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Volumetric Clipping Surface: Un-occluded Visualization of Structures Preserving Depth Cues into Surrounding Organs

机译:体积剪裁表面:保留深度线索到周围器官的结构的无遮挡可视化

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Anatomies of interest are often hidden within data. In this paper, we address the limitations of visualizing them with a novel dynamic non-planar clipping of volumetric data, while preserving depth cues at adjacent structures to provide a visually consistent anatomical context, with no-user interaction. An un-occluded and un-modified display of the anatomies of interest is made possible. Given a semantic segmentation of the data, our technique computes a continuous clipping surface through the depth buffer of the structures of interest and extrapolates this depth onto surrounding contextual regions in real-time. We illustrate the benefit of this technique using Monte Carlo Ray Tracing (MCRT), in the visualization of deep seated anatomies with complex geometry across two modalities: (a) Knee Cartilage from MRI and (b) bones of the feet in CT. Our novel technique furthers the state of the art by enabling turnkey immediate appreciation of the pathologies in these structures with an unmodified rendering, while still providing a consistent anatomical context. We envisage our technique changing the way clinical applications present 3D data, by incorporating organ viewing presets, similar to transfer function presets for volume visualization.
机译:感兴趣的解剖结构通常隐藏在数据中。在本文中,我们解决了使用体积数据的新型动态非平面裁剪来可视化它们的局限性,同时保留了相邻结构的深度提示以提供视觉上一致的解剖上下文,并且无需用户交互。可以对目标解剖结构进行无遮挡和未修改的显示。给定数据的语义分段,我们的技术将通过感兴趣结构的深度缓冲区计算连续的裁剪表面,并将该深度实时外推到周围的上下文区域中。我们用蒙特卡洛射线追踪技术(MCRT)演示了该技术的优势,可通过两种方式可视化具有复杂几何形状的深层解剖结构:(a)MRI的膝软骨和(b)CT中的脚骨。我们的新颖技术通过启用完整的即刻即刻欣赏这些结构中的病理状态(具有不变的渲染),同时仍提供一致的解剖学上下文的方式,进一步提高了技术水平。我们设想通过结合器官观察预设(类似于用于体积可视化的传递函数预设)来改变临床应用显示3D数据的方式的技术。

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