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颅内侧壁动脉瘤起始部位二次血流的增强

Amplification of Secondary Flow at the Initiation Site of Intracranial Sidewall Aneurysms.

作者信息

Csippa Benjamin, Friedrich Péter, Szikora István, Paál György

机构信息

Department of Hydrodynamic Systems, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Műegyetem rkp. 1-3, Budapest, 1111, Hungary.

Department Neurointerventions, Semmelweis University, Department for Neurosurgery and Neurointerventions, Amerikai út 57., Budapest, Hungary.

出版信息

Cardiovasc Eng Technol. 2025 Jun;16(3):259-271. doi: 10.1007/s13239-025-00771-4. Epub 2025 Jan 27.

Abstract

PURPOSE

The initiation of intracranial aneurysms has long been studied, mainly by the evaluation of the wall shear stress field. However, the debate about the emergence of hemodynamic stimuli still persists. This paper builds on our previous hypothesis that secondary flows play an important role in the formation cascade by examining the relationship between flow physics and vessel geometry.

METHODS

A composite evaluation framework was developed to analyze the simulated flow field in perpendicular cross-sections along the arterial centerline. The velocity field was decomposed into secondary flow components around the centerline in these cross-sections, allowing the direct comparison of the flow features with the geometrical parameters of the centerline. Qualitative and statistical analysis was performed to identify links between morphology, flow, and the formation site of the aneurysms.

RESULTS

The normalized mean curvature and curvature peak were significantly higher in the aneurysmal bends than in other arterial bends. Similarly, a significant difference was found for the normalized mean velocity ( ), the circumferential ( ), and radial ( ) velocity components between the arterial bends harboring the aneurysm than in other arterial bends. In contrast, the difference of means for the normalized axial velocity is insignificant ( ).

CONCLUSION

Thirty cases with aneurysms located on the ICA were analyzed in the virtually reconstructed pre-aneurysmal state by an in-silico study. We found that sidewall aneurysm formation on the ICA is more probable in these arterial bends with the highest case-specific curvature, which are accompanied by the highest case-specific secondary flows (circumferential and radial velocity components) than in other bends.

摘要

目的

颅内动脉瘤的起始问题长期以来一直受到研究,主要是通过评估壁面剪应力场。然而,关于血流动力学刺激因素出现的争论仍然存在。本文基于我们之前的假设,即二次流在形成级联过程中起重要作用,通过研究流动物理学与血管几何形状之间的关系来展开。

方法

开发了一个综合评估框架,以分析沿动脉中心线的垂直横截面中的模拟流场。在这些横截面中,速度场被分解为围绕中心线的二次流分量,从而能够将流动特征与中心线的几何参数进行直接比较。进行了定性和统计分析,以确定形态、流动与动脉瘤形成部位之间的联系。

结果

动脉瘤弯曲处的归一化平均曲率和曲率峰值显著高于其他动脉弯曲处。同样,与其他动脉弯曲处相比,含有动脉瘤的动脉弯曲处的归一化平均速度( )、周向( )和径向( )速度分量存在显著差异。相比之下,归一化轴向速度的均值差异不显著( )。

结论

通过计算机模拟研究,对30例位于颈内动脉的动脉瘤在虚拟重建的动脉瘤前状态下进行了分析。我们发现,颈内动脉侧壁动脉瘤在这些具有最高特定病例曲率且伴有最高特定病例二次流(周向和径向速度分量)的动脉弯曲处比在其他弯曲处更易形成。

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