We analyze a mathematical power law model that describes HIV infection of CD4+ T cells. We report that the number of critical points depends on , where is a positive integer. We show that for any positive integer the infection – free equilibrium is asymptotically stable if the reproduction number R0 < 1 and unstable if R0 > 1. The method of proof involves Rene Descartes’ theory of positive solutions. The graph of X(uninfected T cells), T*(infected T cells) and V(HIV virus) against time t shows how the groups- the infected, the susceptible and the virus vary with time for various values of the parameter in the model. The results show that the positive integer has a considerable effect on the variations of the groups with time.Keywor...
Copyright © 2013 A. M. Elaiw et al. This is an open access article distributed under the Creative Co...
We examine a model for the interaction of HIV with CD4+ T cells that considers four populations: uni...
In this paper, with eclipse stage in consideration, we propose an HIV-1 infection model with a gener...
We analyze a mathematical power law model that describes HIV infection of CD4+ T cells. We report th...
A mathematical model that describes HIV infection of CD4+ T cells is analyzed. Global dynamics of th...
We study a mathematical model for the interaction of HIV infection and CD4 T cells. Local and global...
We analyze a mathematical model that describes HIV infection of CD4+ T cells. We are interested in ...
Abstract:In this paper, we consider the classical viral dynamic mathematical model. Global dynamics ...
We developed and studied a mathematical model of HIV+. Two equilibriums points were found, disease f...
AbstractA differential equation model of HIV infection of CD4+ T-cells with cure rate is studied. We...
We propose an infection age HIV model that considers virus-to-cell and cell-to-cell infections and i...
We consider a model of disease dynamics in the modeling of Human Immunodeficiency Virus (HIV). The s...
Paper presented at the 4th Strathmore International Mathematics Conference (SIMC 2017), 19 - 23 June...
We analyze a mathematical model of within-host dynamics of plasmodiumfalciparum. We report that ther...
In this paper we study a delay mathematical model for the dynamics of HIV in HIV-specific CD4 + T he...
Copyright © 2013 A. M. Elaiw et al. This is an open access article distributed under the Creative Co...
We examine a model for the interaction of HIV with CD4+ T cells that considers four populations: uni...
In this paper, with eclipse stage in consideration, we propose an HIV-1 infection model with a gener...
We analyze a mathematical power law model that describes HIV infection of CD4+ T cells. We report th...
A mathematical model that describes HIV infection of CD4+ T cells is analyzed. Global dynamics of th...
We study a mathematical model for the interaction of HIV infection and CD4 T cells. Local and global...
We analyze a mathematical model that describes HIV infection of CD4+ T cells. We are interested in ...
Abstract:In this paper, we consider the classical viral dynamic mathematical model. Global dynamics ...
We developed and studied a mathematical model of HIV+. Two equilibriums points were found, disease f...
AbstractA differential equation model of HIV infection of CD4+ T-cells with cure rate is studied. We...
We propose an infection age HIV model that considers virus-to-cell and cell-to-cell infections and i...
We consider a model of disease dynamics in the modeling of Human Immunodeficiency Virus (HIV). The s...
Paper presented at the 4th Strathmore International Mathematics Conference (SIMC 2017), 19 - 23 June...
We analyze a mathematical model of within-host dynamics of plasmodiumfalciparum. We report that ther...
In this paper we study a delay mathematical model for the dynamics of HIV in HIV-specific CD4 + T he...
Copyright © 2013 A. M. Elaiw et al. This is an open access article distributed under the Creative Co...
We examine a model for the interaction of HIV with CD4+ T cells that considers four populations: uni...
In this paper, with eclipse stage in consideration, we propose an HIV-1 infection model with a gener...