Keyphrases
Older Individuals
100%
Endurance Training
100%
Exercise Training
100%
Gender-specific
100%
Myocardial Metabolism
100%
Training Impact
100%
Fatty Acid Utilization
42%
Myocardial Substrate Metabolism
42%
Dobutamine
42%
Cardiac Function
28%
Myocardial Blood Flow
28%
Glucose Utilization
28%
MVO2
28%
Whole-body
14%
Glucose Tolerance
14%
Insulin Sensitivity
14%
O2 Consumption
14%
Fatty Acids
14%
Palmitate
14%
Aging
14%
Gender Differences
14%
Cardiovascular Effects
14%
VO2max
14%
Older Men
14%
Aerobic Capacity
14%
Older Women
14%
Metabolic Response
14%
Dobutamine Infusion
14%
11C-acetate
14%
Response to Training
14%
Individual Age
14%
15O-water
14%
Catecholamine Response
14%
Myocardial Glucose Metabolism
14%
O2 Uptake
14%
Healthy Older Individuals
14%
Medicine and Dentistry
Endurance Training
100%
Heart Muscle Metabolism
100%
Fatty Acid
57%
Dobutamine
57%
Carbon 11
42%
Oxygen Consumption
28%
Heart Function
28%
Glucose Utilization
28%
Heart Muscle Blood Flow
28%
Cardiovascular System
14%
Infusion
14%
Insulin Sensitivity
14%
Glucose Metabolism
14%
Catecholamine
14%
Glucose Tolerance
14%
Oxygen 15
14%
Acetic Acid
14%
Palmitic Acid
14%
Polyethylene Terephthalate
14%
Sex Differences
14%
Biochemistry, Genetics and Molecular Biology
Endurance Training
100%
Heart Muscle Metabolism
100%
Metabolic Pathway
57%
Dobutamine
57%
Oxygen Consumption
28%
Heart Function
28%
Heart Muscle Blood Flow
28%
Glucose Utilization
28%
Insulin Sensitivity
14%
Glucose Metabolism
14%
Catecholamine
14%
Palmitic Acid
14%
Sex Differences
14%
Pharmacology, Toxicology and Pharmaceutical Science
Fatty Acid
100%
Dobutamine
100%
Carbon 11
75%
Palmitic Acid
25%
Catecholamine
25%
Oxygen 15
25%
Polyethylene Terephthalate
25%