首页> 外文期刊>International journal for numerical methods in biomedical engineering >Image-based modeling of blood flow in cerebral aneurysms treated with intrasaccular flow diverting devices
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Image-based modeling of blood flow in cerebral aneurysms treated with intrasaccular flow diverting devices

机译:囊内分流装置治疗脑动脉瘤血流的基于图像的建模

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Modeling the flow dynamics in cerebral aneurysms after the implantation of intrasaccular devices is important for understanding the relationship between flow conditions created immediately posttreatment and the subsequent outcomes. This information, ideally available a priori based on computational modeling prior to implantation, is valuable to identify which aneurysms will occlude immediately and which aneurysms will likely remain patent and would benefit from a different procedure or device. In this report, a methodology for modeling the hemodynamics in intracranial aneurysms treated with intrasaccular flow diverting devices is described. This approach combines an image-guided, virtual device deployment within patient-specific vascular models with an immersed boundary method on adaptive unstructured grids. A partial mesh refinement strategy that reduces the number of mesh elements near the aneurysm dome where the flow conditions are largely stagnant was compared with the full refinement strategy that refines the mesh everywhere around the device wires. The results indicate that using the partial mesh refinement approach is adequate for analyzing the posttreatment hemodynamics, at a reduced computational cost. The results obtained on a series of four cerebral aneurysms treated with different intrasaccular devices were in good qualitative agreement with angiographic observations. Promising results were obtained relating posttreatment flow conditions and outcomes of treatments with intrasaccular devices, which need to be confirmed on larger series.
机译:植入囊内装置后,对脑动脉瘤的血流动力学进行建模对于理解治疗后立即产生的血流状况与后续结果之间的关系非常重要。理想地,该信息是基于在植入之前的计算模型的先验可得的信息,对于确定哪些动脉瘤将立即闭塞以及哪些动脉瘤将很可能保持专利并将从不同的程序或设备中受益是有价值的。在本报告中,描述了一种用囊内分流装置治疗颅内动脉瘤的血流动力学模型的方法。这种方法将图像引导的虚拟设备部署在患者特定的血管模型内与在自适应非结构​​化网格上的浸入边界方法相结合。将减少流动条件基本停滞的动脉瘤穹顶附近的网格元素数量的部分网格细化策略与在设备导线周围各处细化网格的完全细化策略进行了比较。结果表明,使用局部网格细化方法足以以降低的计算成本分析后处理的血流动力学。在一系列采用不同囊内装置治疗的四个脑动脉瘤中获得的结果与血管造影观察的定性吻合良好。获得了与治疗后血流状况和囊内器械治疗结果有关的有希望的结果,这需要在更大的系列上得到证实。

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