Stridh Martin, Husser Daniela, Bollmann Andreas, Sörnmo Leif
Department of Electrical and Information Technology and Center of Integrative Electrocardiology, Lund University, Lund 22100, Sweden.
IEEE Trans Biomed Eng. 2009 Apr;56(4):1081-9. doi: 10.1109/TBME.2008.2006624. Epub 2008 Oct 31.
A novel method for characterization of f-wave morphology in atrial fibrillation (AF) is presented. The method decomposes atrial activity into fundamental and harmonic components, dividing each component into short blocks for which the amplitudes, frequencies, and phases are estimated. The phase delays between the fundamental and each of the harmonics, here referred to as harmonic phase relationships, are used as features of f-wave morphology. The estimated waves are clustered into typical morphologic patterns. The performance of the method is illustrated by simulated signals, ECG signals recorded from 36 patients with organized AF, and an ECG signal recorded during drug loading with flecainide. The results show that the method can distinguish a wide variety of f-wave morphologies, and that typical morphologies can be established for further analysis of AF.
提出了一种用于表征心房颤动(AF)中f波形态的新方法。该方法将心房活动分解为基波和谐波分量,将每个分量划分为短块,估计其幅度、频率和相位。基波与每个谐波之间的相位延迟,这里称为谐波相位关系,用作f波形态的特征。估计的波形被聚类为典型的形态模式。通过模拟信号、从36例有组织AF患者记录的心电图信号以及在使用氟卡尼进行药物负荷期间记录的心电图信号来说明该方法的性能。结果表明,该方法可以区分多种f波形态,并且可以建立典型形态以进一步分析AF。