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通过模拟旁路折返对完整犬逆行P波进行体表标测。

Body surface mapping of retrograde P waves in the intact dog by simulation of accessory pathway re-entry.

作者信息

Pintér A, Molin F, Savard P, Tremblay G, Sierra G, Nadeau R

机构信息

Hôpital du Sacré-C ur, Montréal, Canada.

出版信息

Can J Cardiol. 2000 Feb;16(2):175-82.

Abstract

OBJECTIVES

To investigate a noninvasive technique to localize the atrial insertion site of concealed accessory pathways based on the analysis of body surface potential maps (BSPMs) of retrograde P waves in dogs with simulated retrograde pathways.

ANIMALS AND METHODS

Orthodromic tachycardias were simulated by atrial stimulations at eight different sites around the atrioventricular ring with long (250 ms and 300 ms) and short (100 ms and 130 ms) coupling times in 14 anesthetized dogs to have P waves well separated from the T wave or occurring during the T wave, respectively. The distance between pacing sites was 15 to 40 mm in group 1 (eight dogs) and 2 mm (in the right atrial free wall region) in group 2 (six dogs). Beats were signal-averaged during 30 s and BSPMs were constructed from 63 unipolar leads.

RESULTS

The P wave BSPM pattern for any specific stimulation site was stable and reproducible (correlation coefficient greater than 0.98), and similar in different dogs at long coupling interval stimulations. The thoracic distribution of negative potentials and position of the potential minimum clearly identified the stimulation site when long coupling time stimulations were used. The spatial resolution of the technique as determined by comparison of correlation coefficients in group 2 was 6 mm (P<0.05). When short coupling time stimulations were used (fast tachycardia simulation), the T wave masked the P wave potential distribution in four of eight dogs, but the retrograde P wave map could still be accurately extracted by subtracting a straight line joining the onset and offset of the P wave in 24 of 28 (86%) of the tachycardia simulation sites in these four dogs.

CONCLUSIONS

The BSPM patterns of simulated retrograde P waves are specifically related to the site of atrial stimulation. Although the T wave altered these BSPM patterns, a subtraction technique recovered the pattern of the retrograde P wave in 93% of all simulated orthodromic tachycardias. The spatial resolution of the retrograde P wave BSPM method was 6 mm.

摘要

目的

基于对模拟逆向传导路径犬类体表电位图(BSPM)中逆行P波的分析,研究一种用于定位隐匿性旁路心房插入部位的非侵入性技术。

动物与方法

对14只麻醉犬进行房室环周围8个不同部位的心房刺激,设置长(250毫秒和300毫秒)、短(100毫秒和130毫秒)两种耦合时间,分别模拟顺向性心动过速,使P波与T波良好分离或在T波期间出现。第1组(8只犬)起搏部位间距为15至40毫米,第2组(6只犬)起搏部位间距为2毫米(右心房游离壁区域)。在30秒内对搏动进行信号平均,并从63个单极导联构建体表电位图。

结果

任何特定刺激部位的P波体表电位图模式稳定且可重复(相关系数大于0.98),在长耦合间期刺激时不同犬类间相似。使用长耦合时间刺激时,负电位的胸部分布和电位最低点位置明确了刺激部位。通过第2组相关系数比较确定该技术的空间分辨率为6毫米(P<0.05)。使用短耦合时间刺激(快速心动过速模拟)时,8只犬中有4只T波掩盖了P波电位分布,但在这4只犬的28个(86%)心动过速模拟部位中的24个,通过减去连接P波起始和结束的直线仍可准确提取逆行P波图。

结论

模拟逆行P波的体表电位图模式与心房刺激部位有特定关联。尽管T波改变了这些体表电位图模式,但在所有模拟顺向性心动过速中,一种减法技术在93%的情况下恢复了逆行P波模式。逆行P波体表电位图方法的空间分辨率为6毫米。

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