Title :
Adaptive wavelet based identification and extraction of PQRST combination in randomly stretching ECG sequence
Author :
Nair, T.R.G. ; Geetha, A.P. ; Asharani, M.
Author_Institution :
RIIC, DSI, Bangalore, India
Abstract :
Cardiovascular system study using ECG signals have evolved tremendously in the domain of electronics and signal processing. However, there are certain floating challenges unresolved in the analysis and detection of abnormal performances of cardiovascular system. As the medical field is moving towards more automated and intelligent systems, wrong detection or wrong interpretations of ECG waveform of abnormal conditions can be quite fatal. Since the PQRST signals vary their positions randomly, the process of locating, identifying and classifying each feature can be cumbersome and it is prone to errors. Here we present an automated scheme using adaptive wavelet to detect prominent R-peak with extreme accuracy and algorithmically tag and mark the coexisting peaks P, Q, S, and T with almost same accuracy. The adaptive wavelet approach used in this scheme is capable of detecting R-peak in ECG with 99.99% accuracy along with the rest of the waveforms.
Keywords :
cardiovascular system; electrocardiography; feature extraction; medical signal processing; signal classification; wavelet transforms; ECG signals; ECG waveform; PQRST combination extraction; adaptive wavelet based identification; cardiovascular system study; intelligent systems; medical field; prominent R-peak detection; randomly stretching ECG sequence; signal processing; Continuous wavelet transforms; Databases; Electrocardiography; Noise; Wavelet analysis; Baseline drift removal; CWT; ECG; PQRST signal; adaptive wavelet;
Conference_Titel :
Signal and Information Processing (ChinaSIP), 2013 IEEE China Summit & International Conference on
Conference_Location :
Beijing
DOI :
10.1109/ChinaSIP.2013.6625344