While viral latency remains one of the biggest challenges for successful antiviral therapy, it has also inspired mathematical modelers to develop dynamical system approaches with the aim of predicting the impact of drug efficacy on disease progression and the persistence of latent viral reservoirs. In this review we present several differential equation models and assess their relative success in giving advice to the working clinician and their predictive power for inferring long term viral eradication from short term abatement. Many models predict that there is a considerable likelihood of viral rebound due to continuous reseeding of latent reservoirs. Most mathematical models of HIV latency suffer from being reductionist by ignoring the g...
Developing antiviral drugs is an exigent task since viruses mutate to overcome the effect of antivir...
In [17] it was introduced a model to describe the dynamics of the HIV infection when the patient is ...
. Mathematical models have proven valuable in understanding the dynamics of HIV-1 infection in vivo....
While viral latency remains one of the biggest challenges for successful antiviral therapy, it has a...
HIV latency remains a major obstacle to viral elimination. The activation rate of latently infected ...
Latently infected CD 4 + T cells represent one of the major obstacles to HIV eradication even after ...
Purpose of review HIV targets primary CD4+ T cells. The virus depends on the physiological state of ...
In this research, generalized mathematical models depicting HIV-1 pathophysiodynamics are constructe...
Mathematical models provide a means to understand the human immunodeficiency virus (HIV)-infected im...
In this paper, the patho-physiological dynamics of HIV-1 induced AIDS is analyzed using a system of ...
Mathematical models have shed light on the dynamics of HIV- 1 infection in vivo. In this paper, we g...
Although potent combination therapy is usually able to suppress plasma viral loads in HIV-1 patients...
Despite many years of potent antiretroviral therapy, latently infected cells and low levels of plasm...
Infection with HIV-1, degrading the human immune system and recent advances of drug therapy to arres...
In this paper we study a delay mathematical model for the dynamics of HIV in HIV-specific CD4 + T he...
Developing antiviral drugs is an exigent task since viruses mutate to overcome the effect of antivir...
In [17] it was introduced a model to describe the dynamics of the HIV infection when the patient is ...
. Mathematical models have proven valuable in understanding the dynamics of HIV-1 infection in vivo....
While viral latency remains one of the biggest challenges for successful antiviral therapy, it has a...
HIV latency remains a major obstacle to viral elimination. The activation rate of latently infected ...
Latently infected CD 4 + T cells represent one of the major obstacles to HIV eradication even after ...
Purpose of review HIV targets primary CD4+ T cells. The virus depends on the physiological state of ...
In this research, generalized mathematical models depicting HIV-1 pathophysiodynamics are constructe...
Mathematical models provide a means to understand the human immunodeficiency virus (HIV)-infected im...
In this paper, the patho-physiological dynamics of HIV-1 induced AIDS is analyzed using a system of ...
Mathematical models have shed light on the dynamics of HIV- 1 infection in vivo. In this paper, we g...
Although potent combination therapy is usually able to suppress plasma viral loads in HIV-1 patients...
Despite many years of potent antiretroviral therapy, latently infected cells and low levels of plasm...
Infection with HIV-1, degrading the human immune system and recent advances of drug therapy to arres...
In this paper we study a delay mathematical model for the dynamics of HIV in HIV-specific CD4 + T he...
Developing antiviral drugs is an exigent task since viruses mutate to overcome the effect of antivir...
In [17] it was introduced a model to describe the dynamics of the HIV infection when the patient is ...
. Mathematical models have proven valuable in understanding the dynamics of HIV-1 infection in vivo....