首页> 外文期刊>Communications in Numerical Methods in Engineering >A framework for designing patient-specific bioprosthetic heart valves using immersogeometric fluid-structure interaction analysis
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A framework for designing patient-specific bioprosthetic heart valves using immersogeometric fluid-structure interaction analysis

机译:使用浸入几何流体-结构相互作用分析设计患者特定的生物人工心脏瓣膜的框架

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Numerous studies have suggested that medical image derived computational mechanics models could be developed to reduce mortality and morbidity due to cardiovascular diseases by allowing for patient-specific surgical planning and customized medical device design. In this work, we present a novel framework for designing prosthetic heart valves using a parametric design platform and immersogeometric fluid-structure interaction (FSI) analysis. We parameterize the leaflet geometry using several key design parameters. This allows for generating various perturbations of the leaflet design for the patient-specific aortic root reconstructed from the medical image data. Each design is analyzed using our hybrid arbitrary Lagrangian-Eulerian/immersogeometric FSI methodology, which allows us to efficiently simulate the coupling of the deforming aortic root, the parametrically designed prosthetic valves, and the surrounding blood flow under physiological conditions. A parametric study is performed to investigate the influence of the geometry on heart valve performance, indicated by the effective orifice area and the coaptation area. Finally, the FSI simulation result of a design that balances effective orifice area and coaptation area reasonably well is compared with patient-specific phase contrast magnetic resonance imaging data to demonstrate the qualitative similarity of the flow patterns in the ascending aorta.
机译:大量研究表明,可以通过允许针对患者的手术计划和定制的医疗设备设计来开发医学图像衍生的计算力学模型,以降低由于心血管疾病引起的死亡率和发病率。在这项工作中,我们提出了使用参数化设计平台和浸入式几何流体-结构相互作用(FSI)分析设计人工心脏瓣膜的新颖框架。我们使用几个关键的设计参数来参数化传单的几何形状。这允许针对从医学图像数据重建的针对患者的主动脉根生成传单设计的各种扰动。使用我们的混合拉格朗日-欧拉/浸入式几何FSI方法对每种设计进行分析,这使我们能够在生理条件下有效地模拟变形的主动脉根,参数化设计的人工瓣膜和周围血流的耦合。进行参数研究以研究几何形状对心脏瓣膜性能的影响,以有效孔口面积和接合面积表示。最后,将合理地平衡有效孔口面积和接合面积的设计的FSI仿真结果与患者特定的相衬磁共振成像数据进行比较,以证明升主动脉中血流模式的定性相似性。

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