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在不同类型的B型主动脉夹层情况下,针对体外模型测量结果对数值流动模拟进行验证。

Validation of numerical flow simulations against in vitro phantom measurements in different type B aortic dissection scenarios.

作者信息

Soudah Eduardo, Rudenick Paula, Bordone Maurizio, Bijnens Bart, García-Dorado David, Evangelista Arturo, Oñate Eugenio

机构信息

a Department of Biomedical Engineering , International Center for Numerical Methods in Engineering (CIMNE), Universitat Politècnica de Catalunya , Barcelona , Spain.

出版信息

Comput Methods Biomech Biomed Engin. 2015;18(8):805-15. doi: 10.1080/10255842.2013.847095. Epub 2013 Oct 25.

Abstract

An aortic dissection (AD) is a serious condition defined by the splitting of the arterial wall, thus generating a secondary lumen [the false lumen (FL)]. Its management, treatment and follow-up are clinical challenges due to the progressive aortic dilatation and potentially severe complications during follow-up. It is well known that the direction and rate of dilatation of the artery wall depend on haemodynamic parameters such as the local velocity profiles, intra-luminal pressures and resultant wall stresses. These factors act on the FL and true lumen, triggering remodelling and clinical worsening. In this study, we aimed to validate a computational fluid dynamic (CFD) tool for the haemodynamic characterisation of chronic (type B) ADs. We validated the numerical results, for several dissection geometries, with experimental data obtained from a previous in vitro study performed on idealised dissected physical models. We found a good correlation between CFD simulations and experimental measurements as long as the tear size was large enough so that the effect of the wall compliance was negligible.

摘要

主动脉夹层(AD)是一种严重的病症,其定义为动脉壁分层,从而形成一个次级管腔[假腔(FL)]。由于主动脉在随访期间逐渐扩张以及可能出现严重并发症,其管理、治疗和随访都是临床挑战。众所周知,动脉壁的扩张方向和速率取决于血流动力学参数,如局部速度分布、管腔内压力和由此产生的壁应力。这些因素作用于假腔和真腔,引发重塑和临床病情恶化。在本研究中,我们旨在验证一种计算流体动力学(CFD)工具,用于慢性(B型)AD的血流动力学特征分析。我们用先前在理想化解剖物理模型上进行的体外研究获得的实验数据,验证了几种夹层几何形状的数值结果。我们发现,只要撕裂口足够大,以至于壁顺应性的影响可忽略不计,CFD模拟与实验测量之间就具有良好的相关性。

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