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Topology optimization of a novel stent platform with drug reservoirs.

机译:具有药物容器的新型支架平台的拓扑优化。

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摘要

The new generation of drug-eluting stents (DES) is required to control drug release kinetics. A novel DES (the Conor stent) with drug reservoirs on struts has been engineered. Topology optimization of one Conor stent strut was based on the commercial finite element analysis code OptiStruct, with the aim of increasing the strut stiffness while retaining its drug holding capacity. Results show that the element density distribution of the strut model was optimized with manufacturing constraints of extrusion constraint and minimum member size control. The optimal result was directly transformed to a clear, manufacturable design concept using the OptiStruct utility OSSmooth. The final manufacturing design increased the strut stiffness and yielded better stress distribution, as compared to the original strut design under the same loading. Topology optimization may help designers devise novel stent platforms for future DES with drug reservoirs and adequate scaffolding.
机译:需要新一代药物洗脱支架(DES)来控制药物释放动力学。已经设计出了一种新型DES(Conor支架),该支架在支杆上装有药物储存器。一个Conor支架支杆的拓扑优化是基于商业有限元分析代码OptiStruct,其目的是在增加支杆刚度的同时保持其药物保持能力。结果表明,在挤压约束和最小构件尺寸控制的制造约束条件下,优化了支撑模型的单元密度分布。使用OptiStruct实用程序OSSmooth,可以将最佳结果直接转换为清晰,可制造的设计概念。与相同载荷下的原始支撑杆设计相比,最终的制造设计提高了支撑杆的刚度并产生了更好的应力分布。拓扑优化可以帮助设计人员设计新颖的支架平台,以用于将来的带有药物储存库和足够脚手架的DES。

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