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Simulation of transcatheter aortic valve implantation under consideration of leaflet calcification

机译:考虑小叶钙化的经导管主动脉瓣植入的模拟

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Transcatheter aortic valve implantation (TAVI) is a minimally invasive off-pump procedure to replace diseased aortic heart valves. Known complications include paravalvular leaks, atrioventricular blocks, coronary obstruction and annular rupture. Careful procedure planning including appropriate stent selection and sizing are crucial. Few patient-specific geometric parameters, like annular diameters, annular perimeter and measurement of the distance to the coronary ostia, are currently used within this process. Biomechanical simulation allows the consideration of extracted anatomy and material parameters for the intervention, which may improve planning and execution phases. We present a simulation workflow using a fully segmented aortic root anatomy, which was extracted from pre-operative CT-scan data and apply individual material models and parameters to predict the procedure outcome. Our results indicate the high relevance of calcification location and size for intervention planning, which are not sufficiently considered at this time. Our analysis can further provide guidance for accurate, patient-specific device positioning and future adaptations to stent design.
机译:经导管主动脉瓣植入术(TAVI)是一种微创的体外循环手术,可替代病变的主动脉心脏瓣膜。已知的并发症包括瓣周漏,房室传导阻滞,冠状动脉阻塞和环形破裂。仔细的手术计划,包括适当的支架选择和尺寸确定至关重要。目前在该过程中很少使用患者特定的几何参数,例如环形直径,环形周长和到冠状动脉口的距离的测量值。生物力学模拟允许考虑提取的解剖结构和材料参数进行干预,这可以改善计划和执行阶段。我们提出了一种使用完全分段的主动脉根解剖结构的模拟工作流程,该主动脉根解剖结构是从术前CT扫描数据中提取的,并应用了单独的材料模型和参数来预测手术结果。我们的结果表明,钙化位置和大小与干预计划的相关性很高,目前尚未充分考虑。我们的分析可进一步为准确,针对患者的设备定位以及将来对支架设计的适应性提供指导。

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