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Volume visualization and exploration through flexible transfer function design

机译:通过灵活的传递函数设计进行体积可视化和探索

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摘要

Direct volume rendering (DVR) is a well-known method for exploring volumetric data sets. Optical properties are assigned to the volume data and then a DVR algorithm produces visualizations by sampling volume elements and projecting them into the image plane. The mapping from voxel values to optical attribute values is known as transfer function (TF). Therefore, the quality of a visualization is highly dependent on the TF employed, but its specification is a non-trivial and unintuitive task. Without any help during the TF design process, the user goes through a frustrating and time-consuming trial-and-error cycle. This paper presents a useful combination of TF design techniques in an interactive workspace for volume visualization. Our strategy relies on semi-automatic TFs generation methods: boundary emphasis, stochastic evolutive search in TF space, and manual TF specification aided by dual domain interaction. A two-level user interface was also developed. In the first level, it provides multiple simultaneous interactive visualizations of the volume data using different TFs, while in the second one, a detailed visualization of a single TF and the respective rendered volume are displayed. Moreover, in the second level, the TF can be manually refined and the volume can be further inspected through geometric tools. The techniques combined in this work are complementary, allowing easy and fast TF design and data exploration.
机译:直接体积渲染(DVR)是一种探索体积数据集的众所周知的方法。将光学属性分配给体积数据,然后DVR算法通过对体积元素进行采样并将其投影到图像平面中来产生可视化效果。从体素值到光学属性值的映射称为传递函数(TF)。因此,可视化的质量高度依赖于所使用的TF,但是其规范是一项不平凡且不直观的任务。在TF设计过程中,在没有任何帮助的情况下,用户经历了令人沮丧且耗时的反复试验。本文提出了在交互式工作区中将TF设计技术进行有用的组合,以实现体积可视化。我们的策略依赖于半自动TF生成方法:边界强调,TF空间中的随机演化搜索以及通过双域交互辅助的手动TF规范。还开发了一个两级用户界面。在第一个级别中,它使用不同的TF提供体积数据的多个同时交互式可视化,而在第二个级别中,显示单个TF和各个渲染体积的详细可视化。此外,在第二级中,可以手动优化TF,并可以通过几何工具进一步检查体积。结合这项工作的技术是互补的,可以轻松快速地进行TF设计和数据探索。

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