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Journal Abstract Search


127 related items for PubMed ID: 7641332

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  • 2. Role of NO and K(+)(ATP) channels in adenosine-induced vasodilation on in vivo canine subendocardial arterioles.
    Yada T, Hiramatsu O, Tachibana H, Toyota E, Kajiya F.
    Am J Physiol; 1999 Nov; 277(5):H1931-9. PubMed ID: 10564149
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  • 4. Voltage-dependent K+ channels regulate the duration of reactive hyperemia in the canine coronary circulation.
    Dick GM, Bratz IN, Borbouse L, Payne GA, Dincer UD, Knudson JD, Rogers PA, Tune JD.
    Am J Physiol Heart Circ Physiol; 2008 May; 294(5):H2371-81. PubMed ID: 18375717
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  • 9. Inhibition of hypoxia-induced relaxation of rabbit isolated coronary arteries by NG-monomethyl-L-arginine but not glibenclamide.
    Jiang C, Collins P.
    Br J Pharmacol; 1994 Mar; 111(3):711-6. PubMed ID: 8019749
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  • 11. Endothelial release of nitric oxide contributes to the vasodilator effect of adenosine in humans.
    Smits P, Williams SB, Lipson DE, Banitt P, Rongen GA, Creager MA.
    Circulation; 1995 Oct 15; 92(8):2135-41. PubMed ID: 7554193
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  • 12. Vascular ATP-dependent potassium channels, nitric oxide, and human forearm reactive hyperemia.
    Bank AJ, Sih R, Mullen K, Osayamwen M, Lee PC.
    Cardiovasc Drugs Ther; 2000 Feb 15; 14(1):23-9. PubMed ID: 10755197
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  • 17. Role of nitric oxide in reactive hyperemia in human forearm vessels.
    Tagawa T, Imaizumi T, Endo T, Shiramoto M, Harasawa Y, Takeshita A.
    Circulation; 1994 Nov 15; 90(5):2285-90. PubMed ID: 7955185
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  • 19. Basic fibroblast growth factor and heparin influence coronary arteriolar tone by causing endothelium-dependent dilation.
    Tiefenbacher CP, Chilian WM.
    Cardiovasc Res; 1997 May 15; 34(2):411-7. PubMed ID: 9205556
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