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Quantitative performance characterization of three-dimensional noncontact fluorescence molecular tomography

机译:三维非接触荧光分子断层扫描的定量性能表征

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摘要

Fluorescent proteins and dyes are routine tools for biological research to describe the behavior of genes, proteins, and cells, as well as more complex physiological dynamics such as vessel permeability and pharmacokinetics. The use of these probes in whole body in vivo imaging would allow extending the range and scope of current biomedical applications and would be of great interest. In order to comply with a wide variety of application demands, in vivo imaging platform requirements span from wide spectral coverage to precise quantification capabilities. Fluorescence molecular tomography (FMT) detects and reconstructs in three dimensions the distribution of a fluorophore in vivo. Noncontact FMT allows fast scanning of an excitation source and noninvasive measurement of emitted fluorescent light using a virtual array detector operating in free space. Here, a rigorous process is defined that fully characterizes the performance of a custom-built horizontal noncontact FMT setup. Dynamic range, sensitivity, and quantitative accuracy across the visible spectrum were evaluated using fluorophores with emissions between 520 and 660 nm. These results demonstrate that high-performance quantitative three-dimensional visible light FMT allowed the detection of challenging mesenteric lymph nodes in vivo and the comparison of spectrally distinct fluorescent reporters in cell culture. (C) The Authors. Published by SPIE under a Creative Commons Attribution 3.0 Unported License.
机译:荧光蛋白和染料是生物学研究的常规工具,用于描述基因,蛋白和细胞的行为,以及更复杂的生理动力学,例如血管通透性和药代动力学。这些探针在全身体内成像中的使用将允许扩展当前生物医学应用的范围和范围,并且将引起极大的兴趣。为了符合各种各样的应用需求,体内成像平台的要求涵盖了从宽光谱范围到精确定量功能的范围。荧光分子断层扫描(FMT)在三个维度上检测和重建荧光团在体内的分布。非接触式FMT允许使用在自由空间中运行的虚拟阵列检测器对激发源进行快速扫描,并对发射的荧光进行无创测量。在这里,定义了一个严格的过程,该过程充分表征了定制水平非接触式FMT设置的性能。使用发射波长在520至660 nm之间的荧光团评估了可见光谱的动态范围,灵敏度和定量精度。这些结果表明,高性能定量三维可见光FMT可以检测体内具有挑战性的肠系膜淋巴结,并可以比较细胞培养中光谱不同的荧光报道分子。 (C)作者。由SPIE根据Creative Commons Attribution 3.0 Unported License发布。

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