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Geometrical calibration for 3D x-ray imaging

机译:3D X射线成像的几何校准

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摘要

Abstract: ructing a 3D structure from a set of its 2D X-ray projections requires that the source position and image plane orientation in 3D space be obtained with high accuracy for each of the imaging chain positions. This knowledge is generally obtained through a geometrical calibration of the data acquisition system. In this paper, we present a fully automatic method for such a geometrical calibration, well suited to a 3D X- ray imaging system which acquires sets of 2D projections during a rotation of the imaging chain. This method is based on (1) the use of a dedicated calibration phantom with reference points, (2) an automatic algorithm to detect and identify the reference points on the phantom's 2D X-Ray projections, and (3) the estimation of the imaging chain geometrical parameters by minimizing the reprojection mean quadratic error measured on these reference points. Results obtained both from simulation data and from data acquired on an experimental bench are presented.!15
机译:摘要:要从一组2D X射线投影中提取3D结构,需要针对每个成像链位置以高精度获得3D空间中的源位置和像平面方向。通常通过数据采集系统的几何校准获得该知识。在本文中,我们提出了一种用于这种几何校准的全自动方法,非常适合3D X射线成像系统,该系统在成像链旋转期间获取2D投影集。该方法基于(1)使用带有参考点的专用校准体模,(2)自动算法来检测和识别体模的2D X射线投影上的参考点,以及(3)成像估计通过最小化在这些参考点上测得的重投影平均二次误差来确定链几何参数。展示了从仿真数据和在实验台上获得的数据所获得的结果。15

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