Publication | Open Access
Mesh structure-independent modeling of patient-specific atrial fiber orientation
55
Citations
3
References
2015
Year
EngineeringGeometryAnatomical ModelComputer-aided DesignBiomedical EngineeringMesh Structure-independent ModelingComputational MechanicsElectrophysiological EvaluationFiber OrientationComputational GeometryCardiologyComputational AnatomyCardiac MechanicRadiologyGeometric ModelingMedical ImagingBiomedical ModelingExcitation PropagationNatural SciencesAtrial Fiber OrientationElectrophysiologyAnesthesiology
Abstract The fiber orientation in the atria has a significant contribution to the electrophysiologic behavior of the heart and to the genesis of arrhythmia. Atrial fiber orientation has a direct effect on excitation propagation, activation patterns and the P-wave. We present a rule-based algorithm that works robustly on different volumetric meshes composed of either isotropic hexahedra or arbitrary tetrahedra as well as on 3-dimensional triangular surface meshes in patient-specific geometric models. This method fosters the understanding of general proarrhythmic mechanisms and enhances patient-specific modeling approaches.
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