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A static multi‐slit collimator system for scatter reduction in cone‐beam CT

机译:静态多缝准直仪系统可减少锥束CT的散射

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A multiple‐slit collimator (MSC) design was introduced for scatter reduction in cone‐beam computed tomography (CBCT). Unlike most other collimators, the open and closed septa of the proposed MSC are placed in an equi‐angular interval on a circular track of the central sagittal plane. Therefore, one gantry rotation provides only the half of necessary dataset and two gantry rotations are needed to obtain full information. During the first gantry rotation, the MSC position relative to the source is fixed. For the second rotation, the MSC is rotated by the equi‐angle interval. We assume signals under the closed septa are totally attributed to scatter radiation. Then, scatter contributions under open septa are determined by interpolating them. Monte Carlo (MC) simulations for two virtual phantoms (one with a simple geometry and the other with two heterogeneities simulating the bone and the lung) were performed to evaluate the effectiveness of the system. Using the method developed, we could obtain images with significant scatter reduction. Contrast ratio (CR) improvement factors were 1.165 in a 2D projection view, and 1.210 and 1.223 at the central and peripheral slice of the reconstructed CBCT image of the simple geometry phantom. This preliminary study demonstrated that the proposed MSC, together with the imaging process technique, had a great potential to reduce scatter contribution in CBCT. Further studies will be performed to investigate the effect of various factors, such as reducing the detector size, increasing the number of history of MC simulation, and including many structures with different densities. PACS number: 87.57.C
机译:引入了多缝准直仪(MSC)设计,以减少锥束计算机断层扫描(CBCT)中的散射。与大多数其他准直仪不同,拟议的MSC的打开和关闭隔垫以等角间隔放置在中央矢状面的圆形轨道上。因此,一次机架旋转仅提供所需数据集的一半,而需要两次机架旋转以获得完整信息。在第一次机架旋转期间,相对于源的MSC位置是固定的。对于第二次旋转,MSC将旋转等角间隔。我们假设封闭隔垫下的信号完全归因于散射辐射。然后,通过插值确定开放隔垫下的散射贡献。对两个虚拟体模(一个具有简单几何形状,另一个具有两个异质性来模拟骨骼和肺部)进行了蒙特卡洛(MC)仿真,以评估该系统的有效性。使用开发的方法,我们可以获得散度明显降低的图像。在2D投影视图中,对比度(CR)的改善因子为1.165,在简单几何体模型的重建CBCT图像的中央和外围切片处的对比度为1.210和1.223。这项初步研究表明,拟议的MSC与成像处理技术一起,在降低CBCT中的散射贡献方面具有巨大潜力。将进行进一步的研究以研究各种因素的影响,例如减小检测器尺寸,增加MC模拟的历史记录数量以及包括许多具有不同密度的结构。 PACS编号:87.57.C

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