Iowa Heart Center, Des Moines, IA, USA.
Europace. 2011 Aug;13(8):1188-94. doi: 10.1093/europace/eur112. Epub 2011 Apr 19.
Ablation of atrioventricular nodal reentry tachycardia (AVNRT) has become treatment of choice because of a high success and low complication rate. Most ablations are successful in utilizing an anatomic approach, but anatomic variance, unusual pathway locations, or multiple pathways may complicate the procedure. Visualization of the slow pathway could expedite ablation success and enhance safety. Our purpose is to determine whether voltage gradient mapping can directly image the slow pathway and aid successful ablation of AVNRT.
Three-dimensional voltage maps of the right atrial septum were constructed from intracardiac recordings obtained by contact mapping. Voltage values were adjusted until low-voltage bridging was observed within the Triangle of Koch. Forty-eight consecutive patients undergoing ablation for inducible AVNRT, underwent voltage gradient mapping. The slow pathway was identified in all 48 patients via its corresponding low-voltage bridge. Ablation of the slow pathway associated low-voltage bridges in 48 patients was successful in preventing reinduction following the first lesion in 43 of 48 patients. Five patients had multiple slow pathways and >1 lesion was required to prevent reinduction. Repeat mapping confirmed the absence of low-voltage connections previously observed in all 48 patients.
Voltage gradient mapping can assist in visualization of the slow pathway. Ablation of the associated low-voltage bridge results in loss of slow pathway function and significant changes in the post-ablation voltage map. We conclude that voltage gradient mapping offers the ability to target the slow pathway for successful ablation.
由于成功率高且并发症发生率低,房室结折返性心动过速(AVNRT)的消融已成为首选治疗方法。大多数消融术采用解剖学方法成功,但解剖学变异、异常途径位置或多条途径可能会使手术复杂化。慢径的可视化可以加快消融的成功并提高安全性。我们的目的是确定电压梯度图是否可以直接显示慢径并有助于 AVNRT 的成功消融。
通过接触映射获得的腔内记录构建了右房间隔的三维电压图。调整电压值,直到在 Koch 三角内观察到低电压桥接。48 例因可诱发性 AVNRT 而行消融术的连续患者接受了电压梯度图检查。通过其相应的低电压桥,在所有 48 例患者中均识别出慢径。消融 48 例患者的慢径相关低电压桥接,在 43 例患者中,第一次消融后可预防再诱发,48 例患者中均确认先前观察到的低电压连接缺失。
电压梯度图可协助可视化慢径。消融相关的低电压桥接会导致慢径功能丧失和消融后电压图的显著变化。我们得出结论,电压梯度图提供了靶向慢径以实现成功消融的能力。