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1
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Considerations of quasi-stationarity in electrophysiological systems
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R. Plonsey and D. B. Heppner, “Considerations of quasi-stationarity in electrophysiological systems,” Bull. Math. Biophys., vol. 29, pp. 657–664, 1967.
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Plonsey, R.1
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The formulation of bioelectric source-field relationships in terms of surface discontinuities
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T. C. Pilkington and R. Plonsey, Engineering Contributions to Biophysical Electrocardiography. New York: IEEE Press, 1982, ch. 2
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R. Plonsey, “The formulation of bioelectric source-field relationships in terms of surface discontinuities,” J. Franklin Inst., vol. 297, pp. 317–324, 1974; and T. C. Pilkington and R. Plonsey, Engineering Contributions to Biophysical Electrocardiography. New York: IEEE Press, 1982, ch. 2.
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Plonsey, R.1
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An extension of the solid angle potential formulation for an active cell
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The nature of sources of bioelectric and biomagnetic fields
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On bioelectric potentials in an inhomogeneous volume conductor
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Geselowitz, D.B.1
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Electrode guarding in electrical impedance measurements of physiological systems-A critique
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R. Plonsey and R. Collin, “Electrode guarding in electrical impedance measurements of physiological systems-A critique,” Med. Biol. Eng. Comput., vol. 15, pp. 519–527, 1977.
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Plonsey, R.1
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The active fiberinavolumeconductor
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R. Plonsey, “The active fiberinavolumeconductor,” IEEE Trans. Biomed. Eng., vol. BME-21, pp. 371–381, 1974.
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Plonsey, R.1
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Action potential sources and their volume conductor fields
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—, “Action potential sources and their volume conductor fields,” Proc. IEEE, vol. 65, pp. 601–611, 1977.
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Extracellular potentials related to intracellular action potentials in the dog Purkinje system
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M. S. Spach, R. C. Barr, G. A. Serwer, J. M. Kootsey, and E. A. Johnson, “Extracellular potentials related to intracellular action potentials in the dog Purkinje system,” Circ. Res., vol. 30, pp 505–519, 1972.
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Spach, M.S.1
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13
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A volume conductor study of compound action potentials of nerves in situ: The forward problem
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D. F. Stegeman, J. P. G. de Weerd, and E. G. L. Eijkman, “A volume conductor study of compound action potentials of nerves in situ: The forward problem,” Biol. Cybern., vol. 33 pp 97–111, 1979.
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Directional differences of impulse spread in trabecular muscle from mammalian heart
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Clerc, L.1
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A bidomain model for describing ischemic myocardial DC potentials
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Ph.D. dissertation, Mass. Inst. Technol., Cambridge, MA
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L. Tung, “A bidomain model for describing ischemic myocardial DC potentials,” Ph.D. dissertation, Mass. Inst. Technol., Cambridge, MA, 1978.
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Tung, L.1
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Simulation studies of the electrocardiogram
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W. T. Miller and D. B. Geselowitz, “Simulation studies of the electrocardiogram,” Circ. Res., vol. 43, pp. 301–315, 1978.
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Miller, W.T.1
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Current flow patterns in two-dimensional anisotropic bisyncytia with normal and extreme conductivities
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R. Plonsey and R. C. Barr, “Current flow patterns in two-dimensional anisotropic bisyncytia with normal and extreme conductivities,” Biophys. J., vol. 45, pp. 557–571, 1984.
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Plonsey, R.1
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18
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Propagation of excitation in idealized anisotropic two-dimensional tissue
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R. C. Barr and R. Plonsey, “Propagation of excitation in idealized anisotropic two-dimensional tissue,” Biophys. J., vol 45 pp 831–850, 1984.
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Barr, R.C.1
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