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Estimation and Removal of T Wave Component in Atrial Flutter ECG to Aid Non-Invasive Localization of Ectopic Source

机译:心房颤动心电图中T波分量的估计和去除,以辅助异位源的非侵入性定位

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The use of the ECG as a diagnostic tool for analyzing supraventricular arrhythmia avoids invasive procedures prior to clinical intervention. Analysis of atrial activity may indicate properties of the underlying arrhythmia. In atrial flutter, there is a high synchroneity between atrial and ventricular activity. Statistical and classical separation methods are unlikely to work due to this dependency, impeding the extraction of the atrial activity. We propose a method using least square polynomial estimation to model the T wave component and subtract it from overlapped f-waves. After pre-processing, an initial f-wave was carefully segmented, representing pure atrial activity. Subsequent f-waves were detected and corrected by subtracting the T wave, modeled as a sum of weighted polynomials which minimize the least square error. To evaluate the method, vectorcardiographic loops were obtained using the inverse Dower transform. Loop parameters were obtained from eigenvectors and eigenvalues issued from principal component analysis. Using degree 3 polynomials allowed recovery of overlapped f-waves with significant improvement in 3 of 4 parameters (p < 0.05). f-waves overlapped by T waves can thus successfully be recovered using this method.
机译:ECG的使用作为分析Supranculary心律失常的诊断工具,避免了临床干预之前的侵入性程序。心房活动分析可能表明潜在的心律失常的性质。在心房颤动中,心房和心室活动之间存在高同步性。由于这种依赖性,统计和经典的分离方法不太可能起作用,阻碍了心房活动的提取。我们提出了一种使用最小二乘多项式估计来模拟T波分量并从重叠的F波减去的方法。在预处理后,仔细分割初始F波,代表纯心房活动。通过减去T波来检测和校正后续的F波,以作为加权多项式的和最小化最小二乘误差的量而被建模。为了评估方法,使用逆寡糖变换获得向量卡达科循环。从主要成分分析发出的特征向量和特征值获得环路参数。使用3度多项式允许恢复重叠的F波,其中3个参数中的3个具有显着改善(P <0.05)。因此,可以使用该方法成功地恢复由T波重叠的F波。

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