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The modelling of interactions between organs and medical tools: a volumetric mass-spring chain algorithm

机译:器官与医疗工具之间相互作用的建模:体积质量弹簧链算法

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摘要

This paper adds volume deformation capability to the mass-spring chain method using tetrahedral elements in order to obtain more realistic deformations, which occur during the interactions between medical tools and soft tissues. The mass-spring chain method originally does not consider volume information and performs deformation by moving and deforming individual springs of a deformable model. However, most of the applications in computer graphics require volume modelling using tetrahedrons. In the proposed method, the deformation algorithm loops through tetrahedrons and performs deformation based on defined rules similar to those of the original mass-spring chain method. This method can handle not only ordinary deformation applications but also those with topology changes, such as cutting and tearing, as it does not rely on any pre-computed quantities. A method to preserve the volume and the shape of the tetrahedral elements is also developed. In order to speed up the new version of the algorithm, a tetrahedral propagation for deformation is developed. The detailed implementation of the algorithm and the various applications of the organ-surgery tool interactions are presented. The paper also provides the animations of the different models obtained by the proposed method.
机译:本文为使用四面体元素的质量弹簧链方法增加了体积变形能力,以便获得更实际的变形,这种变形发生在医疗工具与软组织之间的相互作用期间。质量弹簧链方法最初不考虑体积信息,而是通过移动和变形可变形模型的各个弹簧来执行变形。但是,计算机图形学中的大多数应用程序都需要使用四面体进行体积建模。在提出的方法中,变形算法遍历四面体并根据与原始质量弹簧链方法相似的定义规则执行变形。该方法不仅可以处理普通的变形应用,而且还可以处理那些具有拓扑变化的应用,例如切割和撕裂,因为它不依赖任何预先计算的量。还开发了一种保持四面体元件的体积和形状的方法。为了加快算法的新版本,开发了用于变形的四面体传播。介绍了该算法的详细实现以及器官手术工具交互作用的各种应用。本文还提供了通过该方法获得的不同模型的动画。

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