Title :
Vector spectral combination of orthogonal leads using the Hartley transform for late potential analysis in Chagas disease
Author :
Bravo, R. ; Escalona, O. ; Mora, F. ; Passariello, G.
Author_Institution :
Simon Bolivar Univ., Caracas, Venezuela
Abstract :
Time domain methods for Late Potentials (LP) analysis are widely used but their results are affected by other cardiac pathologies like those found in chagasic patients with abnormal ventricular conduction. The use of an orthogonal lead vectorspectral combination using the Hartley transform has demonstrated to be a simple frequency domain method for the interpretation of abnormal ventricular potentials. In this work this approach for LP analysis of HRECG records from healthy subjects and chagasic patients is used. These records were taken from the authors´ SEARCH Chagas Database. The vectorspectral magnitude (S) was computed as the sum of the DHT spectra components of the XYZ leads in -300 to -60 Hz and 60 to 300 Hz bands in a fixed 40 ms or dynamic length time window at the end of QRS. Results showed that S is significantly lower in healthy subjects than in chagasic patients with abnormal ECG. The vector spectral analysis is a simple frequency domain method for LP study that could detect positive patients with generalized myocardial disease
Keywords :
Hartley transforms; electrocardiography; medical signal processing; spectral analysis; -300 to 300 Hz; 40 ms; Chagas disease; QRS; SEARCH Chagas Database; XYZ leads; cardiac pathologies; chagasic patients; dynamic length time window; electrodiagnostics; generalized myocardial disease; healthy subjects; late potential analysis; orthogonal leads; positive patients; simple frequency domain method; vector spectral combination; Cardiac disease; Cardiovascular diseases; Delay; Electrocardiography; Frequency domain analysis; Heart; Myocardium; Parasitic diseases; Pathology; Spectral analysis;
Conference_Titel :
Computers in Cardiology 1997
Conference_Location :
Lund
Print_ISBN :
0-7803-4445-6
DOI :
10.1109/CIC.1997.647921