DocumentCode :
1703172
Title :
A graph theoretical framework for quantifying epicardial activation wavefronts during ventricular fibrillation
Author :
Rogers, JM ; Usui, M. ; Ideker, RE ; Smith, WM
Author_Institution :
Alabama Univ., Birmingham, AL, USA
fYear :
1996
Firstpage :
653
Lastpage :
656
Abstract :
We present a new quantitative framework for analyzing epicardial activation patterns recorded by high-resolution mapping during ventricular fibrillation (VF). Individual activation wavefronts are isolated from one another using an algorithm that groups adjacent active electrogram samples (dV/dt<-0.5 V/s). The timing and the interactions between wavefronts are summarized in the form of a directed graph which is then analyzed to extract quantitative measures of the activation pattern, for example, the number of wavefronts, the number of wavefront fractionations and collisions, the mean size and area swept out by wavefronts, and the incidence of reentry. To evaluate this methodology, we analyzed electrically induced VF in 6 pigs during the first 20 s post-induction. The results indicate a recovery of organization consistent with previous findings. The incidence of reentrant circuits was low (5%).
Keywords :
directed graphs; electrocardiography; medical signal processing; signal resolution; adjacent active electrogram samples; directed graph; electrically induced VF; epicardial activation patterns; epicardial activation wavefronts; graph theoretical framework; high-resolution mapping; incidence of reentry; pigs; post-induction; quantification; quantitative framework; reentrant circuits; timing; ventricular fibrillation; wavefront collisions; wavefront fractionations; Area measurement; Circuits; Data analysis; Electrodes; Fibrillation; Fractionation; Pattern analysis; Size measurement; Timing; Visualization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computers in Cardiology, 1996
Conference_Location :
Indianapolis, IN, USA
ISSN :
0276-6547
Print_ISBN :
0-7803-3710-7
Type :
conf
DOI :
10.1109/CIC.1996.542621
Filename :
542621
Link To Document :
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