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Role of calcium channels responsible for phenylephrine-induced contraction in rat aorta 3 days after acute myocardial infarction |
Jung-Eun Kim, Byung-Ki Choi, Jun-Young Choi, Taeha Ryu, Woon Seok Roh, Seok-Young Song |
Korean J Anesthesiol. 2014;66(2):143-152. Published online February 28, 2014 DOI: https://doi.org/10.4097/kjae.2014.66.2.143 |
Role of calcium channels responsible for phenylephrine-induced contraction in rat aorta 3 days after acute myocardial infarction The role of extracellular calcium in pregnancy-induced attenuation of phenylephrine contraction in rat aorta with functional endothelium Pharmacological analysis of tonic contraction induced by phenylephrine in rat aorta Effects of ryanodine and procaine on phenylephrine induced contraction of rat aorta Mechanism of pregnancy-induced attenuation of contraction to phenylephrine in rat aorta H-7-sensitive and nifedipine-sensitive components in phenylephrine-induced tonic contraction of rat aorta Mechanisms underlining gender differences in Phenylephrine contraction of normoglycaemic and short-term Streptozotocin-induced diabetic WKY rat aorta Metformin-induced AMP-activated protein kinase activation regulates phenylephrine-mediated contraction of rat aorta Effects of Propofol on Phenylephrine Induced Vascular Smooth Muscle Contraction in Rat Thoracic Aorta Involvement of soluble guanylate cyclase and calcium-activated potassium channels in the long-lasting hyporesponsiveness to phenylephrine induced by nitric oxide in rat aorta |