Title of article :
Shannon’s Energy Based Algorithm in ECG Signal Processing
Author/Authors :
Beyramienanlou, Hamed Department of Electronic Engineering - Islamic Azad University - Tabriz Branch - Tabriz, Iran , Lotfivand, Nasser Department of Electronic Engineering - Islamic Azad University - Tabriz Branch - Tabriz, Iran
Abstract :
Physikalisch-Technische Bundesanstalt (PTB) database is electrocardiograms (ECGs) set from healthy volunteers and patients with
different heart diseases. PTB is provided for research and teaching purposes by National Metrology Institute of Germany. The
analysis method of complex QRS in ECG signals for diagnosis of heart disease is extremely important. In this article, a method on
Shannon energy (SE) in order to detect QRS complex in 12 leads of ECG signal is provided. At first, this algorithm computes the
Shannon energy (SE) and then makes an envelope of Shannon energy (SE) by using the defined threshold. Then, the signal peaks
are determined. The efficiency of the algorithm is tested on 70 cases. Of all 12 standard leads, ECG signals include 840 leads of the
PTB Diagnostic ECG Database (PTBDB). The algorithm shows that the Shannon energy (SE) sensitivity is equal to 99.924%, the
detection error rate (DER) is equal to 0.155%, Positive Predictivity (+P) is equal to 99.922%, and Classification Accuracy (Acc) is
equal to 99.846%.
Keywords :
Shannon’s , Algorithm , ECG , PTB
Journal title :
Computational and Mathematical Methods in Medicine