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Enhancement of in-plane spatial resolution in volumetric computed tomography with focal spot wobbling - Overcoming the constraint on number of projection views per gantry rotation

机译:利用焦点摆动增强体积计算机断层扫描中的平面空间分辨率-克服了每个机架旋转投影视图数量的限制

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摘要

The spatial resolution of diagnostic Computed Tomography (CT) has increased substantially, and 3D isotropic sub-millimeter spatial resolution in both axial and helical scan modes is routinely available in the clinic. However, driven by advanced clinical applications, the pursuit for higher spatial resolution and free of aliasing artifacts in diagnostic CT has never stopped. A method to accommodate focal spot wobbling at an arbitrary number of projection views per gantry rotation in CT is presented and evaluated here. The method employs a beta-correction scheme in the row-wise fan-to-parallel rebinning to transform the native cone beam geometry into the cone-parallel geometry under which existing 3D weighted cone beam filtered backprojection algorithms can be utilized for image reconstruction. The experimental evaluation shows that the row-wise fan-to-parallel rebinning with the beta-correction can increase the quantitative in-plane spatial resolution (Modulation Transfer Function) substantially, while the visual spatial resolution can be enhanced significantly. Consequently, the architectural designers of CT scanners are no longer constrained to choosing the number of projection views per rotation determined by gantry geometry. Instead, they can choose the number of projection views per rotation to optimize the trade-offs between in-plane spatial resolution and noise characteristics. Therefore, the presented method is of practical relevance in the architectural design of state-of-the-art diagnostic CT.
机译:诊断计算机断层扫描(CT)的空间分辨率已大大提高,临床上通常可以使用轴向和螺旋扫描模式下的3D各向同性亚毫米空间分辨率。然而,在先进的临床应用的推动下,对诊断CT中更高的空间分辨率和无混叠伪影的追求从未停止。本文提出并评估了一种在CT中每个机架旋转时以任意数量的投影视图适应焦点摆动的方法。该方法在行向扇形到平行的重新组合中采用beta校正方案,以将原始锥形束几何形状转换为锥形平行几何形状,在这种情况下,可以将现有的3D加权锥形束滤波反投影算法用于图像重建。实验评估表明,采用β校正的逐行扇形与平行重组可以显着提高定量的平面内空间分辨率(调制传递函数),而视觉空间分辨率则可以得到显着提高。因此,CT扫描仪的建筑设计人员不再受限于选择由机架几何形状确定的每转投影视图的数量。取而代之的是,他们可以选择每旋转一圈的投影视图的数量,以优化平面内空间分辨率与噪声特性之间的权衡。因此,所提出的方法在最新型诊断CT的体系结构设计中具有实际意义。

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