CEEMDAN-IMFx-PCA-CICA: an improved single-channel blind source separation in multimedia environment for motion artifact reduction in ambulatory ECG

被引:0
作者
Fan Xiong
Dongyi Chen
机构
[1] University of Electronic Science and Technology of China,School of Automation Engineering
来源
Complex & Intelligent Systems | 2023年 / 9卷
关键词
Empirical mode decomposition; Motion artifact; Single-channel blind source separation; Wearable ECG monitoring system;
D O I
暂无
中图分类号
学科分类号
摘要
Long-term monitoring of ECG via wearable monitoring systems has already been widely adopted to detect and prevent heart diseases. However, one of the main issues faced by wearable ECG monitoring systems is that motion artifacts significantly affect the systems' stability and reliability. Therefore, motion artifact reduction is a very challenging task in filtering and processing physiological signals. Based on the existing algorithms and ECG prior knowledge, in this paper, we propose an algorithm, CEEMDAN-IMFx-PCA-CICA, for motion artifact reduction in ambulatory ECG signals using single-channel blind source separation technique. Our algorithm first utilizes CEEMDAN to decompose the mixed signals into IMFs (intrinsic mode function) containing different source signal features, thereby forming new multi-dimensional signals. Using the correlation between IMFx (IMF component with the most ECG features) and each IMF, and PCA are then applied to reduce the dimension of each IMF. Finally, the blind separation of the source ECG signals is achieved by using CICA with IMFx as the constraint reference component. The results of our experiments indicate that our algorithm outperformed CEEMDAN-CICA, CEEMDAN-PCA-CICA, and improved CEEMDAN-PCA-CICA. Besides, the number of iterations of the CICA is significantly reduced; the separated source signal is better; the obtained result is stable. Furthermore, the separated ECG signal has a higher correlation with the source ECG signal and a lower RRMSE, especially in the case of high noise-to-signal ratios.
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页码:2555 / 2569
页数:14
相关论文
共 145 条
[1]  
Weder M(2015)Embroidered electrode with silver/titanium coating for long-term ECG monitoring Sensors 15 1750-1759
[2]  
Hegemann D(1977)Minimizing electrode motion artifact by skin abrasion IEEE Trans Biomed Eng 24 134-139
[3]  
Amberg M(2014)A configurable and low power mixed signal SoC for portable ECG monitoring applications IEEE Trans Biomed Circuits Syst 8 257-267
[4]  
Hess M(2012)A 160 biopotential acquisition IC with fully integrated IA and motion artifact suppression IEEE Trans Biomed Circuits Syst 6 552-561
[5]  
Boesel LF(2014)Impedance spectroscopy of change in skin-electrode impedance induced by motion Biomed Eng Online 13 149-60
[6]  
Abächerli R(2013)Motion artifact removal algorithm by ICA for e-bra: a women ECG measurement system Nanosens Biosens Info-Tech Sens Syst 8691 86910A-26
[7]  
Meyer VR(2013)RSPCA-based detection and quantification of motion artifacts in ECG signals J Med Eng Technol 37 56-106
[8]  
Rossi RM(2013)Effect of pressure and padding on motion artifact of textile electrodes Biomed Eng Online 12 26-265
[9]  
Tam HW(2008)Adaptive motion artifacts reduction using 3-axis accelerometer in E-textile ECG measurement system J Med Syst 32 101-267
[10]  
Webster JG(2011)Reduction of motion artifacts in electrocardiogram monitoring using an optical sensor Biomed Instrum Technol 7 1000204-794