模仿病灶活动的三尖瓣环型房性心动过速的再发回路波纹图。

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引用次数: 0

摘要

一名患有高血压心脏病的 70 岁男子因持续性心房颤动接受了导管消融术。在完成肺静脉隔离后,心房爆发起搏诱发了环形房性心动过速(AT)。超速起搏表现为持续融合,表明 AT 的机制是大回搏。然而,使用 Octaray 导管(均为加州尔湾市 Biosense Webster 公司生产)绘制的 CARTO3 激活图显示出离心扩散,最早的激活点位于三尖瓣环的 4 点钟位置。与此相反,波纹图显示了一个清晰的再折返回路,其峡部位于三尖瓣环的 4-6 点钟位置。这些区域的局部电图同时记录了收缩和舒张电位,大远场电位的错误标注导致了这一差异结果。处理低幅复杂的分馏电图仍然是绘制精确激活图谱的一项挑战。波纹图,尤其是与 Octaray 导管结合使用时,能有效地动态显示所有这些电图,并准确地划分出再跳回路。
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Ripple map delineation of the reentrant circuit in a tricuspid annular atrial tachycardia mimicking focal activity

A 70-year-old man with hypertensive heart disease underwent catheter ablation of persistent atrial fibrillation. After completing the pulmonary vein isolation, atrial burst pacing induced an annular atrial tachycardia (AT). Overdrive pacing exhibited constant fusion, indicating a macroreentrant mechanism of the AT. However, the CARTO3 activation map created using the Octaray catheter (both Biosense Webster, Irvine, CA) exhibited a centrifugal spread with the earliest activation site at the 4 o'clock position of the tricuspid annulus. In contrast, the Ripple map revealed a clear reentrant circuit with its isthmus located at the 4–6 o'clock position of the tricuspid annulus. The local electrograms in these areas recorded systolic and diastolic potentials simultaneously, and the misannotation of the large far-field potentials caused this discrepant result. Handling low-amplitude complex fractionated electrograms remains a challenge in creating a precise activation mapping. The Ripple map, especially when combined with the Octaray catheter, was effective in dynamically visualizing all these electrograms and accurately delineating the reentrant circuit.

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来源期刊
Indian Pacing and Electrophysiology Journal
Indian Pacing and Electrophysiology Journal Medicine-Cardiology and Cardiovascular Medicine
CiteScore
2.20
自引率
0.00%
发文量
91
审稿时长
61 days
期刊介绍: Indian Pacing and Electrophysiology Journal is a peer reviewed online journal devoted to cardiac pacing and electrophysiology. Editorial Advisory Board includes eminent personalities in the field of cardiac pacing and electrophysiology from Asia, Australia, Europe and North America.
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