Characterization of impulse propagation at the microscopic level across geometrically defined expansions of excitable tissue: multiple site optical recording of transmembrane voltage (MSORTV) in patterned growth heart cell cultures
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B M Salzberg | B. Salzberg | S. Rohr | S Rohr | Stephan Rohr
[1] P. Ursell,et al. Structural and Electrophysiological Changes in the Epicardial Border Zone of Canine Myocardial Infarcts during Infarct Healing , 1985, Circulation research.
[2] W. J. Mueller,et al. Propagation of Impulses across the Purkinje Fiber‐Muscle Junctions in the Dog Heart , 1970, Circulation research.
[3] W. J. Mueller,et al. Interaction of Transmembrane Potentials in Canine Purkinje Fibers and at Purkinje Fiber‐Muscle Junctions , 1969, Circulation research.
[4] R. W. Joyner,et al. Propagation through electrically coupled cells. Effects of a resistive barrier. , 1984, Biophysical journal.
[5] R. W. Joyner,et al. Unidirectional block between Purkinje and ventricular layers of papillary muscles. , 1984, The American journal of physiology.
[6] A. Kleber,et al. Patterned growth of neonatal rat heart cells in culture. Morphological and electrophysiological characterization. , 1991, Circulation research.
[7] W. N. Ross,et al. Optical recording of neuronal activity in an invertebrate central nervous system: simultaneous monitoring of several neurons. , 1977, Journal of neurophysiology.
[8] G. Moe,et al. Conduction through a Narrow Isthmus in Isolated Canine Atrial Tissue: A Model of the W‐P‐W Syndrome , 1971, Circulation.
[9] R W Joyner,et al. Modulation of repolarization by electrotonic interactions. , 1986, Japanese heart journal.
[10] B M Salzberg,et al. Multiple site optical recording of transmembrane voltage (MSORTV) in patterned growth heart cell cultures: assessing electrical behavior, with microsecond resolution, on a cellular and subcellular scale. , 1994, Biophysical journal.
[11] F A Roberge,et al. Directional characteristics of action potential propagation in cardiac muscle. A model study. , 1991, Circulation research.
[12] R. W. Joyner. Mechanisms of unidirectional block in cardiac tissues. , 1981, Biophysical journal.
[13] A Grinvald,et al. Simultaneous optical monitoring of activity of many neurons in invertebrate ganglia using a 124-element photodiode array. , 1981, Journal of neurophysiology.
[14] B F Hoffman,et al. Conduction of the Cardiac Impulse: I. Delay, Block, and One-Way Block in Depressed Purkinje Fibers , 1971 .
[15] E. Downar,et al. Unidirectional block in Purkinje fibers. , 1980, Canadian journal of physiology and pharmacology.
[16] C. Méndez,et al. A Mechanism for Reentry in Canine Ventricular Tissue , 1971, Circulation research.
[17] A. L. Wit,et al. Conduction of the Cardiac Impulse , 1972, The Journal of general physiology.
[18] F. V. Van Capelle,et al. Propagation through electrically coupled cells. How a small SA node drives a large atrium. , 1986, Biophysical journal.
[19] F. Bukauskas,et al. Discrete zones of the electrical connexion of Purkinje terminals with muscle fibres in the canine ventricle , 1976 .