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Dual-energy fluorescent x-ray computed tomography system with a pinhole design: Use of K-edge discontinuity for scatter correction

机译:带有针孔设计的双能荧光X射线计算机断层摄影系统:使用K边缘不连续性进行散射校正

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摘要

We propose a pinhole-based fluorescent x-ray computed tomography (p-FXCT) system with a 2-D detector and volumetric beam that can suppress the quality deterioration caused by scatter components. In the corresponding p-FXCT technique, projections are acquired at individual incident energies just above and below the K-edge of the imaged trace element; then, reconstruction is performed based on the two sets of projections using a maximum likelihood expectation maximization algorithm that incorporates the scatter components. We constructed a p-FXCT imaging system and performed a preliminary experiment using a physical phantom and an I imaging agent. The proposed dual-energy p-FXCT improved the contrast-to-noise ratio by a factor of more than 2.5 compared to that attainable using mono-energetic p-FXCT for a 0.3 mg/ml I solution. We also imaged an excised rat’s liver infused with a Ba contrast agent to demonstrate the feasibility of imaging a biological sample.
机译:我们提出了一种基于针孔的荧光X射线计算机断层摄影(p-FXCT)系统,该系统具有2-D检测器和体积束,可以抑制由散射成分引起的质量下降。在相应的p-FXCT技术中,在成像的跟踪元素的K边缘正上方和正下方的单个入射能量处获取投影;然后,使用包含散射成分的最大似然期望最大化算法,基于两组投影进行重构。我们构建了一个p-FXCT成像系统,并使用物理体模和I成像剂进行了初步实验。与0.3μmg/ ml I溶液使用单能p-FXCT相比,拟议的双能p-FXCT将对比度-噪声比提高了2.5倍以上。我们还对切除的大鼠肝脏注入了钡造影剂进行了成像,以证明对生物样品进行成像的可行性。

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