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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Iterative geometric calibration in circular cone-beam computed tomography
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Iterative geometric calibration in circular cone-beam computed tomography

机译:锥形束计算机层析成像中的迭代几何校准

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摘要

The reconstructed image may be distorted by geometry artifacts due to the presence of mechanical misalignments in circular cone-beam computed tomography (CT) system. To avoid geometry artifacts intervention, a novel geometric calibration method belonging to the iterative-type methods, which uses a dedicated calibration phantom to determine all geometry parameters, is presented in this paper. The phantom consists of two steel balls, and the trajectories of two ball centers are two circles in circular scan. Minimization of the errors between the predicted trajectories of ball center and the ideal circles is the principle in the proposed method. In summary, the proposed method consists of three parts. Firstly, an efficient description of geometry which reduces the number of geometry parameters from 7 to 4 is stated. Then, a nonlinear least square model depending on the 4 parameters is derived. At last, the Levenberg-Marquardt algorithm (LMA) is applied to solve the optimization problem. We implemented the proposed method and the classical analytic method presented by Noo et al. on real data in our laboratory cone-beam CT. The results indicated that our method could provide satisfactory reconstructed images as good as Noo's method.
机译:由于在锥形束计算机断层摄影(CT)系统中存在机械失准,因此重构图像可能会因几何伪影而失真。为了避免几何伪影的干预,本文提出了一种新的几何校准方法,该方法属于迭代类型方法,该方法使用专用的校准体模来确定所有几何参数。体模由两个钢球组成,两个球中心的轨迹在圆形扫描中为两个圆。该方法的原理是使球心的预测轨迹与理想圆之间的误差最小。总之,提出的方法包括三个部分。首先,说明了将几何参数的数量从7个减少到4个的有效几何描述。然后,推导取决于这四个参数的非线性最小二乘模型。最后,采用Levenberg-Marquardt算法(LMA)解决了优化问题。我们实现了拟议的方法和Noo等人提出的经典分析方法。在我们的实验室锥形束CT中获得真实数据。结果表明,我们的方法可以提供与Noo方法一样令人满意的重建图像。

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