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Data-driven affine deformation estimation and correction in cone beam computed tomography

机译:锥束计算机断层扫描中数据驱动的仿射变形估计与校正

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摘要

In computed tomography (CT), motion and deformation during the acquisition lead to streak artefacts and blurring in the reconstructed images. To remedy these artefacts, we introduce an efficient algorithm to estimate and correct for global affine deformations directly on the cone beam projections. The proposed technique is data driven and thus removes the need for markers and/or a tracking system. A relationship between affine transformations and the cone beam transform is proved and used to correct the projections. The deformation parameters that describe deformation perpendicular to the projection direction are estimated for each projection by minimizing a plane-based inconsistency criterion. The criterion compares each projection of the main scan with all projections of a fast reference scan, which is acquired prior or posterior to the main scan. Experiments with simulated and experimental data show that the proposed affine deformation estimation method is able to substantially reduce motion artefacts in cone beam CT images.
机译:在计算机断层扫描(CT)中,采集期间的运动和变形会导致条纹伪影和重建图像的模糊。为了纠正这些伪像,我们引入了一种有效的算法,可以直接在锥束投影上估算和校正全局仿射变形。所提出的技术是数据驱动的,因此消除了对标记和/或跟踪系统的需求。仿射变换和锥束变换之间的关系得到证明,并用于校正投影。通过最小化基于平面的不一致标准,可以为每个投影估计描述垂直于投影方向的变形的变形参数。该标准将主扫描的每个投影与快速参考扫描的所有投影进行比较,快速参考扫描是在主扫描之前或之后获取的。模拟和实验数据的实验表明,提出的仿射变形估计方法能够大大减少锥束CT图像中的运动伪像。

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