Luo Guo, Yang Zhi
Nanfang College of Sun Yat-sen University, Guangzhou, China.
Biomed Eng Lett. 2018 Apr 21;8(3):259-266. doi: 10.1007/s13534-018-0064-5. eCollection 2018 Aug.
In this paper, we present and investigate a special kind of stationary wavelet algorithm using "inverse" hard threshold to eliminate the electrocardiogram (ECG) interference included in diaphragmatic electromyographic (EMGdi). Differing from traditional wavelet hard threshold, "inverse" hard threshold is used to shrink strong coefficients of ECG interference and reserve weak coefficients of EMGdi signal. Meanwhile, a novel QRS location algorithm is proposed for the position detection of R wave by using low frequency coefficients in this paper. With the proposed method, raw EMGdi is decomposed by wavelet at fifth scale. Then, each ECG interference threshold is calculated by mean square, which is estimated by wavelet coefficients in the ECG cycle at each level. Finally, ECG interference wavelet coefficients are removed by "inverse" hard threshold, and then the de-noised signal is reconstructed by wavelet coefficients. The simulation and clinical EMGdi de-noising results show that the "inverse" hard threshold investigated in this paper removes the ECG interference in EMGdi availably and reserves its signal characteristics effectively, as compared to wavelet threshold.
在本文中,我们提出并研究了一种使用“逆”硬阈值的特殊平稳小波算法,以消除膈肌肌电图(EMGdi)中包含的心电图(ECG)干扰。与传统小波硬阈值不同,“逆”硬阈值用于收缩ECG干扰的强系数并保留EMGdi信号的弱系数。同时,本文提出了一种新颖的QRS定位算法,通过使用低频系数来检测R波的位置。利用所提出的方法,将原始EMGdi在第五尺度上进行小波分解。然后,通过均方计算每个ECG干扰阈值,该均方由每个级别上ECG周期中的小波系数估计得出。最后,通过“逆”硬阈值去除ECG干扰小波系数,然后用小波系数重建去噪后的信号。仿真和临床EMGdi去噪结果表明,与小波阈值相比,本文研究的“逆”硬阈值能够有效去除EMGdi中的ECG干扰并有效保留其信号特征。