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首页> 外文期刊>Journal of cardiovascular electrophysiology >Novel concept of atrial tachyarrhythmias originating from the superior vena cava: insight from noncontact mapping.
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Novel concept of atrial tachyarrhythmias originating from the superior vena cava: insight from noncontact mapping.

机译:源于上腔静脉的房性快速性心律失常的新概念:非接触性测绘的见解。

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INTRODUCTION: Information about the activation patterns inside the superior vena cava (SVC) and entry and exit sites at the SVC-right atrial (RA) junction during SVC tachyarrhythmia is limited. METHODS AND RESULTS: A detailed characterization of electrophysiologic mechanisms and ablation strategies was performed using a noncontact three-dimensional mapping system in two cases of SVC tachycardia. The first case demonstrated SVC tachycardia originating from an ectopic focus inside the SVC, with sustained depolarization and conduction to the atrium. Entry and exit sites across the SVC-RA junction were located very close to each other. The second case demonstrated two different reentrant circuits, one inside the SVC and the other into and out of the SVC-RA junction. The entry and exit sites were located far away from each other. CONCLUSION: Noncontact mapping may help to reveal the mechanism of SVC tachyarrhythmias and to locate entry and exit sites at the SVC-RA junction as a guide for catheter ablation.
机译:简介:关于SVC快速性心律失常期间上腔静脉(SVC)内的激活模式以及SVC右心房(RA)交界处的进入和退出部位的信息有限。方法和结果:在两例SVC心动过速中,使用非接触式三维测绘系统对电生理机制和消融策略进行了详细描述。第一个病例表明SVC心动过速源自SVC内部的异位灶,并持续去极化并传导至心房。 SVC-RA交界处的入口和出口站点彼此非常靠近。第二种情况展示了两个不同的可重入电路,一个进入SVC内部,另一个进入和退出SVC-RA结。入口和出口站点彼此远离。结论:非接触式映射可能有助于揭示SVC快速性心律失常的机制,并定位SVC-RA交界处的入口和出口部位,作为导管消融的指南。

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