基于分割细化的软物体变形与切割实时自适应网格模型

Hiromi T. Tanaka, Y. Tsujino, Takahiro Kamada, H. Viet
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引用次数: 5

摘要

本文研究的课题是可变形物体的实时自适应建模方法和三维曲面网格的自适应切割方法。在目前的文献中,还没有研究在高变形区域具有高分辨率表示的自适应模型。本文提出了一种高分辨率动态适应高变形区域的软物体实时建模新方法。与以往的方法相比,为了减少计算量,我们采用了等分细化算法。实验结果表明了该方法的有效性。三维曲面网格的切割操作在手术模拟器中起着重要的作用。对手术模拟器的一个重要要求是视觉真实。提出了一种曲面网格切割的新策略:细化和分离策略,即先细化后分离细化网格单元。由于计算成本低的优点,采用二分法进行细化。所提出的策略给出了交互路径的忠实表示
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Bisection Refinement-Based Real-Time Adaptive Mesh Model For Deformation and Cutting of Soft Objects
The subjects described in this paper are a realtime adaptive modeling method for deformable objects and an adaptive cutting method for 3D surface meshes. In the literature so far, adaptive models with high resolution representations at regions of high deformation have not been investigated. In this paper we propose a new method for real-time modeling of soft objects, of which high resolutions dynamically adapt to the regions of high deformation. In order to reduce the computational cost in comparison with the previous methods we use the bisection refinement algorithm. The experimental results show the effectiveness of the proposed method. The cutting operation of 3D surface meshes plays an important role in surgery simulators. One of the important requirements for surgical simulators is the visual reality. We propose a new strategy for cutting on surface mesh: refinement and separate strategy consisting of the refinement followed by the separation of the refined mesh element. Since the advantage of the low computational cost, the bisection refinement method is utilized for the refinement process. The proposed strategy gives the faithful representation of the interaction path
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