计算流体力学研究比较心肺旁路的两种动脉插管

Fluids Pub Date : 2023-11-16 DOI:10.3390/fluids8110302
V. Gramigna, Arrigo Palumbo, Michele Rossi, G. Fragomeni
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引用次数: 0

摘要

得益于近年来技术和信息技术的进步,计算流体力学在生物医学和健康研究领域的应用发展迅速。这是一种以计算机为基础的模拟方法,它使用数值解法来模拟真实的流体流动。本研究的目的是利用针对患者的计算流体动力学分析,研究临床实践中心肺旁路过程中使用的两种不同几何形状的动脉插管的血液动力学行为。利用分割和逆向工程技术,从受试者的 CT 图像中提取出逼真的主动脉三维模型。除了远端(直端或弯端)外,两个插管具有相似的几何形状,它们被建模并插入升主动脉的特定位置。两种模拟采用了相同边界条件的假设,以便仅分析插管几何形状对血液动力学行为的影响。模拟结果显示,弯头插管对主动脉上血管的输出量占总输出量的比例更高(66% 对 54%),这表明不同插管尖端的几何形状在心肺旁路过程中具有特定的优势。事实上,直插管似乎能产生更稳定的血流模式,并在升主动脉中形成良好的再循环。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Computational Fluid Dynamics Study to Compare Two Types of Arterial Cannulae for Cardiopulmonary Bypass
Thanks to recent technological and IT advances, there have been rapid developments in biomedical and health research applications of computational fluid dynamics. This is a methodology of computer-based simulation that uses numerical solutions of the governing equations to simulate real fluid flows. The aim of this study is to investigate, using a patient-specific computational fluid dynamics analysis, the hemodynamic behavior of two arterial cannulae, with two different geometries, used in clinical practice during cardiopulmonary bypass. A realistic 3D model of the aorta is extracted from a subject’s CT images using segmentation and reverse engineering techniques. The two cannulae, with similar geometry except for the distal end (straight or curved tip), are modeled and inserted at the specific position in the ascending aorta. The assumption of equal boundary conditions is adopted for the two simulations in order to analyze only the effects of a cannula’s geometry on hemodynamic behavior. Simulation results showed a greater percentage of the total output directed towards the supra-aortic vessels with the curved tip cannula (66% vs. 54%), demonstrating that the different cannula tips geometry produces specific advantages during cardiopulmonary bypass. Indeed, the straight one seems to generate a steadier flow pattern with good recirculation in the ascending aorta.
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