Shen Xiang, Zhu Hongfei, Ji Song, Jiang Jiabao, Deng Yongquan
School of Mechanical Engineering, Jiangsu University, Zhenjiang, China.
Proc Inst Mech Eng H. 2019 Oct;233(10):989-998. doi: 10.1177/0954411919862400. Epub 2019 Jul 5.
Stenting has achieved great success in treating cardiovascular diseases due to its high efficiency and minimal invasiveness. However, fatigue of stents severely limits its long-term outcome. In this article, finite element method was adopted to study the effects of arterial tapering and stent material on the fatigue performance of stents. A series of tapered vessels with different taper levels and two sets of stents with different materials were modeled. The Goodman diagram was used to evaluate the fatigue resistance of stents. Results showed that the fatigue resistance of stents can be extremely improved by simply changing stent material. In addition, the taper of the arteries had an important influence on the fatigue resistance of the stent. The fatigue life of the stent will be shortened with the increase of the arterial taper. The method that predicted stent fatigue life in tapered vessels can help clinicians select stents that are more suitable for tapered vessels and help stent engineers design stents that are more resistant to fatigue.
由于其高效性和微创性,支架植入术在治疗心血管疾病方面取得了巨大成功。然而,支架疲劳严重限制了其长期疗效。在本文中,采用有限元方法研究动脉锥度和支架材料对支架疲劳性能的影响。建立了一系列具有不同锥度水平的锥形血管模型以及两组不同材料的支架模型。利用古德曼图评估支架的抗疲劳性能。结果表明,简单地改变支架材料就能极大地提高支架的抗疲劳性能。此外,动脉锥度对支架的抗疲劳性能有重要影响。随着动脉锥度的增加,支架的疲劳寿命会缩短。预测锥形血管中支架疲劳寿命的方法可以帮助临床医生选择更适合锥形血管的支架,并帮助支架工程师设计更抗疲劳的支架。