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对特定于患者的脑动脉瘤中体内血流的计算流体动力学模拟进行全面验证。

Comprehensive validation of computational fluid dynamics simulations of in-vivo blood flow in patient-specific cerebral aneurysms.

机构信息

Philips Research Laboratories, Weisshausstrasse 2, 52066 Aachen, Germany.

出版信息

Med Phys. 2012 Feb;39(2):742-54. doi: 10.1118/1.3675402.

Abstract

PURPOSE

Recently, image-based computational fluid dynamic (CFD) simulations have been proposed to investigate the local hemodynamics inside human cerebral aneurysms. It was suggested that the knowledge of the computed three-dimensional flow fields can be used to assist clinical risk assessment and treatment decision making. Therefore, it was desired to know the reliability of CFD for cerebral blood flow simulation, and be able to provide clinical feedback. However, the validations were not yet comprehensive as they lack either patient-specific boundary conditions (BCs) required for CFD simulations or quantitative comparison methods.

METHODS

In this study, based on a recently proposed in-vitro quantitative CFD evaluation approach via virtual angiography, the CFD evaluation was extended from phantom to patient studies. In contrast to previous work, patient-specific blood flow rates obtained by transcranial color coded Doppler ultrasound measurements were used to impose CFD BCs. Virtual angiograms (VAs) were constructed which resemble clinically acquired angiograms (AAs). Quantitative measures were defined to thoroughly evaluate the correspondence of the detailed flow features between the AAs and the VAs, and thus, the reliability of CFD simulations.

RESULTS

The proposed simulation pipeline provided a comprehensive validation method of CFD simulation for reproducing cerebral blood flow, with a focus on the aneurysm region. Six patient cases were tested and close similarities were found in terms of spatial and temporal variations of contrast agent (CA) distribution between AAs and VAs. For patient #1 to #5, discrepancies of less than 11% were found for the relative root mean square errors in time intensity curve comparisons from characteristic vasculature positions. For patient #6, where the CA concentration curve at vessel inlet cannot be directly extracted from the AAs and given as a BC, deviations about 20% were found.

CONCLUSIONS

As a conclusion, the reliability of the CFD simulations was well confirmed. Besides, it was shown that the accuracy of CFD simulations was closely related to the input BCs.

摘要

目的

最近,基于图像的计算流体动力学(CFD)模拟已被提出用于研究人类脑动脉瘤内的局部血液动力学。有人认为,计算三维流场的知识可用于辅助临床风险评估和治疗决策。因此,人们希望了解 CFD 对脑血流模拟的可靠性,并能够提供临床反馈。然而,由于缺乏 CFD 模拟所需的患者特定边界条件(BC)或定量比较方法,验证还不够全面。

方法

在本研究中,基于最近提出的通过虚拟血管造影进行的体外定量 CFD 评估方法,将 CFD 评估从体模扩展到患者研究。与以前的工作不同,使用经颅彩色编码多普勒超声测量获得的患者特定血流率来施加 CFD BC。构建了类似于临床获得的血管造影(AA)的虚拟血管造影(VA)。定义了定量措施,以彻底评估 AA 和 VA 之间详细血流特征的对应关系,从而评估 CFD 模拟的可靠性。

结果

所提出的模拟管道为复制脑血流提供了一种全面的 CFD 模拟验证方法,重点是动脉瘤区域。测试了六个患者病例,并且在 AA 和 VA 之间的对比剂(CA)分布的空间和时间变化方面发现了非常相似的结果。对于患者 #1 至 #5,从特征血管位置的时间强度曲线比较中发现相对均方根误差的差异小于 11%。对于患者 #6,由于无法从 AA 直接提取 CA 浓度曲线作为 BC,因此发现偏差约为 20%。

结论

作为结论,CFD 模拟的可靠性得到了很好的确认。此外,还表明 CFD 模拟的准确性与输入 BC 密切相关。

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