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Rapid prototyping of silicone-based phantom models for stent simulation validation

机译:基于硅树脂的幻象模型的快速原型制作,用于支架仿真验证

摘要

Robust and reliable development of stent designs and materials is an important aspect for medical device manufacturing in relation to procedures such as Transcatheter Aortic-Valve Implantation. It is essential to perform a variety of experiments at an early stage of this process to define suitable material requirements and stent geometry. Mechanical simulation of realistic use case scenarios is a cost and time effective approach to optimize this task. In silico experiments can assist the device development phase and successively support patient-specific procedure planning. To establish confidence in the predictive power of in silico models and the corresponding simulation results, we therefore present a validation framework for stenting simulations. Our workflow allows the comparison of finite element analysis with actual mechanical response tests using optical tracking of stent deformation in artificial vessel phantom models. The results indicate that stent and vessel deformation can be analysed and validated across well-defined tissue properties within the presented framework.
机译:支架设计和材料的稳健可靠的开发是与诸如经导管主动脉瓣植入术相关的医疗设备制造的重要方面。必须在此过程的早期阶段进行各种实验,以定义合适的材料要求和支架几何形状。实际用例场景的机械模拟是优化此任务的节省成本和时间的方法。电子计算机实验可以协助设备开发阶段,并逐步支持针对特定患者的手术计划。为了建立对计算机模型的预测能力和相应模拟结果的信心,因此,我们提出了用于支架模拟的验证框架。我们的工作流程允许将人造血管模型模型中支架变形的光学跟踪与有限元分析与实际机械响应测试进行比较。结果表明,可以在提出的框架内跨明确定义的组织特性分析和验证支架和血管的变形。

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