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Electrical profiles in the corneal epithelium
S. D. Klyce
Icahn School of Medicine at Mount Sinai
Research output
:
Contribution to journal
›
Article
›
peer-review
111
Scopus citations
Overview
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Keyphrases
Corneal Epithelium
100%
Outer Membrane
100%
Electrical Profile
100%
Basal Cell
83%
Epithelium
66%
Cornea
50%
Frog
33%
Cell Membrane
33%
Membrane Potential
33%
Squamous Cell
33%
Chloride
33%
Wing Cell
33%
Inner Membrane
33%
Potential Profile
33%
Transepithelial Potential
33%
Loop Current
33%
Potassium
16%
Tears
16%
Rabbit Eye
16%
Shunt
16%
Short-circuit Current
16%
Hyperpolarization
16%
Membrane Resistance
16%
Ringer
16%
Multi-electrode
16%
Transition Region
16%
Epithelial Membranes
16%
Average Potential
16%
Current Drive
16%
Dye Injection
16%
Major Resistance
16%
Thevenin Equivalent
16%
Potential Step
16%
Filling Solution
16%
Spontaneous Potential
16%
Nernst Potential
16%
Immunology and Microbiology
Outer Membrane
100%
Basal Cell
83%
Leporidae
66%
Squamous Cell
33%
Membrane Potential
33%
Cell Membrane
33%
Anura
33%
Inner Membrane
33%
Solution and Solubility
16%
Membrane Resistance
16%
Reversal Potential
16%
Medicine and Dentistry
Corneal Epithelium
100%
Outer Membrane
100%
Basal Cell
83%
Cell Membrane
33%
Squamous Cell
33%
Membrane Potential
33%
Inner Membrane
33%
Reversal Potential
16%
Membrane Resistance
16%
Microelectrode
16%
Neuroscience
Corneal Epithelium
100%
Outer Membrane
100%
Cornea
50%
Cell Membrane
33%
Membrane Potential
33%
Inner Membrane
33%
Anura
33%
Reversal Potential
16%
Membrane Resistance
16%
Engineering
Current Loop
100%
Rectification
50%
Filling Solution
50%
Thevenin Equivalent
50%
Food Science
Potassium
100%