首页> 外文会议>Visualization, Image-Guided Procedures, and Display pt.1; Progress in Biomedical Optics and Imaging; vol.6,no.21 >Efficient Visualization of Volume Data Sets with Region of Interest and Wavelets
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Efficient Visualization of Volume Data Sets with Region of Interest and Wavelets

机译:带有感兴趣区域和小波的体积数据集的高效可视化

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The growing volume of medical images acquired with new imaging modalities poses big challenges to the radiologist's interpretation process. Innovative image visualization techniques can play a major role in enabling efficient and accurate information presentation and navigation, by combining computational efficiency with diagnostic resolution. Efficiency and resolution, two opposing requirements, can be accomplished by focusing on full resolution regions of interest while maintaining sufficient contextual information. In fact, structures of interest typically occupy a small percentage of the data, but their analysis requires context information like locations within a specific organ or adjacency to sensitive structures. We propose a 3D visualization technique that is based on the multi-resolution property of the wavelet transform in order to display a full resolution region of interest while displaying a coarser context to achieve efficiency in rendering during the exploratory navigation phase. A full resolution context can also be rendered when needed for a specific view. In a preprocessing stage the data is decomposed with a three-dimensional wavelet transform. The interactive visualization process then uses the wavelet representation and a user-specified region to render a full resolution region of interest and a coarser context directly from the wavelet space through wavelet splatting, thus avoiding volume reconstruction. This efficient rendering approach is combined with lighting calculations, in the preprocessing stage. While greatly enhancing depth perception and objects shape, lighting does not add additional cost to the interactive visualization process, resulting in a good compromise between computational efficiency and image quality.
机译:通过新的成像方式获取的医学图像数量的不断增长对放射科医生的解释过程提出了巨大的挑战。通过将计算效率与诊断分辨率相结合,创新的图像可视化技术可以在实现高效,准确的信息显示和导航中发挥主要作用。效率和分辨率这两个相对的要求,可以通过关注感兴趣的全分辨率区域,同时保持足够的上下文信息来实现。实际上,感兴趣的结构通常只占数据的一小部分,但其分析需要上下文信息,例如特定器官内的位置或敏感结构的邻接关系。我们提出了一种基于小波变换的多分辨率属性的3D可视化技术,以显示感兴趣的全分辨率区域,同时显示更粗糙的上下文,以在探索性导航阶段实现渲染效率。当需要特定视图时,也可以呈现全分辨率上下文。在预处理阶段,用三维小波变换分解数据。然后,交互式可视化过程使用小波表示和用户指定的区域直接通过小波展开从小波空间渲染感兴趣的完整分辨率区域和较粗糙的上下文,从而避免了体积重建。在预处理阶段,这种有效的渲染方法与照明计算结合在一起。在极大地增强深度感知和对象形状的同时,照明不会增加交互式可视化过程的额外成本,从而在计算效率和图像质量之间取得了很好的折衷。

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