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Article in English | MEDLINE | ID: mdl-16686010

ABSTRACT

Cardiac ablation procedures are becoming more routine to treat arrhythmias. The development of electrophysiological models will allow investigation of treatment strategies. However, current models are computationally expensive and often too complex to be adjusted with current clinical data. In this paper, we have proposed a fast algorithm to solve Eikonal-based models on triangular meshes. These models can be used to extract hidden parameters of the cardiac function from clinical data in a very short time, thus could be used during interventions. We propose a first approach to estimate these parameters, and have tested it on synthetic and real data derived using XMR imaging. We demonstrated a qualitative matching between the estimated parameter and XMR data. This novel approach opens up possibilities to directly integrate modelling in the interventional room.


Subject(s)
Action Potentials/physiology , Electrocardiography/methods , Heart Conduction System/physiopathology , Heart Conduction System/surgery , Image Interpretation, Computer-Assisted/methods , Magnetic Resonance Imaging/methods , Models, Cardiovascular , Computer Simulation , Electrophysiology/methods , Humans , Imaging, Three-Dimensional/methods
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