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Role of K(ATP)/
+
channels in local metabolic coronary vasodilation
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Dive into the research topics of 'Role of K(ATP)/
+
channels in local metabolic coronary vasodilation'. Together they form a unique fingerprint.
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Keyphrases
Metabolic
100%
KATP Channel
100%
Coronary Blood Flow
100%
Coronary Vasodilation
100%
Adenosine
83%
O2 Consumption
83%
Glibenclamide
66%
Catecholamines
33%
Heart Rate
16%
Tachycardia
16%
Mathematical Model
16%
Vasodilator Responses
16%
Coronary Sinus
16%
Coronary Vasodilators
16%
Left Circumflex Coronary Artery
16%
Paired-pulse
16%
Multi-compartment
16%
Paired-pulse Stimulation
16%
Sodium Channel Blockade
16%
Arteriovenous Differences
16%
ATP-sensitive Potassium
16%
Medicine and Dentistry
Adenosine Triphosphate
100%
Coronary Artery Dilatation
100%
Coronary Circulation
85%
Adenosine
71%
Oxygen Consumption
71%
Glibenclamide
57%
Catecholamine
28%
Blood Vessel Tone
14%
Tachyarrhythmia
14%
Pulse Rate
14%
Coronary Artery
14%
Coronary Vasodilating Agent
14%
Coronary Sinus
14%
Nursing and Health Professions
Adenosine Triphosphate
100%
Coronary Artery Blood Flow
85%
Adenosine
71%
Glibenclamide
57%
Catecholamine
28%
Tension
14%
Tachycardia
14%
Pulse Rate
14%
Coronary Vasodilating Agent
14%
Blood Vessel Tone
14%
Isotopes of Potassium
14%
Veterinary Science and Veterinary Medicine
Vasodilation
100%
Catecholamine
100%
Dog
50%
Tachyarrhythmia
50%
Tachycardia
50%
Blood Plasma
50%
Immunology and Microbiology
Coronary Artery Blood Flow
100%
Coronary Artery Dilatation
100%
Oxygen Consumption
83%
Pulse Rate
16%
Blood Plasma
16%
Blood Vessel Tone
16%
Coronary Artery
16%
Coronary Sinus
16%
Tension
16%
Pharmacology, Toxicology and Pharmaceutical Science
Adenosine Triphosphate
100%
Adenosine
71%
Glibenclamide
57%
Catecholamine
28%
Tachycardia
14%
Isotopes of Potassium
14%
Coronary Vasodilating Agent
14%