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Fast computation of soft tissue deformations in real-time simulation with Hyper-Elastic Mass Links

机译:利用超弹性质量链接在实时仿真中快速计算软组织变形

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Virtual surgery simulators show a lot of advantages in the world of surgery training, where they allow to improve the quality of surgeons' gesture. One of the current major technical difficulties for the development of surgery simulation is the possibility to perform a real-time computation of soft tissue deformation by considering the accurate modeling of their mechanical properties. However today, few models are available, they are still time consuming and limited in number of elements by algorithm complexity. We present in this paper a new method and framework that we call 'HEML' (Hyper-Elastic Mass Links), which is particularly fast. It is derived from the finite element method, can handle visco-hyperelastic and large deformation modeling. Although developed initially for medical applications, the HEML method can be used for any numerical computation of hyperelastic material deformations based on a tetrahedral mesh. A comparison with existing methods shows a much faster speed. A comparison with Mass-Spring methods, that are particularly fast but not realistic, shows that they can be considered as a degenerate case of the HEML framework. (C) 2015 Elsevier B.V. All rights reserved.
机译:虚拟外科手术模拟器在外科手术培训领域显示出许多优势,它们可以提高外科医生的手势质量。发展外科手术仿真的当前主要技术困难之一是通过考虑对它们的机械特性的精确建模来进行软组织变形的实时计算的可能性。但是,如今只有很少的模型可用,它们仍然很耗时,并且受算法复杂度限制了元素数量。我们在本文中介绍了一种称为“ HEML”(超弹性质量链接)的新方法和框架,该方法和框架特别快。它是从有限元方法派生而来的,可以处理粘超弹性和大变形建模。尽管最初是为医疗应用而开发的,但是HEML方法可用于基于四面体网格的超弹性材料变形的任何数值计算。与现有方法的比较显示出更快的速度。与质量弹簧方法的比较(特别快,但不切实际)表明,可以将它们视为HEML框架的退化情况。 (C)2015 Elsevier B.V.保留所有权利。

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