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腹部器官的本构建模。

Constitutive modelling of abdominal organs.

作者信息

Miller K

机构信息

Department of Mechanical and Materials Engineering, The University of Western Australia, Nedlands/Perth, Australia.

出版信息

J Biomech. 2000 Mar;33(3):367-73. doi: 10.1016/s0021-9290(99)00196-7.

Abstract

Abdominal organs are very susceptible to trauma. In order to protect them properly against car crash and other impact consequences, we need to be able to simulate the abdominal organ deformation. Such simulation should account for proper stress-strain relation as well as stress dependence on strain rate. As the step in this direction, this paper presents three-dimensional, non-linear, viscoelastic constitutive models for liver and kidney tissue. The models have been constructed basing on in vivo experiments conducted in Highway Safety Research Institute and the Medical Centre of The University of Michigan (Melvin et al., 1973). The proposed models are valid for compressive nominal strains up to 35% and fast (impact) strain rates between 0.2 and 22.5 s(-1). Similar models can find applications in computer and robot assisted surgery, e.g. the realistic simulation of surgical procedures (including virtual reality) and non-rigid registration.

摘要

腹部器官极易受到创伤。为了使其在汽车碰撞及其他冲击后果中得到妥善保护,我们需要能够模拟腹部器官的变形情况。这种模拟应考虑到适当的应力 - 应变关系以及应力对应变率的依赖性。作为朝着这个方向迈出的一步,本文提出了用于肝脏和肾脏组织的三维非线性粘弹性本构模型。这些模型是基于在公路安全研究所和密歇根大学医学中心进行的体内实验构建的(梅尔文等人,1973年)。所提出的模型对于高达35%的压缩名义应变以及0.2至22.5 s⁻¹之间的快速(冲击)应变率是有效的。类似的模型可应用于计算机和机器人辅助手术,例如手术过程的逼真模拟(包括虚拟现实)和非刚性配准。

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