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Numerical Simulation of Stent Angioplasty with Predilation: an Investigation into Lesion Constitutive Representation and Calcification Influence

机译:带扩张术的支架血管成形术的数值模拟:病变组织表现和钙化影响的研究

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摘要

It is acceptable clinical practice to predilate a severely occluded vessel to allow better positioning of endovascular stents, and while the impact of this intervention has been examined for aggregate response in animals there has been no means to examine whether there are specific vessels that might benefit. Finite element methods offer the singular ability to explore the mechanical response of arteries with specific pathologic alterations in mechanics to stenting and predilation. We examined varying representations of atherosclerotic tissue including homogeneous and heterogeneous dispersion of calcified particles, and elastic, pseudo-elastic, and elastic-plastic constitutive representations of bulk atherosclerotic tissue. The constitutive representations of the bulk atherosclerotic tissue were derived from experimental test data and highlight the importance of accounting for testing mode of loading. The impact of arterial predilation is presented and, in particular, its effect on intimal predicted damage, atherosclerotic tissue von Mises and maximum principal stresses, and luminal deformation was dependent on the type of constitutive representation of diseased tissue, particularly in the presence of calcifications.
机译:扩张严重阻塞的血管以更好地放置血管内支架是一种可接受的临床实践,尽管已经针对动物的总体反应检查了这种干预措施的影响,但仍没有办法检查是否存在可能有益的特定血管。有限元方法提供了探查动脉的机械反应的独特能力,这些机械反应在力学上对支架置入和扩张的特定病理改变。我们检查了动脉粥样硬化组织的各种表现形式,包括钙化颗粒的均质和非均质分散,以及大块动脉粥样硬化组织的弹性,假弹性和弹塑性本构表示。大块动脉粥样硬化组织的本构表示是从实验测试数据中得出的,并突出了考虑负荷测试模式的重要性。提出了动脉扩张的影响,尤其是其对内膜预测损伤,动脉粥样硬化组织von Mises和最大主应力的影响,并且管腔变形取决于病变组织的本构表现类型,尤其是在钙化的情况下。

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