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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Effect of two-year degradation on mechanical interaction between a bioresorbable scaffold and blood vessel
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Effect of two-year degradation on mechanical interaction between a bioresorbable scaffold and blood vessel

机译:两年降解对生物吸收支架和血管机械相互作用的影响

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Abstract This paper aims to evaluate the mechanical behaviour of a bioresorbable polymeric coronary scaffold using finite element method, focusing on scaffold-artery interaction during degradation and vessel remodelling. A series of nonlinear stress-strain responses was constructed to match the experimental measurement of radial stiffness and strength for polymeric scaffolds over 2-year in-vitro degradation times. Degradation process was modelled by incorporating the change of material property as a function of time. Vessel remodelling was realised by changing the size of artery-plaque system manually, according to the clinical data in literature. Over degradation times, stress on the scaffold tended to increase firstly and then decreased gradually, corresponding to the changing yield stress of the scaffold material; whereas the stress on the plaque and arterial layers showed a continuous decrease. In addition, stress reduction was also observed for scaffold, plaque and artery in the simulations with the consideration of vessel remodelling. For the first time, the work offered insights into mechanical interaction between a bioresorbable scaffold and blood vessel during two-year in-vitro degradation, which has significance in assisting with further development of bioresorbable implants for treating cardiovascular diseases. Graphical abstract Display Omitted Highlights ? Interaction between scaffold and artery was studied over two-year degradation. ? Stress-strain responses of PLLA over degradation were calibrated against test data. ? Scaffold performance over degradation are controlled by yield stress and modulus. ? Stresses on scaffold increased firstly, then decreased gradually over degradation. ? Stress reduction was observed for plaque-artery during degradation and remodelling.
机译:摘要本文旨在评估使用有限元法测定生物吸收聚合物冠状动脉支架的力学行为,聚焦降解和血管重塑过程中的支架 - 动脉相互作用。构建了一系列非线性应力 - 应变响应,以匹配聚合物支架在体外降解时间超过2年的聚合物支架的径向刚度和强度的实验测量。通过将材料性能的变化作为时间的函数改变来建模降解过程。根据文献中的临床资料,通过手动改变动脉斑块系统的大小来实现血管重塑。过度降解时间,支架上的应力倾向于首先增加,然后逐渐降低,对应于支架材料的屈服应力的变化;虽然斑块和动脉层上的应力表现出连续减少。此外,考虑到血管重塑,还观察到仿真中的支架,斑块和动脉的应力降低。首次,在两年的体外降解期间,该工作首次提供了生物可吸收支架和血管之间的机械相互作用,这对于辅助进一步发展生物吸收植入物来治疗心血管疾病具有重要意义。图形抽象显示省略了亮点?在两年的降解中研究了支架和动脉之间的相互作用。还PLLA过度降解的应力 - 应变响应校准测试数据。还通过屈服应力和模量来控制脚手架性能。还首先增加了支架上的应力,然后逐渐降解降解。还在降解和重塑期间,观察到斑块动脉的应力降低。

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