Hemodynamics in the Aorta and Pulmonary Arteries of Congenital Heart Disease Patients: A Mini Review

L. Johnston, M. Boumpouli, A. Kazakidi
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引用次数: 5

Abstract

Congenital heart disease, which affects more than one million newborns globally each year, contributes to an increased risk of cardiovascular disease and ultimately reduced life expectancy. Computational fluid dynamics (CFD) enables detailed, non-invasive characterization of complex physiological pressure and flow fields, thus improving our understanding of congenital heart disease hemodynamics. In recent years, this has driven clinical decision-making, surgical planning, and the evaluation of innovative surgical techniques. In this mini review, CFD methods applied to the study of congenital abnormalities, with a focus on the aorta and pulmonary bifurcation, are discussed. The clinical relevance and future directions of CFD modelling are also reviewed.
先天性心脏病患者主动脉和肺动脉的血流动力学:一个小综述
先天性心脏病每年影响全球100多万新生儿,导致心血管疾病风险增加,最终缩短预期寿命。计算流体动力学(CFD)能够对复杂的生理压力和流场进行详细、无创的表征,从而提高我们对先天性心脏病血液动力学的理解。近年来,这推动了临床决策、手术计划和创新手术技术的评估。在这篇小型综述中,讨论了CFD方法在先天性畸形研究中的应用,重点是主动脉和肺分叉。还对CFD建模的临床相关性和未来方向进行了综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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