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Journal Abstract Search


138 related items for PubMed ID: 1700632

  • 1. Mechanism underlying the response to vasodilator nerve stimulation in isolated dog and monkey cerebral arteries.
    Toda N, Okamura T.
    Am J Physiol; 1990 Nov; 259(5 Pt 2):H1511-7. PubMed ID: 1700632
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  • 2. Cerebroarterial relaxations mediated by nitric oxide derived from endothelium and vasodilator nerve.
    Toda N, Ayajiki K, Okamura T.
    J Vasc Res; 1993 Nov; 30(2):61-7. PubMed ID: 7684937
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  • 9. Role of nitroxidergic nerve in dog retinal arterioles in vivo and arteries in vitro.
    Toda N, Kitamura Y, Okamura T.
    Am J Physiol; 1994 May; 266(5 Pt 2):H1985-92. PubMed ID: 7515586
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  • 13. Hypercapnia relaxes cerebral arteries and potentiates neurally-induced relaxation.
    Toda N, Ayajiki K, Okamura T.
    J Cereb Blood Flow Metab; 1996 Sep; 16(5):1068-74. PubMed ID: 8784252
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  • 16. Inhibitory effects of L-NG-nitro-arginine on the synthesis of EDRF and the cerebroarterial response to vasodilator nerve stimulation.
    Toda N, Minami Y, Okamura T.
    Life Sci; 1990 Sep; 47(4):345-51. PubMed ID: 2388535
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  • 18. Nitric oxide-mediated neurogenic vasodilatation in isolated monkey lingual arteries.
    Toda N, Ayajiki K, Uchiyama M, Okamura T.
    Am J Physiol; 1997 Apr; 272(4 Pt 2):H1582-8. PubMed ID: 9139939
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  • 20. Mechanisms underlying endothelium-dependent, nitric oxide- and prostanoid-independent relaxation in monkey and dog coronary arteries.
    Fujioka H, Ayajiki K, Shinozaki K, Toda N, Okamura T.
    Naunyn Schmiedebergs Arch Pharmacol; 2002 Nov; 366(5):488-95. PubMed ID: 12382080
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