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Hybrid small animal imaging system combining magnetic resonance imaging with fluorescence tomography using single photon avalanche diode detectors

机译:混合小动物成像系统,使用单光子雪崩二极管探测器将磁共振成像与荧光层析成像相结合

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摘要

The high sensitivity of fluorescence imaging enables the detection of molecular processes in living organisms. However, diffuse light propagation in tissue prevents accurate recovery of tomographic information on fluorophore distribution for structures embedded deeper than 0.5 mm. Combining optical with magnetic resonance imaging (MRI) provides an accurate anatomical reference for fluorescence imaging data and thereby enables the correlation of molecular with high quality structural/functional information. We describe an integrated system for small animal imaging incorporating a noncontact fluorescence molecular tomography (FMT) system into an MRI detector. By adopting a free laser beam design geometrical constraints imposed by the use of optical fibers could be avoided allowing for flexible fluorescence excitation schemes. Photon detection based on a single-photon avalanche diode array enabled simultaneous FMT/MRI measurements without interference between modalities. In vitro characterization revealed good spatial accuracy of FMT data and accurate quantification of dye concentrations. Feasibility of FMT/MRI was demonstrated in vivo by simultaneous assessment of protease activity and tumor morphology in murine colon cancer xenografts.
机译:荧光成像的高灵敏度使得能够检测活生物体中的分子过程。但是,在组织中扩散的光传播会阻止有关嵌入深度超过0.5毫米的结构的荧光团分布的层析成像信息的准确恢复。将光学与磁共振成像(MRI)结合使用可为荧光成像数据提供准确的解剖学参考,从而使分子与高质量的结构/功能信息相关。我们描述了一个小动物成像的集成系统,将非接触式荧光分子层析成像(FMT)系统整合到MRI检测器中。通过采用自由激光束设计,可以避免使用光纤施加的几何约束,从而允许灵活的荧光激发方案。基于单光子雪崩二极管阵列的光子检测实现了同时FMT / MRI测量,而模态之间没有干扰。体外表征显示FMT数据具有良好的空间准确性,并且可以准确定量染料浓度。通过同时评估鼠结肠癌异种移植物中的蛋白酶活性和肿瘤形态,证明了FMT / MRI的可行性。

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