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节段性不对称、颈部和髂嵴角对理想化腹主动脉瘤几何形状血流动力学行为的影响。

Effect of Sac Asymmetry, Neck and Iliac Angle on the Hemodynamic Behavior of Idealized Abdominal Aortic Aneurysm Geometries.

机构信息

Department of Mechanical Engineering, Hellenic Mediterranean University, Heraklion, Crete, Greece.

Vascular Surgery Department, Medical School, University of Crete, Heraklion, Crete, Greece.

出版信息

Ann Vasc Surg. 2023 Jul;93:338-350. doi: 10.1016/j.avsg.2023.02.026. Epub 2023 Mar 2.

Abstract

BACKGROUND

Abdominal aortic aneurysms (AAAs) are currently treated based on the universal maximum diameter criterion, but other geometric variables may play a role in the risk of rupture. The hemodynamic environment inside the AAA sac has been shown to interact with several biologic processes which can affect prognosis. AAA geometric configuration has a significant impact in the hemodynamic conditions that develop, which has only been recently realized, with implications for rupture risk estimations. We aim to perform a parametric study to evaluate the effect of aortic neck angulation, angle between the iliac arteries, and sac asymmetry (SA) on the hemodynamic variables of AAAs.

METHODS

This study uses idealized AAA models and it is parametrized in terms of 3 quantities as follows: the neck angle, φ (°), iliac angle, θ (°), and SA (%), each of which accepts 3 different values, specifically φ = (0°, 30°, 60°), θ = (40°, 60°, 80°), and SA = (S, °SS, °OS), where the SA can either be on the same side with respect to neck (SS) or on the opposite side (OS). Time average wall shear stress (TAWSS), oscillatory shear index (OSI), relative residence time (RRT), and the velocity profile are calculated for different geometric configurations, while the percentage of the total surface area under thrombogenic conditions, using thresholds previously reported in the literature, is also recorded.

RESULTS

In case of an angulated neck and a higher angle between iliac arteries, favorable hemodynamic conditions are predicted with higher TAWSS and lower OSI and RRT values. The area under thrombogenic conditions reduces by 16-46% as the neck angle increases from 0° to 60°, depending on the hemodynamic variable under consideration. The effect of iliac angulation is present but less pronounced with 2.5-7.5% change between the lower and the higher angle. The effect of SA seems to be significant for OSI, with a nonsymmetrical configuration being hemodynamically favorable, which in the presence of an angulated neck is more pronounced for the OS outline.

CONCLUSIONS

Favorable hemodynamic conditions develop inside the sac of idealized AAAs with increasing neck and iliac angles. Regarding the SA parameter, asymmetrical configurations most often appear advantageous. Concerning the velocity profile the triplet (φ, θ, SA) may affect outcomes under certain conditions and thus should be taken into account when parametrizing the geometric characteristics of AAAs.

摘要

背景

目前,腹主动脉瘤(AAA)的治疗基于最大直径的通用标准,但其他几何变量可能在破裂风险中发挥作用。AAA 囊内的血流动力学环境已被证明与多种生物学过程相互作用,这些过程可能影响预后。AAA 的几何构型对发展中的血流动力学条件有重大影响,这一点直到最近才被认识到,这对破裂风险估计有影响。我们旨在进行参数研究,以评估主动脉颈角度、髂动脉之间的角度和囊状不对称(SA)对 AAA 血流动力学变量的影响。

方法

本研究使用理想化的 AAA 模型,并根据以下 3 个参数进行参数化:颈角φ(°)、髂角θ(°)和 SA(%),每个参数接受 3 个不同的值,具体为φ=(0°、30°、60°)、θ=(40°、60°、80°)和 SA=(S、°SS、°OS),其中 SA 可以与颈部同侧(SS)或对侧(OS)。对于不同的几何构型,计算时间平均壁切应力(TAWSS)、振荡剪切指数(OSI)、相对驻留时间(RRT)和速度分布,同时记录使用文献中先前报道的阈值计算的血栓形成条件下总表面积的百分比。

结果

在颈部角度和髂动脉之间的角度较大的情况下,预测到有利的血流动力学条件,具有较高的 TAWSS 和较低的 OSI 和 RRT 值。血栓形成条件下的面积减少了 16-46%,具体取决于所考虑的血流动力学变量,随着颈部角度从 0°增加到 60°。髂动脉角度的影响存在,但幅度较小,在较低和较高角度之间变化 2.5-7.5%。SA 的影响对 OSI 似乎很重要,非对称构型在血流动力学上是有利的,在颈部角度较大的情况下,OS 轮廓更为明显。

结论

在理想化的 AAA 囊内,随着颈角和髂角的增加,会产生有利的血流动力学条件。关于 SA 参数,不对称构型通常更为有利。关于速度分布,在某些条件下,(φ、θ、SA)三元组可能会影响结果,因此在对 AAA 的几何特征进行参数化时应考虑到这一点。

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