Contributions of inwardly rectifying K+ currents to repolarization assessed using mathematical models of human ventricular myocytes
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Denis Noble | Martin Fink | D. Noble | W. Giles | M. Fink | Wayne R Giles
[1] Anthony Varghese,et al. Effects of premature stimulation on HERG K+ channels , 2001, The Journal of physiology.
[2] R Suckley,et al. Asymptotic properties of mathematical models of excitability , 2005, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[3] Leah Edelstein-Keshet,et al. Modelling the onset of Type 1 diabetes: can impaired macrophage phagocytosis make the difference between health and disease? , 2006, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[4] M. Veldkamp. Is the slowly activating component of the delayed rectifier current, IKs' absent from undiseased human ventricular myocardium? , 1998, Cardiovascular research.
[5] L Camilleri,et al. Extracellular K+ dependence of inward rectification kinetics in human left ventricular cardiomyocytes. , 1998, Circulation.
[6] Jian Yang,et al. Alterations in Conserved Kir Channel-PIP2 Interactions Underlie Channelopathies , 2002, Neuron.
[7] J. Clark,et al. Mathematical model of an adult human atrial cell: the role of K+ currents in repolarization. , 1998, Circulation research.
[8] G. Gintant. Characterization and functional consequences of delayed rectifier current transient in ventricular repolarization. , 2000, American journal of physiology. Heart and circulatory physiology.
[9] Yuejin Wu,et al. Reduced repolarization reserve in ventricular myocytes from female mice. , 2002, Cardiovascular research.
[10] S Nattel,et al. Differential distribution of inward rectifier potassium channel transcripts in human atrium versus ventricle. , 1998, Circulation.
[11] S. Nattel,et al. Differential distribution of Kir2.1 and Kir2.3 subunits in canine atrium and ventricle. , 2002, American journal of physiology. Heart and circulatory physiology.
[12] Ronald Wilders,et al. UvA-DARE ( Digital Academic Repository ) HERG channel ( dys ) function revealed by dynamic action potential clamp technique , 2004 .
[13] R. Sato,et al. beta-Adrenergic modulation of the inwardly rectifying potassium channel in isolated human ventricular myocytes. Alteration in channel response to beta-adrenergic stimulation in failing human hearts. , 1995, The Journal of clinical investigation.
[14] Yoram Rudy,et al. Subunit Interaction Determines IKs Participation in Cardiac Repolarization and Repolarization Reserve , 2005, Circulation.
[15] Silvio. Weidmann,et al. Elektrophysiologie der Herzmuskelfaser , 1956 .
[16] S. Hagiwara,et al. Electrical properties of egg cell membranes. , 1979, Annual review of biophysics and bioengineering.
[17] D. Noble. Modeling the Heart--from Genes to Cells to the Whole Organ , 2002, Science.
[18] Justus M.B. Anumonwo,et al. Unique Kir2.x Properties Determine Regional and Species Differences in the Cardiac Inward Rectifier K+ Current , 2004, Circulation research.
[19] Y. Kubo,et al. Control of rectification and permeation by two distinct sites after the second transmembrane region in Kir2.1 K+ channel , 2001, The Journal of physiology.
[20] D. Noble,et al. A model for human ventricular tissue. , 2004, American journal of physiology. Heart and circulatory physiology.
[21] What is the true resting potential of small cells? , 2000, General physiology and biophysics.
[22] E. Carmeliet. Cardiac ionic currents and acute ischemia: from channels to arrhythmias. , 1999, Physiological reviews.
[23] M. Carrier,et al. Transmural heterogeneity of action potentials and I to1 in myocytes isolated from the human right ventricle. , 1998, American journal of physiology. Heart and circulatory physiology.
[24] N. Trayanova,et al. Effect of Strength and Timing of Transmembrane Current Pulses on Isolated Ventricular Myocytes , 2001, Journal of cardiovascular electrophysiology.
[25] P. C. Viswanathan,et al. Effects of IKr and IKs heterogeneity on action potential duration and its rate dependence: a simulation study. , 1999, Circulation.
[26] W. Giles,et al. Role of an inwardly rectifying potassium current in rabbit ventricular action potential. , 1992, The Journal of physiology.
[27] M. Sanguinetti,et al. Long-QT Syndrome-Associated Missense Mutations in the Pore Helix of the HERG Potassium Channel , 2001, Circulation.
[28] Y Rudy,et al. Cellular consequences of HERG mutations in the long QT syndrome: precursors to sudden cardiac death. , 2001, Cardiovascular research.
[29] Erling B. Andersen,et al. Asymptotic Properties of , 1970 .
[30] R. Winslow,et al. A computational model of the human left-ventricular epicardial myocyte. , 2004, Biophysical journal.
[31] M. Zaniboni,et al. Beat-to-beat repolarization variability in ventricular myocytes and its suppression by electrical coupling. , 2000, American journal of physiology. Heart and circulatory physiology.
[32] J. Jack,et al. Electric current flow in excitable cells , 1975 .
[33] D. Noble,et al. The Conditions for Initiating "All-or-Nothing" Repolarization in Cardiac Muscle. , 1963, Biophysical journal.
[34] Eduardo Marbán,et al. Functional role of inward rectifier current in heart probed by Kir2.1 overexpression and dominant-negative suppression. , 2003, The Journal of clinical investigation.
[35] D. Noble,et al. Chapter 5 – The Repolarization Process of Heart Cells , 1972 .
[36] M. Courtemanche,et al. Ionic mechanisms underlying human atrial action potential properties: insights from a mathematical model. , 1998, The American journal of physiology.
[37] D. Beuckelmann,et al. Simulation study of cellular electric properties in heart failure. , 1998, Circulation research.
[38] G Malfatto,et al. Characterization of the non-linear rate-dependency of QT interval in humans. , 2003, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[39] C. Antzelevitch. Arrhythmogenic mechanisms of QT prolonging drugs: is QT prolongation really the problem? , 2004, Journal of electrocardiology.
[40] R Wilders,et al. A computationally efficient electrophysiological model of human ventricular cells. , 2002, American journal of physiology. Heart and circulatory physiology.