Key result
A radial basis function algorithm accurately reconstructed wave propagation patterns in simulated atrial tissues with homogeneous and heterogeneous conduction properties.
Why the study?
Does a radial basis function interpolation algorithm accurately reconstruct activation and velocity maps from sparse electro-anatomic data in a simulation model?
Population
Simulated tissues with homogeneous and heterogeneous conduction properties using a multistate cellular…
Design
Preclinical
Authors
Loading...
An innovative radial basis function interpolation algorithm can accurately reconstruct atrial activation and velocity maps from sparse electro-anatomic data in simulation models, potentially aiding in targeting arrhythmic areas.
Does a radial basis function interpolation algorithm accurately reconstruct activation and velocity maps from sparse electro-anatomic data in a simulation model?
An innovative radial basis function interpolation algorithm can accurately reconstruct atrial activation and velocity maps from sparse electro-anatomic data in simulation models, potentially aiding in targeting arrhythmic areas.
Masè et al. (2010) studied Atrial arrhythmias. Radial basis function (RBF) algorithm was evaluated on Reconstruction accuracy. A radial basis function algorithm accurately reconstructed wave propagation patterns in simulated atrial tissues with homogeneous and heterogeneous conduction properties.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: