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cherrie's myocyte [102 articles]

Recent papers added to cherrie's library classified by the tag myocyte. You can also see everyone's myocyte.
  • Effects of sarcoplasmic reticulum Ca2+ load on the gain function of Ca2+ release by Ca2+ current in cardiac cells
    Am J Physiol Heart Circ Physiol, Vol. 268, No. 2. (1 February 1995), pp. H916-920.
    by AM Janczewski, HA Spurgeon, MD Stern, EG Lakatta
  • A comparison of the effects of ATP and tetracaine on spontaneous Ca2+ release from rat permeabilised cardiac myocytes
    J Physiol, Vol. 534, No. 1. (1 July 2001), pp. 37-47.
    by GL Smith, SC O'Neill
  • Kinetics of calcium spikes in rat cardiac myocytes
    The Journal of Physiology, Vol. 578, No. 3. (February 2007), pp. 677-691.
    posted to spike rat myocyte kinetic cardiac calcium by cherrie on 2008-09-29 23:16:11 as **
  • The effect of tetracaine on supontaneous Ca<sup>2+</sup> release and sarcoplasmic reticulum calcium content in rat ventricular myocytes
    The Journal of Physiology, Vol. 502, No. 3. (1997), pp. 471-479.
    by CL Overend, DA Eisner, SC O'Neill
    posted to tetracaine spontaneous spark rat myocyte cardiac calcium by cherrie on 2008-09-29 11:07:26 as **
  • Direct measurement of SR release flux by tracking 'Ca2+ spikes' in rat cardiac myocytes
    J Physiol, Vol. 512, No. 3. (1 November 1998), pp. 677-691.
    by Long-Sheng Song, James S Sham, Michael D Stern, Edward G Lakatta, Heping Cheng
  • Ryanodine Receptor Regulation by Intramolecular Interaction between Cytoplasmic and Transmembrane Domains
    Mol. Biol. Cell, Vol. 15, No. 6. (1 June 2004), pp. 2627-2638.
    by Christopher H George, Hala Jundi, Lowri N Thomas, Mark Scoote, Nicola Walters, Alan J Williams, Anthony F Lai
    posted to ryr ryanodine receptor myocyte human crimson cardiac calcium by cherrie on 2008-09-15 06:45:57 as read
  • Elevated Cytosolic Na+ Decreases Mitochondrial Ca2+ Uptake During Excitation-Contraction Coupling and Impairs Energetic Adaptation in Cardiac Myocytes
    Circ Res, Vol. 99, No. 2. (21 July 2006), pp. 172-182.
    by Christoph Maack, Sonia Cortassa, Miguel A Aon, Anand N Ganesan, Ting Liu, Brian O'Rourke
  • Ultrastructural quantitation of mitochondria and myofilaments in cardiac muscle from 10 different animal species including man
    Journal of Molecular and Cellular Cardiology, Vol. 24, No. 7. (July 1992), pp. 669-681.
    by Ernst Barth, Gerhard Stämmler, Bettina Speiser, Jutta Schaper
    posted to cardiac human mitochondria myocyte structure by cherrie on 2008-08-06 22:45:02 as **
  • Mitochondrial Buffering of Calcium in the Heart: Potential Mechanism for Linking Cyclic Energetic Cost With Energy Supply?
    Circ Res, Vol. 99, No. 2. (21 July 2006), pp. 109-110.
    by Patrick G Sullivan, William C Balke, Karyn A Esser
    posted to calcium cardiac energy heart mitochondria myocyte by cherrie on 2008-08-06 22:27:03 as **
  • Structural proximity of mitochondria to calcium release units in rat ventricular myocardium may suggest a role in Ca2+ sequestration.
    Annals of the New York Academy of Sciences, Vol. 853 (16 September 1998), pp. 341-344.
