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IStar: A Raster Representation for Scalable Image and Volume Data

机译:IStar:可伸缩图像和体积数据的栅格表示

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Topology has been an important tool for analyzing scalar data and flow fields in visualization. In this work, we analyze the topology of multivariate image and volume data sets with discontinuities in order to create an efficient, raster-based representation we call IStar. Specifically, the topology information is used to create a dual structure that contains nodes and connectivity information for every segmentable region in the original data set. This graph structure, along with a sampled representation of the segmented data set, is embedded into a standard raster image which can then be substantially downsampled and compressed. During rendering, the raster image is upsampled and the dual graph is used to reconstruct the original function. Unlike traditional raster approaches, our representation can preserve sharp discontinuities at any level of magnification, much like scalable vector graphics. However, because our representation is raster-based, it is well suited to the real-time rendering pipeline. We demonstrate this by reconstructing our data sets on graphics hardware at real-time rates.
机译:拓扑已成为分析可视化中的标量数据和流场的重要工具。在这项工作中,我们分析具有不连续性的多元图像和体数据集的拓扑,以创建有效的基于栅格的表示形式,我们称之为IStar。具体而言,拓扑信息用于创建双重结构,该双重结构包含原始数据集中每个可分割区域的节点和连接性信息。该图结构以及分段数据集的采样表示形式被嵌入到标准光栅图像中,然后可以对其进行大幅下采样和压缩。在渲染期间,对光栅图像进行上采样,并使用对偶图重建原始功能。与传统的栅格方法不同,我们的表示可以在任何放大级别上保持清晰的不连续性,就像可缩放矢量图形一样。但是,由于我们的表示是基于栅格的,因此非常适合实时渲染管线。我们通过在图形硬件上实时重建数据集来证明这一点。

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