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Novel C-arm based cone-beam CT using a source trajectory of two concentric arcs

机译:基于两个同心圆弧的源轨迹的新型基于C臂的锥束CT

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摘要

The first results from an interventional C-arm based computed tomography system where a complete source trajectory was used are presented. A scan with two arcs which are joined approximately at the center of their paths (CC trajectory) is utilized here. This trajectory satisfies Tuy's sufficiency condition for a large volume, but is not well populated with Pi-lines. Therefore, a non-PI-line based reconstruction method is required. The desire for high dose efficiency led to the selection of an equal weighting based method. An FBP type reconstruction algorithm which was derived for two orthogonal concentric circles was utilized for reconstruction. The concept of a virtual image object was used to relate the projections from the two acquired non-orthogonal arcs to projections of a virtual object from two orthogonal arcs. Geometrical calibration is vital when performing tomography from an interventional system, and was incorporated here with the use of a homogeneous virtual projection matrix. The results demonstrate a significant reduction in cone-beam artifacts when the complete source trajectory is utilized.
机译:提出了基于介入式C臂的计算机断层摄影系统的第一个结果,该系统使用了完整的源轨迹。此处使用两个弧的扫描,这些弧大约在其路径的中心(CC轨迹)相连。该轨迹在大体积上满足Tuy的充分条件,但是没有充分填充Pi线。因此,需要基于非PI线的重建方法。对高剂量效率的期望导致选择基于相等加权的方法。利用针对两个正交同心圆导出的FBP类型重建算法进行重建。虚拟图像对象的概念用于将来自两个获取的非正交弧的投影与来自两个正交弧的虚拟对象的投影关联起来。从介入系统进行层析成像时,几何校准至关重要,并且通过使用均匀虚拟投影矩阵将其并入此处。结果表明,当利用完整的源轨迹时,锥束伪像的显着减少。

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