  • Pressureflow-triggered intracellular Ca2 transients in rat cardiac myocytes: possible mechanisms and role of mitochondria
    The Journal of Physiology, Vol. 586, No. 5. (March 2008), pp. 1379-1397.
    posted to calcium cardiac mitochondria myocyte rat by cherrie on 2008-08-03 07:00:40 as **
  • Novel approach to real-time flash photolysis and confocal [Ca2+] imaging
    Pflügers Archiv, Vol. 454, No. 4. (July 2007), pp. 663-673.
    posted to caged calcium cardiac compound dye myocyte npegta spark system technique by cherrie on 2008-07-23 10:21:36 as **
  • Putative ryanodine receptors in the sarcolemma of ventricular myocytes
    Pflügers Archiv European Journal of Physiology, Vol. 440, No. 1. (25 April 2000), pp. 125-131.
    by Richard P Kondo, James N Weiss, Joshua I Goldhaber
    posted to myocyte receptors ryanodine ryr sarcolemma ventricular by cherrie on 2008-07-21 04:48:54 as **
  • Submicroscopic calcium signals as fundamental events of excitation--contraction coupling in guinea-pig cardiac myocytes.
    The Journal of physiology, Vol. 492 ( Pt 1) (1 April 1996), pp. 31-38.
    by P Lipp, E Niggli
    posted to calcium cardiac myocyte quarks spark by cherrie on 2008-07-14 23:10:15 as **
  • Radial and longitudinal diffusion of myoglobin in single living heart and skeletal muscle cells — PNAS
    Proceedings of the National Academy of Sciences of the United States of America, Vol. 98, No. 10. (May 2001), pp. 5904-5909.
    by Simon Papadopoulos, Volker Endeward, Brigitta Revesz-Walker, Klaus D Jürgens, Gerolf Gros
    posted to cardiac diffusion myocyte myoglobin by cherrie on 2008-07-13 03:07:35 as **
  • Sarcoplasmic reticulum and nuclear envelope are one highly interconnected Ca2+ store throughout cardiac myocyte.
    Circulation research, Vol. 99, No. 3. (4 August 2006), pp. 283-291.
    by X Wu, DM Bers
  • Osmotic 'detubulation' in frog muscle arises from a reversible vacuolation process.
    Journal of muscle research and cell motility, Vol. 18, No. 3. (June 1997), pp. 305-321.
    by FA Gallagher, CL Huang
    posted to detubulation glycerol muscle myocyte by cherrie on 2008-04-29 23:02:22 as **
  • Intracellular pH regulation in detubulated frog skeletal muscle fibers
    Am J Physiol Cell Physiol, Vol. 271, No. 4. (1 October 1996), pp. C1358-1366.
    by RW Putnam
    posted to detubulation formamide muscle myocyte skeletal by cherrie on 2008-04-29 22:56:52 as **
  • Excitation-contraction coupling in rat ventricular myocytes after formamide-induced detubulation
    Am J Physiol Heart Circ Physiol, Vol. 277, No. 2. (1 August 1999), pp. H603-609.
    by Makoto Kawai, Munir Hussain, Clive H Orchard
  • Validation of formamide as a detubulation agent in isolated rat cardiac cells
    Am J Physiol Heart Circ Physiol, Vol. 283, No. 4. (1 October 2002), pp. H1720-1728.
    by Fabien Brette, Kimiaki Komukai, Clive H Orchard
    posted to cardiac detubulation formamide method myocyte by cherrie on 2008-04-29 22:35:50 as read
  • Regulation of ryanodine receptors by calsequestrin: effect of high luminal Ca2+ and phosphorylation.
    Biophys J, Vol. 88, No. 5. (May 2005), pp. 3444-3454.
    by NA Beard, MG Casarotto, L Wei, M Varsányi, DR Laver, AF Dulhunty
    posted to ca2 calcium cardiac luminal myocyte by cherrie on 2007-11-15 05:26:47 as **
  • Properties of tri- and tetracarboxylate Ca2+ indicators in frog skeletal muscle fibers.
