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INVESTIGATION OF STRUT THICKNESS IN CORONARY STENTS VIA FINITE ELEMENT ANALYSIS

机译:冠状动脉支架厚度的有限元分析

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摘要

Strut thickness in coronary stents has been shown to affect their clinical performance. The purpose of this investigation was to understand how stent strut thickness influenced stress in the vessel wall. Finite element modeling was used to compare stress distribution between a thick and thin strut stent in a curved coronary artery model. Specifically, we modeled two 8 mm long Guidant MULTI-LINK VISION stents, one with strut thickness of 81μm and the other with strut thickness of 112 μm. Results showed larger values of stress, both in the radial direction and in the circumferential direction, for the thicker stent model. As expected, these higher stress values occurred beneath the stent struts and at the edges of the stent. Stented vessel compliance measurements of both models revealed that the thick strut VISION stent is less compliant than the thin strut VISION stent. These results support the hypothesis that compliance mismatch between the stent and the host vessel contributes to excessive stress in the walls of stented vessels.
机译:冠状动脉支架的撑杆厚度已显示出会影响其临床性能。这项研究的目的是了解支架撑杆的厚度如何影响血管壁的应力。在弯曲的冠状动脉模型中,使用有限元建模比较厚撑杆和薄撑杆支架之间的应力分布。具体来说,我们对两个8 mm长的Guidant MULTI-LINK VISION支架建模,一个支架的支撑厚度为81μm,另一个支架的支撑厚度为112μm。结果表明,对于较厚的支架模型,径向和周向的应力值都较大。如预期的那样,这些较高的应力值发生在支架支柱下方和支架边缘。两种模型的支架血管顺应性测量结果显示,较厚的支柱VISION支架不如较薄的支柱VISION支架顺从。这些结果支持这样的假说,即支架与宿主血管之间的顺应性不匹配会导致支架血管壁上的压力过大。

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