-
1
-
-
0028820322
-
-
77, pp. 1229-1239, 1995.
-
S. B. Knisely, "Transmembrane voltage changes during unipolar stimulation of rabbit ventricle," Circ. Res., vol. 77, pp. 1229-1239, 1995.
-
"Transmembrane Voltage Changes during Unipolar Stimulation of Rabbit Ventricle," Circ. Res., Vol.
-
-
Knisely, S.B.1
-
2
-
-
0028288750
-
-
66, pp. 719-728, 1994.
-
S. B. Knisley, B. Hill, and R. E. Ideker, "Virtual electrode effects in myocardial fibers," Biophys. J.. vol. 66, pp. 719-728, 1994.
-
B. Hill, and R. E. Ideker, "Virtual Electrode Effects in Myocardial Fibers," Biophys. J.. Vol.
-
-
Knisley, S.B.1
-
3
-
-
0025972699
-
-
68, pp. 513-530, 1991.
-
J. P. Wikswo, Jr., T. A. Wisialowski, W. A. Altemeier, J. R. Baiser, H. A. Kopelman, and D. M. Roden, "Virtual cathode effects during stimulation of cardiac muscle: Two-dimensional in vivo experiments," Circ. Res., vol. 68, pp. 513-530, 1991.
-
Jr., T. A. Wisialowski, W. A. Altemeier, J. R. Baiser, H. A. Kopelman, and D. M. Roden, "Virtual Cathode Effects during Stimulation of Cardiac Muscle: Two-dimensional in Vivo Experiments," Circ. Res., Vol.
-
-
Wikswo, J.P.1
-
4
-
-
0028124557
-
-
17, pp. 1641-1654, 1994.
-
M. Neunlist and L. Tung, "Optical recordings of ventricular excitability of frog heart by an extracellular stimulating point electrode," Pacing Clin. Electrophysioi, vol. 17, pp. 1641-1654, 1994.
-
"Optical Recordings of Ventricular Excitability of Frog Heart by An Extracellular Stimulating Point Electrode," Pacing Clin. Electrophysioi, Vol.
-
-
Neunlist, M.1
Tung, L.2
-
6
-
-
0028857065
-
-
69, pp. 2195-2210, 1995.
-
J. P. Wikswo, Jr., S. Lin, and R. A. Abbas, "Virtual electrodes in cardiac tissue: A common mechanism for anodal and cathodal stimulation," Biophys. J., vol. 69, pp. 2195-2210, 1995.
-
Jr., S. Lin, and R. A. Abbas, "Virtual Electrodes in Cardiac Tissue: A Common Mechanism for Anodal and Cathodal Stimulation," Biophys. J., Vol.
-
-
Wikswo, J.P.1
-
7
-
-
0024671008
-
-
55, pp. 987-999, 1989.
-
N. G. Sepulveda, B. J. Roth, and J. P. Wikswo Jr., "Current injection into a two-dimensional anisotropic bidomain," Biophys. J., vol. 55, pp. 987-999, 1989.
-
B. J. Roth, and J. P. Wikswo Jr., "Current Injection into A Two-dimensional Anisotropic Bidomain," Biophys. J., Vol.
-
-
Sepulveda, N.G.1
-
8
-
-
0028280417
-
-
5, pp. 258-267, 1994.
-
N. G. Sepulveda and J. P. Wikswo, Jr., "Bipolar stimulation of cardiac tissue using an anisotropic bidomain model," J. Cardiovas. Electrophysioi., vol. 5, pp. 258-267, 1994.
-
Jr., "Bipolar Stimulation of Cardiac Tissue Using An Anisotropic Bidomain Model," J. Cardiovas. Electrophysioi., Vol.
-
-
Sepulveda, N.G.1
Wikswo, J.P.2
-
9
-
-
0027052659
-
-
20, pp. 255-277, 1992.
-
N. Trayanova and T. C. Pilkington, "The use of spectral methods in bidomain studies," Crit. Rev. Biomed. Eng., vol. 20, pp. 255-277, 1992.
-
"The Use of Spectral Methods in Bidomain Studies," Crit. Rev. Biomed. Eng., Vol.
-
-
Trayanova, N.1
Pilkington, T.C.2
-
10
-
-
0028200608
-
-
41, pp. 232-240, 1994.
-
B. J. Roth and J. P. Wikswo, Jr., "Electrical stimulation of cardiac tissue: A bidomain model with active membrane properties," IEEE Trans. Biomed. Eng., vol. 41, pp. 232-240, 1994.
-
Jr., "Electrical Stimulation of Cardiac Tissue: A Bidomain Model with Active Membrane Properties," IEEE Trans. Biomed. Eng., Vol.
