Grating-based Spectral CT using Small Angle X-ray Beam Deflections.

J Webster Stayman, Matthew Tivnan, Grace J Gang, Wenying Wang, Nadav Shapira, Peter B Noël
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Abstract

Interest in spectral CT for diagnostics and therapy evaluation has been growing. Acquisitions of data from distinct energy spectra provide, among other advantages, quantitative density estimations for multiple materials. We introduce a novel spectral CT concept that includes a fine-pitch grating for prefiltration of the x-ray beam. The attenuation behavior of this grating changes significantly if x-rays are slightly angled in relation to the grating structures. To apply such an angle (i.e. switch between the different filtrations) we propose a fast, controllable, and precise solution by moving the focal spot of the x-ray tube. In this work, we performed preliminary evaluations with a grating prototype on a CT test bench. Our results include x-ray spectrometer measurements that reveal diverse and controllable spectral shaping between 4° and 6° for a specific grating design. Additional experiments with a contrast agent phantom illustrated the capability to decompose clinically relevant iodine concentrations (5, 10, 20, and 50mg/mL) - demonstrating the feasibility of the grating-based approach. Ongoing and future studies will investigate the potential of this novel concept as a relatively simple upgrade to standard energy-integrating CT.

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基于光栅的小角度x射线束偏转光谱CT。
对光谱CT诊断和治疗评估的兴趣越来越大。从不同的能谱获取数据,除其他优点外,提供了多种材料的定量密度估计。我们介绍了一种新的光谱CT概念,其中包括用于x射线光束预过滤的细间距光栅。如果x射线与光栅结构有轻微的角度,则该光栅的衰减行为会发生显著变化。为了应用这样的角度(即在不同的滤镜之间切换),我们提出了一种快速、可控和精确的解决方案,即移动x射线管的焦点。在这项工作中,我们在CT测试台上用光栅原型进行了初步评估。我们的研究结果包括x射线光谱仪测量,揭示了特定光栅设计在4°和6°之间多样化和可控的光谱形状。对比剂幻影的其他实验说明了分解临床相关碘浓度(5,10,20和50mg/mL)的能力-证明了基于光栅的方法的可行性。正在进行的和未来的研究将调查这种新概念的潜力,作为标准能量积分CT的相对简单的升级。
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