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首页> 外文期刊>Journal of Biomechanical Science and Engineering >A Rule-Based Computational Study on the Early Progression of Intracranial Aneurysms Using Fluid-Structure Interaction: Comparison between Straight Model and Curved Model
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A Rule-Based Computational Study on the Early Progression of Intracranial Aneurysms Using Fluid-Structure Interaction: Comparison between Straight Model and Curved Model

机译:基于流固耦合的颅内动脉瘤早期进展的基于规则的计算研究:直线模型与曲线模型的比较

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References(43) Cited-By(7) Study of the development of aneurysm is a difficult task due to lack of experimental and clinical data. The current study takes advantage of fluid-structure interaction (FSI) to simulate the formation and growth of aneurysms by focusing on the interplay between the wall shear stress, degeneration of the vessel wall, and the wall deformation. We construct numerical aneurysm models arisen from both straight and curved arteries, under the hypothesis that high local wall shear stress larger than a certain threshold value will lead to a linear decrease in the wall mechanical properties. In the straight model, the growth of aneurysm is small and only at the distal neck region, and the aneurysm stops growing after several steps. In contrast, in the curved model, the aneurysm continues to grow in height and width. Our computer simulation study shows that even if the wall shear stress inside an aneurysm is low, aneurysm development can occur due to degeneration of the wall distal and proximal to the aneurysm. Our study demonstrates the potential utility of rule-based numerical methods in the investigation of developmental biology of cardiovascular diseases.
机译:参考文献(43)Cited-By(7)由于缺乏实验和临床数据,研究动脉瘤的发展是一项艰巨的任务。当前的研究利用流固耦合(FSI)来模拟动脉瘤的形成和生长,方法是关注壁切应力,血管壁的变性和壁变形之间的相互作用。我们建立了由直的和弯曲的动脉产生的数字动脉瘤模型,其假设是,局部壁切应力过高(大于某个阈值)会导致壁力学性能线性下降。在直线模型中,动脉瘤的生长很小,仅在颈部远端区域,并且动脉瘤在经过几步后便停止生长。相反,在弯曲模型中,动脉瘤的高度和宽度持续增长。我们的计算机模拟研究表明,即使动脉瘤内的壁切应力低,由于动脉瘤远端和近端壁的变性也可能导致动脉瘤发展。我们的研究证明了基于规则的数值方法在心血管疾病发展生物学研究中的潜在实用性。

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