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A novel approach to design lesion-specific stents for minimum recoil

机译:一种设计特定病变支架的新方法,可最大程度地减少后坐力

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摘要

Stent geometries are obtained by topology optimization for minimized compliance under different stenosis levels and plaque material types. Three levels of stenosis by cross-sectional area, i.e., 30%, 40%, and 50% and three different plaque material properties, i.e., calcified, cellular, and hypocellular, were studied. The raw optimization results were converted to clear design concepts and their performance was evaluated by implanting them in their respective stenosed artery types using finite element analysis. The results were compared with a generic stent in similar arteries, which showed that the new designs showed less recoil. This work provides a concept that stents could be tailored to specific lesions in order to minimize recoil and maintain a patent lumen in stenotic arteries.
机译:支架的几何形状是通过拓扑优化获得的,以便在不同的狭窄水平和牙菌斑材料类型下将顺应性降至最低。研究了三种横截面狭窄水平,即30%,40%和50%,以及三种不同的斑块材料特性,即钙化的,细胞的和低细胞的。原始的优化结果被转换为清晰的设计概念,并通过使用有限元分析将其植入各自的狭窄动脉中来评估其性能。将结果与类似动脉中的通用支架进行了比较,结果表明新设计显示出更少的后坐力。这项工作提出了一个概念,即可以针对特定的病变量身定制支架,以最大程度地减少后坐力并保持狭窄动脉的内腔通畅。

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