Abstract Background Alterations in myocardial mechano-energetic efficiency (MEEi), which represents the capability of the left ventricles to convert the chemical energy obtained by oxidative metabolism into mechanical work, have been associated with cardiovascular disease. Although whole-body insulin resistance has been related to impaired myocardial MEEi, it is unknown the relationship between cardiac insulin resistance and MEEi. Aim of this study was to evaluate the relationship between insulin-stimulated myocardial glucose metabolic rate (MrGlu) and myocardial MEEi in subjects having different degrees of glucose tolerance. Methods We evaluated insulin-stimulated myocardial MrGlu using cardiac dynamic positron emission tomography (PET) wi...
Objectives This study was designed to evaluate myocardial substrate and high-energy phosphate (HEP) ...
AIMS/HYPOTHESIS: Type 2 diabetes and insulin resistance are often associated with the co-occurren...
This study was designed to evaluate myocardial substrate and high-energy phosphate (HEP) metabolism ...
Background: Alterations in myocardial mechano-energetic efficiency (MEEi), which represents the capa...
OBJECTIVE Impaired insulin-stimulated myocardial glucose uptake has occurred in patients with type 2...
Metabolic syndrome is a condition characterized by a clustering of metabolic abnormalities associate...
Evidence indicate that 1h post-load glucose levels (1hPG)≥155 mg/dl identify amongst subjects with n...
Abstract Background In diabetes, dysregulated substrate utilization and energy metabolism of myocard...
Myocadium selects metabolic substrates, and energy cost efficiency is different among these substrat...
Lower myocardial mechanic-energetic efficiency (MEEi), expressed as stroke volume/heart rate ratio (...
Background: Myocardial energetic efficiency (MEE), is a strong predictor of CV events in hypertensiv...
Background: Myocardial energetic efficiency (MEE), is a strong predictor of CV events in hypertensiv...
Background: Myocardial energetic efficiency (MEE), is a strong predictor of CV events in hypertensiv...
Abstract For many years, cardiovascular disease (CVD) has been the leading cause of death around the...
ObjectivesThis study was designed to evaluate myocardial substrate and high-energy phosphate (HEP) m...
Objectives This study was designed to evaluate myocardial substrate and high-energy phosphate (HEP) ...
AIMS/HYPOTHESIS: Type 2 diabetes and insulin resistance are often associated with the co-occurren...
This study was designed to evaluate myocardial substrate and high-energy phosphate (HEP) metabolism ...
Background: Alterations in myocardial mechano-energetic efficiency (MEEi), which represents the capa...
OBJECTIVE Impaired insulin-stimulated myocardial glucose uptake has occurred in patients with type 2...
Metabolic syndrome is a condition characterized by a clustering of metabolic abnormalities associate...
Evidence indicate that 1h post-load glucose levels (1hPG)≥155 mg/dl identify amongst subjects with n...
Abstract Background In diabetes, dysregulated substrate utilization and energy metabolism of myocard...
Myocadium selects metabolic substrates, and energy cost efficiency is different among these substrat...
Lower myocardial mechanic-energetic efficiency (MEEi), expressed as stroke volume/heart rate ratio (...
Background: Myocardial energetic efficiency (MEE), is a strong predictor of CV events in hypertensiv...
Background: Myocardial energetic efficiency (MEE), is a strong predictor of CV events in hypertensiv...
Background: Myocardial energetic efficiency (MEE), is a strong predictor of CV events in hypertensiv...
Abstract For many years, cardiovascular disease (CVD) has been the leading cause of death around the...
ObjectivesThis study was designed to evaluate myocardial substrate and high-energy phosphate (HEP) m...
Objectives This study was designed to evaluate myocardial substrate and high-energy phosphate (HEP) ...
AIMS/HYPOTHESIS: Type 2 diabetes and insulin resistance are often associated with the co-occurren...
This study was designed to evaluate myocardial substrate and high-energy phosphate (HEP) metabolism ...