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Grating-based phase contrast tomosynthesis imaging: Proof-of-concept experimental studies

机译:基于光栅的相衬层析合成成像:概念验证实验研究

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摘要

>Purpose: This paper concerns the feasibility of x-ray differential phase contrast (DPC) tomosynthesis imaging using a grating-based DPC benchtop experimental system, which is equipped with a commercial digital flat-panel detector and a medical-grade rotating-anode x-ray tube. An extensive system characterization was performed to quantify its imaging performance.>Methods: The major components of the benchtop system include a diagnostic x-ray tube with a 1.0 mm nominal focal spot size, a flat-panel detector with 96 μm pixel pitch, a sample stage that rotates within a limited angular span of ±30°, and a Talbot-Lau interferometer with three x-ray gratings. A total of 21 projection views acquired with 3° increments were used to reconstruct three sets of tomosynthetic image volumes, including the conventional absorption contrast tomosynthesis image volume (AC-tomo) reconstructed using the filtered-backprojection (FBP) algorithm with the ramp kernel, the phase contrast tomosynthesis image volume (PC-tomo) reconstructed using FBP with a Hilbert kernel, and the differential phase contrast tomosynthesis image volume (DPC-tomo) reconstructed using the shift-and-add algorithm. Three inhouse physical phantoms containing tissue-surrogate materials were used to characterize the signal linearity, the signal difference-to-noise ratio (SDNR), the three-dimensional noise power spectrum (3D NPS), and the through-plane artifact spread function (ASF).>Results: While DPC-tomo highlights edges and interfaces in the image object, PC-tomo removes the differential nature of the DPC projection data and its pixel values are linearly related to the decrement of the real part of the x-ray refractive index. The SDNR values of polyoxymethylene in water and polystyrene in oil are 1.5 and 1.0, respectively, in AC-tomo, and the values were improved to 3.0 and 2.0, respectively, in PC-tomo. PC-tomo and AC-tomo demonstrate equivalent ASF, but their noise characteristics quantified by the 3D NPS were found to be different due to the difference in the tomosynthesis image reconstruction algorithms.>Conclusions: It is feasible to simultaneously generate x-ray differential phase contrast, phase contrast, and absorption contrast tomosynthesis images using a grating-based data acquisition setup. The method shows promise in improving the visibility of several low-density materials and therefore merits further investigation.
机译:>目的:本文讨论了使用基于光栅的DPC台式实验系统进行X射线微分相位对比(DPC)断层合成成像的可行性,该系统配备了商用数字平板探测器和医疗设备级旋转阳极X射线管。进行了广泛的系统表征,以量化其成像性能。>方法:台式系统的主要组件包括标称焦点尺寸为1.0 mm的诊断X射线管,带有像素间距为96μm,样品台可在±30°的有限角度范围内旋转,以及带有三个X射线光栅的Talbot-Lau干涉仪。总共以3°增量获取的21个投影视图用于重建三组断层合成图像体积,包括使用带斜率核的滤波反投影(FBP)算法重建的常规吸收对比断层合成图像体积(AC-tomo),使用Hilbert核通过FBP重建相衬层析合成图像体积(PC-tomo),并使用shift-and-add算法重建相衬层析合成图像差异(DPC-tomo)。使用包含组织替代材料的三个内部物理模型来表征信号线性,信号差噪比(SDNR),三维噪声功率谱(3D NPS)和贯穿平面伪影扩散函数( >结果:虽然DPC-tomo突出显示图像对象中的边缘和界面,但PC-tomo消除了DPC投影数据的差分特性,并且其像素值与实数的递减线性相关。 X射线折射率的一部分。在AC-tomo中,水中的聚甲醛和在油中的聚苯乙烯的SDNR值分别为1.5和1.0,而在PC-tomo中,该值分别提高至3.0和2.0。 PC-tomo和AC-tomo表现出等效的ASF,但由于断层合成图像重建算法的差异,发现3D NPS量化的噪声特性有所不同。>结论:使用基于光栅的数据采集设置生成X射线微分相位对比,相位对比和吸收对比的合成图像。该方法显示出有望改善几种低密度材料的可见性,因此值得进一步研究。

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