    Biophys J, Vol. 70, No. 2. (February 1996), pp. 896-916.
    posted to ca2 calcium frog in indicator muscle myocyte properties skeletal vivo by cherrie on 2007-11-13 22:52:17 as **
  • The role of myocardial gap junctions in electrical conduction and arrhythmogenesis
    Cardiovascular Pathology, Vol. 10, No. 4. ( 2001), pp. 169-177.
    by Shigeto Kanno, Jeffrey E Saffitz
  • Multidimensional Detection and Analysis of Ca2+ Sparks in Cardiac Myocytes
    Biophys. J., Vol. 92, No. 12. (15 June 2007), pp. 4433-4443.
    by Mark-Anthony Bray, Nicholas A Geisse, Kevin K Parker
  • Analysis of ryanodine receptor clusters in rat and human cardiac myocytes
    Proceedings of the National Academy of Sciences (11 September 2007), 0703016104.
    by Christian Soeller, David Crossman, Ray Gilbert, Mark B Cannell
    posted to cardiac heart human myocyte rat receptor ryanodine ryr by cherrie on 2007-09-12 19:15:58 as **** along with 1 group CAOS
  • Dispositions of junctional feet in muscles of invertebrates.
    J Muscle Res Cell Motil, Vol. 13, No. 2. (April 1992), pp. 161-173.
  • Imaging elementary events of calcium release in skeletal muscle cells.
    Science, Vol. 269, No. 5231. (22 September 1995), pp. 1723-1726.
    by A Tsugorka, E Ríos, LA Blatter
  • Relaxation of arterial smooth muscle by calcium sparks.
    Science, Vol. 270, No. 5236. (27 October 1995), pp. 633-637.
    by MT Nelson, H Cheng, M Rubart, LF Santana, AD Bonev, HJ Knot, WJ Lederer
  • Calcium waves driven by "sensitization" wave-fronts.
    Cardiovasc Res, Vol. 74, No. 1. (1 April 2007), pp. 39-45.
    by M Keller, JP Kao, M Egger, E Niggli
  • Photolysis of caged compounds characterized by ratiometric confocal microscopy: a new approach to homogeneously control and measure the calcium concentration in cardiac myocytes.
    Cell Calcium, Vol. 19, No. 3. (March 1996), pp. 255-266.
    by P Lipp, C Lüscher, E Niggli
  • A mathematical analysis of the generation and termination of calcium sparks.
    Biophys J, Vol. 86, No. 3. (March 2004), pp. 1293-1307.
    by R Hinch
  • pH-dependent and -independent effects inhibit Ca2+-induced Ca2+ release during metabolic blockade in rat ventricular myocytes
    J Physiol, Vol. 550, No. 2. (15 July 2003), pp. 413-418.
    by SC O'Neill, DA Eisner
  • Interplay between SERCA and sarcolemmal Ca2+ efflux pathways controls spontaneous release of Ca2+ from the sarcoplasmic reticulum in rat ventricular myocytes
    J Physiol, Vol. 559, No. 1. (15 August 2004), pp. 121-128.
    by SC O'Neill, L Miller, R Hinch, DA Eisner
  • Calcium sparks: release packets of uncertain origin and fundamental role.
    J Gen Physiol, Vol. 113, No. 3. (March 1999), pp. 377-384.
    by N Shirokova, A González, WG Kirsch, E Ríos, G Pizarro, MD Stern, H Cheng
  • Putting out the fire: what terminates calcium-induced calcium release in cardiac muscle?
    Cell Calcium, Vol. 35, No. 6. (June 2004), pp. 591-601.
    by MD Stern, H Cheng
  • Large Currents Generate Cardiac Ca2+ Sparks
    Biophys. J., Vol. 80, No. 1. (1 January 2001), pp. 88-102.
    by Leighton T Izu, Joseph R Mauban, CW Balke, Gil W Wier
  • Concerted vs. sequential. Two activation patterns of vast arrays of intracellular Ca2+ channels in muscle.
