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首页> 外文期刊>Communications in numerical methods in engineering >Influence of wall thickness on fluid-structure interaction computations of cerebral aneurysms
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Influence of wall thickness on fluid-structure interaction computations of cerebral aneurysms

机译:壁厚对脑动脉瘤流固耦合计算的影响

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Fluid-structure interaction (FSI) analyses of cerebral aneurysm using patient-specific geometry with uniform and pathological aneurysmal wall thickness models are carried out. The objective is to assess the influence of the wall thickness on the FSI and hemodynamics in aneurysms. Two aneurysm models that were reconstructured based on CT images are used. The arterial wall thickness is set to 0.3 mm for the non-aneurysmal artery and to 0.05 mm for the aneurysmal wall based on experimental findings. Another set of aneurysm models with a uniform wall thickness of 0.3 mm for the entire model is used for comparison. The FSI simulations are carried out using the deforming-spatial-domain/stabilized space-time method with physiological inflow and pressure profiles. Computations with different aneurysmal wall thicknesses depict considerable differences in displacement, flow velocity and wall shear stress (WSS). The wall displacement for the pathological wall model is 61% larger than that of the uniform wall model. Consequently, the flow velocities in the aneurysm with the pathological wall model are lower, and that results in a 51% reduction in WSS on the aneurismal wall. Because low WSS on the aneurymal wall is linked to growth and rupture risk of aneurysm, the results suggest that using uniform wall thickness for the aneurysmal wall could underestimate risk in aneurysms.
机译:进行了脑动脉瘤的流体-结构相互作用(FSI)分析,该分析使用了特定于患者的几何形状以及统一的病理性动脉瘤壁厚模型。目的是评估壁厚对动脉瘤的FSI和血液动力学的影响。使用了两个基于CT图像重建的动脉瘤模型。根据实验结果,非动脉瘤动脉的动脉壁厚度设置为0.3 mm,动脉瘤壁的动脉壁厚度设置为0.05 mm。另一组动脉瘤模型的整个模型的壁厚均匀为0.3毫米,用于比较。 FSI模拟是使用具有生理流入量和压力分布的变形空间域/稳定时空方法进行的。具有不同动脉瘤壁厚度的计算表明位移,流速和壁切应力(WSS)有很大差异。病理壁模型的壁位移比统一壁模型的壁位移大61%。因此,采用病理性壁模型的动脉瘤中的流速较低,这导致动脉瘤壁上的WSS降低了51%。由于动脉瘤壁上低的WSS与动脉瘤的生长和破裂风险有关,因此结果表明,对于动脉瘤壁使用统一的壁厚可能会低估动脉瘤的风险。

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