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Hemodynamic models of cerebral aneurysms for assessment of effect of vessel geometry on risk of rupture

机译:脑动脉瘤的血流动力学模型评估血管几何效果对破裂风险的影响

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Surgical decisions on treatment of cerebral aneurysms are based predominantly on aneurysm size. This study has assessed the influence of parent vessel geometry on intra-aneurysmal flow patterns and mass flow rate using computational fluid dynamics and finite element modeling of straight and curved vessels feeding saccular aneurysms of varying size and aspect ratio. Simulation results have shown that aneurysms of similar shape and size but with curved parent vessels can have more than 2 fold increase in flow rate, with markedly different flow velocity patterns and development of secondary flows. These are significant hemodynamic factors that can contribute to increased risk of aneurysm rupture, in addition to aneurysm size. The dependency of parent vessel geometry is a function of aneurysm aspect ratio and shows minimal dependency at an aspect ratio of 1.68. These findings could be used for improved quantification of risk of rupture of cerebral aneurysms detected from clinical imaging modalities and to aid surgical decision making.
机译:关于脑动脉瘤治疗的外科决定主要基于动脉瘤大小。本研究评估了使用计算流体动力学和弯曲血管饲喂变化尺寸和纵横比的椎弓束的有限元模拟的动脉瘤几何形状对动脉瘤性流动模式和质量流量的影响。模拟结果表明,具有弯曲母体容器的类似形状和尺寸的动脉瘤可以具有大于2倍的流速增加,具有明显不同的流速模式和二次流动的发育。除了动脉瘤大小之外,这些是有助于增加动脉瘤破裂风险的重要血液动力学因素。父血管几何形状的依赖性是动脉瘤纵横比的函数,并且以1.68的纵横比表示最小依赖性。这些发现可用于改善从临床成像方式检测到的脑动脉瘤破裂风险的量化,并帮助外科决策。

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