Objectives: Optimizing antiretroviral drug combination on an individual basis in resource-limited settings is challenging because of the limited availability of drugs and genotypic resistance testing. Here, we describe our latest computational models to predict treatment responses, with or without a genotype, and compare the potential utility of global and local models as a treatment tool for South Africa. Methods: Global random forest models were trained to predict the probability of virological response to therapy following virological failure using 29 574 treatment change episodes (TCEs) without a genotype, 3179 of which were from South Africa and were used to develop local models. In addition, 15 130 TCEs including genotypes were used t...
BACKGROUND: Inferring response to antiretroviral therapy from the viral genotype alone is challengi...
Although genotypic resistance testing (GRT) is recommended to guide combination antiretroviral thera...
Although genotypic resistance testing (GRT) is recommended to guide combination antiretroviral thera...
Objectives: Optimizing antiretroviral drug combination on an individual basis in resource-limited se...
Objectives: Optimizing antiretroviral drug combination on an individual basis in resource-limited se...
Objectives: The optimal individualized selection of antiretroviral drugs in resource-limited setting...
Objectives: Optimizing antiretroviral drug combination on an individual basis can be challenging, pa...
Objectives Optimizing antiretroviral drug combination on an individual basis can be challenging, par...
Genotypic HIV drug-resistance testing is typically 6065 predictive of response to combination antire...
Background: Selecting the optimal combination of HIV drugs for an individual in resourcelimited sett...
OBJECTIVES: We compared the use of computational models developed with and without HIV genotype vs. ...
BACKGROUND: Inferring response to antiretroviral therapy from the viral genotype alone is challengi...
Although genotypic resistance testing (GRT) is recommended to guide combination antiretroviral thera...
Although genotypic resistance testing (GRT) is recommended to guide combination antiretroviral thera...
Objectives: Optimizing antiretroviral drug combination on an individual basis in resource-limited se...
Objectives: Optimizing antiretroviral drug combination on an individual basis in resource-limited se...
Objectives: The optimal individualized selection of antiretroviral drugs in resource-limited setting...
Objectives: Optimizing antiretroviral drug combination on an individual basis can be challenging, pa...
Objectives Optimizing antiretroviral drug combination on an individual basis can be challenging, par...
Genotypic HIV drug-resistance testing is typically 6065 predictive of response to combination antire...
Background: Selecting the optimal combination of HIV drugs for an individual in resourcelimited sett...
OBJECTIVES: We compared the use of computational models developed with and without HIV genotype vs. ...
BACKGROUND: Inferring response to antiretroviral therapy from the viral genotype alone is challengi...
Although genotypic resistance testing (GRT) is recommended to guide combination antiretroviral thera...
Although genotypic resistance testing (GRT) is recommended to guide combination antiretroviral thera...