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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Real time simulation of nonlinear tissue response in virtual surgery using the point collocation-based method of finite spheres
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Real time simulation of nonlinear tissue response in virtual surgery using the point collocation-based method of finite spheres

机译:基于点配点的有限域方法在虚拟手术中实时仿真非线性组织反应

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摘要

The point collocation-based method of finite spheres (PCMFS) was introduced as a meshfree technique for real time simulation of surgical processes. While real time graphical rendering requires an update rate of about 30 Hz, a much higher update rate of 1 kHz is necessary for smooth haptic (touch) feedback. The requirement of real time performance is crucial to these simulations and is highly demanding in terms of computational efficiency. In this paper we extend the PCMFS technique to tissue deformations that are geometrically nonlinear. The technique is based on a novel combination of multiresolution approach coupled with a fast reanalysis scheme in which the response predicted by an underlying linear PCMFS model is enhanced in the local neighborhood of the surgical tool-tip by a nonlinear model. We present performance comparisons of PCMFS with traditional finite element models.
机译:引入了基于点配置的有限球面方法(PCMFS),将其作为一种无网格技术,用于实时模拟手术过程。虽然实时图形渲染需要大约30 Hz的更新速率,但要获得平滑的触觉(触摸)反馈,还需要更高的1 kHz更新速率。实时性能的要求对于这些仿真至关重要,并且对计算效率的要求很高。在本文中,我们将PCMFS技术扩展到几何非线性的组织变形。该技术基于多分辨率方法与快速重新分析方案的新颖组合,其中非线性模型增强了底层线性PCMFS模型所预测的响应,从而在手术工具尖端的局部邻域中增强了响应。我们介绍了PCMFS与传统有限元模型的性能比较。

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