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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Characterization of three-dimensional anisotropic heart valve tissue mechanical properties using inverse finite element analysis
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Characterization of three-dimensional anisotropic heart valve tissue mechanical properties using inverse finite element analysis

机译:二维各向异性心脏瓣膜组织机械性能的表征使用逆有限元分析

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摘要

Computational modeling has an important role in design and assessment of medical devices. In computational simulations, considering accurate constitutive models is of the utmost importance to capture mechanical response of soft tissue and biomedical materials under physiological loading conditions. Lack of comprehensive three-dimensional constitutive models for soft tissue limits the effectiveness of computational modeling in research and development of medical devices. The aim of this study was to use inverse finite element (FE) analysis to determine three-dimensional mechanical properties of bovine pericardial leaflets of a surgical bioprosthesis under dynamic loading condition. Using inverse parameter estimation, 3D anisotropic Fung model parameters were estimated for the leaflets. The FE simulations were validated using experimental in-vitro measurements, and the impact of different constitutive material models was investigated on leaflet stress distribution. The results of this study showed that the anisotropic Fung model accurately simulated the leaflet deformation and coaptation during valve opening and closing. During systole, the peak stress reached to 3.17 MPa at the leaflet boundary while during diastole high stress regions were primarily observed in the commissures with the peak stress of 1.17 MPa. In addition, the Rayleigh damping coefficient that was introduced to FE simulations to simulate viscous damping effects of surrounding fluid was determined. 9C) 2016 Elsevier Ltd. All rights reserved.
机译:计算建模在医疗设备的设计和评估中具有重要作用。在计算模拟中,考虑到精确的本构模型是在生理负载条件下捕获软组织和生物医学材料的机械响应至关重要。软组织缺乏全面的三维本构模型限制了医疗器械研发的计算模型的有效性。本研究的目的是使用逆有限元(Fe)分析来确定动态负载条件下手术生物假体的牛心包小叶的三维力学性能。使用逆参数估计,为传单估计了3D各向异性荧光模型参数。使用实验体外测量验证了Fe模拟,对传单应力分布研究了不同组成材料模型的影响。该研究的结果表明,各向异性FUSG模型在阀门开口和闭合期间精确地模拟了小叶变形和辅助。在收缩过程中,在倾角高应力区域期间,在倾角界期间达到3.17MPa的峰值应力主要在膨胀高应力区域期间观察到1.17MPa的峰值应力。此外,确定了引入FE模拟以模拟周围流体的粘性阻尼效果的瑞利阻尼系数。 9C)2016 Elsevier Ltd.保留所有权利。

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