首页> 美国卫生研究院文献>The Korean Journal of Physiology Pharmacology : Official Journal of the Korean Physiological Society and the Korean Society of Pharmacology >Computational analysis of the electromechanical performance of mitral valve cerclage annuloplasty using a patient-specific ventricular model
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Computational analysis of the electromechanical performance of mitral valve cerclage annuloplasty using a patient-specific ventricular model

机译:使用特定于患者的心室模型对二尖瓣环扎瓣环成形术的机电性能进行计算分析

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摘要

We aimed to propose a novel computational approach to predict the electromechanical performance of pre- and post-mitral valve cerclage annuloplasty (MVCA). Furthermore, we tested a virtual estimation method to optimize the left ventricular basement tightening scheme using a pre-MVCA computer model. The present model combines the three-dimensional (3D) electromechanics of the ventricles with the vascular hemodynamics implemented in a lumped parameter model. 3D models of pre- and post-MVCA were reconstructed from the computed tomography (CT) images of two patients and simulated by solving the electromechanical-governing equations with the finite element method. Computed results indicate that reduction of the dilated heart chambers volume (reverse remodeling) appears to be dependent on ventricular stress distribution. Reduced ventricular stresses in the basement after MVCA treatment were observed in the patients who showed reverse remodeling of heart during follow up over 6 months. In the case who failed to show reverse remodeling after MVCA, more virtual tightening of the ventricular basement diameter than the actual model can induce stress unloading, aiding in heart recovery. The simulation result that virtual tightening of the ventricular basement resulted in a marked increase of myocardial stress unloading provides in silico evidence for a functional impact of MVCA treatment on cardiac mechanics and post-operative heart recovery. This technique contributes to establishing a pre-operative virtual rehearsal procedure before MVCA treatment by using patient-specific cardiac electromechanical modeling of pre-MVCA.
机译:我们旨在提出一种新颖的计算方法来预测二尖瓣环扎术前和后瓣环成形术(MVCA)的机电性能。此外,我们测试了使用虚拟MVCA计算机模型优化左心室基底收紧方案的虚拟估算方法。本模型将心室的三维(3D)机电与集总参数模型中实现的血管血流动力学相结合。从两名患者的计算机断层扫描(CT)图像重建MVCA前后的3D模型,并通过用有限元方法求解机电控制方程进行模拟。计算结果表明,扩张的心腔容积的减少(反向重塑)似乎取决于心室应力的分布。在随访6个月以上时显示心脏反向重塑的患者中,观察到MVCA治疗后基底的心室压力降低。如果在MVCA后未能显示出反向重塑,则比实际模型更真实地收紧心室基底直径会导致压力减轻,从而有助于心脏恢复。仿真结果表明,心室基底的虚拟收紧导致心肌压力卸载显着增加,为MVCA治疗对心脏力学和术后心脏恢复的功能影响提供了计算机模拟证据。该技术有助于通过使用患者特定的MVCA前心脏机电模型,在MVCA治疗之前建立术前虚拟排练程序。

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