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Medical & Biological Engineering & Computing|September 1, 1991
Orthogonal expansions: their applicability to signal extraction in electrophysiological mapping dataR Lamothe, G StroinkIEEE Transactions on Bio-Medical Engineering|January 1, 1991
Moving dipole inverse solutions using realistic torso modelsC J Purcell, G StroinkIEEE Transactions on Bio-Medical Engineering|November 14, 1997
Factors affecting the accuracy of the boundary element method in the forward problem--I: Calculating surface potentialsA S Ferguson, G StroinkPhysiological Measurement|December 31, 1997
Value of simulated body surface potential maps as templates in localizing sites of ectopic activation for radiofrequency ablationR Hren, B M HorácekComputers in Biology and Medicine|May 3, 2003
The effect of nontransmural necroses on epicardial potential maps during paced activation: a simulation studyR Hren, B M HorácekJournal of Electrocardiology|February 13, 1999
A comparison of simulated QRS isointegral maps resulting from pacing at adjacent sites: implications for the spatial resolution of pace mapping using body surface potentialsR Hren, B B PunskePhysics in Medicine and Biology|February 1, 1987
A Mössbauer-effect study of autopsied lung tissue of asbestos workersG Stroink, D Lim, R A DunlapIEEE Transactions on Bio-Medical Engineering|May 1, 1994
A complete linear discretization for calculating the magnetic field using the boundary element methodA S Ferguson, X Zhang, G StroinkJournal of Electrocardiology|April 1, 1996
Body surface potential mapping of a patient with Wolff-Parkinson-White syndrome with two accessory pathways and two atrial pacemaker complexesM J Lamothe, G Stroink, M J GardnerAnnals of Biomedical Engineering|December 10, 1998
Simulated epicardial potential maps during paced activation reflect myocardial fibrous structureR Hren, J Nenonen, B M HorácekPageof 4