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Data-based theoretical identification of subcellular calcium compartments and estimation of calcium dynamics in cardiac myocytes
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Livshitz L, Acsai K, Antoons G, Sipido K & Rudy Y (2012). Data-based theoretical identification of subcellular calcium compartments and estimation of calcium dynamics in cardiac myocytes. J Physiol 590, 4423-4446.
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How the Hodgkin-Huxley equations inspired the Cardiac Physiome Project
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Three-dimensional mechanisms of increased vulnerability to electric shocks in myocardial infarction: altered virtual electrode polarizations and conduction delay in the peri-infarct zone
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Rantner LJ, Arevalo HJ, Constantino JL, Efimov IR, Plank G & Trayanova NA (2012). Three-dimensional mechanisms of increased vulnerability to electric shocks in myocardial infarction: altered virtual electrode polarizations and conduction delay in the peri-infarct zone. J Physiol 590, 4537-4551.
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Coronary wave intensity during the Valsalva manoeuvre in humans reflects altered intramural vessel compression responsible for extravascular resistance
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Rolandi MC, Nolte F, van de Hoef TP, Remmelink M, Baan J Jr, Piek JJ, Spaan JAE & Siebes M (2012). Coronary wave intensity during the Valsalva manoeuvre in humans reflects altered intramural vessel compression responsible for extravascular resistance. J Physiol 590, 4623-4635.
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Mechanical regulation of fibroblast migration and collagen remodelling in healing myocardial infarcts
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An updated computational model of rabbit sinoatrial action potential to investigate the mechanisms of heart rate modulation
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Severi S, Fantini M, Charawi LA & DiFrancesco D (2012). An updated computational model of rabbit sinoatrial action potential to investigate the mechanisms of heart rate modulation. J Physiol 590, 4483-4499.
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A murine experimental model for the mechanical behaviour of viable right-ventricular myocardium
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Valdez-Jasso D, Simon MA, Champion HC & Sacks MS (2012). A murine experimental model for the mechanical behaviour of viable right-ventricular myocardium. J Physiol 590, 4571-4584.
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