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本文引用的文献

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NaGdF:Eu Nanoparticles for Enhanced X-ray Excited Optical Imaging.用于增强X射线激发光学成像的NaGdF:Eu纳米颗粒
Chem Mater. 2014 Mar 11;26(5):1881-1888. doi: 10.1021/cm404044n. Epub 2014 Feb 17.
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X-ray luminescence optical tomography imaging: experimental studies.X 射线发光光学断层成像:实验研究。
Opt Lett. 2013 Jul 1;38(13):2339-41. doi: 10.1364/OL.38.002339.
3
Synthesis and radioluminescence of PEGylated Eu(3+) -doped nanophosphors as bioimaging probes.聚乙二醇化铕(III)掺杂纳米磷光体作为生物成像探针的合成与放射发光
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IEEE Trans Med Imaging. 2010 Dec;29(12):1992-9. doi: 10.1109/TMI.2010.2055883. Epub 2010 Jul 8.
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Hybrid system for simultaneous fluorescence and x-ray computed tomography.用于荧光和 X 射线计算机断层扫描的混合系统。
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Three-dimensional fluorescence optical tomography in small-animal imaging using simultaneous positron-emission-tomography priors.使用正电子发射断层扫描先验进行小动物成像的三维荧光光学层析成像。
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Plasmonic fluorescent quantum dots.等离子体荧光量子点
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Fluorophore-quencher based activatable targeted optical probes for detecting in vivo cancer metastases.基于荧光团-猝灭剂的可激活靶向光学探针用于体内癌症转移检测。
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In vivo mouse studies with bioluminescence tomography.利用生物发光断层扫描技术进行的小鼠体内研究。
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X 射线发光光学层析成像的小动物成像数值模拟。

Numerical simulation of x-ray luminescence optical tomography for small-animal imaging.

机构信息

University of California, School of Engineering, Merced, Merced, California 95343.

Universidad Nacional Autónoma de México, Instituto de Física, A.P. 20-364, 01000 México D.F., Mexico.

出版信息

J Biomed Opt. 2014 Apr;19(4):046002. doi: 10.1117/1.JBO.19.4.046002.

DOI:10.1117/1.JBO.19.4.046002
PMID:24695846
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3973658/
Abstract

X-ray luminescence optical tomography (XLOT) is an emerging hybrid imaging modality in which x-ray excitable particles (phosphor particles) emit optical photons when stimulated with a collimated x-ray beam. XLOT can potentially combine the high sensitivity of optical imaging with the high spatial resolution of x-ray imaging. For reconstruction of XLOT data, we compared two reconstruction algorithms, conventional filtered backprojection (FBP) and a new algorithm, x-ray luminescence optical tomography with excitation priors (XLOT-EP), in which photon propagation is modeled with the diffusion equation and the x-ray beam positions are used as reconstruction priors. Numerical simulations based on dose calculations were used to validate the proposed XLOT imaging system and the reconstruction algorithms. Simulation results showed nanoparticle concentrations reconstructed with XLOT-EP are much less dependent on scan depth than those obtained with FBP. Measurements at just two orthogonal projections are sufficient for XLOT-EP to reconstruct an XLOT image for simple source distributions. The heterogeneity of x-ray energy deposition is included in the XLOT-EP reconstruction and improves the reconstruction accuracy, suggesting that there is a need to calculate the x-ray energy distribution for experimental XLOT imaging.

摘要

X 射线发光光学断层扫描(XLOT)是一种新兴的混合成像模式,其中 X 射线可激发粒子(荧光粒子)在受到准直 X 射线束激发时会发射光学光子。XLOT 有可能将光学成像的高灵敏度与 X 射线成像的高空间分辨率结合起来。对于 XLOT 数据的重建,我们比较了两种重建算法,传统的滤波反投影(FBP)和一种新的算法,即具有激发先验的 X 射线发光光学断层扫描(XLOT-EP),其中光子传播用扩散方程建模,X 射线束位置用作重建先验。基于剂量计算的数值模拟用于验证所提出的 XLOT 成像系统和重建算法。模拟结果表明,与 FBP 相比,XLOT-EP 重建的纳米粒子浓度对扫描深度的依赖性要小得多。对于简单的源分布,仅在两个正交投影上进行测量就足以进行 XLOT-EP 重建 XLOT 图像。在 XLOT-EP 重建中包含了 X 射线能量沉积的非均匀性,提高了重建精度,这表明在实验性 XLOT 成像中需要计算 X 射线能量分布。