Ahmad Azahari Ahmad Fikri Azfar, Wan Ab Naim Wan Naimah, Md Sari Nor Ashikin, Lim Einly, Mohamed Mokhtarudin Mohd Jamil
Faculty of Manufacturing and Mechatronic Engineering Technology, Universiti Malaysia Pahang, Pekan, Pahang, Malaysia.
Division of Cardiology, Department of Medicine, University of Malaya, Kuala Lumpur, Malaysia.
Comput Methods Biomech Biomed Engin. 2024 Jul 13:1-14. doi: 10.1080/10255842.2024.2377338.
The improvement in congenital heart disease (CHD) treatment and management has increased the life expectancy in infants. However, the long-term efficacy is difficult to assess and thus, computational modelling has been applied for evaluating this. Here, we provide an overview of the applications of computational modelling in CHD based on three categories; CHD involving large blood vessels only, heart chambers only, and CHD that occurs at multiple heart structures. We highlight the advancement of computational simulation of CHD that uses multiscale and multiphysics modelling to ensure a complete representation of the heart and circulation. We provide a brief future direction of computational modelling of CHD such as to include growth and remodelling, detailed conduction system, and occurrence of myocardial infarction. We also proposed validation technique using advanced three-dimensional (3D) printing and particle image velocimetry (PIV) technologies to improve the model accuracy.
先天性心脏病(CHD)治疗与管理方面的进步提高了婴儿的预期寿命。然而,长期疗效难以评估,因此,计算建模已被应用于对此进行评估。在此,我们基于三类情况概述计算建模在CHD中的应用;仅涉及大血管的CHD、仅涉及心腔的CHD以及发生在多个心脏结构的CHD。我们强调使用多尺度和多物理场建模的CHD计算模拟的进展,以确保对心脏和循环的完整表征。我们简要介绍了CHD计算建模的未来方向,例如纳入生长和重塑、详细的传导系统以及心肌梗死的发生情况。我们还提出了使用先进的三维(3D)打印和粒子图像测速(PIV)技术的验证技术,以提高模型准确性。