Wolfson School of Mechanical, Electrical and Manufacturing Engineering, Loughborough University, Epinal Way, Loughborough LE11 3TU, UK.
Wolfson School of Mechanical, Electrical and Manufacturing Engineering, Loughborough University, Epinal Way, Loughborough LE11 3TU, UK.
J Biomech. 2021 Mar 30;118:110295. doi: 10.1016/j.jbiomech.2021.110295. Epub 2021 Feb 4.
Fatigue resistance of nitinol stents implanted in femoropopliteal arteries is a critical issue because of their harsh biomechanical environment. Limb flexions due to daily walk expose the femoropopliteal arteries and, subsequently, the implanted stents to large cyclic deformations, which may lead to fatigue failure of the smart self-expandable stents. For the first time, this paper utilised the up-to-date measurements of walk-induced motion of a human femoropopliteal artery to investigate the fatigue behaviour of nitinol stent after implantation. The study was carried out by modelling the processes of angioplasty, stent crimping, self-expansion and deformation under diastolic-systolic blood pressure, repetitive bending, torsion and axial compression as well as their combination. The highest risk of fatigue failure of the nitinol stent occurs under a combined loading condition, with the bending contributing the most, followed by compression and torsion. The pulsatile blood pressure alone hardly causes any fatigue failure of the stent. The work is significant for understanding and improving the fatigue performance of nitinol stents through innovative design and procedural optimisation.
由于其恶劣的生物力学环境,植入股浅动脉的镍钛诺支架的耐疲劳性是一个关键问题。由于日常行走导致的肢体弯曲会使股浅动脉和随后植入的支架发生大的循环变形,这可能导致智能自扩张支架发生疲劳失效。本文首次利用最新测量的人体股浅动脉行走引起的运动来研究植入后的镍钛诺支架的疲劳行为。该研究通过模拟血管成形术、支架卷曲、在舒张-收缩血压下的自扩张以及变形、重复弯曲、扭转和轴向压缩及其组合的过程来进行。在联合加载条件下,镍钛诺支架发生疲劳失效的风险最高,其中弯曲的影响最大,其次是压缩和扭转。单纯的脉动血压几乎不会导致支架发生任何疲劳失效。这项工作对于通过创新设计和程序优化来理解和提高镍钛诺支架的疲劳性能具有重要意义。