首页> 外文期刊>Physiological measurement >Simulation of Brugada syndrome using cellular and three-dimensional whole-heart modeling approaches
【24h】

Simulation of Brugada syndrome using cellular and three-dimensional whole-heart modeling approaches

机译:使用细胞和三维全心脏建模方法模拟Brugada综合征

获取原文
获取原文并翻译 | 示例
           

摘要

Brugada syndrome (BS) is a genetic disease identified by an abnormal electrocardiogram ( ECG) ( mainly abnormal ECGs associated with right bundle branch block and ST-elevation in right precordial leads). BS can lead to increased risk of sudden cardiac death. Experimental studies on human ventricular myocardium with BS have been limited due to difficulties in obtaining data. Thus, the use of computer simulation is an important alternative. Most previous BS simulations were based on animal heart cell models. However, due to species differences, the use of human heart cell models, especially a model with three-dimensional whole-heart anatomical structure, is needed. In this study, we developed a model of the human ventricular action potential (AP) based on refining the ten Tusscher et al (2004 Am. J. Physiol. Heart Circ. Physiol. 286 H1573 - 89) model to incorporate newly available experimental data of somemajor ionic currents of human ventricular myocytes. These modified channels include the L-type calcium current (ICaL), fast sodium current (I-Na), transient outward potassium current (I-to), rapidly and slowly delayed rectifier potassium currents (I-Kr and I-Ks) and inward rectifier potassium current (I-Ki). Transmural heterogeneity of APs for epicardial, endocardial and mid-myocardial (M) cells was simulated by varying the maximum conductance of IKs and Ito. The modified AP models were then used to simulate the effects of BS on cellular AP and body surface potentials using a three-dimensional dynamic heart - torso model. Our main findings are as follows. (1) BS has little effect on the AP of endocardial or mid-myocardial cells, but has a large impact on the AP of epicardial cells. (2) A likely region of BS with abnormal cell AP is near the right ventricular outflow track, and the resulting ST-segment elevation is located in the median precordium area. These simulation results are consistent with experimental findings reported in the literature. The model can reproduce a variety of electrophysiological behaviors and provides a good basis for understanding the genesis of abnormal ECG under the condition of BS disease.
机译:Brugada综合征(BS)是一种通过异常心电图(ECG)(主要是与右束前导联中右束支传导阻滞和ST抬高相关的异常ECG)识别出的遗传疾病。 BS会导致心脏猝死的风险增加。由于难以获得数据,使用BS对人心室心肌的实验研究受到限制。因此,使用计算机模拟是一个重要的选择。以前的大多数BS模拟都是基于动物心脏细胞模型。然而,由于物种差异,需要使用人类心脏细胞模型,尤其是具有三维全心脏解剖结构的模型。在这项研究中,我们在完善十个Tusscher等人(2004 Am。J. Physiol。Heart Circ。Physiol。286 H1573-89)模型的基础上,开发了一种人的心室动作电位(AP)模型,以纳入新的实验数据心室肌细胞某些主要离子电流的变化这些修改的通道包括L型钙电流(ICaL),快速钠电流(I-Na),瞬时向外钾电流(I-to),快速和缓慢延迟的整流器钾电流(I-Kr和I-Ks)和内向整流钾电流(I-Ki)。通过改变IK和Ito的最大电导率来模拟心外膜,心内膜和心肌中层(M)细胞的AP透壁异质性。修改后的AP模型随后被用于使用三维动态心-躯干模型来模拟BS对细胞AP和身体表面电位的影响。我们的主要发现如下。 (1)BS对心内膜或心肌中层细胞的AP影响很小,但对心外膜细胞的AP影响很大。 (2)具有异常细胞AP的BS的可能区域位于右心室流出道附近,并且所产生的ST段抬高位于中皮质前区。这些模拟结果与文献报道的实验结果一致。该模型可再现多种电生理行为,为了解BS病情下异常ECG的发生提供了良好的基础。

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