Semi-automated soft-tissue acquisition and modeling for surgical simulation

Zhan Gao, Theodore Kim, Doug L. James, J. Desai
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引用次数: 16

Abstract

Realistic surgical simulation should take into account the mechanical properties of soft tissue, and also patientspecific variations. Consequently automated methods are required for the acquisition and modeling of patient-specific tissue properties.We take a step toward this goal by presenting a semiautomated method for acquiring, modeling, and simulating soft-tissue deformation. During a typical surgical procedure, organs are subject to tension, compression, and shear, so these three deformation modes must be represented in any soft tissue model. We measure these modes by performing ex vivo tests on porcine liver tissue and use the results to estimate material constants of a previously proposed combined logarithmic Ogden model. This model is capable of representing the non-linear stress-strain relations observed in the tissue, but these same nonlinearities also introduce simulation challenges. In particular, eigenvalue degeneracies complicate automatic code generation, and element inversion can produce poorly conditioned matrices. We describe a method for avoiding these degeneracies, and present an automatic method of tuning the parameters of an existing element inversion scheme. Finally, computer animations of surgical simulation reveal a qualitative improvement in the non-linear behavior of soft tissues when compared to simulations using traditional material models.
用于手术模拟的半自动软组织采集和建模
真实的手术模拟应考虑到软组织的力学特性,以及患者的具体变化。因此,需要自动化的方法来获取和建模患者特定的组织特性。我们向这个目标迈出了一步,提出了一种半自动的方法来获取、建模和模拟软组织变形。在典型的外科手术过程中,器官受到拉伸、压缩和剪切的影响,因此这三种变形模式必须在任何软组织模型中表示出来。我们通过对猪肝组织进行离体测试来测量这些模式,并使用结果来估计先前提出的组合对数Ogden模型的材料常数。该模型能够表示在组织中观察到的非线性应力-应变关系,但这些非线性也引入了模拟挑战。特别是,特征值的退化使自动代码生成复杂化,而元素反转会产生条件差的矩阵。我们描述了一种避免这些退化的方法,并提出了一种自动调整现有元素反演方案参数的方法。最后,手术模拟的计算机动画显示,与使用传统材料模型的模拟相比,软组织的非线性行为有了质的改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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