Title :
Automatic parameterization strategy for cardiac electrophysiology simulations
Author :
Mendonca Costa, Caroline ; Hoetzl, Elena ; Martins Rocha, Bernardo ; Prassl, Anton J. ; Plank, Graeme
Author_Institution :
Inst. of Biophys., Med. Univ. of Graz, Graz, Austria
Abstract :
Driven by recent advances in medical imaging, image segmentation and numerical techniques, computer models of ventricular electrophysiology account for increasingly finer levels of anatomical and biophysical detail. However, considering the large number of model parameters involved parameterization poses a major challenge. A minimum requirement in combined experimental and modeling studies is to achieve good agreement in activation and repolarization sequences between model and experiment or patient data. In this study, we propose basic techniques which aid in determining bidomain parameters to match activation sequences. An iterative parameterization algorithm is implemented which determines appropriate bulk conductivities which yield prescribed velocities. In addition, a method is proposed for splitting the computed bulk conductivities into individual bidomain conductivities by prescribing anisotropy ratios.
Keywords :
bioelectric potentials; cardiology; electrical conductivity; iterative methods; parameter estimation; activation sequences; anisotropy ratios; automatic parameterization strategy; bidomain conductivities; bulk conductivity computation; cardiac electrophysiology simulations; computer models; iterative parameterization algorithm; medical image segmentation; numerical techniques; patient data; repolarization sequences; ventricular electrophysiology; Anisotropic magnetoresistance; Biological system modeling; Computational modeling; Conductivity; Equations; Mathematical model; Numerical models;
Conference_Titel :
Computing in Cardiology Conference (CinC), 2013
Conference_Location :
Zaragoza
Print_ISBN :
978-1-4799-0884-4