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E J Vigmond

Showing results (1-10 of 13) with videos related to

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Medical & Biological Engineering & Computing|August 29, 2001
Effect of fibre rotation on the initiation of re-entry in cardiac tissueE J Vigmond, L J Leon
Annals of Biomedical Engineering|April 13, 1999
Computationally efficient model for simulating electrical activity in cardiac tissue with fiber rotationE J Vigmond, L J Leon
IEEE Transactions on Bio-Medical Engineering|May 1, 1994
Effects of the propagation velocity of a surface depolarization wave on the extracellular potential of an excitable cellB L Bardakjian, E J Vigmond
IEEE Transactions on Bio-Medical Engineering|February 1, 1995
The effect of morphological interdigitation on field coupling between smooth muscle cellsE J Vigmond, B L Bardakjian
Annals of Biomedical Engineering|January 1, 1996
Efficient and accurate computation of the electric fields of excitable cellsE J Vigmond, B L Bardakjian
Annals of Biomedical Engineering|July 14, 1998
Role of cellular orientation in electrical coupling between gastrointestinal smooth muscleE J Vigmond, B J Bardakjian
Journal of Cardiovascular Electrophysiology|October 2, 2001
Reentry in a morphologically realistic atrial modelE J Vigmond, R Ruckdeschel, N Trayanova
Journal of Cardiovascular Electrophysiology|November 9, 2001
Excitation of a cardiac muscle fiber by extracellularly applied sinusoidal currentE J Vigmond, N A Trayanova, R A Malkin
IEEE Transactions on Bio-Medical Engineering|December 28, 2000
Intercellular coupling mediated by potassium accumulation in peg-and-socket junctionsE J Vigmond, B L Bardakjian, L Thuneberg, et al.
Progress in Biophysics and Molecular Biology|September 29, 2007
Solvers for the cardiac bidomain equationsE J Vigmond, R Weber dos Santos, A J Prassl, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Medical & Biological Engineering & Computing|August 29, 2001
Effect of fibre rotation on the initiation of re-entry in cardiac tissueE J Vigmond, L J Leon
Annals of Biomedical Engineering|April 13, 1999
Computationally efficient model for simulating electrical activity in cardiac tissue with fiber rotationE J Vigmond, L J Leon
IEEE Transactions on Bio-Medical Engineering|May 1, 1994
Effects of the propagation velocity of a surface depolarization wave on the extracellular potential of an excitable cellB L Bardakjian, E J Vigmond
IEEE Transactions on Bio-Medical Engineering|February 1, 1995
The effect of morphological interdigitation on field coupling between smooth muscle cellsE J Vigmond, B L Bardakjian
Annals of Biomedical Engineering|January 1, 1996
Efficient and accurate computation of the electric fields of excitable cellsE J Vigmond, B L Bardakjian
Annals of Biomedical Engineering|July 14, 1998
Role of cellular orientation in electrical coupling between gastrointestinal smooth muscleE J Vigmond, B J Bardakjian
Journal of Cardiovascular Electrophysiology|October 2, 2001
Reentry in a morphologically realistic atrial modelE J Vigmond, R Ruckdeschel, N Trayanova
Journal of Cardiovascular Electrophysiology|November 9, 2001
Excitation of a cardiac muscle fiber by extracellularly applied sinusoidal currentE J Vigmond, N A Trayanova, R A Malkin
IEEE Transactions on Bio-Medical Engineering|December 28, 2000
Intercellular coupling mediated by potassium accumulation in peg-and-socket junctionsE J Vigmond, B L Bardakjian, L Thuneberg, et al.
Progress in Biophysics and Molecular Biology|September 29, 2007
Solvers for the cardiac bidomain equationsE J Vigmond, R Weber dos Santos, A J Prassl, et al.
Pageof 2