首页> 外文期刊>Acta physiologica >Impaired epicardial activation-repolarization coupling contributes to the proarrhythmic effects of hypokalaemia and dofetilide in guinea pig ventricles
【24h】

Impaired epicardial activation-repolarization coupling contributes to the proarrhythmic effects of hypokalaemia and dofetilide in guinea pig ventricles

机译:心外膜激活-复极耦合受损导致豚鼠心室低血钾和多非利特的心律失常作用

获取原文
获取原文并翻译 | 示例
           

摘要

Aim: Activation-repolarization coupling refers to the inverse relationship between action potential duration and activation time in myocardial regions along the path of ventricular excitation. This study examined whether the activation-repolarization coupling plays a role in coordinating repolarization times between the right ventricular (RV) and left ventricular (LV) chambers, and if impaired coordination contributes to electrical instability produced by hypokalaemia or dofetilide, a blocker of the delayed rectifier K+ current. Methods: In Langendorff-perfused, isolated guinea pig hearts, six monophasic action potential recording electrodes were attached to RV and LV epicardium. Local activation time and action potential duration (APD90) were determined during spontaneous beating, regular pacing and extrasystolic excitation. Results: In regularly beating hearts, the RV epicardial sites had longer APD90, but exhibited earlier activation times, as compared to LV sites, which minimized the interventricular difference in repolarization time. Upon extrasystolic stimulation, the APD90 was reduced to a greater extent in RV compared with LV, which translated to a reversed slope of APD90-to-activation time relationship, and increased spatial repolarization gradients. Hypokalaemia and dofetilide prolonged APD90, with the effect being greater in LV compared with RV. In hypokalaemic hearts, LV activation was delayed. These changes contributed to increased asynchrony in repolarization times in the LV and RV in both regular and extrasystolic beats, and enhanced susceptibility to tachyarrhythmia. Conclusion: Impaired RV-to-LV activation-repolarization coupling is an important determinant of electrical instability in the setting of non-uniformly prolonged epicardial APD90 or slowed interventricular conduction.
机译:目的:激活-复极耦合是指动​​作电位持续时间与心室兴奋路径上心肌区域激活时间之间的反比关系。这项研究检查了激活-重新极化耦合是否在协调右心室(RV)和左心室(LV)之间的重新极化时间中发挥作用,以及是否协调障碍导致由低钾血症或多芬替利产生的电不稳定,这是延迟的阻滞剂整流器K +电流。方法:在Langendorff灌注的离体豚鼠心脏中,将六个单相动作电位记录电极连接到RV和LV心外膜上。在自发搏动,定期起搏和收缩期外兴奋期间确定局部激活时间和动作电位持续时间(APD90)。结果:在规律跳动的心脏中,与LV部位相比,RV心外膜部位具有更长的APD90,但表现出更早的激活时间,这使复极化时间的心室差异最小。收缩期刺激后,与LV相比,APD90在RV中的降低程度更大,这转化为APD90与激活时间关系的反向斜率,并增加了空间复极化梯度。低钾血症和多非利特延长了APD90的持续时间,与RV相比,LV的作用更大。在低钾血症性心脏中,LV激活被延迟。这些改变导致常规和搏动外搏动中LV和RV复极化时间的异步性增加,并增加了对快速性心律失常的敏感性。结论:在非均匀延长的心外膜APD90或心室传导减慢的情况下,RV-LV激活-复极化耦合受损是电不稳定的重要决定因素。

著录项

相似文献

  • 外文文献
  • 中文文献
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