DocumentCode :
3747119
Title :
Local conduction velocity mapping for electrocardiographic imaging
Author :
Corentin Dallet;Laura Bear;Josselin Duchateau;Mark Potse;Nejib Zemzemi;Valentin Meillet;Yves Coudi?re;R?mi Dubois
Author_Institution :
Electrophysiology and Heart Modeling Institute (IHU LIRYC), Bordeaux, France
fYear :
2015
Firstpage :
225
Lastpage :
228
Abstract :
Slow conduction is a well-known pro-arrhythmic feature for tachycardia and fibrillation. Cardiac conduction velocity (CV) mapping can be extremely helpful for investigating unusual activation patterns. Although methods have been developed to estimate velocity vector field, from ex-vivo preparations (e.g. from optical mapping recordings), the estimation from in-vivo electrograms (EGMs) remains challenging. This paper presents a new method specifically designed for EGMs reconstructed non-invasively from body surface potentials using electrocardiographic imaging (ECGi). The algorithm is based on cardiac activation maps and assumes either a linear or quadratic wavefront shape. The proposed methodology was performed on computed and experimental data for epicardial pacing on healthy tissue. The results were compared with reference velocity vector fields and evaluated by analyzing the errors of direction and speed. The outcomes indicate that a linear wavefront is the most suited for cardiac propagation in healthy tissue.
Keywords :
"Biomedical optical imaging","Optical recording","Heart","Electrocardiography","Databases","Lead"
Publisher :
ieee
Conference_Titel :
Computing in Cardiology Conference (CinC), 2015
ISSN :
2325-8861
Print_ISBN :
978-1-5090-0685-4
Electronic_ISBN :
2325-887X
Type :
conf
DOI :
10.1109/CIC.2015.7408627
Filename :
7408627
Link To Document :
بازگشت