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临床环境下的脑动脉瘤计算流体动力学。

Computational Fluid Dynamics for Cerebral Aneurysms in Clinical Settings.

机构信息

Department of Neurosurgery, Mie Chuo Medical Center, NHO, Tsu, Japan.

Department of Neurosurgery, Hyogo College of Medicine, Hyogo, Japan.

出版信息

Acta Neurochir Suppl. 2021;132:27-32. doi: 10.1007/978-3-030-63453-7_4.

Abstract

Hemodynamics is thought to play an important role in the pathogenesis of cerebral aneurysms and recent development of computer technology makes it possible to simulate blood flow using high-resolution 3D images within several hours. A lot of studies of computational fluid dynamics (CFD) for cerebral aneurysms were reported; therefore, application of CFD for cerebral aneurysms in clinical settings is reviewed in this article.CFD for cerebral aneurysms using a patient-specific geometry model was first reported in 2003 and it has been revealing that hemodynamics brings a certain contribution to understanding aneurysm pathology, including initiation, growth and rupture. Based on the knowledge of the state-of-the-art techniques, this review treats the decision-making process for using CFD in several clinical settings. We introduce our CFD procedure using digital imaging and communication in medicine (DICOM) datasets of 3D CT angiography or 3D rotational angiography. In addition, we review rupture status, hyperplastic remodeling of aneurysm wall, and recurrence of coiled aneurysms using the hemodynamic parameters such as wall shear stress (WSS), oscillatory shear index (OSI), aneurysmal inflow rate coefficient (AIRC), and residual flow volume (RFV).

摘要

血流动力学被认为在脑动脉瘤的发病机制中起着重要作用,计算机技术的最新发展使得在数小时内使用高分辨率的 3D 图像模拟血流成为可能。大量关于脑动脉瘤计算流体动力学(CFD)的研究已经报道;因此,本文综述了 CFD 在脑动脉瘤临床应用中的应用。2003 年首次报道了使用患者特定几何模型的脑动脉瘤 CFD,研究表明血流动力学对理解动脉瘤病理,包括起始、生长和破裂有一定的贡献。基于最先进技术的知识,本综述针对在几种临床情况下使用 CFD 的决策过程进行了讨论。我们介绍了使用 3D CT 血管造影或 3D 旋转血管造影的 DICOM 数据集进行 CFD 的过程。此外,我们还通过壁面切应力(WSS)、振荡剪切指数(OSI)、动脉瘤流入率系数(AIRC)和残余流量体积(RFV)等血流动力学参数,回顾了破裂状态、动脉瘤壁的增生性重塑和线圈动脉瘤的复发情况。

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