ECG Signal Denoising Using an Improved Hybrid DWT-ADTF Approach.

IF 1.6 4区 医学 Q3 CARDIAC & CARDIOVASCULAR SYSTEMS Cardiovascular Engineering and Technology Pub Date : 2024-02-01 Epub Date: 2023-11-20 DOI:10.1007/s13239-023-00698-8
Wissam Jenkal, Rachid Latif, Mostafa Laaboubi
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Abstract

Purpose: The electrocardiogram signal (ECG) presents a fundamental source of information to consider for the diagnosis of a heart condition. Given its low-frequency features, this signal is quite susceptible to various noise and interference sources. This paper presents an improved hybrid approach to ECG signal denoising based on the DWT and the ADTF methods.

Methods: The proposed improvements consist of integrating an adaptive [Formula: see text] parameter into the ADTF approach, combining a soft thresholding ADTF-based process with the DWT details, along with employing the mean filter to handle the baseline wandering noise. Furthermore, the proposed approach incorporates several denoising measures based on various proposed noise features, which have also been introduced in this approach. Several real noises collected from the Noise Stress Test Database (NSTDB), as well as several synthetic noises at different SNR levels, are proposed to ensure a thorough assessment of the proposed method's performance.

Results: The evaluation focuses on the SN Rimp, PRD, and MSE parameters, as well as the SINAD parameter as a diagnostic distortion measurement. Furthermore, a time complexity evaluation is proposed. The proposed approach demonstrated promising results compared to a recent hybridization of the DWT and ADTF methods, as well as recently published ECG signal denoising-based approaches in various real and synthetic noise cases using different statistical evaluation metrics.

Conclusion: In the vast majority of the study cases, the proposed approach outperforms the compared methods in terms of statistical results for real and synthetic noises. Furthermore, compared to these methods, it provides a fairly low time complexity. This is consistent with the ambition of embedding this approach in low-cost hardware architectures.

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基于改进混合DWT-ADTF方法的心电信号去噪。
目的:心电图信号(ECG)是心脏疾病诊断的基本信息来源。鉴于其低频特性,该信号很容易受到各种噪声和干扰源的影响。提出了一种基于DWT和ADTF方法的改进的心电信号去噪混合方法。方法:提出的改进包括将自适应[公式:见文本]参数集成到ADTF方法中,将基于软阈值ADTF的过程与DWT细节相结合,以及使用均值滤波器处理基线漫游噪声。此外,该方法还结合了几种基于各种噪声特征的去噪措施,这些特征也在该方法中进行了介绍。提出了从噪声压力测试数据库(NSTDB)中收集的几个真实噪声,以及不同信噪比水平下的几个合成噪声,以确保对所提出方法的性能进行全面评估。结果:评估的重点是SN Rimp, PRD和MSE参数,以及SINAD参数作为诊断畸变测量。在此基础上,提出了一种时间复杂度评价方法。与最近的DWT和ADTF方法的混合方法以及最近发表的基于心电信号去噪的方法相比,该方法在使用不同统计评估指标的各种真实和合成噪声情况下显示出令人满意的结果。结论:在绝大多数研究案例中,所提出的方法在真实噪声和合成噪声的统计结果方面优于所比较的方法。此外,与这些方法相比,它提供了相当低的时间复杂度。这与将这种方法嵌入低成本硬件架构的目标是一致的。
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来源期刊
Cardiovascular Engineering and Technology
Cardiovascular Engineering and Technology Engineering-Biomedical Engineering
CiteScore
4.00
自引率
0.00%
发文量
51
期刊介绍: Cardiovascular Engineering and Technology is a journal publishing the spectrum of basic to translational research in all aspects of cardiovascular physiology and medical treatment. It is the forum for academic and industrial investigators to disseminate research that utilizes engineering principles and methods to advance fundamental knowledge and technological solutions related to the cardiovascular system. Manuscripts spanning from subcellular to systems level topics are invited, including but not limited to implantable medical devices, hemodynamics and tissue biomechanics, functional imaging, surgical devices, electrophysiology, tissue engineering and regenerative medicine, diagnostic instruments, transport and delivery of biologics, and sensors. In addition to manuscripts describing the original publication of research, manuscripts reviewing developments in these topics or their state-of-art are also invited.
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