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首页> 外文期刊>Journal of X-ray science and technology >X-ray fluorescence tomographic system design and image reconstruction
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X-ray fluorescence tomographic system design and image reconstruction

机译:X射线荧光层析成像系统设计与图像重建

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摘要

In this paper, we presented a new design of x-ray fluorescence CT imaging system. For detecting fuorescence signals of gold nanoparticles in-vivo, multiple spectroscopic detectors are arranged and rotated orthogonal to an excited region of interest so that a localized scan can be acquired with a maximized efficiency. Excitation filtration was employed to minimize the effects of low-energy x-rays and background scattering for lowering radiation dose to the object. Numerical simulations showed that the radiation dose is less than 300 mGy/second for a complete 30 views tomographic scan; and the sensitivity of 3D fluorescence signal detection is up to 0.2% contrast concentrations of nanoparticles. The x-ray fluorescence computed tomography is an important molecular imaging tool. It can be used directly in samall animal research. It has great translational potential for future clinical applications.
机译:在本文中,我们提出了一种新的X射线荧光CT成像系统设计。为了体内检测金纳米颗粒的荧光信号,布置了多个光谱检测器,并使其正交于感兴趣的受激区域旋转,以便可以以最大的效率获取局部扫描。激发过滤用于最小化低能X射线和背景散射的影响,以降低对物体的辐射剂量。数值模拟显示,对于完整的30次断层扫描,辐射剂量小于300 mGy /秒; 3D荧光信号检测的灵敏度高达纳米粒子的0.2%对比浓度。 X射线荧光计算机断层扫描是一种重要的分子成像工具。它可以直接用于野生动物研究。它具有未来临床应用的巨大翻译潜力。

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