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3D x-ray reconstruction using lightfield imaging

机译:使用光场成像的3D X射线重建

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Existing Computed Tomography (CT) systems require full 360° rotation projections. Using the principles of lightfield imaging, only 4 projections under ideal conditions can be sufficient when the object is illuminated with multiple-point X-ray sources. The concept was presented in a previous work with synthetically sampled data from a synthetic phantom. Application to real data requires precise calibration of the physical set up. This current work presents the calibration procedures along with experimental findings for the reconstruction of a physical 3D phantom consisting of simple geometric shapes. The crucial part of this process is to determine the effective distances of the X-ray paths, which are not possible or very difficult by direct measurements. Instead, they are calculated by tracking the positions of fiducial markers under prescribed source and object movements. Iterative algorithms are used for the reconstruction. Customized backprojection is used to ensure better initial guess for the iterative algorithms to start with.
机译:现有的计算机断层扫描(CT)系统需要完整的360°旋转投影。使用光场成像原理,当用多点X射线源照射物体时,在理想条件下只有4个投影就足够了。这个概念是在以前的工作中使用合成体模的合成采样数据提出的。应用于真实数据需要对物理设置进行精确校准。这项最新工作介绍了校准程序以及实验结果,用于重建由简单几何形状组成的物理3D体模。该过程的关键部分是确定X射线路径的有效距离,而直接测量不可能或很难做到这一点。相反,它们是通过跟踪在指定的源和对象运动下的基准标记的位置来计算的。迭代算法用于重建。自定义的反投影用于确保对迭代算法开始时的更好的初始猜测。

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