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一种新的肺静脉图方法,用于识别肺静脉窦消融线上的传导间隙。

A new method of a pulmonary vein map to identify a conduction gap on the pulmonary vein antrum ablation line.

机构信息

EP Expert Doctors-Team Tsuchiya, Division of Cardiology, Saiseikai Futsukaichi Hospital, Fukuoka, Japan.

出版信息

Circ J. 2011;75(10):2363-71. doi: 10.1253/circj.cj-11-0198. Epub 2011 Jul 28.

Abstract

BACKGROUND

Electrical isolation of the pulmonary veins (PV) is crucial for atrial fibrillation (AF) ablation. Conduction gaps on the circumferential PV antrum ablation (CPVA) line sometimes remain, which are sometimes difficult to identify.

METHODS AND RESULTS

CPVA of the ipsilateral superior and inferior PVs was performed during sinus rhythm or coronary sinus pacing using the NavX system in 22 AF patients, in whom 1 round of CPVA failed to disconnect 26 individual PVs (30%) in 18 patients. In these patients, a local activation map within the CPVA line (PV map) was created by a 20-pole circular mapping catheter with the use of the NavX, with 71 ± 37 sampling points per PV antrum. The conduction gap was defined as a site on the CPVA line, from which the activation proceeded toward the entire PV. The mapped PV antra were comprised of the left superior PV in 11, right superior PV in 10, left inferior PV in 3, right inferior PV in 1 and a left common PV in 1 PV(s). The conduction gaps were identified at 1.4 ± 0.7 sites per PV antrum, with an electrogram amplitude of 0.8 ± 0.7 mV. A point ablation at the gap completely isolated 24 out of 26 PV antra (92%) with 1.9 ± 1.3 applications.

CONCLUSIONS

The PV map was useful for quickly and accurately identifying the conduction gap(s) after 1 round of CPVA.

摘要

背景

肺静脉(PV)电隔离对于房颤(AF)消融至关重要。环肺静脉消融(CPVA)线上有时会遗留传导间隙,有时难以识别。

方法和结果

在窦性节律或冠状窦起搏下,使用 NavX 系统对 22 例 AF 患者进行同侧上下 PV 的 CPVA,其中 18 例患者 1 轮 CPVA 未能断开 26 个单独的 PV(30%)。在这些患者中,使用 NavX 通过 20 极环形标测导管创建 CPVA 线上的局部激活图(PV 图),每个 PV 窦有 71 ± 37 个采样点。传导间隙定义为 CPVA 线上的一个部位,从该部位激活向整个 PV 进行。标测的 PV 窦包括 11 个左上 PV、10 个右上 PV、3 个左下 PV、1 个右下 PV 和 1 个左共 PV。每个 PV 窦有 1.4 ± 0.7 个传导间隙,电信号幅度为 0.8 ± 0.7 mV。间隙处的点消融完全隔离了 26 个 PV 窦中的 24 个(92%),应用次数为 1.9 ± 1.3 次。

结论

在 1 轮 CPVA 后,PV 图可快速准确地识别传导间隙。

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