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分叉远端动脉中脉动流率和分流比在两个患者特异性颈内动脉侧壁动脉瘤血流动力学特征中的作用:一项数值研究。

Effects of Pulsatile Flow Rate and Shunt Ratio in Bifurcated Distal Arteries on Hemodynamic Characteristics Involved in Two Patient-Specific Internal Carotid Artery Sidewall Aneurysms: A Numerical Study.

作者信息

Yi Hang, Johnson Mark, Bramlage Luke C, Ludwig Bryan, Yang Zifeng

机构信息

Department of Mechanical and Materials Engineering, Wright State University, Dayton, OH 45435, USA.

Division of NeuroInterventional Surgery, Department of Neurology, Wright State University/Premier Health-Clinical Neuroscience Institute, 30E. Apple St., Dayton, OH 45409, USA.

出版信息

Bioengineering (Basel). 2022 Jul 18;9(7):326. doi: 10.3390/bioengineering9070326.

Abstract

The pulsatile flow rate (PFR) in the cerebral artery system and shunt ratios in bifurcated arteries are two patient-specific parameters that may affect the hemodynamic characteristics in the pathobiology of cerebral aneurysms, which needs to be identified comprehensively. Accordingly, a systematic study was employed to study the effects of pulsatile flow rate (i.e., PFR-I, PFR-II, and PFR-III) and shunt ratio (i.e., 75:25 and 64:36) in bifurcated distal arteries, and transient cardiac pulsatile waveform on hemodynamic patterns in two internal carotid artery sidewall aneurysm models using computational fluid dynamics (CFD) modeling. Numerical results indicate that larger PFRs can cause higher wall shear stress (WSS) in some local regions of the aneurysmal dome that may increase the probability of small/secondary aneurysm generation than under smaller PFRs. The low WSS and relatively high oscillatory shear index (OSI) could appear under a smaller PFR, increasing the potential risk of aneurysmal sac growth and rupture. However, the variances in PFRs and bifurcated shunt ratios have rare impacts on the time-average pressure (TAP) distributions on the aneurysmal sac, although a higher PFR can contribute more to the pressure increase in the ICASA-1 dome due to the relatively stronger impingement by the redirected bloodstream than in ICASA-2. CFD simulations also show that the variances of shunt ratios in bifurcated distal arteries have rare impacts on the hemodynamic characteristics in the sacs, mainly because the bifurcated location is not close enough to the sac in present models. Furthermore, it has been found that the vortex location plays a major role in the temporal and spatial distribution of the WSS on the luminal wall, varying significantly with the cardiac period.

摘要

脑动脉系统中的脉动血流率(PFR)和分叉动脉中的分流比是两个特定于患者的参数,它们可能会影响脑动脉瘤病理生物学中的血流动力学特征,需要全面识别。因此,采用系统研究来探讨分叉远端动脉中的脉动血流率(即PFR-I、PFR-II和PFR-III)和分流比(即75:25和64:36)以及瞬态心脏脉动波形对两个颈内动脉侧壁动脉瘤模型中血流动力学模式的影响,采用计算流体动力学(CFD)建模。数值结果表明,与较小的PFR相比,较大的PFR可导致动脉瘤穹顶某些局部区域的壁面剪切应力(WSS)更高,这可能增加小/继发性动脉瘤形成的概率。在较小的PFR下可能出现低WSS和相对较高的振荡剪切指数(OSI),增加动脉瘤囊生长和破裂的潜在风险。然而,PFR和分叉分流比的变化对动脉瘤囊上的时间平均压力(TAP)分布影响很小,尽管较高的PFR由于重定向血流的相对较强撞击,对ICASA-1穹顶中的压力增加贡献更大,而在ICASA-2中则不然。CFD模拟还表明,分叉远端动脉中分流比的变化对囊内血流动力学特征影响很小,主要是因为在当前模型中分叉位置离囊不够近。此外,已发现涡旋位置在管腔壁上WSS的时空分布中起主要作用,随心动周期有显著变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf55/9311626/1b4c1726bdc1/bioengineering-09-00326-g001.jpg

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