-
-
Roth, B.J.1
Wikswo, J.P.2
-
11
-
-
0026368564
-
-
1991, vol. 13, pt. II, pp. 512-514.
-
N. G. Sepulveda, J. P. Barach, and J. P. Wikswo, Jr., "A threedimensional finite-element bidomain model for cardiac tissue," in Proc. Annu. Int. Conf. IEEE Engineering in Medicine and Biology Society, New Frontiers of Biomédical Engineering-Innovations from Nuclear to Space Technology, J. Nagel and W. Smith, Eds., 1991, vol. 13, pt. II, pp. 512-514.
-
J. P. Barach, and J. P. Wikswo, Jr., "A Threedimensional Finite-element Bidomain Model for Cardiac Tissue," in Proc. Annu. Int. Conf. IEEE Engineering in Medicine and Biology Society, New Frontiers of Biomédical Engineering-Innovations from Nuclear to Space Technology, J. Nagel and W. Smith, Eds.
-
-
Sepulveda, N.G.1
-
12
-
-
0027447573
-
-
21, pp. 1-77, 1993.
-
C. S. Henriquez, "Simulating the electrical behavior of cardiac tissue using the bidomain model," Crit. Rev. Biomed. Eng., vol. 21, pp. 1-77, 1993.
-
"Simulating the Electrical Behavior of Cardiac Tissue Using the Bidomain Model," Crit. Rev. Biomed. Eng., Vol.
-
-
Henriquez, C.S.1
-
13
-
-
0025149742
-
-
101, pp. 155-235, 1990.
-
P. C. Franzone, L. Guerri, and S. Tentoni, "Mathematical modeling of the excitation process in myocardial tissue: Influence of fiber rotation on wavefront propagation and potential field," Math. Biosci., vol. 101, pp. 155-235, 1990.
-
L. Guerri, and S. Tentoni, "Mathematical Modeling of the Excitation Process in Myocardial Tissue: Influence of Fiber Rotation on Wavefront Propagation and Potential Field," Math. Biosci., Vol.
-
-
Franzone, P.C.1
-
14
-
-
0026057714
-
-
68, pp. 162-173, 1991.
-
B. J. Roth, "Action potential propagation in a thick strand of cardiac muscle," Circ. Res., vol. 68, pp. 162-173, 1991.
-
"Action Potential Propagation in A Thick Strand of Cardiac Muscle," Circ. Res., Vol.
-
-
Roth, B.J.1
-
15
-
-
84976720489
-
-
586: ITPACK 2C: A FORTRAN package for solving large sparse linear systems by adaptive accelerated iterative methods," ACM Trans. Math. Soft., vol. 8, pp. 302-322, 1982.
-
D. R. Kincaid, J. R. Respess, D. M. Young, and R. G. Grimes, "Algorithm 586: ITPACK 2C: A FORTRAN package for solving large sparse linear systems by adaptive accelerated iterative methods," ACM Trans. Math. Soft., vol. 8, pp. 302-322, 1982.
-
J. R. Respess, D. M. Young, and R. G. Grimes, "Algorithm
-
-
Kincaid, D.R.1
-
16
-
-
0028334466
-
-
41, pp. 143-150, 1994.
-
W. Krassowska and J. C. Neu, "Effective boundary conditions for syncytial tissue," IEEE Trans. Biomed. Eng., vol. 41, pp. 143-150, 1994.
-
"Effective Boundary Conditions for Syncytial Tissue," IEEE Trans. Biomed. Eng., Vol.
-
-
Krassowska, W.1
Neu, J.C.2
-
17
-
-
0029930016
-
-
7, no. 5, pp. 424-445, 1996.
-
C. S. Henriquez, A. L. Muzikant, and C. K. Smoak, "Anisotropy, fiber curvature and bath loading effects on activation in thin and thick cardiac tissue preparations: Simulations in a three-dimensional bidomain model," J. Cardiovas. Electrophysioi., vol. 7, no. 5, pp. 424-445, 1996.
-
A. L. Muzikant, and C. K. Smoak, "Anisotropy, Fiber Curvature and Bath Loading Effects on Activation in Thin and Thick Cardiac Tissue Preparations: Simulations in A Three-dimensional Bidomain Model," J. Cardiovas. Electrophysioi., Vol.
-
-
Henriquez, C.S.1
-
18
-
-
0014876918
-
-
210, pp. 1041-1054, 1970.
-
S. Weidmann, "Electrical constants of trabecular muscle from mammalian heart," J. Physiol. (Land), vol. 210, pp. 1041-1054, 1970.
-
"Electrical Constants of Trabecular Muscle from Mammalian Heart," J. Physiol. (Land), Vol.
