ABSTRACT: BACKGROUND: It is widely accepted that genetic variability might explain a large part of the observed heterogeneity in aerobic capacity and its response to training. Significant associations between polymorphisms of different genes with muscular strength, anaerobic phenotypes and body composition have been reported. Muscular endophenotypes are positively correlated with aerobic capacity, therefore, we tested the association of polymorphisms in twelve muscular related genes on aerobic capacity and its response to endurance training. METHODS: 935 Coronary artery disease patients (CAD) who performed an incremental exercise test until exhaustion at baseline and after three months of training were included. Polymorphisms of the genes ...
Background: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...
Background: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...
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 ...
Aerobic phenotypes show a wide variability to similar aerobic training stimuli, which can be partly ...
Aerobic phenotypes show a wide variability to similar aerobic training stimuli, which can be partly ...
Summary Aerobic power and the response to physical training vary largely among individuals with CAD....
Background: Cardiorespiratory fitness (VO2max) is an excellent predictor of chronic...
Background Cardiorespiratory fitness (VO2max) is an excellent predictor of chronic disease morbidity...
Background: Cardiorespiratory fitness (VO2max) is an excellent predictor of chronic...
This study aims to identify a genetic predisposition score from a set of candidate gene variants tha...
Introduction: Low maximal oxygen uptake (VO) is a strong and independent risk factor for all-cause a...
In 927 biologically unrelated Caucasian patients with coronary artery disease it was investigated wh...
Abstract Background Cardiorespiratory fitness (VO2max) is an excellent predictor of chronic disease ...
BACKGROUND: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...
Background: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...
Background: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...
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 ...
Aerobic phenotypes show a wide variability to similar aerobic training stimuli, which can be partly ...
Aerobic phenotypes show a wide variability to similar aerobic training stimuli, which can be partly ...
Summary Aerobic power and the response to physical training vary largely among individuals with CAD....
Background: Cardiorespiratory fitness (VO2max) is an excellent predictor of chronic...
Background Cardiorespiratory fitness (VO2max) is an excellent predictor of chronic disease morbidity...
Background: Cardiorespiratory fitness (VO2max) is an excellent predictor of chronic...
This study aims to identify a genetic predisposition score from a set of candidate gene variants tha...
Introduction: Low maximal oxygen uptake (VO) is a strong and independent risk factor for all-cause a...
In 927 biologically unrelated Caucasian patients with coronary artery disease it was investigated wh...
Abstract Background Cardiorespiratory fitness (VO2max) is an excellent predictor of chronic disease ...
BACKGROUND: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...
Background: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...
Background: Low cardiorespiratory fitness (V̇O2peak) is highly associated with chronic disease and m...
Adaptation to exercise training is a complex trait that may be influenced by genetic variants. We id...