首页> 外文会议>International Symposium on Volume Graphics; 20070903-04; Pragur(CZ) >Applications of Optimal Sampling Lattices for Volume Acquisition via 3D Computed Tomography
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Applications of Optimal Sampling Lattices for Volume Acquisition via 3D Computed Tomography

机译:最佳采样格子在通过3D计算机断层扫描进行体积采集中的应用

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There has been mounting evidence that the familiar Cartesian lattices, while convenient for signal processing and representation, are sub-optimal when it comes to signal fidelity. More suitable in this respect are optimal sampling lattices, such as the Hexagonal and Body Centered Cartesian (BCC) lattice, and recent work has employed these in the areas of volume rendering and image processing. In this paper we explore various applications of these lattices within the context of 3D Computed Tomographic Reconstruction, both in terms of the (2D) detector and the (3D) reconstructed object, and a theoretical analysis is provided. We combine this analysis with a practical application, that is, the use of these lattices within a real-time GPU-accelerated 3D reconstruction platform, in which performance is also of an immediate concern.
机译:越来越多的证据表明,熟悉的笛卡尔网格虽然便于信号处理和表示,但在信号保真度方面却不是最佳的。在这方面更合适的是最佳采样晶格,例如六边形和体心笛卡尔(BCC)晶格,最近的工作已在体积渲染和图像处理领域中采用了它们。在本文中,我们从(2D)检测器和(3D)重建对象的角度探讨了3D计算机断层摄影重建中这些晶格的各种应用,并提供了理论分析。我们将这种分析与实际应用相结合,即在实时GPU加速的3D重建平台中使用这些晶格,其中性能也是当务之急。

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