-
-
Weidmann, S.1
-
19
-
-
0027312098
-
-
4, pp. 144-160, 1993.
-
P. C. Franzone, L. Guerri, and B. Taccardi, "Spread of excitation in a myocardial volume: Simulation studies in a model of anisotropic ventricular muscle activated by point stimulation," J. Cardiovas. Electrophysioi., vol. 4, pp. 144-160, 1993.
-
L. Guerri, and B. Taccardi, "Spread of Excitation in A Myocardial Volume: Simulation Studies in A Model of Anisotropic Ventricular Muscle Activated by Point Stimulation," J. Cardiovas. Electrophysioi., Vol.
-
-
Franzone, P.C.1
-
20
-
-
33749716835
-
-
1995, ch. 10, pp. 126-138.
-
B. J. Roth, "The electrical properties of tissues," in The Biomédical Engineering Handbook, J. Bronzino.Ed. Boca Raton, FL: CRC, 1995, ch. 10, pp. 126-138.
-
"The Electrical Properties of Tissues," in the Biomédical Engineering Handbook, J. Bronzino.Ed. Boca Raton, FL: CRC
-
-
Roth, B.J.1
-
21
-
-
0027155019
-
-
21, pp. 137-199, 1993.
-
J. C. Neu and W. Krassowska, "Homogenization of syncytial tissues," Crit. Rev. Biomed. Eng., vol. 21, pp. 137-199, 1993.
-
"Homogenization of Syncytial Tissues," Crit. Rev. Biomed. Eng., Vol.
-
-
Neu, J.C.1
Krassowska, W.2
-
22
-
-
0003083552
-
-
12, pp. 40-50, 1963.
-
S. Rush, J. Abildskov, and R. McFee, "Resistivity of body tissue at low frequencies," Circ. Res., vol. 12, pp. 40-50, 1963.
-
J. Abildskov, and R. McFee, "Resistivity of Body Tissue at Low Frequencies," Circ. Res., Vol.
-
-
Rush, S.1
-
23
-
-
0025730285
-
-
29, pp. H1365-H1378, 1991.
-
P. M. F. Nielsen, I. J. LeGrice, and B. H. Smaill, "Mathematical model of geometry and fibrous structure of the heart," Amer. J. Physiol, vol. 29, pp. H1365-H1378, 1991.
-
I. J. LeGrice, and B. H. Smaill, "Mathematical Model of Geometry and Fibrous Structure of the Heart," Amer. J. Physiol, Vol.
-
-
Nielsen, P.M.F.1
-
24
-
-
33749809473
-
-
34, no. Suppl. 1, pt. 2, pp. 75-76, 1996.
-
N. Trayanova, "The role of cardiac tissue anisotropy in the process of defibrillation," Med. Biol. Eng., Comput., vol. 34, no. Suppl. 1, pt. 2, pp. 75-76, 1996.
-
"The Role of Cardiac Tissue Anisotropy in the Process of Defibrillation," Med. Biol. Eng., Comput., Vol.
-
-
Trayanova, N.1
-
25
-
-
0029165310
-
-
18, no. 9, pp. 1644-1600, 1995.
-
W. Krassowska, "Effects of electroporation on transmembrane potential induced by defibrillation shocks," Pacing Clin. Electrophysiol., vol. 18, no. 9, pp. 1644-1600, 1995.
-
"Effects of Electroporation on Transmembrane Potential Induced by Defibrillation Shocks," Pacing Clin. Electrophysiol., Vol.
-
-
Krassowska, W.1
-
26
-
-
0029430483
-
-
17th Anna. Conf. IEEE/EMBS and 21st Canadian Medical & Biological Engineering, 1995, p. 0075.
-
R. M. Zimering, D. M. Harrild, and C. S. Henriquez, "Recovery of cardiac transmembrane potential from extracellular potential in twodimensional anisotropic tissue," in P roc. 17th Anna. Conf. IEEE/EMBS and 21st Canadian Medical & Biological Engineering, 1995, p. 0075.
-
D. M. Harrild, and C. S. Henriquez, "Recovery of Cardiac Transmembrane Potential from Extracellular Potential in Twodimensional Anisotropic Tissue," in P Roc.
-
-
Zimering, R.M.1
-
27
-
-
0018597821
-
-
45, pp. 188-204, 1979.
-
M. S. Spach, W. T. Miller, III, E. Miller-Jones, R. B. Warren, and R. C. Barr, "Extracellular potentials related to intracellular action potentials during impulse conduction in anisotropic canine cardiac muscle," Circ. Res., vol. 45, pp. 188-204, 1979.
