论文标题

2D Antiscater网格概念用于平板检测器的可行性:初步调查主要传输特性

Feasibility of 2D antiscatter grid concept for flat panel detectors: preliminary investigation of primary transmission properties

论文作者

Altunbas, Cem, Zhong, Yuncheng, Shaw, Chris C.

论文摘要

抑制基于FPD的平板检测器中散射辐射的影响仍然是一个挑战。为了解决散射问题,我们一直在研究FPD的二维抗探测者网格(2D ASG)概念的可行性。尽管2D ASG可以潜在地提供高散射拒绝能力,但是2D ASG的主要传输特性及其在图像质量中的影响在实施2D ASG概念方面起着更为关键的作用。因此,在这项工作中,开发了一个计算模型,以研究2D ASG对各种网格和FPD像素几何形状的主要传输特性,并通过分析计算了信号与噪声比的改进,以证明2D ASG透射特性对图像质量的影响。计算模型表明,平均初级传输分数(TP)在很大程度上取决于2D ASG的间隔厚度,而2D ASG可以在0.1 mm的间隔厚度下提供比现有的X光学ASG更高的TP。由于TP较高,还预计2D ASG可以改善CBCT成像中通常观察到的低至中等散射环境的投影。另一方面,该模型还表明2D ASG的阴影或足迹导致FPD像素中主信号的空间不均匀变化。降低间隔厚度和2D ASG音高的优化可能在减少主图像信号中的这种变化中起着至关重要的作用,并避免了与2D ASG的足迹相关的潜在图像伪像。

Suppressing the effects of scattered radiation in flat panel detector, FPD, based CBCT still remains to be a challenge. To address the scatter problem, we have been investigating the feasibility of a two dimensional antiscatter grid (2D ASG) concept for FPDs. Although a 2D ASG can potentially provide high scatter rejection capability, primary transmission characteristics of a 2D ASG and its implications in image quality plays a more critical role in implementation of the 2D ASG concept. Thus, in this work, a computational model was developed to investigate the primary transmission properties of the 2D ASG for various grid and FPD pixel geometries, and the improvement in signal to noise ratio,SNR, was calculated analytically to demonstrate the impact of 2D ASG's transmission characteristics on image quality. Computational model showed that average primary transmission fraction (Tp) strongly depends on the septal thickness of 2D ASG, and 2D ASG can provide higher Tp than existing radiographic ASGs at a septal thickness of 0.1 mm. Due to the higher Tp, 2D ASG was also predicted to provide SNR improvements in projections in low to moderate scatter environments typically observed in CBCT imaging. On the other hand, the model also indicated that the shadow or footprint of the 2D ASG leads to spatially nonuniform variations in primary signal in FPD pixels. Reduction of septal thickness and optimization of 2D ASG's pitch may play an essential role in reducing such variations in primary image signal, and avoiding potential image artifacts associated with 2D ASG's footprint.

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