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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Comparison of Algorithms for Haptic Interaction With Isosurfaces Extracted From Volumetric Datasets
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Comparison of Algorithms for Haptic Interaction With Isosurfaces Extracted From Volumetric Datasets

机译:从体积数据集提取的等值面与触觉交互算法的比较

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摘要

Combinations of graphics and haptics libraries are used in medical simulations for simultaneous visualization and tactile interaction with complex 3D anatomy models. The minimum frame rate of 1 kHz for haptics rendering makes it a nontrivial problem when dealing with complex and highly detailed polygonal models. Multiple haptics algorithms based on polygonal mesh rendering, volume haptics, and intermediate representation are evaluated in terms of their servoloop rendering time, client thread rendering time, and quality of force feedback. Algorithms include OpenHaptics' Feedback Buffer and Depth Buffer, GodObject and Ruspini Tenderers in h3d, chai3d implementation in h3d, ScalarSurfaceFriction mode in Volume Haptics ToolKit (vhtk), and the authors' intermediate representation algorithm based on volumetric data. The latter, in combination with surface graphics visualization, is found to deliver the best rendering time, to detect all collisions and to provide correct haptic feedback where other algorithms fail.
机译:图形和触觉库的组合用于医学模拟,用于同时可视化和与复杂3D解剖模型的触觉交互。触觉渲染的最小帧频为1 kHz,这在处理复杂且高度详细的多边形模型时是一个不小的问题。基于伺服环渲染时间,客户端线程渲染时间和力反馈质量,评估了基于多边形网格渲染,体感和中间表示的多种触觉算法。算法包括OpenHaptics的Feedback Buffer和Depth Buffer,h3d中的GodObject和Ruspini Tenderers,h3d中的chai3d实现,Volume Haptics ToolKit(vhtk)中的ScalarSurfaceFriction模式以及基于体积数据的作者中间表示算法。后者与表面图形可视化相结合,可以提供最佳的渲染时间,检测所有碰撞并在其他算法失败时提供正确的触觉反馈。

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  • 来源
    《Journal of Computing and Information Science in Engineering》 |2012年第2期|p.021004.1-021004.10|共10页
  • 作者单位

    2039 Engineering Research Facility, University of Illinois at Chicago, 842 West Taylor Street, Chicago, IL 60607;

    2039 Engineering Research Facility, University of Illinois at Chicago, 842 West Taylor Street, Chicago, IL 60607;

    2039 Engineering Research Facility, University of Illinois at Chicago, 842 West Taylor Street, Chicago, IL 60607;

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