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Keyphrases
Action Potential
11%
Arrhythmia
11%
ATP-sensitive K+ (KATP) Channel
100%
ATP-sensitive Potassium
11%
Canine
11%
Cardiac Conduction
11%
Cardiac Conduction System
100%
Channel Opening
11%
Closed Time
22%
CNTNAP2
11%
Conductance
11%
Conduction Time
11%
Cromakalim
11%
Diazoxide
11%
Electrophysiological Response
11%
Elevated Levels
11%
GFP Reporter
11%
Glibenclamide
11%
High Sensitivity
11%
Interburst
11%
Ion Channels
11%
Ischemia
22%
KATP Channel
77%
Low Flow
11%
Mouse Heart
11%
MRNA Expression
11%
Myocytes
44%
Numeric Simulation
11%
Open Time
11%
Pharmacological Profile
11%
Purkinje
11%
Purkinje Fibers
11%
Reporter Mice
11%
SUR1
11%
SUR2A
22%
SUR2B
22%
Unique Properties
100%
Ventricle
11%
Ventricular Myocytes
11%
Biochemistry, Genetics and Molecular Biology
Action Potential
11%
Adenosine Diphosphate
11%
Adenosine Triphosphate
100%
Adenosine Triphosphate Sensitive Potassium Channel
22%
Canis
11%
Cardiac Dysrhythmia
11%
Conductance
11%
Diazoxide
11%
Glibenclamide
11%
Heart Conduction
88%
Heart Ventricle Conduction
100%
Ion Channel
11%
Kir6.2
11%
Messenger RNA
22%
Potassium Channel
100%
Medicine and Dentistry
Action Potential
11%
Adenosine Diphosphate
11%
Adenosine Triphosphate
100%
Adenosine Triphosphate Sensitive Potassium Channel
22%
Cardiac Dysrhythmia
11%
Conduction System of Heart
100%
Diazoxide
11%
Glibenclamide
11%
Heart Conduction
11%
Ion Channel
11%
Ischemia
22%
Kir6.2
11%
Lemakalim
11%
Messenger RNA
22%
Potassium
11%
Potassium Channel
100%
Ventricle of Heart
11%
Immunology and Microbiology
Action Potential
12%
ATP-Sensitive Potassium Channel
25%
Canis
12%
Conductance
12%
Heart Conduction
100%
Heart Ventricle Conduction
100%
Ion Channel
12%
Muscle Cell
62%
Potassium Channels
100%
Purkinje Fiber
12%