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Neurohumoral control of esophageal epithelial electrolyte transport.
D. D. Boyd
, C. N. Carney
, D. W. Powell
Research output
:
Contribution to journal
›
Article
›
peer-review
8
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Scopus citations
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Keyphrases
Electrolyte Transport
100%
Esophagus
100%
Epinephrine
66%
Sodium
66%
Potential Difference
66%
Rabbit Esophagus
66%
Carbachol
66%
Chloride Secretion
66%
Submucosal Glands
66%
Sodium Absorption
66%
Metabolic Substrates
33%
Vasopressin
33%
Barrier Function
33%
Aldosterone
33%
Opossum
33%
Short-circuit Current
33%
Cholecystokinin Octapeptide
33%
Stratified Epithelium
33%
Pentagastrin
33%
Submucosal
33%
Electrical Parameters
33%
High Chloride
33%
Synthetic Secretin
33%
Low Resistivity
33%
Esophageal Glands
33%
Neuroscience
In Vitro
100%
Electrolyte Transport
100%
In Vivo
66%
Epinephrine
66%
Carbachol
66%
Sodium Absorption
66%
Cyclic Adenosine Monophosphate
33%
Cholecystokinin Octapeptide
33%
Aldosterone
33%
Secretin
33%
Pentagastrin
33%
Vasopressin
33%
Immunology and Microbiology
Electrolyte Transport
100%
Esophagus
100%
In Vitro
60%
Secretion (Process)
40%
Leporidae
40%
Potential Difference
40%
Epinephrine
40%
Sodium Absorption
40%
Short Circuit Current
20%
Opossum
20%
Squamous Epithelium
20%
Electric Resistance
20%
Electrical Parameters
20%
Esophageal Gland
20%
Vasopressin
20%
Cholecystokinin
20%
Secretin
20%
Pharmacology, Toxicology and Pharmaceutical Science
Leporidae
100%
Epinephrine
100%
Carbachol
100%
Secretin
50%
Aldosterone
50%
Opossum
50%
Cholecystokinin Octapeptide
50%
Pentagastrin
50%
Vasopressin
50%
Medicine and Dentistry
Electrolyte Transport
100%
Esophagus
100%
In Vitro
60%
Secretion (Process)
40%
Epinephrine
40%
Carbachol
40%
Sodium Absorption
40%
Secretin
20%
Aldosterone
20%
Vasopressin
20%
Stratified Squamous Epithelium
20%
Pentagastrin
20%
Cholecystokinin Octapeptide
20%
Veterinary Science and Veterinary Medicine
Esophagus
100%
Epinephrine
40%
Submucosal Glands
40%
Leporidae
40%
Cholecystokinin
20%
Esophageal Gland
20%
Secretin
20%
Vasopressin
20%
Aldosterone
20%