A low maximal oxygen consumption (Vo2max is a strong risk factor for premature mortality. Supervised endurance exercise training increases Vo2max with a very wide range of effectiveness in humans. Discovering the DNA variants that contribute to this heterogeneity typically requires substantial sample sizes. In the present study, we first use RNA expression, profiling to produce a molecular classifier that predicts Vo2max training response. We then, hypothesized that the classifier genes would harbor DNA variants that contributed to the heterogeneous Vo2max response. Two independent preintervention RNA expression data sets were generated (n = 41 gene chips) from subjects that underwent supervised endurance training: one identified and the se...
There are strong genetic components to cardiorespiratory fitness and its response to exercise traini...
Genes control biological processes such as muscle, cartilage and bone formation, muscle energy produ...
BACKGROUND: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...
A low maximal oxygen consumption (Vo2max is a strong risk factor for premature mortality. Supervised...
A low maximal oxygen consumption (VO2max) is a strong risk factor for premature mortality. Supervise...
Background Cardiorespiratory fitness (VO2max) is an excellent predictor of chronic disease morbidity...
Peripheral blood cells are an accessible environment in which to visualize exercise-induced alterati...
Adaptation to exercise training is a complex trait that may be influenced by genetic variants. We id...
ABSTRACT: BACKGROUND: It is widely accepted that genetic variability might explain a large part of ...
All biological processes associated with high sports performance, including energy metabolism, are i...
Purpose: Genetic polymorphisms have been associated with the adaptation to training in maximal oxyge...
There are strong genetic components to cardiorespiratory fitness and its response to exercise traini...
PURPOSE: We used gene microarray analysis to compare the global expression profile of genes involved...
There are strong genetic components to cardiorespiratory fitness and its response to exercise traini...
Genes control biological processes such as muscle, cartilage and bone formation, muscle energy produ...
BACKGROUND: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...
A low maximal oxygen consumption (Vo2max is a strong risk factor for premature mortality. Supervised...
A low maximal oxygen consumption (VO2max) is a strong risk factor for premature mortality. Supervise...
Background Cardiorespiratory fitness (VO2max) is an excellent predictor of chronic disease morbidity...
Peripheral blood cells are an accessible environment in which to visualize exercise-induced alterati...
Adaptation to exercise training is a complex trait that may be influenced by genetic variants. We id...
ABSTRACT: BACKGROUND: It is widely accepted that genetic variability might explain a large part of ...
All biological processes associated with high sports performance, including energy metabolism, are i...
Purpose: Genetic polymorphisms have been associated with the adaptation to training in maximal oxyge...
There are strong genetic components to cardiorespiratory fitness and its response to exercise traini...
PURPOSE: We used gene microarray analysis to compare the global expression profile of genes involved...
There are strong genetic components to cardiorespiratory fitness and its response to exercise traini...
Genes control biological processes such as muscle, cartilage and bone formation, muscle energy produ...
BACKGROUND: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...