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Nitric oxide induced membrane hyperpolarization in the rat aorta is not mediated by glibenclamide-sensitive potassium channels.

Bert Vanheel UGent and Johan Van de Voorde UGent (1997) CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY. 75(12). p.1387-1392
Please use this url to cite or link to this publication:
author
organization
year
type
journalArticle (original)
publication status
published
subject
journal title
CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY
Can. J. Physiol. Pharmacol.
volume
75
issue
12
pages
1387-1392 pages
Web of Science type
Article
Web of Science id
000072260500017
ISSN
0008-4212
language
English
UGent publication?
yes
classification
A1
id
176851
handle
http://hdl.handle.net/1854/LU-176851
date created
2004-01-14 13:40:00
date last changed
2016-12-19 15:38:58
@article{176851,
  author       = {Vanheel, Bert and Van de Voorde, Johan},
  issn         = {0008-4212},
  journal      = {CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY},
  language     = {eng},
  number       = {12},
  pages        = {1387--1392},
  title        = {Nitric oxide induced membrane hyperpolarization in the rat aorta is not mediated by glibenclamide-sensitive potassium channels.},
  volume       = {75},
  year         = {1997},
}

Chicago
Vanheel, Bert, and Johan Van de Voorde. 1997. “Nitric Oxide Induced Membrane Hyperpolarization in the Rat Aorta Is Not Mediated by Glibenclamide-sensitive Potassium Channels.” Canadian Journal of Physiology and Pharmacology 75 (12): 1387–1392.
APA
Vanheel, B., & Van de Voorde, J. (1997). Nitric oxide induced membrane hyperpolarization in the rat aorta is not mediated by glibenclamide-sensitive potassium channels. CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY, 75(12), 1387–1392.
Vancouver
1.
Vanheel B, Van de Voorde J. Nitric oxide induced membrane hyperpolarization in the rat aorta is not mediated by glibenclamide-sensitive potassium channels. CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY. 1997;75(12):1387–92.
MLA
Vanheel, Bert, and Johan Van de Voorde. “Nitric Oxide Induced Membrane Hyperpolarization in the Rat Aorta Is Not Mediated by Glibenclamide-sensitive Potassium Channels.” CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY 75.12 (1997): 1387–1392. Print.