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PUBMED FOR HANDHELDS

Journal Abstract Search


225 related items for PubMed ID: 9406154

  • 1. Dietary and physiological studies to investigate the relationship between calcium and magnesium signalling in the mammalian myocardium.
    Singh J, Hustler BI, Waring JJ, Howarth FC.
    Mol Cell Biochem; 1997 Nov; 176(1-2):127-34. PubMed ID: 9406154
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  • 3. Effect of external magnesium on intracellular free sodium: Na+ flux via Na+/Mg2+ antiport is masked by other Na+ transport systems in rat cardiac myocytes.
    Odblom MP, Handy RD.
    Magnes Res; 2001 Mar; 14(1-2):3-9. PubMed ID: 11300619
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  • 4. Internal free magnesium modulates the voltage dependence of contraction and Ca transient in rabbit ventricular myocytes.
    Howarth FC, Levi AJ.
    Pflugers Arch; 1998 Apr; 435(5):687-98. PubMed ID: 9479022
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  • 5. Functional and metabolic effects of extracellular magnesium in normoxic and ischemic myocardium.
    Headrick JP, McKirdy JC, Willis RJ.
    Am J Physiol; 1998 Sep; 275(3):H917-29. PubMed ID: 9724296
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  • 6. The Na+-activated K+ channel contributes to K+ efflux in Na+-loaded guinea-pig but not rat ventricular myocytes.
    Lawrence CL, Rodrigo GC.
    Pflugers Arch; 2001 Jul; 442(4):595-602. PubMed ID: 11510893
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  • 7. Beneficial vs. detrimental actions of ethanol on heart and coronary vascular muscle: roles of Mg2+ and Ca2+.
    Altura BM, Zou LY, Altura BT, Jelicks L, Wittenberg BA, Gupta RK.
    Alcohol; 1996 Jul; 13(5):499-513. PubMed ID: 8888948
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  • 8. Regulation of intracellular calcium concentrations by calcium and magnesium in cardioplegic solutions protects rat neonatal myocytes from simulated ischemia.
    Ichiba T, Matsuda N, Takemoto N, Ishiguro S, Kuroda H, Mori T.
    J Mol Cell Cardiol; 1998 Jun; 30(6):1105-14. PubMed ID: 9689585
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  • 9. Intracellular and extracellular concentrations of Na+ modulate Mg2+ transport in rat ventricular myocytes.
    Tashiro M, Tursun P, Konishi M.
    Biophys J; 2005 Nov; 89(5):3235-47. PubMed ID: 16085772
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  • 10. Effect of streptozotocin-induced type 1 diabetes mellitus on contraction, calcium transient, and cation contents in the isolated rat heart.
    Singh J, Chonkar A, Bracken N, Adeghate E, Latt Z, Hussain M.
    Ann N Y Acad Sci; 2006 Nov; 1084():178-90. PubMed ID: 17151301
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  • 11. Alteration in cardiomyocyte mechanics by suboptimal levels of extracellular magnesium.
    Nair P, Nair RR.
    Biol Trace Elem Res; 2000 Mar; 73(3):193-200. PubMed ID: 11049211
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  • 12. Chronic administration of nifedipine induces up-regulation of functional calcium channels in rat myocardium.
    Morgan PE, Aiello EA, Chiappe de Cingolani GE, Mattiazzi AR, Cingolani HE.
    J Mol Cell Cardiol; 1999 Oct; 31(10):1873-83. PubMed ID: 10525425
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  • 15. Reduction of perifusate magnesium alters inotropic response of papillary muscle to ion channel modulators.
    Manju L, Nair RR.
    Magnes Res; 2005 Sep; 18(3):163-9. PubMed ID: 16259376
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  • 16. Dietary magnesium supplementation attenuates ethanol-induced myocardial dysfunction.
    Brown RA, Crawford M, Natavio M, Petrovski P, Ren J.
    Alcohol Clin Exp Res; 1998 Dec; 22(9):2062-72. PubMed ID: 9884152
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  • 17. Protective role of magnesium in cardiovascular diseases: a review.
    Chakraborti S, Chakraborti T, Mandal M, Mandal A, Das S, Ghosh S.
    Mol Cell Biochem; 2002 Sep; 238(1-2):163-79. PubMed ID: 12349904
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  • 18. Magnesium modulates contractile responses of rat aorta to thiocyanate: A possible relationship to smoking-induced atherosclerosis.
    Li W, Zheng T, Altura BT, Altura BM.
    Toxicol Appl Pharmacol; 1999 May 15; 157(1):77-84. PubMed ID: 10329510
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