Fighting a virus with a virus: A dynamic model for HIV-1 therapy
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Publication:1410353
DOI10.1016/S0025-5564(03)00091-9zbMath1021.92015WikidataQ39394248 ScholiaQ39394248MaRDI QIDQ1410353
Gisela García-Ramos, Tomás A. Revilla
Publication date: 14 October 2003
Published in: Mathematical Biosciences (Search for Journal in Brave)
Application models in control theory (93C95) Medical applications (general) (92C50) Medical epidemiology (92C60)
Related Items (19)
Modelling immune system dynamics: the interaction of HIV and recombinant virus ⋮ Stability and Hopf Bifurcation in a HIV-1 System with Multitime Delays ⋮ Dynamics of an HIV-1 therapy model of fighting a virus with another virus ⋮ Stability analysis of delay integro-differential equations of HIV-1 infection model ⋮ Stability and Hopf bifurcation in a viral infection model with nonlinear incidence rate and delayed immune response ⋮ Bio-inspired computational heuristics to study models of HIV infection of CD4+ T-cell ⋮ Dynamics of a Delayed HIV-1 Infection Model with Saturation Incidence Rate and CTL Immune Response ⋮ Global stability of a delayed HIV infection model with nonlinear incidence rate ⋮ Role of \(CD4^{+}\) T-cell proliferation in HIV infection under antiretroviral therapy ⋮ Complete classification of global dynamics of a virus model with immune responses ⋮ Global stability and backward bifurcation of a general viral infection model with virus-driven proliferation of target cells ⋮ Global dynamics of a viral infection model with a latent period and Beddington-DeAngelis response ⋮ On the modeling of long-term HIV-1 infection dynamics ⋮ Optimal control strategy of HIV-1 epidemic model for recombinant virus ⋮ Mathematical analysis of delayed HIV-1 infection model for the competition of two viruses ⋮ Impact of delay on HIV-1 dynamics of fighting a virus with another virus ⋮ Dynamics of an HIV-1 infection model with cell mediated immunity ⋮ Stability analysis of delay differential equation models of HIV-1 therapy for fighting a virus with another virus ⋮ BIFURCATION ANALYSIS ON AN HIV-1 MODEL WITH CONSTANT INJECTION OF RECOMBINANT
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