Title :
Evaluation of a method for quantification of restitution dispersion from the surface ECG
Author :
Mincholé, A. ; Pueyo, E. ; Rodríguez, J.F. ; Zacur, E. ; Doblaré, M. ; Laguna, P.
Author_Institution :
Ciber-BBN, Zaragoza, Spain
Abstract :
Spatial dispersion of action potential duration (APD) restitution (APDR) due to electrophysiological heterogeneities in the heart, has been suggested to act as a potent arrhythmogenic substrate. In this work, we evaluate a method aimed at quantifying APDR slope dispersion (Δα) from the surface electrocardiogram (ECG). A 2D human ventricular in silico tissue preparation is used, from which APDR slope dispersion (ΔαSIM) at tissue level is computed, and compared with simulated estimates calculated from pseudo-ECGs (Δ̂αpECG). We show that Δ̂αpECG values in our simulations are in all cases within the range of clinical values measured from tilt-test recordings. Then, we use the validated tissue model to relate the Δ̂αpECG estimate to measurements of ΔαSIM, and we prove that the mean error is below 5%. We conclude that the proposed Δ̂αpECG index provides valuable estimates of APDR dispersion with the advantage of being able to be measured non-invasively from the ECG.
Keywords :
bioelectric phenomena; biological tissues; biomedical measurement; cellular biophysics; electrocardiography; physiological models; 2D human ventricular; action potential duration restitution; electrophysiological heterogeneities; heart; potent arrhythmogenie substrate; pseudo-ECG; restitution dispersion quantification; silico tissue preparation; slope dispersion; spatial dispersion; surface ECG; surface electrocardiogram; tilt-test recording; tissue level; tissue model; Computational modeling; Dispersion; Electrocardiography; Heart; Humans; Mathematical model; Steady-state;
Conference_Titel :
Computing in Cardiology, 2010
Conference_Location :
Belfast
Print_ISBN :
978-1-4244-7318-2