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The Choice of a Constitutive Formulation for Modeling Limb Flexion-Induced Deformations and Stresses in the Human Femoropopliteal Arteries of Different Ages

机译:用于模拟不同年龄的人类F骨动脉肢体屈曲诱发的变形和应力的本构公式的选择

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摘要

Open and endovascular treatments for Peripheral Arterial Disease are notorious for high failure rates. Severe mechanical deformations experienced by the femoropopliteal artery (FPA) during limb flexion and interactions between the artery and repair materials play important roles and may contribute to poor clinical outcomes. Computational modeling can help optimize FPA repair, but these simulations heavily depend on the choice of constitutive model describing the arterial behavior. In this study Finite Element model of the FPA in the standing (straight) and gardening (acutely bent) postures was built using Computed Tomography data, longitudinal pre-stretch and biaxially determined mechanical properties. Springs and dashpots were used to represent surrounding tissue forces associated with limb flexion-induced deformations. These forces were then used with age-specific longitudinal pre-stretch and mechanical properties to obtain deformed FPA configurations for seven age groups. Four commonly used invariant-based constitutive models were compared to determine the accuracy of capturing deformations and stresses in each age group. The four-fiber FPA model most accurately portrayed arterial behavior in all ages, but in subjects younger than 40 years, the performance of all constitutive formulations was similar. In older subjects, Demiray (Delfino) and classic two-fiber Holzapfel-Gasser-Ogden formulations were better than the Neo-Hookean model for predicting deformations due to limb flexion, but both significantly overestimated principal stresses compared to the FPA or Neo-Hookean models.
机译:众所周知,开放式和血管内治疗外周动脉疾病的失败率很高。股pop动脉(FPA)在肢体屈曲期间经历的严重机械变形以及动脉与修复材料之间的相互作用起重要作用,并且可能导致不良的临床结果。计算模型可以帮助优化FPA修复,但是这些仿真很大程度上取决于描述动脉行为的本构模型的选择。在这项研究中,使用计算机断层扫描数据,纵向预拉伸和双轴确定的机械性能,建立了站立(直立)和园艺(急性弯曲)状态下FPA的有限元模型。弹簧和缓冲器用于表示与肢体屈曲引起的变形相关的周围组织力。然后将这些力用于特定年龄的纵向预拉伸和机械性能,以获得七个年龄组的变形FPA配置。比较了四个常用的基于不变性的本构模型,以确定每个年龄组捕获变形和应力的准确性。四纤维FPA模型最准确地描绘了各个年龄段的动脉行为,但在40岁以下的受试者中,所有本构型的性能相似。在较老的受试者中,Demiray(Delfino)和经典的两纤维Holzapfel-Gasser-Ogden配方在预测由于四肢屈曲而引起的变形方面要优于Neo-Hookean模型,但与FPA或Neo-Hookean模型相比,它们的主应力都大大高估了。

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