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Wave reflection and transmission in multiply stented blood vessels

机译:多支架血管中的波反射和透射

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摘要

Closed circulatory systems display an exquisite balance between vascular elasticity and viscous fluid effects, to induce pulse-smoothing and avoid resonance during the cardiac cycle. Stents in the arterial tree alter this balance through stiffening and because a periodic structure is introduced, capable of interacting with the fluid in a complex way. While the former feature has been investigated, the latter received no attention so far. But periodic structures are the building blocks of metamaterials, known for their ‘non-natural’ behaviour. Thus, the investigation of a stent's periodic microstructure dynamical interactions is crucial to assess possible pathological responses. A one-dimensional fluid–structure interaction model, simple enough to allow an analytical solution for situations of interest involving one or two interacting stents, is introduced. It is determined: (i) whether or not frequency bands exist in which reflected blood pulses are highly increased and (ii) if these bands are close to the characteristic frequencies of arteries and finally, (iii) if the internal structure of the stent can sensibly affect arterial blood dynamics. It is shown that, while the periodic structure of an isolated stent can induce anomalous reflection only in pathological conditions, the presence of two interacting stents is more critical, and high reflection can occur at frequencies not far from the physiological values.
机译:封闭的循环系统在血管弹性和粘性流体作用之间显示出精妙的平衡,以引起脉搏平滑并避免心动周期中的共振。动脉树中的支架通过加固来改变这种平衡,并且因为引入了一种周期性结构,能够以复杂的方式与流体相互作用。尽管已对前者的功能进行了研究,但到目前为止,后者并未受到关注。但是,周期性结构是超材料的基本组成部分,以其“非自然”行为而闻名。因此,研究支架的周期性微结构动力相互作用对于评估可能的病理反应至关重要。引入了一维流体-结构相互作用模型,该模型足够简单,可以为涉及一个或两个相互作用支架的感兴趣的情况提供分析解决方案。确定:(i)是否存在反射的脉搏高度增加的频带,以及(ii)这些频带是否接近动脉的特征频率,最后,(iii)支架的内部结构是否可以明智地影响动脉血液动力学。结果表明,虽然孤立的支架的周期性结构仅在病理条件下会引起异常反射,但两个相互作用支架的存在更为关键,并且在离生理值不远的频率处会发生高反射。

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