Chinushi M, Aizawa Y, Kusano Y, Kitazawa H, Miyajima T, Shibata A
First Department of Internal Medicine, Niigata University School of Medicine, Japan.
Jpn Heart J. 1993 Mar;34(2):227-34. doi: 10.1536/ihj.34.227.
In a patient with sustained ventricular tachycardia (VT), we observed two different conduction times through the reentry circuit at the critical paced cycle length. The cycle length of the VT was 420 msec and overdrive pacing initially performed at a paced cycle length of 400 msec and repeated at decrements of 10 msec until the VT was interrupted at a paced cycle length of 320 msec. During rapid pacing, constant fusion and progressive fusion were confirmed. The first post-pacing return cycle was identical to each paced cycle length. The conduction time between the stimulus artifact and the orthodromically captured electrogram at the left ventricle was constant at 350 msec in each paced cycle length. However, only at a pacing cycle length of 360 msec two conduction times were alternatively observed, one of 350 msec and the other of 365 msec. When the conduction time changed from 350 msec to 365 msec, morphological alternation both in the surface QRS complex and in the orthodromically captured electrogram was evident. Dual slow pathways or a single slow pathway with plural exits from the reentry circuit is a likely mechanism of the alternation.
在一名持续性室性心动过速(VT)患者中,我们观察到在临界起搏周期长度时通过折返环路的两种不同传导时间。VT的周期长度为420毫秒,超速起搏最初以400毫秒的起搏周期长度进行,并以10毫秒的递减重复进行,直到在320毫秒的起搏周期长度时VT被中断。在快速起搏期间,证实了恒定融合和进行性融合。起搏后的第一个返回周期与每个起搏周期长度相同。在每个起搏周期长度下,刺激伪迹与左心室顺向激动电图之间的传导时间恒定为350毫秒。然而,仅在360毫秒的起搏周期长度时,交替观察到两种传导时间,一种为350毫秒,另一种为365毫秒。当传导时间从350毫秒变为365毫秒时,体表QRS波群和顺向激动电图的形态交替明显。双慢径路或折返环路有多个出口的单个慢径路可能是交替现象的机制。