Design of Multi-dimensional Transfer Functions Using Dimensional Reduction

F. Pinto, C. Freitas
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引用次数: 40

Abstract

Direct volume rendering techniques allow visualization of volume data without extracting intermediate geometry. The mapping from voxel attributes to optical properties is performed by transfer functions which, consequently, play a crucial role in building informative images from the data. One-dimensional transfer functions, which are based only on a scalar value per voxel, often do not provide proper visualizations. On the other hand, multidimensional transfer functions can perform more sophisticated data classification, based on vectorial voxel signatures. The transfer function design is a non-trivial and unintuitive task, especially in the multi-dimensional case. In this paper we propose a multi-dimensional transfer function design technique that uses self-organizing maps to perform dimensional reduction. Our approach gives uniform treatment to volume data containing voxel signatures of arbitrary dimension, and allows the use of any type of voxel attribute as part of the voxel signatures.
多维传递函数的降维设计
直接体绘制技术允许体数据的可视化,而无需提取中间几何形状。从体素属性到光学属性的映射是由传递函数完成的,因此,传递函数在从数据构建信息图像中起着至关重要的作用。一维传递函数仅基于每体素的标量值,通常不能提供适当的可视化。另一方面,多维传递函数可以基于向量体素签名执行更复杂的数据分类。传递函数的设计是一项重要的、不直观的任务,特别是在多维情况下。本文提出了一种利用自组织映射进行降维的多维传递函数设计技术。我们的方法对包含任意维度体素签名的体数据进行统一处理,并允许使用任何类型的体素属性作为体素签名的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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