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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Geometric dependence of image quality in digital tomosynthesis: Simulations of X-ray source trajectories and scan angles
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Geometric dependence of image quality in digital tomosynthesis: Simulations of X-ray source trajectories and scan angles

机译:数字造成的图像质量几何依赖性:X射线源轨迹的模拟和扫描角度

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Digital tomosynthesis (DTS) is able to provide the 3-dimensional (3D) images of an object, while reducing radiation dose compared to computed tomography (CT). Despite these benefits, DTS has a geometric sensitivity because only a few dozen projections obtained with limited scan angles are used for DTS imaging. In this study, we evaluated the effects of X-ray source scan trajectories and angles on DTS images for investigating the geometric dependence in DTS. The DTS systems were simulated with linear, rotational and circular scan trajectories, and 54 projections were obtained from each of the four scan angle intervals of +-17, +-27, +-37 and +-47 degrees. The obtained projections were reconstructed by using a model-based filtered back-projection (FBP) technique. The characteristics of reconstructed DTS images were analyzed in terms of quantitative accuracy, noise property, contrast-to-noise ratio (CNR) and spatial resolution. The results showed that the quality of DTS images was highly dependent on the geometric variations, and the characteristics of DTS images differed according to the X-ray source scan trajectories and angles. In conclusion, the DTS geometries should be determined by considering image quality and characteristic in order to optimize their systems and applications.
机译:数字Tomosynthesis(DTS)能够提供物体的三维(3D)图像,同时减少与计算机断层扫描(CT)相比的辐射剂量。尽管有这些益处,DTS具有几何灵敏度,因为仅使用有限扫描角获得的几十个突起用于DTS成像。在这项研究中,我们评估了X射线源扫描轨迹和角度在DTS图像上的影响,以研究DTS中的几何依赖性。 DTS系统用线性,旋转和圆形扫描轨迹模拟,并且从+ -17,+ -27,+ -37和+ -47度的四个扫描角间隔中的每一个获得54个突起。通过使用基于模型的滤波后投影(FBP)技术来重建所获得的突起。根据定量精度,噪声性能,对比度(CNR)和空间分辨率,分析重建DTS图像的特性。结果表明,DTS图像的质量高度依赖于几何变化,并且根据X射线源扫描轨迹和角度不同的DTS图像的特性。总之,通过考虑图像质量和特性来确定DTS几何形状,以优化其系统和应用。

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