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首页> 外文期刊>PLoS One >From the real device to the digital twin: A coupled experimental-numerical strategy to investigate a novel bioresorbable vascular scaffold
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From the real device to the digital twin: A coupled experimental-numerical strategy to investigate a novel bioresorbable vascular scaffold

机译:从真实的设备到数字双胞胎:耦合实验 - 探讨新型生物可吸收血管支架的实验性策略

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摘要

The purpose of this work is to propose a workflow that couples experimental and computational activities aimed at developing a credible digital twin of a commercial coronary bioresorbable vascular scaffold when direct access to data about material mechanical properties is not possible. Such a situation is be faced when the manufacturer is not involved in the study, thus directly investigating the actual device is the only source of information available. The object of the work is the Fantom? Encore polymeric stent (REVA Medical) made of Tyrocore?. Four devices were purchased and used in mechanical tests that are easily reproducible in any mechanical laboratory, i.e. free expansion and uniaxial tension testing, the latter performed with protocols that emphasized the rate-dependent properties of the polymer. Given the complexity of the mechanical behaviour observed experimentally, it was chosen to use the Parallel Rehological Framework material model, already used in the literature to describe the behaviour of other polymers, such as PLLA. Calibration of the material model was based on simulations that replicate the tensile test performed on the device. Given the high number of material parameters, a plan of simulations was done to find the most suitable set, varying each parameter value in a feasible range and considering a single repetitive unit of the stent, neglecting residual stresses generated by crimping and expansion. This strategy resulted in a significant reduction of computational cost. The performance of the set of parameters thus identified was finally evaluated considering the whole delivery system, by comparing the experimental results with the data collected simulating free expansion and uniaxial tension testing. Moreover, radial force testing was numerically performed and compared with literature data. The obtained results demonstrated the effectiveness of the digital twin development pipeline, a path applicable to any commercial device whose geometric structure is based on repetitive units.
机译:这项工作的目的是提出一种工作流程,即在不可能进入有关材料机械性能的数据的直接访问数据时,将实验和计算活动耦合旨在开发商业冠状动脉可吸收的血管支架的可信数码双胞胎。当制造商不涉及该研究时面临这种情况,从而直接调查实际设备是唯一可用信息的源泉。这项工作的对象是幻想?通过Tyrocore制成的聚合物支架(Reva Medical)?购买了四种器件,并用于机械测试,在任何机械实验室中容易再现,即自由膨胀和单轴张力测试,后者用强调聚合物的速率依赖性性能的方案进行。鉴于实验观察到的机械行为的复杂性,选择使用该文献中已经使用的平行再生框架材料模型来描述其他聚合物的行为,例如PLLA。材料模型的校准是基于模拟,其复制在设备上进行的拉伸试验。考虑到大量的材料参数,完成模拟计划以找到最合适的组,在可行范围内改变每个参数值,并考虑支架的单个重复单元,忽略通过压接和膨胀产生的残余应力。该策略导致计算成本显着降低。通过将实验结果与模拟自由膨胀和单轴张力测试的数据进行比较,最终评估如此识别的一组参数的性能。此外,用文献数据进行数值进行和比较径向力测试。所获得的结果证明了数字双胞胎开发管道的有效性,一种适用于任何商业设备的路径,其几何结构基于重复单元。

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