首页> 外文期刊>American Journal of Physiology >Effect of activation sequence on transmural patterns of repolarization and action potential duration in rabbit ventricular myocardium.
【24h】

Effect of activation sequence on transmural patterns of repolarization and action potential duration in rabbit ventricular myocardium.

机译:激活序列对兔心室心肌复极透壁模式和动作电位持续时间的影响。

获取原文
获取原文并翻译 | 示例
           

摘要

Although transmural heterogeneity of action potential duration (APD) is established in single cells isolated from different tissue layers, the extent to which it produces transmural gradients of repolarization in electrotonically coupled ventricular myocardium remains controversial. The purpose of this study was to examine the relative contribution of intrinsic cellular gradients of APD and electrotonic influences to transmural repolarization in rabbit ventricular myocardium. Transmural optical mapping was performed in left ventricular wedge preparations from eight rabbits. Transmural patterns of activation, repolarization, and APD were recorded during endocardial and epicardial stimulation. Experimental results were compared with modeled data during variations in electrotonic coupling. A transmural gradient of APD was evident during endocardial stimulation, which reflected differences previously seen in isolated cells, with the longest APD at the endocardium and the shortest at the epicardium (endo: 165 +/- 5 vs. epi: 147 +/- 4 ms; P < 0.05). During epicardial stimulation, this gradient reversed (epi: 162 +/- 4 vs. endo: 148 +/- 6 ms; P < 0.05). In both activation sequences, transmural repolarization followed activation and APD shortened along the activation path such that significant transmural gradients of repolarization did not occur. This correlation between transmural activation time and APD was recapitulated in simulations and varied with changes in intercellular coupling, confirming that it is mediated by electrotonic current flow between cells. These data suggest that electrotonic influences are important in determining the transmural repolarization sequence in rabbit ventricular myocardium and that they are sufficient to overcome intrinsic differences in the electrophysiological properties of the cells across the ventricular wall.
机译:尽管动作电位持续时间(APD)的跨壁异质性是在从不同组织层分离的单个细胞中建立的,但它在电耦合的心室心肌中产生复极的跨壁梯度的程度仍存在争议。这项研究的目的是检查APD的固有细胞梯度和电声影响对兔心室壁透壁复极的相对贡献。在来自八只兔子的左心室楔形制剂中进行了透壁光学测绘。在心内膜和心外膜刺激期间记录了激活,复极和APD的透壁模式。在电声耦合变化期间,将实验结果与建模数据进行了比较。心内膜刺激期间APD的透壁梯度很明显,这反映了以前在分离的细胞中看到的差异,最长的APD在心内膜上,而在心外膜上最短(内膜:165 +/- 5 vs. Epi:147 +/- 4 ms; P <0.05)。在心外膜刺激期间,该梯度反向(epi:162 +/- 4 vs.内部:148 +/- 6 ms; P <0.05)。在两个激活序列中,激活后都进行了透壁复极化,并且沿激活路径缩短了APD,因此复极化的透壁梯度没有发生。在模拟中概括了跨壁激活时间与APD之间的相关性,并随细胞间偶联的变化而变化,证实了它是由细胞之间的电渗电流介导的。这些数据表明,电渗影响在确定兔心室心肌的透壁复极化序列中很重要,并且它们足以克服整个心室壁细胞的电生理特性的内在差异。

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