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A NOVEL APPROACH TO ACCOUNT FOR NON-AFFINE FIBER KINEMATICS IN STRUCTURAL CONTINUUM MODELS FOR HEART VALVES LEAFLETS

机译:一种新的心脏瓣膜传单结构连续型模型中非仿射纤维运动学的新方法

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In the ongoing development of continuum models for soft tissues and related biological materials, structural approaches continue to have much appeal, and have the focus of our laboratory's work (1). Structural constitutive models integrate information on tissue composition and structure, avoiding ambiguities in material characterization. However, critical structural information (such as fiber orientation) must be modeled using assumed statistical distributions, with the distribution parameters estimated from fits to the mechanical test data. Thus, full realization of structural approaches continues to be limited without direct quantitative structural information for direct implementation or to validate model predictions. While we have addressed these issues (2), non-affine fiber kinematics have been known to occur in heart valve leaflet tissues, especially under more extreme deformations (3, 4). However, current structural model theories continue to rely on the assumption of affine fiber kinematics. In present work we present a theoretical framework that accounts for non-affine deformations that still allows for the basic framework of the current structural models to be utilized.
机译:在连续模型的软组织及相关生物材料的不断发展,结构方法继续有多大的吸引力,并有我们的实验室工作(1)关注的焦点。结构构模型集成在组织的组成和结构的信息,避免材料表征歧义。然而,关键的结构信息(如纤维取向),必须使用假设统计分布来建模,从拟合估计至机械测试数据的分布的参数。因此,全面实现结构方法不变,没有直接实施或验证模型的预测结果直接定量的结构信息被限制。虽然我们已经解决了这些问题(2),非仿射纤维运动学已经知道在心脏发生瓣膜小叶的组织,尤其是在更极端的变形(3,4)。然而,目前的结构模型的理论继续依靠仿射纤维运动的假设。在目前的工作中,我们提出的是占非亲和变形仍然允许被利用当前结构模型的基本框架的理论框架。

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