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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Fluid-Structure Interaction Models of Bioprosthetic Heart Valve Dynamics in an Experimental Pulse Duplicator
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Fluid-Structure Interaction Models of Bioprosthetic Heart Valve Dynamics in an Experimental Pulse Duplicator

机译:实验脉冲复印机中生物假心瓣膜动力学的流体结构相互作用模型

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摘要

Computer modeling and simulation is a powerful tool for assessing the performance of medical devices such as bioprosthetic heart valves (BHVs) that promises to accelerate device design and regulation. This study describes work to develop dynamic computer models of BHVs in the aortic test section of an experimental pulse-duplicator platform that is used in academia, industry, and regulatory agencies to assess BHV performance. These computational models are based on a hyperelastic finite element extension of the immersed boundary method for fluid-structure interaction (FSI). We focus on porcine tissue and bovine pericardial BHVs, which are commonly used in surgical valve replacement. We compare our numerical simulations to experimental data from two similar pulse duplicators, including a commercial ViVitro system and a custom platform related to the ViVitro pulse duplicator. Excellent agreement is demonstrated between the computational and experimental results for bulk flow rates, pressures, valve open areas, and the timing of valve opening and closure in conditions commonly used to assess BHV performance. In addition, reasonable agreement is demonstrated for quantitative measures of leaflet kinematics under these same conditions. This work represents a step towards the experimental validation of this FSI modeling platform for evaluating BHVs.
机译:计算机建模和仿真是一种强大的工具,用于评估医疗器械(BHV)等医疗器械(BHV)的性能,承诺加速设备设计和调节。本研究描述了在学术界,工业和监管机构使用的实验脉冲 - 复制器平台的主动脉测试部分中开发BHV的动态计算机模型,以评估BHV性能。这些计算模型基于用于流体结构相互作用(FSI)的浸没边界方法的超塑性有限元延伸。我们专注于猪组织和牛心包BHV,其通常用于手术瓣膜置换物。我们将数字模拟与来自两个类似的脉冲复制器的实验数据进行比较,包括商业Vivitro系统和与Vivitro脉冲复制器相关的定制平台。在批量流量,压力,阀门开口区域和阀门开口的时序通常用于评估BHV性能的条件下,在散装流量,压力,阀门开口区域和阀门的时序之间证明了良好的一致性。此外,在这些相同条件下,对传单运动学的定量措施证明了合理的协议。这项工作代表了迈向评估BHVS的FSI建模平台的实验验证的一步。

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