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Intramembrane charge movement in guinea‐pig and rat ventricular myocytes.
R. W. Hadley
, W. J. Lederer
Pharmacology and Nutritional Sciences
Cardiovascular Research Priority Area
Research output
:
Contribution to journal
›
Article
›
peer-review
39
Scopus citations
Overview
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Biochemistry, Genetics and Molecular Biology
Rat
100%
Depolarization
100%
Time
75%
Membrane Potential
75%
Repolarization
50%
Membrane
25%
Experiment
25%
Electric Potential
25%
Immobilization
25%
Temperature Dependence
25%
Cell Membrane
25%
Reversal Potential
25%
Slope Factor
25%
Immunology and Microbiology
Rat
100%
Muscle Cell
100%
Depolarization
57%
Time
42%
Membrane Potential
42%
Cells
28%
Repolarization
28%
Experiment
14%
Electric Potential
14%
Membrane
14%
Cell Membrane
14%
Immobilization
14%
Slope Factor
14%
Reversal Potential
14%
Temperature Dependence
14%
Agricultural and Biological Sciences
Rats
100%
Myocyte
100%
Membrane Potential
42%
Cells
28%
Temperature
14%
Particles
14%
Cell Membrane
14%
Equations
14%
Reversal Potential
14%
Veterinary Science and Veterinary Medicine
Rat
100%
Myocyte
100%
Depolarization
57%
Membrane Potential
42%
Repolarization
28%
Neuroscience
Myocyte
100%
Membrane Potential
42%
Cell Membrane
14%
Reversal Potential
14%