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Mechanisms of altered excitation-contraction coupling in canine tachycardia-induced heart failure, II: model studies.

, , , , and . Circ. Res., 84 (5): 571--586 (March 1999)

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Bioengineering and systems biology, , and . Ann Biomed Eng, 34 (7): 1226-1233 (July 2006)A simplified local control model of calcium-induced calcium release in cardiac ventricular myocytes., , , , and . Biophys. J., 87 (6): 3723--3736 (December 2004)Reconstruction of cardiac ventricular geometry and fiber orientation using magnetic resonance imaging., , , and . Ann. Biomed. Eng., 28 (8): 934--944 (August 2000)Multi-scale models of local control of calcium induced calcium release., , and . Prog. Biophys. Mol. Biol., 90 (1-3): 136--150 (June 2005)Mechanisms of altered excitation-contraction coupling in canine tachycardia-induced heart failure, II: model studies., , , , and . Circ. Res., 84 (5): 571--586 (March 1999)Modeling gain and gradedness of Ca$^2+$ release in the functional unit of the cardiac diadic space., , and . Biophys. J., 77 (4): 1871--1884 (October 1999)Modeling short-term interval-force relations in cardiac muscle., , and . Ann. N. Y. Acad. Sci., (September 1998)Electrophysiological modeling of cardiac ventricular function: from cell to organ., , , , , and . Annu. Rev. Biomed. Eng., (2000)Cardiac Ca$^2+$ dynamics: the roles of ryanodine receptor adaptation and sarcoplasmic reticulum load., , and . Biophys. J., 74 (3): 1149-68 (March 1998)