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X射线投影中的基于模型的球体定位(MBSL)

Model-based sphere localization (MBSL) in x-ray projections.

作者信息

Sawall Stefan, Maier Joscha, Leinweber Carsten, Funck Carsten, Kuntz Jan, Kachelrieß Marc

机构信息

German Cancer Research Center (DKFZ), Im Neuenheimer Feld 280, Heidelberg, Germany.

出版信息

Phys Med Biol. 2017 Jul 24;62(16):6486-6496. doi: 10.1088/1361-6560/aa7a96.

Abstract

The detection of spherical markers in x-ray projections is an important task in a variety of applications, e.g. geometric calibration and detector distortion correction. Therein, the projection of the sphere center on the detector is of particular interest as the used spherical beads are no ideal point-like objects. Only few methods have been proposed to estimate this respective position on the detector with sufficient accuracy and surrogate positions, e.g. the center of gravity, are used, impairing the results of subsequent algorithms. We propose to estimate the projection of the sphere center on the detector using a simulation-based method matching an artificial projection to the actual measurement. The proposed algorithm intrinsically corrects for all polychromatic effects included in the measurement and absent in the simulation by a polynomial which is estimated simultaneously. Furthermore, neither the acquisition geometry nor any object properties besides the fact that the object is of spherical shape need to be known to find the center of the bead. It is shown by simulations that the algorithm estimates the center projection with an error of less than [Formula: see text] of the detector pixel size in case of realistic noise levels and that the method is robust to the sphere material, sphere size, and acquisition parameters. A comparison to three reference methods using simulations and measurements indicates that the proposed method is an order of magnitude more accurate compared to these algorithms. The proposed method is an accurate algorithm to estimate the center of spherical markers in CT projections in the presence of polychromatic effects and noise.

摘要

在X射线投影中检测球形标记是多种应用中的一项重要任务,例如几何校准和探测器畸变校正。其中,由于所使用的球形珠子并非理想的点状物体,球心在探测器上的投影尤为重要。目前仅有少数方法能够以足够的精度估计探测器上的相应位置,并且使用了诸如重心等替代位置,这会影响后续算法的结果。我们提出使用一种基于模拟的方法来估计球心在探测器上的投影,该方法将人工投影与实际测量相匹配。所提出的算法通过同时估计的多项式,本质上校正了测量中包含但模拟中不存在的所有多色效应。此外,除了物体是球形这一事实外,无需知道采集几何形状或任何物体属性即可找到珠子的中心。模拟结果表明,在实际噪声水平下,该算法估计中心投影的误差小于探测器像素大小的[公式:见原文],并且该方法对球体材料、球体大小和采集参数具有鲁棒性。与使用模拟和测量的三种参考方法进行比较表明,所提出的方法比这些算法的精度高一个数量级。所提出的方法是一种在存在多色效应和噪声的情况下,准确估计CT投影中球形标记中心的算法。

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