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A moving blocker system for cone-beam computed tomography scatter correction

机译:用于锥形束计算机断层扫描散射校正的移动式阻挡系统

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Purpose: Scatter contamination in cone-beam computed tomography (CBCT) degrades the image quality by introducing shading artifacts. A moving-blocker-based approach has been proposed to simultaneously estimate scatter and reconstruct the complete volume within field of view (FOV) from a single CBCT scan. Promising results were obtained from our simulation studies. In this work, the authors demonstrated experimentally the effectiveness of the moving-blocker-based scatter correction approach by implementing a moving blocker system on a LINAC on-board kV CBCT imaging system. Methods: A physical attenuator (i.e., "blocker") consisting of equal spaced lead strips was mounted on a linear actuator. A step motor connected to the actuator drove the blocker to move back and forth along gantry rotation axis during the CBCT acquisition. Scatter signal was estimated from the blocked region of imaging panel, and interpolated into the unblocked region. A statistics-based iterative image reconstruction algorithm was used to reconstruct CBCT images from unblocked projections after the scatter signal was subtracted. Experimental studies were performed on a Catphan phantom and an anthropomorphic pelvis phantom to evaluate performance of the moving blocker system. Results: The scatter-induced shading artifacts were substantially reduced in the images acquired with the moving blocker system. CT number error in selected regions of interest reduced from 318 to 17 and from 239 to 10 for the Catphan phantom and pelvis phantom, respectively. Conclusions: The authors demonstrated experimentally that the moving blocker system can successfully estimate the scatter signal in projection data and obtain complete volumetric information within the FOV using a single scan.
机译:目的:锥形束计算机断层扫描(CBCT)中的散射污染会通过引入阴影伪影而降低图像质量。已经提出了一种基于移动阻断器的方法,该方法可以通过单个CBCT扫描同时估计散射并重建视场(FOV)内的完整体积。从我们的模拟研究中获得了有希望的结果。在这项工作中,作者们通过在LINAC车载kV CBCT成像系统上实现移动阻断器系统,通过实验证明了基于移动阻断器的散射校正方法的有效性。方法:将由等间隔的铅条组成的物理衰减器(即“阻隔器”)安装在线性致动器上。在执行CBCT采集期间,连接到执行器的步进电机带动阻滞器沿机架旋转轴来回移动。从成像面板的遮挡区域估计散射信号,并将其内插到未遮挡区域中。在减去散射信号后,使用基于统计的迭代图像重建算法从无遮挡的投影中重建CBCT图像。在Catphan幻影和拟人化的骨盆幻影上进行了实验研究,以评估移动阻滞系统的性能。结果:散布引起的阴影伪影在使用移动式阻断器系统获取的图像中已大大减少。 Catphan体模和骨盆体模的选定感兴趣区域中的CT数误差分别从318减少到17,从239减少到10。结论:作者通过实验证明,移动阻断器系统可以成功地估计投影数据中的散射信号,并通过一次扫描就可以在FOV中获得完整的体积信息。

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