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首页> 外文期刊>Biomechanics and Modeling in Mechanobiology >Identification of in vivo material and geometric parameters of a human aorta: toward patient-specific modeling of abdominal aortic aneurysm
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Identification of in vivo material and geometric parameters of a human aorta: toward patient-specific modeling of abdominal aortic aneurysm

机译:鉴定人主动脉的体内材料和几何参数:针对患者的腹主动脉瘤建模

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摘要

Recent advances in computational modeling of vascular adaptations and the need for their extension to patient-specific modeling have introduced new challenges to the path toward abdominal aortic aneurysm modeling. First, the fundamental assumption in adaptation models, namely the existence of vascular homeostasis in normal vessels, is not easy to implement in a vessel model built from medical images. Second, subjecting the vessel wall model to the normal pressure often makes the configuration deviate from the original geometry obtained from medical images. To address those technical challenges, in this work, we propose a two-step optimization approach; first, we estimate constitutive parameters of a healthy human aorta intrinsic to the material by using biaxial test data and a weighted nonlinear least-squares parameter estimation method; second, we estimate the distributions of wall thickness and anisotropy using a 2-D parameterization of the vessel wall surface and a global approximation scheme integrated within an optimization routine. A direct search method is implemented to solve the optimization problem. The numerical optimization method results in a considerable improvement in both satisfying homeostatic condition and minimizing the deviation of geometry from the original shape based on in vivo images. Finally, the utility of the proposed technique for patient-specific modeling is demonstrated in a simulation of an abdominal aortic aneurysm enlargement.
机译:血管适应性计算模型的最新进展以及将其扩展到针对特定患者的模型的需求,已为通往腹主动脉瘤建模的道路提出了新的挑战。首先,适应模型中的基本假设,即正常血管中血管稳态的存在,在以医学图像构建的血管模型中不容易实现。其次,使血管壁模型承受法向压力通常会使配置偏离从医学图像获得的原始几何形状。为了解决这些技术挑战,在这项工作中,我们提出了两步优化方法;首先,我们使用双轴测试数据和加权非线性最小二乘参数估计方法来估计材料固有的健康人主动脉的本构参数;其次,我们使用容器壁表面的二维参数化和集成在优化例程中的全局近似方案来估计壁厚和各向异性的分布。实现了直接搜索方法来解决优化问题。数值优化方法在满足稳态条件和基于体内图像使几何形状与原始形状的偏差最小化方面均取得了显着改善。最后,在腹主动脉瘤增大的模拟中证明了所提出的技术用于患者特定模型的效用。

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