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Stretch-Induced Changes in Heart Rate and Rhythm: Clinical Observations, Experiments and Mathematical Models
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Improved Guinea-Pig Ventricular Cell Model Incorporating a Diadic Space, Ikr and Iks, and Length- And Tension-Dependent Processes
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Noble, D., Varghese, A., Kohl, P., Noble, P.: Improved Guinea-Pig Ventricular Cell Model Incorporating a Diadic Space, Ikr and Iks, and Length- and Tension-Dependent Processes. Can. J. Cardiol. 14.1 (1998) 123-134
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Mechanical Inhomogeneity of Myocardium Studied in Parallel and Serial Cardiac Muscle Duplexes: Experiments and Models
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Solovyova, O., Katsnelson, L., Guriev, S., Nikitina, L., Protsenko, Y., Routkevitch, S., Markhasin, V.: Mechanical Inhomogeneity of Myocardium Studied in Parallel and Serial Cardiac Muscle Duplexes: Experiments and Models. Chaos, Solitons & Fractals 13.8 (2002) 1685-1711
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Skeletal and Cardiac Muscle Contractile Activation: Tropomyosin "Rocks and Rolls"
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Mathematical Modeling of Relations between the Kinetics of Free Intracellular Calcium and Mechanical Function of Myocardium
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Mechano-Electric Feedback in Cardiac Cells
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Kohl, P., Sachs, F.: Mechano-Electric Feedback in Cardiac Cells. Phil. Trans. R. Soc. Lond. A 359 (2001) 1173-1185
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Cellular Mechanisms of Cardiac Mechano-Electric Feedback in a Mathematical Model
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Kohl, P., Day, K., Noble, D.: Cellular Mechanisms of Cardiac Mechano-Electric Feedback in a Mathematical Model. Can. J. Cardiol. 14.1 (1998) 111-119
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The Effects of Shortening on Myoplasmic Calcium Concentration and on the Action Potential in Mammalian Ventricular Muscle
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The Effects of Increasing Cell Length on Auxotonic Contractions; Membrane Potential and Intracellular Calcium Transients in Single Guinea-Pig Ventricular Myocytes
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White, E., Le Guennec, J.Y., Nigretto, J.M., Cannier, F., Argibay, J.A., Gamier, D.: The Effects of Increasing Cell Length on Auxotonic Contractions; Membrane Potential and Intracellular Calcium Transients in Single Guinea-Pig Ventricular Myocytes. Exp. Physiol. 78.1 (1993) 65-78
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0027532503
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Mechanoelectrical Feedback Effects of Altering Preload, Afterload, and Ventricular Shortening
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Stretch-Activated Currents in Ventricular Myocytes: Amplitude and Arrhythmogenic Effects Increase with Hypertrophy
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Kamkin, A., Kiseleva, I., Isenberg, G.: Stretch-Activated Currents in Ventricular Myocytes: Amplitude and Arrhythmogenic Effects Increase with Hypertrophy. Cardiovasc. Res. 48.3 (2000) 409-420
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Stretch-Induced Voltage Changes in the Isolated Beating Heart: Importance of the Timing of Stretch and Implications for Stretch-Activated Ion Channels
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Zabel, M., Koller, B.S., Sachs, F., Franz, M.R.: Stretch-Induced Voltage Changes in the Isolated Beating Heart: Importance of the Timing of Stretch and Implications for Stretch-Activated Ion Channels. Cardiovasc. Res. 32 (1996) 120-130
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Streptomycin and Intracellular Calcium Modulate the Response of Single Guinea-Pig Ventricular Myocytes to Axial Stretch
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Belus, A., White, E.: Streptomycin and Intracellular Calcium Modulate the Response of Single Guinea-Pig Ventricular Myocytes to Axial Stretch. J. Physiol. 546.2 (2003) 501-509
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