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一种用于平板探测器断层成像系统的通用几何校准方法——详细实现指南。

A generic geometric calibration method for tomographic imaging systems with flat-panel detectors--a detailed implementation guide.

机构信息

Department of Radiology, Division of Diagnostic Imaging Physics, Massachusetts General Hospital, Boston, Massachusetts 02114, USA.

出版信息

Med Phys. 2010 Jul;37(7):3844-54. doi: 10.1118/1.3431996.

Abstract

PURPOSE

To present a generic geometric calibration method for tomographic imaging systems with flat-panel detectors in a very detailed manner, in the aim to provide a useful tool to the public domain.

METHODS

The method is based on a projection matrix which represents a mapping from 3D object coordinate system to 2D projection image plane. The projection matrix can be determined experimentally through the imaging of a phantom of known marker geometry. Accurate implementation was accomplished through direct computation algorithms, including a novel ellipse fitting using singular value decomposition and data normalization. Benefits of the method include: (1) It is capable of being applied to systems of different scan trajectories, source-detector alignments, and detector orientations; (2) projection matrices can be utilized in image reconstructions or in the extraction of explicit geometrical parameters; and (3) the method imposes minimal limits on the design of calibration phantom. C++ programs that calculate projection matrices and extract geometric parameters from them are also provided. For validation, the calibration method was applied to the computer simulation of a cone-beam CT system, as well as to three tomosynthesis prototypes of different source-detector movement patterns: Source and detector rotating synchronizedly; source rotating and detector wobbling; and source rotating and detector staying stationary.

RESULTS

Projection matrices were computed on a view by view basis. Geometric parameters extracted from projection matrices were consistent with actual settings. Images were reconstructed by directly using projection matrices, and were compared to virtual Shepp-Logan image for CT simulation and to central projection images of CIRS breast phantoms for tomosynthesis prototypes. They showed no obvious distortion or blurring, indicating the high quality of geometric calibration results. When the computed central ray offsets were perturbed with Gaussian noises of 1 pixel standard deviation, the reconstructed image showed apparent distortion, which further demonstrated the accuracy of the geometric calibration method.

CONCLUSIONS

The method is suitable for tomographic imaging systems with flat-panel detectors.

摘要

目的

以非常详细的方式介绍一种适用于具有平板探测器的层析成像系统的通用几何校准方法,旨在为公众提供有用的工具。

方法

该方法基于投影矩阵,该矩阵表示从 3D 物体坐标系到 2D 投影图像平面的映射。通过对具有已知标记几何形状的幻影的成像,可以通过实验确定投影矩阵。通过直接计算算法(包括使用奇异值分解和数据归一化的新颖椭圆拟合)实现了精确的实现。该方法的优点包括:(1)它能够应用于具有不同扫描轨迹、源-探测器对准和探测器方向的系统;(2)可以在图像重建或显式几何参数提取中使用投影矩阵;(3)该方法对校准幻影的设计施加最小限制。还提供了计算投影矩阵并从中提取几何参数的 C++程序。为了验证,校准方法应用于锥形束 CT 系统的计算机模拟以及三种不同源-探测器运动模式的断层合成原型:源和探测器同步旋转;源旋转和探测器晃动;以及源旋转和探测器保持静止。

结果

投影矩阵是逐视图计算的。从投影矩阵中提取的几何参数与实际设置一致。通过直接使用投影矩阵重建图像,并将其与 CT 模拟的虚拟 Shepp-Logan 图像以及用于断层合成原型的 CIRS 乳房体模的中心投影图像进行比较。它们没有明显的失真或模糊,表明几何校准结果的高质量。当计算出的中央射线偏移量受到 1 像素标准偏差的高斯噪声干扰时,重建图像显示出明显的失真,这进一步证明了几何校准方法的准确性。

结论

该方法适用于具有平板探测器的层析成像系统。

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