Determination of the excitation origin in the ventricles from the ECG using support vector regression

0Citations
Citations of this article
10Readers
Mendeley users who have this article in their library.
Get full text

Abstract

A common treatment of focal ventricular tachycardia is the catheter ablation of triggering sites. They have to be found manually by the physician during an intervention in a catheter lab. Thus, a method for determining the position of the focus automatically is desired. The inverse problem of electrocardiography addresses this problem by reconstructing the source of the ectopic beats using the surface ECG. This problem is ill-posed and therefore needs specific methods for solving it. We propose a machine learning approach for local-isation of the ectopic foci in the heart to assist cardiologists with their therapy planning. We simulated 600 120-lead ECGs with different known excitation origins in the heart using a cellular automaton followed by a forward calculation. Features from the ECGs were used as input for a support vector regression (SVR). We assumed a functional relation between features from the ECG and the excitation origin. To benchmark SVR, we also used the well-known Tikhonov 0th order regularisation to reconstruct the transmembrane potentials in the heart and detect the location of the ectopic foci. Parameters for SVR and regularisation were chosen using a grid search min-imising the error between estimated and true excitation origin. Compared to the Tikhonov regularisation method, SVR achieved a smaller deviation between estimated and real excitation origin evaluated with 6-fold cross validation. Future work could investigate on the behaviour on data from simulations with other torso and electrophysiological models, the influence of other methods for feature extraction and finally the evaluation with clinical data.

Cite

CITATION STYLE

APA

Pilia, N., Ritter, C., Potyagaylo, D., Schulze, W. H. W., Dössel, O., & Lenis, G. (2017). Determination of the excitation origin in the ventricles from the ECG using support vector regression. In Current Directions in Biomedical Engineering (Vol. 3, pp. 257–260). Walter de Gruyter GmbH. https://doi.org/10.1515/cdbme-2017-0180

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free