Keyphrases
Hypoxia
100%
Nitric Oxide
100%
Ca2+
100%
Myocytes
100%
Conduit Artery
100%
Resistance Arteries
100%
Differential Distribution
100%
Delayed Rectifier
100%
BK Channel
85%
K+ Channels
28%
Vascular Smooth muscle Cells
28%
Vascular Reactivity
28%
Whole Cell
28%
Light Microscopy
14%
Electron Microscopy
14%
Smooth muscle Cells
14%
Pulmonary Artery
14%
Cellular Mechanisms
14%
Bulge
14%
Cyclic GMP
14%
K+ Current
14%
Current Density
14%
Membrane Potential
14%
Tetraethylammonium
14%
4-aminopyridine
14%
Major Determinants
14%
Resistance Vessels
14%
Physiological Relevance
14%
Biphasic Response
14%
High Current Density
14%
Charybdotoxin
14%
Resting Membrane Potential
14%
Rat Pulmonary Artery
14%
Open Probability
14%
Low Current Density
14%
Electrophysiological Properties
14%
Single-segment
14%
Functional Correlates
14%
K Channels
14%
Medicine and Dentistry
Hypoxia
100%
Calcium Ion
100%
Nitric Oxide
100%
Artery Resistance
100%
Calcium Channel
85%
Potassium Channel
42%
Blood Vessel Reactivity
28%
Vascular Smooth Muscle Cell
28%
Pulmonary Artery
28%
Whole Cell
28%
Electron Microscopy
14%
Cellular Mechanism
14%
Smooth Muscle Cell
14%
Prevalence
14%
Resistance Vessel
14%
Cyclic GMP
14%
Potassium Current
14%
Membrane Steady Potential
14%
Tetrylammonium
14%
4-Aminopyridine
14%
Charybdotoxin
14%
Membrane Potential
14%
Biochemistry, Genetics and Molecular Biology
Calcium Channel
100%
Nitric Oxide
100%
Artery Resistance
100%
Current Density
50%
Potassium Channel
50%
Blood Vessel Reactivity
33%
Whole Cell
33%
Electron Microscopy
16%
Prevalence
16%
4-Aminopyridine
16%
Membrane Potential
16%
Potassium Current
16%
Charybdotoxin
16%
Membrane Steady Potential
16%
Cyclic Guanosine Monophosphate
16%
Neuroscience
Nitric Oxide
100%
Calcium Channel
100%
Myocyte
100%
Potassium Channel
50%
Vascular Smooth Muscle
33%
Pulmonary Artery
33%
Tetraethylammonium
16%
Membrane Potential
16%
4-Aminopyridine
16%
Cyclic Guanosine Monophosphate
16%
Resting Potential
16%
Electron Microscopy
16%
Potassium Current
16%
Charybdotoxin
16%
Pharmacology, Toxicology and Pharmaceutical Science
Hypoxia
100%
Calcium Ion
100%
Nitric Oxide
100%
Calcium Channel
85%
Potassium Channel
42%
Electron Microscopy
14%
Prevalence
14%
Potassium Ion
14%
4-Aminopyridine
14%
Cyclic GMP
14%
Charybdotoxin
14%
Tetrylammonium
14%