Conijn M, Krings G J
Pediatric Cardiology, Wilhelmina Children's Hospital (University Medical Center), Utrecht 3584 EA, Netherlands.
Comput Math Methods Med. 2021 Apr 1;2021:2618625. doi: 10.1155/2021/2618625. eCollection 2021.
With the help of computational fluid dynamics (CFD), hemodynamics of the pulmonary arteries (PA's) can be studied in detail and varying physiological circumstances and treatment options can be simulated. This offers the opportunity to improve the diagnostics and treatment of PA stenosis in biventricular congenital heart disease (CHD). The aim of this review was to evaluate the methods of computational studies for PA's in biventricular CHD and the level of validation of the numerical outcomes. A total of 34 original research papers were selected. The literature showed a great variety in the used methods for (re) construction of the geometry as well as definition of the boundary conditions and numerical setup. There were 10 different methods identified to define inlet boundary conditions and 17 for outlet boundary conditions. A total of nine papers verified their CFD outcomes by comparing results to clinical data or by an experimental mock loop. The diversity in used methods and the low level of validation of the outcomes result in uncertainties regarding the reliability of numerical studies. This limits the current clinical utility of CFD for the study of PA flow in CHD. Standardization and validation of the methods are therefore recommended.
借助计算流体动力学(CFD),可以详细研究肺动脉(PA)的血流动力学,并模拟不同的生理情况和治疗方案。这为改善双心室先天性心脏病(CHD)中PA狭窄的诊断和治疗提供了机会。本综述的目的是评估双心室CHD中PA的计算研究方法以及数值结果的验证水平。共筛选出34篇原创研究论文。文献表明,在用于(重新)构建几何形状的方法以及边界条件和数值设置的定义方面存在很大差异。确定了10种不同的方法来定义入口边界条件,17种方法来定义出口边界条件。共有9篇论文通过将结果与临床数据进行比较或通过实验模拟回路来验证其CFD结果。所用方法的多样性以及结果验证水平较低导致数值研究的可靠性存在不确定性。这限制了CFD目前在CHD中PA血流研究的临床应用。因此,建议对方法进行标准化和验证。