...
首页> 外文期刊>Circulation. Arrhythmia and electrophysiology >Repolarization changes underlying long-term cardiac memory due to right ventricular pacing: noninvasive mapping with electrocardiographic imaging.
【24h】

Repolarization changes underlying long-term cardiac memory due to right ventricular pacing: noninvasive mapping with electrocardiographic imaging.

机译:由于右心室起搏,复极改变了长期心脏记忆的基础:无创性心电图成像。

获取原文
获取原文并翻译 | 示例

摘要

Background- Cardiac memory refers to the observation that altered cardiac electrical activation results in repolarization changes that persist after the restoration of a normal activation pattern. Animal studies, however, have yielded disparate conclusions, both regarding the spatial pattern of repolarization changes in cardiac memory and the underlying mechanisms. The present study was undertaken to produce 3-dimensional images of the repolarization changes underlying long-term cardiac memory in humans. Methods and Results- Nine adult subjects with structurally normal hearts and dual-chamber pacemakers were enrolled in the study. Noninvasive electrocardiographic imaging was used before and after 1 month of ventricular pacing to reconstruct epicardial activation and repolarization patterns. Eight subjects exhibited cardiac memory in response to ventricular pacing. In all subjects, ventricular pacing resulted in a prolongation of the activation recovery interval (a surrogate for action potential duration) in the region close to the site of pacemaker-induced activation from 228.4±7.6 ms during sinus rhythm to 328.3±6.2 ms during cardiac memory. As a consequence, increases are observed in both apical-basal and right-left ventricular gradients of repolarization, resulting in a significant increase in the dispersion of repolarization. Conclusions- These results demonstrate that electrical remodeling in response to ventricular pacing in human subjects results in action potential prolongation near the site of abnormal activation and a marked dispersion of repolarization. This dispersion of repolarization is potentially arrhythmogenic and, intriguingly, was less evident during continuous right ventricular pacing, suggesting the novel possibility that continuous right ventricular pacing at least partially suppresses pacemaker-induced cardiac memory.
机译:背景-心脏记忆是指观察到的心脏电激活改变会导致复极化变化,这种变化在恢复正常激活模式后仍然存在。然而,动物研究已经得出了完全不同的结论,既涉及心脏记忆中复极变化的空间模式及其潜在机制。进行本研究以产生人类长期心脏记忆背后的复极变化的三维图像。方法和结果-纳入9名具有正常心脏结构和双室起搏器的成年受试者。心室起搏前后1个月使用无创心电图成像,以重建心外膜激活和复极模式。八名受试者表现出对心室起搏的心脏记忆。在所有受试者中,心室起搏都会将起搏器诱发的激活部位附近的区域的激活恢复间隔(动作电位持续时间的替代)从窦性心律期间的228.4±7.6 ms延长到心脏期间的328.3±6.2 ms记忆。结果,在心尖-基部和右心室-左心室的复极化中都观察到了增加,导致复极化的分散显着增加。结论-这些结果表明,人类受试者响应心室起搏而进行的电重构导致异常激活部位附近的动作电位延长和复极化的明显分散。复极的这种分散可能会导致心律失常,并且有趣的是,在连续右心室起搏过程中这种现象不明显,这提示了连续右心室起搏至少部分抑制起搏器诱发的心脏记忆的新可能性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号