Kumar Gideon V Praveen, Mathew Lazar
School of Biotechnology, Chemical and Biomedical Engineering, VIT University, Vellore, India.
Cardiovasc Revasc Med. 2010 Apr-Jun;11(2):101-4. doi: 10.1016/j.carrev.2009.04.005.
Valve stents are small cylindrical structures introduced in stenosed valves to replace them and restore blood flow. High radial force has become an essential feature of these stents. The primary aim of this investigation was to investigate the effects of varying stent "design parameters" on its radial force by using the finite element method (FEM). The improved model design was carried out to meet the functional and surgical requirements. The finite element model to evaluate radial force of stent was dependant on various design parameters. The results show that amplitude was the dominant parameter in this study. Increasing either strut circumference or thickness generally improved radial force of stent. However, increasing either amplitude or radius of curvature generally weakened it. In conclusion, FEM can quantify the compressive mechanical property of stent and help designers to optimize stent systems.
瓣膜支架是一种小型圆柱形结构,被植入狭窄瓣膜以替代瓣膜并恢复血流。高径向力已成为这些支架的一个基本特征。本研究的主要目的是使用有限元方法(FEM)研究不同的支架“设计参数”对其径向力的影响。进行了改进的模型设计以满足功能和手术要求。评估支架径向力的有限元模型取决于各种设计参数。结果表明,在本研究中振幅是主要参数。增加支柱周长或厚度通常会提高支架的径向力。然而,增加振幅或曲率半径通常会削弱它。总之,有限元方法可以量化支架的压缩力学性能,并帮助设计人员优化支架系统。