virus replication. Our model admits three possible equilibria, an uninfected equilibrium and infected equilibrium with or without immune response depending on the basic reproduction number for viral infection R0 and for CTL response R1 such that R1<R0. It is shown that there always exists one equilibrium which is globally asymptotically stable by employing the method of Lyapunov functional. More specifically, the uninfected equilibrium is globally asymptotically stable if R0⩽1, an infected equilibrium w...
AbstractIn this paper we study the basic model of viral infections with mitotic transmission and int...
We consider a mathematical model that describes a viral infection of HIV-1 with both virus-to-cell a...
We investigate global dynamics for a system of delay differential equations which describes a virus-...
In this paper, we investigate global dynamics for a system of delay differential equations which des...
AbstractIn this paper, we investigate global dynamics for a system of delay differential equations w...
In this paper, we investigate global dynamics for a system of delay differential equations which des...
We present the dynamical behaviors of a virus infection model with general infection rate, immune re...
We present qualitative behavior of virus infection model with antibody immune response. The incidenc...
In this paper, we study the global dynamics of a viral infection model with a latent period. The mod...
In this paper, we propose and analyze a delayed diffusive viral dynamic model incorporating cell-med...
Abstract The dynamics of a general in-host model with intracellular delay is studied. The model can ...
summary:A virus dynamics model with two state-dependent delays and logistic growth term is investiga...
AbstractIn this paper, an HIV-1 infection model with distributed intracellular delays is investigate...
AbstractA class of virus dynamics model with intracellular delay and nonlinear infection rate of Bed...
In this paper, we discussed a infinitely distributed delayed viral infection model with nonlinear im...
AbstractIn this paper we study the basic model of viral infections with mitotic transmission and int...
We consider a mathematical model that describes a viral infection of HIV-1 with both virus-to-cell a...
We investigate global dynamics for a system of delay differential equations which describes a virus-...
In this paper, we investigate global dynamics for a system of delay differential equations which des...
AbstractIn this paper, we investigate global dynamics for a system of delay differential equations w...
In this paper, we investigate global dynamics for a system of delay differential equations which des...
We present the dynamical behaviors of a virus infection model with general infection rate, immune re...
We present qualitative behavior of virus infection model with antibody immune response. The incidenc...
In this paper, we study the global dynamics of a viral infection model with a latent period. The mod...
In this paper, we propose and analyze a delayed diffusive viral dynamic model incorporating cell-med...
Abstract The dynamics of a general in-host model with intracellular delay is studied. The model can ...
summary:A virus dynamics model with two state-dependent delays and logistic growth term is investiga...
AbstractIn this paper, an HIV-1 infection model with distributed intracellular delays is investigate...
AbstractA class of virus dynamics model with intracellular delay and nonlinear infection rate of Bed...
In this paper, we discussed a infinitely distributed delayed viral infection model with nonlinear im...
AbstractIn this paper we study the basic model of viral infections with mitotic transmission and int...
We consider a mathematical model that describes a viral infection of HIV-1 with both virus-to-cell a...
We investigate global dynamics for a system of delay differential equations which describes a virus-...