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Journal Abstract Search


104 related items for PubMed ID: 6302758

  • 1. Mechanism of plateau loss in rabbit papillary muscle after a short rest. Role of outward current.
    Saxon ME, Safronova VG, Belichenko VM, Kokoz YuM, Freydin AA, Lazarev AV.
    Adv Myocardiol; 1982; 3():135-52. PubMed ID: 6302758
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  • 2. The rest-dependent depression of action potential duration in rabbit myocardium and the possible role of the transient outward current. A pharmacological analysis.
    Saxon ME, Safronova VG.
    J Physiol (Paris); 1982; 78(5):461-6. PubMed ID: 6308249
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  • 3. Effect of tetraethylammonium, 4-aminopyridine, cesium and magnesium on slow responses in the guinea pig papillary muscle.
    Sebeszta M, Coraboeuf E, Deroubaix E, Le Floch M.
    Cardiovasc Res; 1981 Aug; 15(8):468-74. PubMed ID: 7307032
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  • 4. Mechanism of increased amplitude and duration of the plateau with sudden shortening of diastolic intervals in rabbit ventricular cells.
    Hiraoka M, Kawano S.
    Circ Res; 1987 Jan; 60(1):14-26. PubMed ID: 2436824
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  • 7. Effects of K+ channel blockers on the action potential of hypoxic rabbit myocardium.
    Ruiz Petrich E, Leblanc N, deLorenzi F, Allard Y, Schanne OF.
    Br J Pharmacol; 1992 Aug; 106(4):924-30. PubMed ID: 1393290
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  • 8. A role for sodium/calcium exchange in the action potential shortening caused by strophanthidin in guinea pig ventricular myocytes.
    Levi AJ.
    Cardiovasc Res; 1993 Mar; 27(3):471-81. PubMed ID: 8387887
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  • 9. Anomalous response of rabbit papillary muscles to depolarising current: the possible role of the transient outward current. A pharmacological analysis.
    Saxon ME.
    Gen Physiol Biophys; 1984 Aug; 3(4):347-57. PubMed ID: 6094302
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  • 10. Effects of 4-aminopyridine on contractile response and action potential of rabbit papillary muscle.
    Wollmer P, Wohlfart B, Khan AR.
    Acta Physiol Scand; 1981 Oct; 113(2):183-7. PubMed ID: 7315449
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  • 11. Role of sodium-calcium exchange in activation of contraction in rat ventricle.
    Bouchard RA, Clark RB, Giles WR.
    J Physiol; 1993 Dec; 472():391-413. PubMed ID: 8145151
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  • 12. Transmembrane ion movements elicited by sodium pump inhibition in Helix aspersa neurons.
    Alvarez-Leefmans FJ, Cruzblanca H, Gamiño SM, Altamirano J, Nani A, Reuss L.
    J Neurophysiol; 1994 May; 71(5):1787-96. PubMed ID: 7520481
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  • 13. Studies aimed at elucidating the mechanism of action of CI-914, a new cardiotonic agent.
    Weishaar RE, Quade M, Schenden JA, Boyd DK, Evans DB.
    Eur J Pharmacol; 1985 Dec 17; 119(3):205-15. PubMed ID: 3004993
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  • 14. Ionic currents in single smooth muscle cells from the ureter of the guinea-pig.
    Imaizumi Y, Muraki K, Watanabe M.
    J Physiol; 1989 Apr 17; 411():131-59. PubMed ID: 2482352
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  • 16. Influence of thyroid hormone levels on the electrical and mechanical properties of rabbit papillary muscle.
    Sharp NA, Neel DS, Parsons RL.
    J Mol Cell Cardiol; 1985 Feb 17; 17(2):119-32. PubMed ID: 2987515
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  • 17. The effects of tetraethylammonium ions, 4-aminopyridine or quinidine on K+-currents in single smooth muscle cells of the rabbit portal vein.
    Beech DJ, Bolton TB.
    Biomed Biochim Acta; 1987 Feb 17; 46(8-9):S673-6. PubMed ID: 2449198
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  • 18. Calcium channels and excitation-contraction coupling in cardiac cells. I. Two components of contraction in guinea-pig papillary muscle.
    Honoré E, Adamantidis MM, Dupuis BA, Challice CE, Guilbault P.
    Can J Physiol Pharmacol; 1987 Sep 17; 65(9):1821-31. PubMed ID: 2446723
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