IEEE Trans Vis Comput Graph. 2012 Jan;18(1):121-31. doi: 10.1109/TVCG.2011.23. Epub 2011 Feb 4.
We introduce a modified dendrogram (MD) (with subtrees to represent clusters) and display it in 2D for multidimensional transfer function design. Such a transfer function for direct volume rendering employs a multidimensional space, termed attribute space. The MD reveals the hierarchical structure information of the attribute space. The user can design a transfer function in an intuitive and informative manner using the MD user interface in 2D instead of multidimensional space, where it is hard to ascertain the relationship of the space. In addition, we provide the capability to interactively modify the granularity of the MD. The coarse-grained MD primarily shows the global information of the attribute space while the fine-grained MD reveals the finer details, and the separation ability of the attribute space is completely preserved in the finest granularity. With this so called multigrained method, the user can efficiently create a transfer function using the coarse-grained MD, and then fine tune it with the fine-grained MDs. Our method is independent on the type of the attributes and supports arbitrary-dimension attribute space.
我们引入了一种改进的树形图(MD)(使用子树表示聚类),并将其以 2D 形式呈现,用于多维传递函数设计。这种直接体绘制的传递函数采用多维空间,称为属性空间。MD 揭示了属性空间的层次结构信息。用户可以使用 2D 中的 MD 用户界面以直观和信息丰富的方式设计传递函数,而在多维空间中,很难确定空间的关系。此外,我们提供了交互式修改 MD 粒度的功能。粗粒度的 MD 主要显示属性空间的全局信息,而细粒度的 MD 则显示更精细的细节,并且在最细的粒度下完全保留了属性空间的分离能力。通过这种所谓的多粒度方法,用户可以使用粗粒度的 MD 高效地创建传递函数,然后使用细粒度的 MD 进行微调。我们的方法不依赖于属性的类型,并且支持任意维度的属性空间。