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镍钛诺支架设计——理解轴向屈曲。

Nitinol stent design - understanding axial buckling.

作者信息

McGrath D J, O Brien B, Bruzzi M, McHugh P E

机构信息

Biomechanics Research Centre (BMEC), Biomedical Engineering, College of Engineering and Informatics, NUI Galway, Ireland.

Biomechanics Research Centre (BMEC), Biomedical Engineering, College of Engineering and Informatics, NUI Galway, Ireland.

出版信息

J Mech Behav Biomed Mater. 2014 Dec;40:252-263. doi: 10.1016/j.jmbbm.2014.08.029. Epub 2014 Sep 6.

Abstract

Nitinol׳s superelastic properties permit self-expanding stents to be crimped without plastic deformation, but its nonlinear properties can contribute towards stent buckling. This study investigates the axial buckling of a prototype tracheobronchial nitinol stent design during crimping, with the objective of eliminating buckling from the design. To capture the stent buckling mechanism a computational model of a radial force test is simulated, where small geometric defects are introduced to remove symmetry and allow buckling to occur. With the buckling mechanism ascertained, a sensitivity study is carried out to examine the effect that the transitional plateau region of the nitinol loading curve has on stent stability. Results of this analysis are then used to redesign the stent and remove buckling. It is found that the transitional plateau region can have a significant effect on the stability of a stent during crimping, and by reducing the amount of transitional material within the stent hinges during loading the stability of a nitinol stent can be increased.

摘要

镍钛诺的超弹性特性使自膨胀支架能够被卷曲而不发生塑性变形,但其非线性特性可能导致支架屈曲。本研究调查了一种原型气管支气管镍钛诺支架设计在卷曲过程中的轴向屈曲情况,目的是在设计中消除屈曲现象。为了捕捉支架屈曲机制,模拟了径向力测试的计算模型,其中引入了小的几何缺陷以消除对称性并允许屈曲发生。在确定了屈曲机制后,进行了敏感性研究,以检查镍钛诺加载曲线的过渡平台区域对支架稳定性的影响。然后,该分析结果被用于重新设计支架并消除屈曲。研究发现,过渡平台区域对支架在卷曲过程中的稳定性可能有显著影响,通过减少支架铰链在加载过程中过渡材料的量,可以提高镍钛诺支架的稳定性。

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