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首页> 外文期刊>Signal Processing, IEEE Transactions on >Two-Dimensional Warping for One-Dimensional Signals—Conceptual Framework and Application to ECG Processing
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Two-Dimensional Warping for One-Dimensional Signals—Conceptual Framework and Application to ECG Processing

机译:一维信号的二维扭曲—概念框架及其在心电图处理中的应用

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摘要

We propose a novel method for evaluating the similarity between two 1d patterns. Our method, referred to as two-dimensional signal warping (2DSW), extends the basic ideas of known warping techniques such as dynamic time warping and correlation optimized warping. By employing two-dimensional piecewise stretching 2DSW is able to take into account inhomogeneous variations of shapes. We apply 2DSW to ECG recordings to extract beat-to-beat variability in QT intervals (QTV) that is indicative of ventricular repolarization lability and typically characterised by a low signal-to-noise ratio. Simulation studies show high robustness of our approach in presence of typical ECG artefacts. Comparison of short-term ECG recorded in normal subjects versus patients with myocardial infarction (MI) shows significantly increased QTV in patients (normal subject 2.36 ms $pm$ 1.05 ms vs. MI patients 5.94 ms $pm$ 5.23 ms (mean $pm$ std), $p<0.001$). Evaluation of a standard QT database shows that 2DSW allows highly accurate tracking of QRS-onset and T-end. In conclusion, the two-dimensional warping approach introduced here is able to detect subtle changes in noisy quasi-periodic biomedical signals such as ECG and may have diagnostic potential for measuring repolarization lability in MI patients. In more general terms, the proposed method provides a novel means for morphological characterization of 1d signals.
机译:我们提出了一种新颖的方法来评估两个1d模式之间的相似性。我们的方法称为二维信号扭曲(2DSW),扩展了已知扭曲技术的基本思想,例如动态时间扭曲和相关优化扭曲。通过采用二维分段拉伸,2DSW可以考虑形状的不均匀变化。我们将2DSW应用于ECG记录,以提取QT间隔(QTV)的心跳变化,这表明心室复极化不稳定性,并且通常以低信噪比为特征。仿真研究表明,在存在典型ECG伪像的情况下,我们的方法具有很高的鲁棒性。正常受试者与心肌梗死(MI)患者记录的短期ECG的比较显示,患者的QTV显着增加(正常受试者2.36 ms $ pm $ 1.05 ms vs. MI患者5.94 ms $ pm $ 5.23 ms(平均 $ pm $ std), $ p <0.001 $ )。对标准QT数据库的评估表明,2DSW可以高度精确地跟踪QRS发作和T末期。总之,这里介绍的二维翘曲方法能够检测出诸如ECG之类的准周期生物医学信号中的细微变化,并且可能具有测量MI患者复极化不稳定性的诊断潜力。从广义上讲,该方法为一维信号的形态表征提供了一种新颖的方法。

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