基于相量变换的P波自动圈定优化方法

Jiayi Yan, Hanshuang Xie, Huaiyu Zhu, Yamin Liu, Fan Wu, Yun Pan
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摘要

准确的P波检测对心律失常的诊断具有重要意义,如P波缺失或P波持续时间对房颤和其他心房心律失常的诊断具有重要意义。相量变换是一种有效的心电基准点圈定方法。它将每个ECG样本映射到相量中,以增强轻微的变化并保留形态和幅度特征。本文从信号去噪、波定位、候选点检测、最优点选择四个方面对基于相量变换的P波自动圈定方法进行了优化。在我们的实验中,搜索窗口的长度和相量变换的程度是通过各种试验确定的。特别是,除了相量信号的过零点外,还获得了相量信号与原始心电信号的交点作为候选点,这对圈定结果贡献最大。为了验证,我们采用了QT数据库,其中包含了105条两导联记录的3194条P波注释。结果表明,P波起始点和偏移点检测的F1分数分别为94.67%和93.56%,检测错误率(DERs)分别为10.80%和13.06%。在容差为75 ms时,P峰检测的f1评分和DER分别为95.33%和9.46%,优于其他重复性工作及其组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Optimized Automatic P Wave Delineation Method Based on Phasor Transform
Accurate P wave detection is important for arrhythmia diagnosis, e.g. P wave absence or P duration for atrial fibrillation diagnosis and other atrial arrhythmias. Phasor transform is an effective method for ECG fiducial points delineation. It maps each ECG sample into a phasor to enhance slight variations and preserves morphology and magnitude characteristics. In this paper, we optimized the automatic P wave delineation method based on phasor transform in four aspects, i.e., signal denoising, wave localization, candidate points detection, and optimal points selection. In our experiments, the length of the search window and the degree of phasor transform were established through various trials. Especially, along with zero-crossing points of the phasor signal, intersections of the phasor signal and the original ECG signal are obtained as candidates, which make the most contribution to delineation results. For validation, the QT Database with 3194 P wave annotations from 105 records of two leads is adopted. As a result, we reached F1 scores of 94.67% and 93.56% with detection error rates (DERs) of 10.80% and 13.06% for P wave onset and offset points detection, respectively. The F 1 score and DER for P peak detection under a tolerance of 75 ms were 95.33% and 9.46%, respectively, which outperforms other reproducible works and their combinations.
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