Rocha B M, Toledo E M, Barra L P S, dos Santos R Weber
Graduate Program on Computational Modeling, Federal University of Juiz de Fora, 36036-900 Juiz de Fora, MG, Brazil.
Graduate Program on Computational Modeling, Federal University of Juiz de Fora, 36036-900 Juiz de Fora, MG, Brazil ; National Laboratory of Scientific Computing, 25651-075 Petrópolis, RJ, Brazil.
Biomed Res Int. 2015;2015:465014. doi: 10.1155/2015/465014. Epub 2015 Oct 15.
Heart failure is a major and costly problem in public health, which, in certain cases, may lead to death. The failing heart undergo a series of electrical and structural changes that provide the underlying basis for disturbances like arrhythmias. Computer models of coupled electrical and mechanical activities of the heart can be used to advance our understanding of the complex feedback mechanisms involved. In this context, there is a lack of studies that consider heart failure remodeling using strongly coupled electromechanics. We present a strongly coupled electromechanical model to study the effects of deformation on a human left ventricle wedge considering normal and hypertrophic heart failure conditions. We demonstrate through a series of simulations that when a strongly coupled electromechanical model is used, deformation results in the thickening of the ventricular wall that in turn increases transmural dispersion of repolarization. These effects were analyzed in both normal and failing heart conditions. We also present transmural electrograms obtained from these simulations. Our results suggest that the waveform of electrograms, particularly the T-wave, is influenced by cardiac contraction on both normal and pathological conditions.
心力衰竭是公共卫生领域的一个重大且代价高昂的问题,在某些情况下可能导致死亡。衰竭的心脏会经历一系列电和结构变化,这些变化为心律失常等紊乱提供了潜在基础。心脏电和机械活动耦合的计算机模型可用于增进我们对所涉及的复杂反馈机制的理解。在此背景下,缺乏使用强耦合机电学来考虑心力衰竭重塑的研究。我们提出一个强耦合机电模型,以研究在正常和肥厚性心力衰竭情况下变形对人类左心室楔形组织的影响。我们通过一系列模拟证明,当使用强耦合机电模型时,变形会导致心室壁增厚,进而增加复极的跨壁离散度。在正常和衰竭心脏状况下都对这些效应进行了分析。我们还展示了从这些模拟中获得的跨壁心电图。我们的结果表明,在正常和病理状况下,心电图波形,尤其是T波,会受到心脏收缩的影响。