Automated pace-mapping for identification of cardiac arrhythmic conductive pathways and foci
Ventricular tachycardia signals are induced in a living subject. Pace-mapped signals are then obtained from multiple points within the ventricle, and automatically compared numerically with the induced signals. Recognition of a high degree of cross correlation between the induced signals and one or more of the pace-mapped signals identifies arrhythmogenic foci or pathways, which may then be ablated, so that the arrhythmia becomes non-inducible.
1. An apparatus for locating an arrhythmogenic abnormality in a heart of a living subject, comprising:
a mapping catheter operative for stimulating said heart at multiple locations endocardially or epicardially; and detecting respective sets of pace-mapped electrocardiographic signals at respective locations of said catheter, said catheter having a position sensor;
a position processor programmed to receive position signals from said position sensor and operative for determining said respective locations of said catheter; and wherein said mapping catheter is used for creating a functional map;
a display for displaying said functional map;
a pattern processor, programmed for detecting an abnormal electrocardiographic signal pattern in said sets of pace-mapped electrocardiographic signals indicative of an arrhythmogenic focus or pathway and marking said abnormal electrocardiographic signal pattern on said functional map on said display;
memorizing said pattern; and
subsequently automatically identifying a new instance of said pattern and marking said new instance of said pattern on said functional map on said display when recording new electrocardiographic signals.
2. The apparatus according to claim 1 , wherein said new electrocardiographic signals are obtained from an implanted intracardiac device and is transmitted to an analysis location in realtime.