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Photo-realistic representation of anatomical structures for medical education by fusion of volumetric and surface image data

机译:融合体积和表面图像数据的医学教育解剖结构的真实感表示

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We have produced improved photo-realistic views of anatomical structures for medical education combining data from photographic images of anatomical surfaces with optical, CT and MRI volumetric data such as provided by the NLM Visible Human Project. Volumetric data contains the information needed to construct 3D geometrical models of anatomical structures, but cannot provide a realistic appearance for surfaces. Nieder has captured high quality photographic sequences of anatomy specimens over a range of rotational angles. These have been assembled into QuickTime VR Object movies that can be viewed statically or dynamically. We reuse this surface imagery to produce textures and surface reflectance maps for 3D anatomy models to allow viewing from any orientation and lighting condition. Because the volumetric data comes from different individuals than the surface images, we have to warp these data into alignment. Currently we do not use structured lighting or other direct 3D surface information, so surface shape is recovered from rotational sequences using silhouettes and texture correlations. The results of this work improves the appearance and generality of models, used for anatomy instruction with the PSC Volume Browser.
机译:我们结合了来自解剖表面的摄影图像的数据以及光学,CT和MRI体积数据(例如由NLM可见人类计划提供的数据),为医学教育改进了解剖结构的逼真的图像。体数据包含构建解剖结构的3D几何模型所需的信息,但不能为表面提供逼真的外观。 Nieder已捕获了一系列旋转角度范围内高质量的解剖学样本照相序列。这些已被组装到QuickTime VR Object电影中,可以静态或动态观看。我们重复使用此表面图像来生成3D解剖模型的纹理和表面反射贴图,以允许从任何方向和光照条件下进行查看。由于体积数据来自表面图像之外的其他个体,因此我们必须使这些数据变形以对齐。当前,我们不使用结构化照明或其他直接3D表面信息,因此可以使用轮廓和纹理相关性从旋转序列中恢复表面形状。这项工作的结果改善了模型的外观和通用性,该模型用于PSC Volume Browser的解剖学指导。

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