Skip to main navigation
Skip to search
Skip to main content
Sort by
Keyphrases
Adenosine
42%
Adenosine Receptor Antagonists
14%
Adenosine Receptors
14%
Arterial Inflow
14%
Channel Blocker
14%
Control Condition
14%
Coronary Blood Flow
42%
Coronary Flow
57%
Coronary Vasodilation
100%
Coronary Venous
28%
During Exercise
100%
Endogenous Adenosine
100%
Exercise-induced
14%
Glibenclamide
57%
Hypoperfusion
14%
Intracoronary
14%
Intracoronary Infusion
14%
KATP Channel
100%
Myocardium
28%
Oxygen Demand
28%
Oxygen Extraction Fraction
14%
Oxygen Supply
14%
Oxygen Tension
28%
Receptor Blockade
14%
Rest Condition
14%
Sodium Channel Blockade
100%
Vascular Smooth muscle Cells
14%
Medicine and Dentistry
8 Phenyltheophylline
14%
Adenosine
100%
Adenosine Receptor
14%
Adenosine Receptor Antagonist
14%
Adenosine Triphosphate
100%
Channel Blocker
14%
Coronary Artery Dilatation
100%
Coronary Circulation
100%
Glibenclamide
57%
Heart Muscle Oxygen Consumption
14%
Intracoronary Drug Administration
14%
Myocardium
28%
Oxygen Consumption
28%
Potassium Ion
100%
Receptor Blocking
14%
Vascular Smooth Muscle
14%
Vasomotor
14%
Neuroscience
8 Phenyltheophylline
14%
Adenosine
100%
Adenosine Receptor
28%
Adenosine Triphosphate
100%
Channel Blocker
14%
Dog
14%
Glibenclamide
57%
Receptor Antagonist
14%
Vascular Smooth Muscle
14%
Vasodilation
100%
Vasomotor
14%
Immunology and Microbiology
Coronary Artery Blood Flow
100%
Coronary Artery Dilatation
100%
Dog
14%
Heart Muscle Oxygen Consumption
14%
Oxygen Consumption
28%
Perfusion
14%
Receptor Blocking
14%
Vascular Smooth Muscle
14%
Venous Oxygen Tension
28%
Material Science
Adenosinetriphosphate
100%