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A method to determine the detector locations of the cone-beam projection of the balls' centers

机译:一种确定球中心锥束投影的探测器位置的方法

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In geometric calibration of cone-beam computed tomography (CBCT), sphere-like objects such as balls are widely imaged, the positioning information of which is obtained to determine the unknown geometric parameters. In this process, the accuracy of the detector location of CB projection of the center of the ball, which we call the center projection, is very important, since geometric calibration is sensitive to errors in the positioning information. Currently in almost all the geometric calibration using balls, the center projection is invariably estimated by the center of the support of the projection or the centroid of the intensity values inside the support approximately. Clackdoyle's work indicates that the center projection is not always at the center of the support or the centroid of the intensity values inside, and has given a quantitative analysis of the maximum errors in evaluating the center projection by the centroid. In this paper, an exact method is proposed to calculate the center projection, utilizing both the detector location of the ellipse center and the two axis lengths of the ellipse. Numerical simulation results have demonstrated the precision and the robustness of the proposed method. Finally there are some comments on this work with non-uniform density balls, as well as the effect by the error occurred in the evaluation for the location of the orthogonal projection of the cone vertex onto the detector.
机译:在锥束计算机断层摄影(CBCT)的几何校准中,对球形物体(例如球)进行了广泛的成像,并获得了其定位信息以确定未知的几何参数。在此过程中,由于几何校准对定位信息中的错误敏感,因此球中心CB投影(我们称为中心投影)的检测器位置的准确性非常重要。当前,在几乎所有使用球的几何校准中,中心投影总是由投影的支撑中心或支撑内部强度值的质心近似估计的。 Clackdoyle的工作表明,中心投影并不总是位于支撑的中心或内部强度值的质心,并且对通过质心评估中心投影的最大误差进行了定量分析。在本文中,提出了一种精确的方法来计算中心投影,该方法同时利用椭圆中心的检测器位置和椭圆的两个轴长。数值仿真结果表明了该方法的准确性和鲁棒性。最后,对于使用非均匀密度球进行的这项工作,以及在评估圆锥顶点在检测器上的正交投影的位置时发生的误差所产生的影响,有一些评论。

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