首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Computational fluid dynamics of blood flow in coil-embolized aneurysms: Effect of packing density on flow stagnation in an idealized geometry
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Computational fluid dynamics of blood flow in coil-embolized aneurysms: Effect of packing density on flow stagnation in an idealized geometry

机译:线圈栓塞性动脉瘤中血流的计算流体动力学:填充密度对理想几何形状中血流停滞的影响

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摘要

Coil embolization is performed to induce flow stagnation in cerebral aneurysms and enhance blood clot formation, thus preventing rupture and further growth. We investigated hemodynamics in differently positioned aneurysms coiled at various packing densities to determine the effective packing density in terms of flow stagnation. As a first step, hemodynamic simulations were conducted for idealized geometries of both terminal- and sidewall-type aneurysms. Porous media modeling was employed to describe blood flow in coil-embolized aneurysms. The stagnant volume ratio (SVR) was analyzed to quantify the efficacy of coil embolization. Regardless of aneurysm type and angle, SVR increased with increasing packing density, but the increase in SVR varied depending on type. For sidewall-type aneurysms, the packing density required to achieve 60 % SVR was 20 %, roughly independent of aneurysm angle; flow stagnation was achieved at low packing density. In contrast, in terminal-type aneurysms, the packing density required to achieve 60 % SVR was highly dependent on aneurysm angle, accomplishing a 20 % packing density only for lower angles. Indications are that a relatively high packing density would be required, particularly when these aneurysms are angled against the parent artery. The packing density required for flow stagnation varies depending on aneurysm type and relative position.
机译:进行线圈栓塞术可在脑动脉瘤中引起血流停滞并增强血凝块形成,从而防止破裂和进一步生长。我们调查了在不同堆积密度下盘绕的不同位置的动脉瘤的血流动力学,以确定在血流停滞方面的有效堆积密度。第一步,对末端型和侧壁型动脉瘤的理想几何形状进行了血流动力学模拟。采用多孔介质建模来描述线圈栓塞动脉瘤中的血流。分析停滞体积比(SVR)以量化线圈栓塞的功效。不论动脉瘤的类型和角度如何,SVR都随着堆积密度的增加而增加,但SVR的增加随类型而变化。对于侧壁型动脉瘤,达到60%SVR所需的堆积密度为20%,大致与动脉瘤角度无关。在低堆积密度下实现了流动停滞。相反,在末端型动脉瘤中,达到60%SVR所需的堆积密度高度依赖于动脉瘤角度,仅在较小角度时才达到20%的堆积密度。迹象表明,将需要相对较高的堆积密度,尤其是当这些动脉瘤与亲代动脉成一定角度时。血流停滞所需的堆积密度取决于动脉瘤的类型和相对位置。

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