首页> 外文期刊>Journal of endovascular therapy: an official journal of the International Society of Endovascular Specialists >Corrosion resistance, surface evaluation, and geometric design comparison of five self-expanding nitinol stents used in clinical practice
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Corrosion resistance, surface evaluation, and geometric design comparison of five self-expanding nitinol stents used in clinical practice

机译:在临床实践中使用的五个自膨胀镍钛合金支架的耐腐蚀性,表面评估和几何设计比较

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Purpose: To investigate the corrosion resistance properties of 5 commercially available nitinol stents used to treat peripheral artery disease and compare their surface quality, elemental composition, and geometrical design. Methods: Samples of 5 different designs of nitinol peripheral stents [LifeStent (n=4), Philon (n=6), Epic (n=6), S.M.A.R.T. Control (n=7), and Complete SE (n=7)] were examined using stereomicroscopy, environmental scanning electron microscopy, and x-ray photoelectron spectroscopy. Corrosion resistance testing was performed in accordance with ASTM International Standard F2129-08. Results: Thirteen (43%) of 30 stents corroded during this experiment. Stent fracture was observed in 12 (92%) of these corroded stents. Mean breakdown potentials ranged from 517 to 835 mV (vs. Ag/AgCl) for the Philon, Complete SE, S.M.A.R.T. Control, Epic, and LifeStent models from lowest to highest. A statistically significant difference in breakdown potential was observed between the LifeStent vs. Philon stents (835 vs. 517 mV, p=0.01) and Epic vs. Philon stents (833 vs. 517 mV, p=0.03). Stents with lower breakdown potential and relative breakdown potentials were associated with a higher fracture frequency (Spearman correlation coefficient -0.44, p=0.015 and -0.869, p<0.01, respectively). Conclusion: In this in vitro study, corrosion led independently to stent fracture. There is a significant association between lower mean breakdown/relative breakdown potentials and stent fracture.
机译:目的:研究用于治疗外周动脉疾病的5种市售镍钛合金支架的耐腐蚀性,并比较其表面质量,元素组成和几何设计。方法:5种不同设计的镍钛合金外围支架样品[LifeStent(n = 4),Philon(n = 6),Epic(n = 6),S.M.A.R.T。使用立体显微镜,环境扫描电子显微镜和x射线光电子能谱检查了对照(n = 7)和完全SE(n = 7)。耐腐蚀性测试是根据ASTM国际标准F2129-08进行的。结果:30个支架中有13个(43%)在此实验中被腐蚀。在这些腐蚀的支架中有12个(92%)观察到了支架断裂。 Philon,Complete SE,S.M.A.R.T.的平均击穿电位范围为517至835 mV(vs.Ag/AgCl)。 Control,Epic和LifeStent模型从最低到最高。在LifeStent与Philon支架(835与517 mV,p = 0.01)和Epic与Philon支架(833与517 mV,p = 0.03)之间,观察到击穿电位的统计学差异。具有较低击穿电位和相对击穿电位的支架与较高的断裂频率相关(Spearman相关系数分别为-0.44,p = 0.015和-0.869,p <0.01)。结论:在这项体外研究中,腐蚀独立导致支架断裂。较低的平均击穿/相对击穿电位与支架断裂之间存在显着关联。

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