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COMPUTED TOMOGRAPHY DATA COLOURING BASED ON PHOTOGRAMMETRIC IMAGES

机译:基于摄影测量图像的计算机断层扫描数据着色

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摘要

Nowadays various methods and sensors are available for 3D reconstruction tasks; however, it is still necessary to integrate advantages of different technologies for optimizing the quality 3D models. Computed tomography (CT) is an imaging technique which takes a large number of radiographic measurements from different angles, in order to generate slices of the object, however, without colour information. The aim of this study is to put forward a framework to extract colour information from photogrammetric images for corresponding Computed Tomography (CT) surface data with high precision. The 3D models of the same object from CT and photogrammetry methods are generated respectively, and a transformation matrix is determined to align the extracted CT surface to the photogrammetric point cloud through a coarse-to-fine registration process. The estimated pose information of images to the photogrammetric point clouds, which can be obtained from the standard image alignment procedure, also applies to the aligned CT surface data. For each camera pose, a depth image of CT data is calculated by projecting all the CT points to the image plane. The depth image is in principle should agree with the corresponding photogrammetric image. The points, which cannot be seen from the pose, but are also projected on the depth image, are excluded from the colouring process. This is realized by comparing the range values of neighbouring pixels and finding the corresponding 3D points with larger range values. The same procedure is implemented for all the image poses to obtain the coloured CT surface. Thus, by using photogrammetric images, we achieve a coloured CT dataset with high precision, which combines the advantages from both methods. Rather than simply stitching different data, we deep-dive into the photogrammetric 3D reconstruction process and optimize the CT data with colour information. This process can also provide an initial route and more options for other data fusion processes.
机译:如今,各种方法和传感器可用于3D重建任务;然而,仍然需要整合不同技术的优势来优化质量3D模型。计算机断层扫描(CT)是一种成像技术,其采用来自不同角度的大量射线照相测量,以便在没有颜色信息的情况下生成对象的切片。本研究的目的是提出框架,以从摄影测量图像中提取颜色信息,以获得高精度的相应计算断层扫描(CT)表面数据。分别生成来自CT和摄影测量方法的相同对象的3D模型,并确定变换矩阵通过粗细的注册过程将提取的CT表面对准摄影测量点云。可以从标准图像对准过程获得的图像到摄影测量点云的图像的估计姿态信息也适用于对准的CT表面数据。对于每个相机姿势,通过将所有CT点投影到图像平面来计算CT数据的深度图像。深度图像原则上应该与相应的摄影测量图像一致。从姿势看出的点,但也被投影在深度图像上,被排除在着色过程之外。通过比较相邻像素的范围值并找到具有更大范围值的相应的3D点来实现这一点。为所有图像姿势实现相同的过程以获得彩色CT表面。因此,通过使用摄影测量图像,我们实现了具有高精度的彩色CT数据集,这与两种方法相结合。我们非常深入地缝合不同的数据,而是深入进入摄影测量3D重建过程,并用颜色信息优化CT数据。此过程还可以提供初始路由以及其他数据融合过程的更多选项。

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