-
W. T. Miller, III, E. Miller-Jones, R. B. Warren, and R. C. Barr, "Extracellular Potentials Related to Intracellular Action Potentials during Impulse Conduction in Anisotropic Canine Cardiac Muscle," Circ. Res., Vol.
-
-
Spach, M.S.1
-
28
-
-
0020470204
-
-
51, pp. 602-613, 1982.
-
D. B. Geselowitz, R. C. Barr, M. S. Spach, and W. T. Miller, III, "The impact of adjacent Isotropie fluids on electrograms from anisotropic cardiac muscle: A modeling study," Circ. Res., vol. 51, pp. 602-613, 1982.
-
R. C. Barr, M. S. Spach, and W. T. Miller, III, "The Impact of Adjacent Isotropie Fluids on Electrograms from Anisotropic Cardiac Muscle: A Modeling Study," Circ. Res., Vol.
-
-
Geselowitz, D.B.1
-
30
-
-
0022893614
-
-
14, pp. 307-322, 1986.
-
R. Plonsey and R. C. Barr, "A critique of impedance measurements in cardiac tissue," Ann. Biomed. Eng., vol. 14, pp. 307-322, 1986.
-
"A Critique of Impedance Measurements in Cardiac Tissue," Ann. Biomed. Eng., Vol.
-
-
Plonsey, R.1
Barr, R.C.2
-
31
-
-
0017262178
-
-
255, pp. 335-346, 1976.
-
L. Clerc, "Directional differences of impulse spread in trabecular muscle from mammalian heart," J. Physiol., vol. 255, pp. 335-346, 1976.
-
"Directional Differences of Impulse Spread in Trabecular Muscle from Mammalian Heart," J. Physiol., Vol.
-
-
Clerc, L.1
-
32
-
-
0022691559
-
-
24, pp. 130-137, 1986.
-
R. Plonsey and R. C. Barr, "The effect of microscopic and macroscopic discontinuities on the response of cardiac tissue to defibrillating (stimulating) currents," Med. Biol. Eng., Comput., vol. 24, pp. 130-137, 1986.
-
"The Effect of Microscopic and Macroscopic Discontinuities on the Response of Cardiac Tissue to Defibrillating (Stimulating) Currents," Med. Biol. Eng., Comput., Vol.
-
-
Plonsey, R.1
Barr, R.C.2
-
33
-
-
0023378410
-
-
555-560, 1987.
-
W. Krassowska, T. C. Pilkington, and R. E. Ideker, "Periodic conductivity as a mechanism for cardiac stimulation and defibrillation," IEEE Trans. Biomed. Eng., vol. BME-34, pp. 555-560, 1987.
-
T. C. Pilkington, and R. E. Ideker, "Periodic Conductivity As A Mechanism for Cardiac Stimulation and Defibrillation," IEEE Trans. Biomed. Eng., Vol. BME-34, Pp.
-
-
Krassowska, W.1
-
34
-
-
0029102228
-
-
77, pp. 593-602, 1995.
-
X. Zhou, R. E. Ideker, T. F. Blitchington, W. B. Smith, and S. B. Knisley, "Optical transmembrane potential measurements during defibrillation-strength shocks in perfused rabbit hearts," Circ. Res., vol. 77, pp. 593-602, 1995.
-
R. E. Ideker, T. F. Blitchington, W. B. Smith, and S. B. Knisley, "Optical Transmembrane Potential Measurements during Defibrillation-strength Shocks in Perfused Rabbit Hearts," Circ. Res., Vol.
-
-
Zhou, X.1
-
35
-
-
0029816639
-
-
79, pp. 676-690, 1996.
-
A. M. Gillis, V. G. Fast, S. Rohr, and A. G. Kleber, "Spatial changes in transmembrane potential during extracellular electrical shocks in cultured monolayers of neonatal rat ventricular myocytes," Circ. Res., vol. 79, pp. 676-690, 1996.
-
V. G. Fast, S. Rohr, and A. G. Kleber, "Spatial Changes in Transmembrane Potential during Extracellular Electrical Shocks in Cultured Monolayers of Neonatal Rat Ventricular Myocytes," Circ. Res., Vol.
-
-
Gillis, A.M.1
-
36
-
-
0030561085
-
-
43, pp. 1141-1150, 1996.
-
N. Trayanova, "Discrete versus syncytial tissue behavior in a model of cardiac stimulation-II: Results of simulation," IEEE Trans. Biomed. Eng., vol. 43, pp. 1141-1150, 1996.
-
"Discrete Versus Syncytial Tissue Behavior in A Model of Cardiac Stimulation-II: Results of Simulation," IEEE Trans. Biomed. Eng., Vol.
-
-
Trayanova, N.1
|