A New Strategy for ECG Baseline Wander Elimination Using Empirical Mode Decomposition

Author:

Shahbakhti Mohammad1,Bagheri Hamed2,Shekarchi Babak2,Mohammadi Somayeh3,Naji Mohsen4

Affiliation:

1. Department of Biomedical Engineering, Mehr Private Hospital, Ahwaz, Iran

2. Radiation and Wave Research Center, Science and Research Branch, AJA University of Medical Science, Tehran, Iran

3. Department of Information Technology, Mehr Private Hospital, Ahwaz, Iran

4. Department of Biomedical Engineering, Islamic Azad University, Dezfulbranch, Dezful, Iran

Abstract

Electrocardiogram (ECG) signals might be affected by various artifacts and noises that have biological and external sources. Baseline wander (BW) is a low-frequency artifact that may be caused by breathing, body movements and loose sensor contact. In this paper, a novel method based on empirical mode decomposition (EMD) for removal of baseline noise from ECG is presented. When compared to other EMD-based methods, the novelty of this research is to reach the optimized number of decomposed levels for ECG BW de-noising using mean power frequency (MPF), while the reduction of processing time is considered. To evaluate the performance of the proposed method, a fifth-order Butterworth high pass filtering (BHPF) with cut-off frequency at 0.5[Formula: see text]Hz and wavelet approach are applied. Three performance indices, signal-to-noise ratio (SNR), mean square error (MSE) and correlation coefficient (CC), between pure and filtered signals have been utilized for qualification of presented techniques. Results suggest that the EMD-based method outperforms the other filtering method.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,General Mathematics

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