首页> 外文会议>Annual International Conference of the IEEE Engineering in Medicine and Biology Society >From the Purkinje Fibres to the Ventricle: One Dimensional Computer Simulation for the Healthy and Failing Heart
【24h】

From the Purkinje Fibres to the Ventricle: One Dimensional Computer Simulation for the Healthy and Failing Heart

机译:从Purkinje纤维到心室:健康和失败的心脏一维电脑仿真

获取原文

摘要

This study used one-dimensional computer simulation to investigate the influence of heart failure on action potential conduction through the left Purkinje fibres to the left ventricle. The study was based on a rabbit model of left ventricular heart failure caused by volume and pressure overload. To simulate the effect of heart failure, we began with models of the healthy rabbit Purkinje fibre action potential and healthy left ventricular (endocardial) action potential. In the absence of ionic current measurements from failing rabbit Purkinje fibres, we assumed that changes in ionic currents mirrored changes in ion channel expression (measured at the messenger RNA level): ionic conductances were adjusted based on changes in expression of the relevant ion channels. Ionic currents in the left ventricle were adjusted in the same way, but in addition, changes in ionic currents measured in the failing rabbit left ventricle by Ruijter et al. and Powizd et al. were used in simulations. The simulations predict a gradient in action potential duration from the Purkinje fibres to the ventricle and this gradient is exacerbated in heart failure. The predicted changes in the Purkinje fibre and left ventricular action potential were compared to actual changes measured using sharp microelectrodes.
机译:本研究使用一维计算机模拟来研究心力衰竭对左心室左心翼纤维的动作电位传导的影响。该研究基于由体积和压力过载引起的左心室心力衰竭的兔模型。为了模拟心力衰竭的效果,我们开始使用健康的兔浦本纤维动作潜力和健康左心室(内膜)作用潜力的模型。在没有离子电流测量的情况下失败的兔子紫癜纤维,我们假设离子电流的变化反映离子通道表达的反映变化(在信使RNA水平测量):基于相关离子通道表达的变化调节离子电导。以相同的方式调节左心室中的离子电流,但另外,通过Ruijter等人在失败的兔子左心室测量的离子电流的变化。和powizd等人。用于模拟。仿真预测从普里金纤维到心室的潜在持续时间的梯度,并且这种梯度在心力衰竭中加剧。将purkinje纤维和左心室作用电位的预测变化与使用尖锐微电极测量的实际变化进行了比较。

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