【24h】

An integrative model of mouse cardiac electrophysiology from cell to torso.

机译:从细胞到躯干的小鼠心脏电生理学综合模型。

获取原文
获取原文并翻译 | 示例
           

摘要

AIMS: Although the transgenic mouse has become an important new tool in the study of human diseases and the design of new therapies, a complete picture of cardiac electrophysiology in the mouse, from genome to body surface, is lacking. A computational model of the mouse heart is presented, which is used to study the impact of ion-channel and structural manipulations on the distributions of extracellular potentials on the heart and body surface. METHODS: A model of the mouse heart anatomy, fibre organization and torso geometry was constructed from DTMRI images. An anisotropic bidomain model, with a modified Pandit et al. model for the ionic currents, was used to represent the electrical properties of the tissue. Spatial heterogeneity in the ion currents was introduced by modulating the transient outward current. A sinus beat was simulated in hearts with different tissue and membrane properties and the extracellular potentials were computed at both the heart and body surface. RESULTS: The simulated transmembrane patterns in the heart, and the timing and morphology of the simulated ECG waveforms were consistent with experimental measurements. In addition, the patterns of activation and recovery and the waveforms of the corresponding ECG were found to be relatively insensitive to changes in cell type distribution and tissue anisotropy. CONCLUSION: Because of the small size of the heart, an integrative model of mouse electrophysiology can be simulated from cell to torso, enabling a new tool to study how extracellular signals might be used to detect molecular changes underlying an arrhythmogenic substrate.
机译:目的:尽管转基因小鼠已成为研究人类疾病和设计新疗法的重要新工具,但仍缺乏从基因组到体表的小鼠心脏电生理的完整图景。提出了小鼠心脏的计算模型,该模型用于研究离子通道和结构操纵对心脏和身体表面细胞外电位分布的影响。方法:利用DTMRI图像建立小鼠心脏解剖,纤维组织和躯干几何形状的模型。一个各向异性的双域模型,具有改进的Pandit等人。离子电流模型用于表示组织的电学性质。通过调节瞬态向外电流来引入离子电流中的空间异质性。在具有不同组织和膜特性的心脏中模拟了窦性搏动,并在心脏和体表都计算了细胞外电位。结果:心脏的模拟跨膜模式,模拟的心电图波形的时间和形态与实验测量结果一致。此外,发现激活和恢复的模式以及相应ECG的波形对细胞类型分布和组织各向异性的变化相对不敏感。结论:由于心脏较小,因此可以模拟从细胞到躯干的小鼠电生理学综合模型,从而为研究细胞外信号如何用于检测心律失常底物下的分子变化提供了一种新工具。

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