首页> 外文期刊>International Journal of Heat and Fluid Flow >Combining magnetic resonance measurements with numerical simulations -Extracting blood flow physiology information relevant to the investigation of intracranial aneurysms in the circle of Willis
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Combining magnetic resonance measurements with numerical simulations -Extracting blood flow physiology information relevant to the investigation of intracranial aneurysms in the circle of Willis

机译:将磁共振测量与数值模拟相结合-提取与Willis圈颅内动脉瘤研究相关的血流生理信息

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摘要

Cerebral aneurysms in the region of the circle of Willis have an incidence of 3-6% in western populations and involve the risk of rupture with subsequent subarachnoidal bleeding. The patient specific blood flow patterns are of substantial importance for understanding the pathogenesis of the lesions and may eventually contribute to deciding on the most efficient treatment procedure for a specific patient. A non-invasive method for performing in vivo measurements on blood velocity is 4D phase-contrast magnetic resonance angiography (PC-MRA), on the basis of which a flow field with all its parameters can be simulated. We are using this approach to investigate the hemodynamic parameters in the circle of Willis and, by analyzing the values at common locations of aneurysms, trying to find potential parameters to predict the development of aneurysms. Methodologically, we are acquiring the artery geometry with 3D-time-of-flight magnetic resonance (TOF) measurements and the blood velocity in the feeding arteries with 4D PC-MRA measurements in a healthy volunteer. These measurements are combined with computational fluid dynamics (CFD) to describe detailed hemodynamic patterns within the circle of Willis.
机译:威利斯圆区的脑动脉瘤在西方人群中的发病率为3-6%,并有破裂和随后蛛网膜下腔出血的风险。患者特定的血流模式对于理解病变的发病机制至关重要,并且最终可能有助于决定特定患者的最有效治疗程序。一种用于对血流速度进行体内测量的非侵入性方法是4D相衬磁共振血管造影(PC-MRA),在此基础上可以模拟具有所有参数的流场。我们正在使用这种方法来调查Willis圈子中的血液动力学参数,并通过分析动脉瘤常见位置的值,试图找到潜在的参数来预测动脉瘤的发展。从方法上讲,我们在健康志愿者中通过3D飞行时间磁共振(TOF)测量来获取动脉的几何形状,并通过4D PC-MRA测量来获取进食动脉中的血流速度。这些测量值与计算流体动力学(CFD)结合在一起,描述了Willis圈内详细的血液动力学模式。

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