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Image-based rendering of intersecting surfaces for dynamic comparative visualization

机译:基于图像的相交表面渲染,用于动态比较可视化

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摘要

Nested or intersecting surfaces are proven techniques for visualizing shape differences between static 3D objects (Weigle and Taylor II, IEEE Visualization, Proceedings, pp. 503-510, 2005). In this paper we present an image-based formulation for these techniques that extends their use to dynamic scenarios, in which surfaces can be manipulated or even deformed interactively. The formulation is based on our new layered rendering pipeline, a generic image-based approach for rendering nested surfaces based on depth peeling and deferred shading. We use layered rendering to enhance the intersecting surfaces visualization. In addition to enabling interactive performance, our enhancements address several limitations of the original technique. Contours remove ambiguity regard- ing the shape of intersections. Local distances between the surfaces can be visualized at any point using either depth fogging or distance fields: Depth fogging is used as a cue for the distance between two surfaces in the viewing direction, whereas closest-point distance measures are visualized interactively by evaluating one surface's distance field on the other surface. Furthermore, we use these measures to define a three-way surface segmentation, which visualizes regions of growth, shrinkage, and no change of a test surface compared with a reference surface. Finally, we demonstrate an application of our technique in the visualization of statistical shape models. We evaluate our technique based on feedback provided by medical image analysis researchers, who are experts in working with such models.
机译:嵌套或相交的曲面是用于可视化静态3D对象之间的形状差异的可靠技术(Weigle和Taylor II,IEEE可视化,会议录,第503-510页,2005年)。在本文中,我们针对这些技术提出了一种基于图像的表示法,将其应用扩展到动态场景,在动态场景中,可以对曲面进行交互操作甚至变形。该公式基于我们新的分层渲染管线,这是一种基于图像的通用方法,用于基于深度剥离和延迟阴影渲染嵌套曲面。我们使用分层渲染来增强相交曲面的可视化效果。除了实现交互式性能外,我们的增强功能还解决了原始技术的一些限制。轮廓消除了关于相交形状的歧义。可以使用深度雾化或距离场在任何点上可视化表面之间的局部距离:深度雾化用作观察方向上两个表面之间距离的提示,而通过评估一个表面的交互性可以直观地显示最近点距离度量另一个表面上的距离场。此外,我们使用这些措施来定义三向表面分割,该分割可可视化与参考曲面相比测试区域的生长,收缩和无变化区域。最后,我们演示了我们的技术在统计形状模型可视化中的应用。我们根据医学图像分析研究人员提供的反馈评估我们的技术,他们是使用此类模型的专家。

著录项

  • 来源
    《The Visual Computer》 |2011年第5期|p.347-363|共17页
  • 作者单位

    Data Visualization Group, Delft University of Technology, Delft,the Netherlands;

    Data Visualization Group, Delft University of Technology, Delft,the Netherlands,Division of Image Processing (LKEB), Department of Radiology,Leiden University Medical Center, Leiden, the Netherlands;

    Division of Image Processing (LKEB), Department of Radiology,Leiden University Medical Center, Leiden, the Netherlands;

    Division of Image Processing (LKEB), Department of Radiology,Leiden University Medical Center, Leiden, the Netherlands;

    Data Visualization Group, Delft University of Technology, Delft,the Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    comparative visualization; image-based rendering; surface comparison; nested surfaces;

    机译:比较可视化;基于图像的渲染;表面比较;嵌套表面;

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