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Effect of grid geometry on the transmission properties of 2D grids for flat detectors in CBCT

机译:网格几何对CBCT中平探测器2D网格传输特性的影响

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To suppress scatter in cone beam computed tomography (CBCT), two-dimensional antiscatter grids (2D grid) have been recently proposed. In this work, we developed several grid prototypes with higher grid ratios and smaller grid pitches than previous designs, and quantified their primary and scatter transmission properties in the context of CBCT for radiation therapy. Three focused 2D grid prototypes were developed with grid ratios at 12 and 16, and grid pitches at 2 and 3?mm. Their scatter transmission properties were measured between 80?140 kVp, and benchmarked against a high performance radiographic grid (1D grid) using a Varian TrueBeam CBCT system. The effect of source?grid misalignment on the primary transmission and the improvement in contrast-to-noise ratio (CNR) were also evaluated. Changing the grid pitch from two to three mm increased the average primary transmission from 84% to 89%. Maximum scatter-to-primary ratio (SPR) with grid ratio of 12 was 0.3, and increasing the grid ratio to 16 reduced SPR by 30%. A 10?mm misalignment in 2D grid position led to a 6%?8% reduction in average primary transmission, and reduction was more pronounced for the higher grid ratio. 2D grids provided up to factor of seven lower SPR and 21% better primary transmission than the 1D grid, and their scatter transmission exhibited lower energy dependence. While 2D grids provided up to factor of 2.3 higher CNR improvement, a significant variation in CNR improvement was not observed among different grid pitch and ratios. In summary, grid ratio of 16 and grid pitch of 2?mm can keep SPRs below 0.2 even in high scatter conditions, while keeping primary transmission fractions above 80%, key benefits of the investigated 2D grids in improving image quality of CBCT. However, such grids require precise alignment in source-grid geometry during CBCT acquisitions. This study also implies that 2D grids can provide substantially better scatter suppression and primary transmission than high-performance 1D grids currently available.
机译:为了抑制锥形光束计算机断层扫描(CBCT)的散射,最近已经提出了二维反iscatter网格(2d网格)。在这项工作中,我们开发了几种具有较高电网比率和比以前的设计更高的栅格沥青的网格原型,并在CBCT的上下文中量化了其初级和散射传输性能,用于放射治疗。三个聚焦的2D栅格原型是在12和16处的栅格比和2和3?mm的网格间隙开发。它们的散射传输属性在80?140 kVp之间测量,并使用Varian TrueBeam CBCT系统对抗高性能射线照相电网(1D电网)进行基准测试。还评估了源极源的影响,对初级传播和对比度噪声比(CNR)的改善。将栅格音高从两到三毫米改变为84%的平均主要传输增加到89%。具有12的最大散射致初级比(SPR)为12为0.3,并将栅格比增加到16减少30%。在2D网格位置中的10个?MM错位导致平均初级传输的6%?8%降低,但较高的网格比更加明显。 2D网格提供多达七个较小的SPR和比1D网格更好的初级变速器,它们的散射传输表现出较低的能量依赖性。虽然CNR改善的2D网格提供了高度为2.3的较高因素,但在不同的网格间距和比率下未观察到CNR改善的显着变化。总之,即使在高散射条件下,2Ωmm的16和栅格间距的栅格比和电网间距也可以保持SPR,同时将初级传输分数保持在80%以上,调查的2D网格的主要益处在提高CBCT的图像质量。但是,在CBCT采集期间,这种网格需要在源极栅格几何中精确对准。本研究还意味着2D网格可以提供比目前可用的高性能1D网格的基本更好的散射抑制和主要传输。

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