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Journal Abstract Search


152 related items for PubMed ID: 23159441

  • 1. Super-resolution imaging of EC coupling protein distribution in the heart.
    Soeller C, Baddeley D.
    J Mol Cell Cardiol; 2013 May; 58():32-40. PubMed ID: 23159441
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  • 2. A novel mechanism of tandem activation of ryanodine receptors by cytosolic and SR luminal Ca2+ during excitation-contraction coupling in atrial myocytes.
    Maxwell JT, Blatter LA.
    J Physiol; 2017 Jun 15; 595(12):3835-3845. PubMed ID: 28028837
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  • 5. Sarcoplasmic reticulum Ca2+ release in neonatal rat cardiac myocytes.
    Gergs U, Kirchhefer U, Buskase J, Kiele-Dunsche K, Buchwalow IB, Jones LR, Schmitz W, Traub O, Neumann J.
    J Mol Cell Cardiol; 2011 Nov 15; 51(5):682-8. PubMed ID: 21871897
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  • 9. S100A1 increases the gain of excitation-contraction coupling in isolated rabbit ventricular cardiomyocytes.
    Kettlewell S, Most P, Currie S, Koch WJ, Smith GL.
    J Mol Cell Cardiol; 2005 Dec 15; 39(6):900-10. PubMed ID: 16236309
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  • 10. A human ventricular myocyte model with a refined representation of excitation-contraction coupling.
    Himeno Y, Asakura K, Cha CY, Memida H, Powell T, Amano A, Noma A.
    Biophys J; 2015 Jul 21; 109(2):415-27. PubMed ID: 26200878
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  • 12. Ca2+ Channels Mediate Bidirectional Signaling between Sarcolemma and Sarcoplasmic Reticulum in Muscle Cells.
    Avila G, de la Rosa JA, Monsalvo-Villegas A, Montiel-Jaen MG.
    Cells; 2019 Dec 24; 9(1):. PubMed ID: 31878335
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  • 13. [Microscopic mechanism of excitation-contraction coupling in cardiac myocytes].
    Shen JX, Han TZ, Cheng HP.
    Sheng Li Ke Xue Jin Zhan; 2004 Oct 24; 35(4):294-8. PubMed ID: 15727204
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  • 14. Contribution of sarcoplasmic reticulum Ca²+ release and Ca²+ transporters on sarcolemmal channels to Ca²+ transient in fetal mouse heart.
    Takizawa M, Ishiwata T, Kawamura Y, Kanai T, Kurokawa T, Nishiyama M, Ishida H, Asano Y, Nonoyama S.
    Pediatr Res; 2011 Apr 24; 69(4):306-11. PubMed ID: 21178820
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  • 15. Mechanisms of excitation-contraction coupling in an integrative model of the cardiac ventricular myocyte.
    Greenstein JL, Hinch R, Winslow RL.
    Biophys J; 2006 Jan 01; 90(1):77-91. PubMed ID: 16214852
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  • 16. Local control in cardiac E-C coupling.
    Cannell MB, Kong CH.
    J Mol Cell Cardiol; 2012 Feb 01; 52(2):298-303. PubMed ID: 21586292
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  • 17. Paradoxical SR Ca2+ release in guinea-pig cardiac myocytes after beta-adrenergic stimulation revealed by two-photon photolysis of caged Ca2+.
    Lindegger N, Niggli E.
    J Physiol; 2005 Jun 15; 565(Pt 3):801-13. PubMed ID: 15774509
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  • 18. The cAMP binding protein Epac modulates Ca2+ sparks by a Ca2+/calmodulin kinase signalling pathway in rat cardiac myocytes.
    Pereira L, Métrich M, Fernández-Velasco M, Lucas A, Leroy J, Perrier R, Morel E, Fischmeister R, Richard S, Bénitah JP, Lezoualc'h F, Gómez AM.
    J Physiol; 2007 Sep 01; 583(Pt 2):685-94. PubMed ID: 17599964
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  • 19. Reduced ryanodine receptor to dihydropyridine receptor ratio may underlie slowed contraction in a rabbit model of left ventricular cardiac hypertrophy.
    Milnes JT, MacLeod KT.
    J Mol Cell Cardiol; 2001 Mar 01; 33(3):473-85. PubMed ID: 11181016
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  • 20. Three-dimensional high-resolution imaging of cardiac proteins to construct models of intracellular Ca2+ signalling in rat ventricular myocytes.
    Soeller C, Jayasinghe ID, Li P, Holden AV, Cannell MB.
    Exp Physiol; 2009 May 01; 94(5):496-508. PubMed ID: 19139064
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