    J Gen Physiol, Vol. 126, No. 4. (October 2005), pp. 301-309.
    by J Zhou, G Brum, A González, BS Launikonis, MD Stern, E Ríos
  • Immunolocalization of sarcolemmal dihydropyridine receptor and sarcoplasmic reticular triadin and ryanodine receptor in rabbit ventricle and atrium
    J. Cell Biol., Vol. 129, No. 3. (1 May 1995), pp. 673-682.
    by Sl Carl, K Felix, Ah Caswell, Nr Brandt, Wj Ball, Pl Vaghy, G Meissner, Dg Ferguson
  • Partial depletion of sarcoplasmic reticulum calcium does not prevent calcium sparks in rat ventricular myocytes.
    J Physiol, Vol. 505 ( Pt 3) (15 December 1997), pp. 665-675.
    by LS Song, MD Stern, EG Lakatta, H Cheng
  • Transient inward current underlying arrhythmogenic effects of cardiotonic steroids in Purkinje fibres.
    J Physiol, Vol. 263, No. 2. (December 1976), pp. 73-100.
    by WJ Lederer, RW Tsien
  • The role of luminal Ca2+ in the generation of Ca2+ waves in rat ventricular myocytes.
    J Physiol, Vol. 518 ( Pt 1) (1 July 1999), pp. 173-186.
  • Distribution, surface density, and membrane area of diadic junctional contacts between plasma membrane and terminal cisterns in mammalian ventricle.
    Circ Res, Vol. 45, No. 2. (August 1979), pp. 260-267.
    posted to cardiac diad dyad myocyte by cherrie on 2007-05-21 01:26:53 as ** along with 1 group CAOS
  • Evolution of cardiac calcium waves from stochastic calcium sparks.
    Biophys J, Vol. 80, No. 1. (January 2001), pp. 103-120.
    by LT Izu, WG Wier, CW Balke
    posted to calcium cardiac myocyte sparks waves by cherrie on 2007-05-19 15:06:42 as ***** along with 1 group CAOS
  • Excitation-contraction coupling in muscular response.
    Yale J Biol Med, Vol. 25, No. 3. (December 1952), pp. 176-201.
    by A SANDOW
    posted to contraction coupling ec excitation muscle myocyte by cherrie on 2007-05-10 00:18:17 as ** along with 1 group CAOS
  • Local activation of contraction in isolated rat ventricular myocytes.
    Am J Physiol, Vol. 258, No. 6 Pt 1. (June 1990)
    by SC O'Neill, JG Mill, DA Eisner
  • Sarcoplasmic Reticulum Ca2+ Release Causes Myocyte Depolarization : Underlying Mechanism and Threshold for Triggered Action Potentials
    Circ Res, Vol. 87, No. 9. (27 October 2000), pp. 774-780.
    by Klaus Schlotthauer, Donald M Bers
  • Regulation of calcium release is gated by calcium current, not gating charge, in cardiac myocytes.
    Science, Vol. 244, No. 4906. (19 May 1989), pp. 800-803.
    posted to calcium cardiac cicr induced myocyte release by cherrie on 2007-05-07 21:07:27 as ** along with 1 group CAOS
  • Local Ca2+ transients (Ca2+ sparks) originate at transverse tubules in rat heart cells.
    J Physiol, Vol. 487 ( Pt 3) (15 September 1995), pp. 601-608.
    by PS Shacklock, WG Wier, CW Balke
  • Polymorphism of Ca2+ sparks evoked from in-focus Ca2+ release units in cardiac myocytes.
    Biophys J, Vol. 86, No. 1 Pt 1. (January 2004), pp. 182-190.
    by JX Shen, S Wang, LS Song, T Han, H Cheng
  • Excitation-contraction coupling.
    Annu Rev Physiol, Vol. 38 (1976), pp. 293-313.
    by S Ebashi
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