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Contribution of hydrogen sulfide to the control of coronary blood flow
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Dive into the research topics of 'Contribution of hydrogen sulfide to the control of coronary blood flow'. Together they form a unique fingerprint.
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Keyphrases
Coronary Blood Flow
100%
Hydrogen Sulfide
100%
Endogenous H2S
100%
Coronary Flow
66%
KATP Channel
66%
Coronary Microvascular Resistance
66%
Immunohistochemistry
33%
Intracoronary
33%
Functional Role
33%
Myocardium
33%
Cyano
33%
Cysteine
33%
Open Chest
33%
4-aminopyridine
33%
Coronary Artery
33%
Channel Antagonist
33%
L-NAME
33%
Anesthetized Dog
33%
Kv Channels
33%
Glibenclamide
33%
Cardiac Ischemia
33%
Myocardial Perfusion
33%
Coronary Occlusion
33%
Isolated Artery
33%
Coronary Microcirculation
33%
NO Synthesis
33%
In Vitro Blood
33%
Coronary Tone
33%
Medicine and Dentistry
Coronary Circulation
100%
Hydrogen Sulfide
100%
Adenosine Triphosphate Sensitive Potassium Channel
50%
Myocardium
25%
Artery
25%
In Vitro
25%
Immunohistochemistry
25%
Heart Muscle Ischemia
25%
Coronary Occlusion
25%
Cysteine
25%
4-Aminopyridine
25%
Coronary Artery
25%
Heart Muscle Perfusion
25%
Coronary Microcirculation
25%
Alanine
25%
Glibenclamide
25%
Pharmacology, Toxicology and Pharmaceutical Science
Adenosine Triphosphate Sensitive Potassium Channel
100%
Hydrogen Sulfide
100%
Cysteine
50%
Coronary Artery Occlusion
50%
Heart Muscle Ischemia
50%
4-Aminopyridine
50%
Glibenclamide
50%
Alanine
50%
Biochemistry, Genetics and Molecular Biology
Coronary Artery Blood Flow
100%
Hydrogen Sulfide
100%
Adenosine Triphosphate Sensitive Potassium Channel
50%
Enzyme
25%
Microcirculation
25%
4-Aminopyridine
25%
Glibenclamide
25%
Isolated Artery
25%
Heart Muscle Perfusion
25%
Alanine
25%
Cysteine
25%
Immunology and Microbiology
Coronary Artery Blood Flow
100%
ATP-Sensitive Potassium Channel
50%
Coronary Artery
25%
Microcirculation
25%
Isolated Artery
25%
Heart Muscle Perfusion
25%
Food Science
Alanine
100%
Cysteine
100%