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Biomedizinische Technik. Biomedical Engineering|October 16, 1999
Two-dimensional Fourier representation used in the bioelectric forward problemP Wach, G Lafer, B Tilg, et al.Computer Methods and Programs in Biomedicine|November 21, 2000
An iterative algorithm for myocardial activation time imagingR Modre, B Tilg, G Fischer, et al.Medical & Biological Engineering & Computing|May 1, 1997
Magnetic source imaging in the human heart: estimating cardiac electrical sources from simulated and measured magnetocardiogram dataP Wach, B Tilg, G Lafer, et al.Computer Methods and Programs in Biomedicine|May 6, 1998
Analytical validation of the BEM--application of the BEM to the electrocardiographic forward and inverse problemG Fischer, B Tilg, P Wach, et al.Computer Methods and Programs in Biomedicine|March 26, 1999
Application of high-order boundary elements to the electrocardiographic inverse problemG Fischer, B Tilg, P Wach, et al.Annals of Biomedical Engineering|January 6, 2001
A bidomain model based BEM-FEM coupling formulation for anisotropic cardiac tissueG Fischer, B Tilg, R Modre, et al.International Journal of Bio-Medical Computing|September 1, 1995
An iterative approach on magnetic source imaging within the human cortex--a simulation studyB Tilg, P WachBiomedizinische Technik. Biomedical Engineering|June 1, 1995
A simulation study on magnetic source imaging with a realistic model of the entire human heartB Tilg, P Wach, W RuckerBiomedizinische Technik. Biomedical Engineering|December 1, 1994
[Simulation of a one-dimensional impulse transmission along a heart muscle fiber with varied intracellular specific resistance--unidirectional block]B Tilg, H Mimm, P WachComputer Methods and Programs in Biomedicine|February 22, 2005
Lead field computation for the electrocardiographic inverse problem--finite elements versus boundary elementsM Seger, G Fischer, R Modre, et al.Pageof 7