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A redox-based O
2
sensor in rat pulmonary vasculature
Stephen L. Archer
, James Huang
, Tim Henry
, Douglas Peterson
,
E. Kenneth Weir
Medicine - Cardiology Division
Medicine - Veteran's Administration Medical Center
Physiology
Research output
:
Contribution to journal
›
Article
›
peer-review
346
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Scopus citations
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Dive into the research topics of 'A redox-based O
2
sensor in rat pulmonary vasculature'. Together they form a unique fingerprint.
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Keyphrases
Hypoxia
100%
Redox
100%
Pulmonary Vasculature
100%
O2 Sensor
100%
Electron Transport Chain Inhibitor
71%
Antimycin A
57%
Rotenone
57%
K+ Current
42%
Hypoxic Pulmonary Vasoconstriction
42%
K Channels
42%
Cyanide
28%
Vasoconstriction
28%
Pulmonary Artery Pressure
28%
Pulmonary Artery Smooth muscle Cells (PASMCs)
28%
Chemiluminescence
14%
Lung
14%
Metabolism
14%
Mechanism of Action
14%
K+ Channels
14%
Channel Activity
14%
Electron Donor
14%
Common Mechanisms
14%
Whole Cell
14%
Vascular Tone
14%
Redox State
14%
Membrane Depolarization
14%
Reversible Inhibition
14%
Electron Transport Chain
14%
Effector Mechanisms
14%
Redox Status
14%
Mitochondrial Electron Transport Chain
14%
Krebs Cycle
14%
Isolated Perfused Lung
14%
Enhanced Chemiluminescence
14%
Channel Inhibition
14%
Patch Clamp
14%
Cell Redox Status
14%
Initial Effect
14%
Biochemistry, Genetics and Molecular Biology
Vascularization
100%
Electron Transport Chain
100%
Rat
100%
Potassium Channel
66%
Rotenone
66%
Potassium Current
50%
Lung Vasoconstriction
50%
Chemoluminescence
33%
Vasoconstriction
33%
Lung Artery Pressure
33%
Adenosine Triphosphate
33%
Metabolic Pathway
16%
Patch Clamp
16%
Citric Acid Cycle
16%
Blood Vessel Tone
16%
Membrane Depolarization
16%
Krebs Cycle
16%
Whole Cell
16%
Neuroscience
Electron Transport Chain
100%
Antimycin A
66%
Potassium Channel
66%
Rotenone
66%
Potassium Current
50%
Hypoxic Pulmonary Vasoconstriction
50%
Adenosine Triphosphate
33%
Chemiluminescence
33%
Vascular Smooth Muscle
33%
Pulmonary Artery
33%
Membrane Depolarization
16%
Metabolic Pathway
16%
Citric Acid Cycle
16%
Patch Clamp
16%
Pharmacology, Toxicology and Pharmaceutical Science
Hypoxia
100%
Rat
100%
Antimycin A
57%
Rotenone
57%
Potassium Channel
57%
Potassium Ion
42%
Hypoxic Lung Vasoconstriction
42%
Adenosine Triphosphate
28%