Szabadíts Péter, Puskás Zsolt, Dobránszky János
Budapest University of Technology and Economics, Department of Materials Science and Engineering, Budapest, Hungary.
Acta Bioeng Biomech. 2009;11(3):11-8.
Coronary stents are the most important supports in present day cardiology. Flexibility and trackability are two basic features of stents. In this paper, four different balloon-expandable coronary stent systems were investigated mechanically in order to compare their suitability. The coronary stent systems were assessed by measurements of stent flexibility as well as by comparison of forces during simulated stenting in a self-investigated coronary vessel model. The stents were cut by laser from a single tube of 316L stainless steel or L-605 (CoCr) cobalt chromium alloy. The one-and four-point bending tests were carried out to evaluate the stent flexibility E x I (Nmm(2)), under displacement control in crimped and expanded configurations. The flexibility of stents would be rather dependent on the design than on raw material. In general a more flexible stent needs lower tracking force during the implantation. The L-605 raw material stents need lower track force to pass through in the vessel model than the 316L raw material stents. The sort and long stents passed through the curved vessel model in different ways. The long stents nestled to the vessel wall at the outer arc and bent, while the short stents did not bend in the curve, only the delivery systems bent.
冠状动脉支架是当今心脏病学中最重要的支撑物。柔韧性和可跟踪性是支架的两个基本特性。在本文中,对四种不同的球囊扩张式冠状动脉支架系统进行了力学研究,以比较它们的适用性。通过测量支架柔韧性以及在自行研究的冠状动脉血管模型中模拟支架植入过程中的力比较,对冠状动脉支架系统进行了评估。这些支架由316L不锈钢或L-605(钴铬)钴铬合金单管通过激光切割而成。在卷曲和扩张配置下,在位移控制下进行了单点和四点弯曲试验,以评估支架柔韧性E x I(Nmm(2))。支架的柔韧性更多地取决于设计而非原材料。一般来说,更柔韧的支架在植入过程中需要更低的跟踪力。L-605原材料支架在血管模型中通过时所需的跟踪力比316L原材料支架低。不同类型和长度的支架以不同方式通过弯曲的血管模型。长支架在外弧处紧贴血管壁并弯曲,而短支架在曲线处不弯曲,只有输送系统弯曲。