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通过材料科学优化主动脉弓支架移植物性能:一项探索性研究。

Optimizing Aortic Arch Stent-Graft Performance Through Material Science: An Exploratory Study.

作者信息

Liu Xiaobing, Zhang Linxuan, Liu Zongchao, Teng Shuai

机构信息

College of Transportation and Logistics, Guangzhou Railway Polytechnic, Guangzhou 511300, China.

School of Civil and Transportation Engineering, Guangzhou University, Guangzhou 510006, China.

出版信息

Materials (Basel). 2025 Jul 31;18(15):3592. doi: 10.3390/ma18153592.

Abstract

Thoracic endovascular aortic repair (TEVAR) for cardiovascular diseases often encounters complications that are closely linked to the mechanical properties of stent-grafts. Both the design and material properties influence device performance, but the specific impacts of material properties remain underexplored and poorly understood. This study aims to fill this gap by systematically investigating how material science can modulate stent-graft mechanics. Four types of bare nitinol stents combined with expanded polytetrafluoroethylene (e-PTFE) or polyethylene terephthalate (PET) grafts were modeled via finite element analysis, creating eight stent-graft configurations. Key mechanical properties-flexibility, crimpability, and fatigue performance-were evaluated to dissect material effects. The results revealed that nitinol's properties significantly influenced all performance metrics, while PET grafts notably enhanced flexibility and fatigue life. No significant differences in equivalent stress were found between PET and e-PTFE grafts, and both had minimal impacts on radial force. This work underscores the potential of material science-driven optimization to enhance stent-graft performance for improved clinical outcomes.

摘要

用于治疗心血管疾病的胸主动脉腔内修复术(TEVAR)常常会遇到一些并发症,这些并发症与覆膜支架的机械性能密切相关。设计和材料特性都会影响器械性能,但材料特性的具体影响仍未得到充分研究,也了解甚少。本研究旨在通过系统研究材料科学如何调节覆膜支架力学来填补这一空白。通过有限元分析对四种类型的裸镍钛诺支架与膨体聚四氟乙烯(e-PTFE)或聚对苯二甲酸乙二酯(PET)移植物相结合的情况进行建模,创建了八种覆膜支架构型。对关键机械性能——柔韧性、可卷曲性和疲劳性能——进行评估,以剖析材料的影响。结果表明,镍钛诺的性能显著影响所有性能指标,而PET移植物显著提高了柔韧性和疲劳寿命。PET移植物和e-PTFE移植物之间在等效应力方面未发现显著差异,且两者对径向力的影响均最小。这项工作强调了材料科学驱动的优化在提高覆膜支架性能以改善临床结果方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3870/12348750/8d4aef95f2c7/materials-18-03592-g001.jpg

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