Marenco John P, Nakagawa Hiroshi, Yang Shawn, MacAdam David, Xu Lucien, He Ding S, Link Mark S, Homoud Munther K, Estes III N A Mark, Wang Paul J
Tufts University School of Medicine, New England Medical Center Hospitals, Boston, MA 02111, USA.
Ann Noninvasive Electrocardiol. 2003 Jan;8(1):55-9. doi: 10.1046/j.1542-474x.2003.08109.x.
Identifying the timing and morphology of an ectopic P wave from the surface electrogram can aid in the diagnosis and localization of atrial arrhythmias. Given the relatively short coupling interval of atrial ectopic beats, the P wave is often obscured by the larger amplitude QRS-T wave complex. A method to uncover such "buried" P waves using a standard 12-lead surface ECG would be clinically useful and could potentially be a noninvasive guide to catheter ablation of focal atrial tachycardia.
We developed an automated computerized program (BARD DUO LAB SYSTEM trade mark ) designed to subtract the QRS-T wave complex from the surface electrogram and uncover a previously obscured P wave. The purpose of the present study was to validate this program. The surface ECG from 21 patients undergoing atrial pacing during electrophysiologic study (group I) and 10 patients with atrial tachycardia (group II) were analyzed and the derived P-wave morphology assessed using correlation waveform analysis (CWA) and visual grading by three reviewers.
The algorithm successfully uncovered the P wave in each surface ECG. For the 21 patients in group I, average CWA comparing the derived P wave with the previous paced P wave was 83%. Average CWA for group II was 82%. Visual grading of the match between derived P waves and paced P waves revealed a 21/21 match in group I patients and a 12/12 match in 9/10 of group II patients.
An ectopic atrial P wave obscured by a coincident QRS-T wave complex can be accurately uncovered using this new algorithm. Addition of this technique to existing methods may improve the diagnosis of atrial arrhythmias and aid in the localization and ablation of ectopic atrial foci.
从体表心电图识别异位P波的时间和形态有助于房性心律失常的诊断和定位。鉴于房性早搏的联律间期相对较短,P波常被振幅较大的QRS-T波群掩盖。利用标准12导联体表心电图揭示此类“隐匿”P波的方法在临床上将很有用,并且可能成为局灶性房性心动过速导管消融的无创指导。
我们开发了一个自动化计算机程序(BARD DUO LAB SYSTEM商标),旨在从体表心电图中减去QRS-T波群并揭示先前隐匿的P波。本研究的目的是验证该程序。分析了21例在电生理研究中接受心房起搏的患者(I组)和10例房性心动过速患者(II组)的体表心电图,并由三位审阅者使用相关波形分析(CWA)和视觉分级评估导出的P波形态。
该算法成功揭示了每份体表心电图中的P波。对于I组的21例患者,将导出的P波与先前起搏的P波进行比较的平均CWA为83%。II组的平均CWA为82%。对导出的P波与起搏的P波之间匹配度的视觉分级显示,I组患者为21/21匹配,II组10例患者中的9例为12/12匹配。
使用这种新算法可以准确揭示被同时出现的QRS-T波群掩盖的异位心房P波。将该技术添加到现有方法中可能会改善房性心律失常的诊断,并有助于异位心房灶的定位和消融。