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A new way to reduce flow disturbance in endovascular stents: a numerical study.

机译:减少血管内支架血流紊乱的新方法:一项数值研究。

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摘要

Traditional commercial stents are made of wires with square or semi-circular cross-sections that lead to flow disturbance, which plays an important role in the initiation and progression of restenosis. A new stent with streamlined cross-sectional wires was proposed and researched numerically for its hemodynamic performance. Simplified models of stents with square, semi-circular, or streamlined cross-sectional wires were constructed numerically. Blood flows in the three models were simulated using computational fluid dynamics methods, and compared in terms of flow pattern, wall shear stress (WSS), and oscillating shear index (OSI). The results showed that when compared with the two traditional stents, the new stent with streamlined cross-sectional wires induced almost no flow disturbance, significantly enhanced WSS, and reduced the value of OSI within the stent. The present preliminary study indicates that the optimization of the cross-sectional shape of stent wires ought to be considered in the structural design for endovascular stents.
机译:传统的商用支架由具有方形或半圆形横截面的线材制成,这些线材会导致流动障碍,这在再狭窄的发生和发展中起着重要作用。提出了一种新型的流线型截面金属丝支架,并对其血液动力学性能进行了数值研究。用数字构造了具有正方形,半圆形或流线型横截面金属丝的支架的简化模型。使用计算流体动力学方法对这三个模型中的血流进行了仿真,并根据流型,壁切应力(WSS)和振荡剪切指数(OSI)进行了比较。结果表明,与两种传统支架相比,具有流线型横截面钢丝的新型支架几乎不会引起流动干扰,显着增强了WSS,并降低了支架内的OSI值。目前的初步研究表明,在血管内支架的结构设计中应考虑优化支架线的横截面形状。

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