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A Multi-Image Shape-from-Shading Framework for Near-Lighting Perspective Endoscopes

机译:近光透视内窥镜的多图像从阴影到阴影的框架

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This article formulates a near-lighting shape-from-shading problem with a pinhole camera (perspective projection) and presents a solution to reconstruct the Lambertian surface of bones using a sequence of overlapped endoscopic images, with partial boundaries in each image. First we extend the shape-from-shading problem to deal with perspective projection and near point light sources that are not co-located with the camera center. Secondly we propose a multi-image framework which can align partial shapes obtained from different images in the world coordinates by tracking the endoscope. An iterative closest point (ICP) algorithm is used to improve the matching and recover complete occluding boundaries of the bone. Finally, a complete and consistent shape is obtained by simultaneously re-growing the surface normals and depths in all views. In order to fulfill our shape-from-shading algorithm, we also calibrate both geometry and photometry for an oblique-viewing endoscope that are not well addressed before in the previous literatures. We demonstrate the accuracy of our technique using simulations and experiments with artificial bones. Keywords Multi-image - Shape-from-shading - Near-lighting - Perspective projection - Calibration - Endoscope - Bone
机译:本文用针孔相机(透视投影)提出了一种接近阴影的形状变暗问题,并提出了一种解决方案,该解决方案使用一系列重叠的内窥镜图像(在每个图像中都有部分边界)来重建骨骼的朗伯表面。首先,我们将阴影形状问题扩展到处理与相机中心不在同一位置的透视投影和近点光源。其次,我们提出了一种多图像框架,该框架可以通过跟踪内窥镜来对齐从世界坐标中的不同图像获得的部分形状。迭代最近点(ICP)算法用于改善匹配并恢复骨骼的完全遮挡边界。最后,通过在所有视图中同时重新生长表面法线和深度,可以获得完整一致的形状。为了实现我们的阴影着色算法,我们还为斜视内窥镜校准了几何形状和光度,这在以前的文献中没有得到很好的解决。我们通过仿真和人造骨骼实验证明了我们技术的准确性。多图像-阴影形状-近光-透视投影-校准-内窥镜-骨

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