We developed a novel patient-specific computational model for the numerical simulation of ventricular electromechanics in patients with ischemic cardiomyopathy (ICM). This model reproduces the activity both in sinus rhythm (SR) and in ventricular tachycardia (VT). The presence of scars, grey zones and non-remodeled regions of the myocardium is accounted for by the introduction of a spatially heterogeneous coefficient in the 3D electromechanics model. This 3D electromechanics model is firstly coupled with a 2-element Windkessel afterload model to fit the pressure-volume (PV) loop of a patient-specific left ventricle (LV) with ICM in SR. Then, we employ the coupling with a 0D closed-loop circulation model to analyze a VT circuit over multiple heartbeats on the same LV. We highlight similarities and differences on the solutions obtained by the electrophysiology model and those of the electromechanics model, while considering different scenarios for the circulatory system. We observe that very different parametrizations of the circulation model induce the same hemodynamical considerations for the patient at hand. Specifically, we classify this VT as unstable. We conclude by stressing the importance of combining electrophysiological, mechanical and hemodynamical models to provide relevant clinical indicators in how arrhythmias evolve and can potentially lead to sudden cardiac death.
翻译:我们开发了一个新型的病人特有计算模型,用于对心心血管病患者的心血管电动机能进行数字模拟(ICM)。这个模型复制了鼻弦(SR)和心血管心肌梗塞(VT)的活动。疤痕、灰色地带和心心肌梗塞非改造区域的存在,是由于在3D电机模型中引入了空间差异系数。这个3D电机能模型首先与2个元素 Windkessel 后装载模型相配合,以适应病人专用左心室(LV)的压力量循环(PV)以适应SR内心血管的压力量循环。然后,我们使用与0D闭环循环模型的连接,以分析心肌内多心跳的VT电路路流。我们强调电物理模型和电机电机能模型获得的相似性和差异,同时考虑循环系统的不同情景。我们观察的是,病人的左心心血管循环循环模型和心脏机能物理学指标的混合,我们用这种稳定的循环指标来分析。