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基于降解模型的新型可降解锌合金支架的机械分析。

Mechanical analysis of a novel biodegradable zinc alloy stent based on a degradation model.

机构信息

College of Life Science and Bioengineering, Beijing University of Technology, No.100, Pingleyuan, Chaoyang District, Beijing, 100124, China.

Northeastern University, Shenyang, 110819, Liaoning, China.

出版信息

Biomed Eng Online. 2019 Apr 2;18(1):39. doi: 10.1186/s12938-019-0661-2.

Abstract

BACKGROUND

Biodegradable stents display insufficient scaffold performance due to their poor Young's Modulus. In addition, the corresponding biodegradable materials harbor weakened structures during degradation processes. Consequently, such stents have not been extensively applied in clinical therapy. In this study, the scaffold performance of a patented stent and its ability to reshape damaged vessels during degradation process were evaluated.

METHODS

A common stent was chosen as a control to assess the mechanical behavior of the patented stent. Finite element analysis was used to simulate stent deployment into a 40% stenotic vessel. A material corrosion model involving uniform and stress corrosion was implemented within the finite element framework to update the stress state following degradation.

RESULTS

The results showed that radial recoiling ratio and mass loss ratio of the patented stent is 7.19% and 3.1%, respectively, which are definitely lower than those of the common stent with the corresponding values of 22.6% and 14.1%, respectively. Moreover, the patented stent displayed stronger scaffold performance in a corrosive environment and the plaque treated with patented stents had a larger and flatter lumen.

CONCLUSION

Owing to its improved mechanical performance, the novel biodegradable zinc alloy stent reported here has high potential as an alternative choice in surgery.

摘要

背景

可生物降解支架由于杨氏模量较差,表现出不足的支架性能。此外,相应的可生物降解材料在降解过程中具有较弱的结构。因此,这些支架尚未广泛应用于临床治疗。在这项研究中,评估了专利支架的支架性能及其在降解过程中重塑受损血管的能力。

方法

选择普通支架作为对照,以评估专利支架的机械性能。使用有限元分析模拟支架在 40%狭窄血管中的部署。在有限元框架内实现了涉及均匀腐蚀和应力腐蚀的材料腐蚀模型,以在降解后更新应力状态。

结果

结果表明,专利支架的径向回弹率和质量损失率分别为 7.19%和 3.1%,明显低于普通支架的 22.6%和 14.1%。此外,专利支架在腐蚀性环境中表现出更强的支架性能,用专利支架处理的斑块具有更大和更平坦的管腔。

结论

由于其改进的机械性能,这里报道的新型可生物降解锌合金支架作为手术中的替代选择具有很大的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8005/6444843/d701bdbe7e52/12938_2019_661_Fig1_HTML.jpg

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