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基于体内测量的人体肝脏本构模型

Constitutive modeling of human liver based on in vivo measurements.

作者信息

Mazza Edoardo, Grau Patrick, Hollenstein Marc, Bajka Michael

机构信息

Institute of Mechanical Systems, Department of Mechanical and Process Engineering, ETH, 8092 Zurich, Switzerland.

出版信息

Med Image Comput Comput Assist Interv. 2008;11(Pt 2):726-33. doi: 10.1007/978-3-540-85990-1_87.

Abstract

In vivo aspiration experiments on human livers are analyzed and material parameters for a non-linear-viscoelastic constitutive model are determined. A novel procedure is applied for the inverse analysis that accounts for the initial tissue deformation in the experiment and for the non-homogeneity of liver tissue. A numerical model is used consisting of a surface layer (capsule) and an underlying non-linear-viscoelastic solid (parenchyma). The capsule is modeled as hyperelastic membrane using data from measurements on bovine and human tissue. In a two step optimization procedure the set of constitutive model parameters for the "average" response of liver parenchyma is obtained. The proposed model is in line with literature values of high strain rate elastic modulus obtained from dynamic elastography. The model can be used to predict the nonlinear, time dependent behavior of human liver in computer simulations related to surgery training and planning.

摘要

对人体肝脏进行了体内抽吸实验分析,并确定了非线性粘弹性本构模型的材料参数。一种新颖的程序被应用于反分析,该程序考虑了实验中的初始组织变形以及肝组织的非均匀性。使用了一个数值模型,该模型由表层(包膜)和下面的非线性粘弹性固体(实质)组成。包膜使用来自牛和人体组织测量的数据建模为超弹性膜。在两步优化过程中,获得了肝实质“平均”响应的本构模型参数集。所提出的模型与从动态弹性成像获得的高应变率弹性模量的文献值一致。该模型可用于在与手术训练和规划相关的计算机模拟中预测人体肝脏的非线性、时间依赖性行为。

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