一种新的高维体数据分类接口

Fan-Yin Tzeng, E. Lum, K. Ma
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引用次数: 155

摘要

在传统的体可视化范例中,用户通过定义不透明度和颜色映射函数来指定传递函数,该函数将每个标量值分配给颜色和不透明度。传递函数有两个限制。首先,用户必须根据直方图和值来定义曲线,而不是观察和处理体积本身。其次,传递函数在分类感兴趣的区域时是不灵活的,其中体素的值(如强度和梯度)用于区分材料,而不考虑附加属性(如纹理和位置)。我们描述了一个直观的用户界面,用于指定分类功能,该功能由用户直接在体积的样本切片上绘画组成。这些绘制的区域用于自动定义高维分类功能,这些功能可以在硬件中实现,用于交互式呈现。随着用户绘制样品,体积的分类被迭代改进,允许直观和有效地查看感兴趣的材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel interface for higher-dimensional classification of volume data
In the traditional volume visualization paradigm, the user specifies a transfer function that assigns each scalar value to a color and opacity by defining an opacity and a color map function. The transfer function has two limitations. First, the user must define curves based on histogram and value rather than seeing and working with the volume itself. Second, the transfer function is inflexible in classifying regions of interest, where values at a voxel such as intensity and gradient are used to differentiate material, not talking into account additional properties such as texture and position. We describe an intuitive user interface for specifying the classification functions that consists of the users painting directly on sample slices of the volume. These painted regions are used to automatically define high-dimensional classification functions that can be implemented in hardware for interactive rendering. The classification of the volume is iteratively improved as the user paints samples, allowing intuitive and efficient viewing of materials of interest.
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