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U-SPECT-BioFluo: an integrated radionuclide, bioluminescence, and fluorescence imaging platform

机译:U-SPECT-BioFluo:集成的放射性核素,生物发光和荧光成像平台

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Background In vivo bioluminescence, fluorescence, and single-photon emission computed tomography (SPECT) imaging provide complementary information about biological processes. However, to date these signatures are evaluated separately on individual preclinical systems. In this paper, we introduce a fully integrated bioluminescence-fluorescence-SPECT platform. Next to an optimization in logistics and image fusion, this integration can help improve understanding of the optical imaging (OI) results. Methods An OI module was developed for a preclinical SPECT system (U-SPECT, MILabs, Utrecht, the Netherlands). The applicability of the module for bioluminescence and fluorescence imaging was evaluated in both a phantom and in an in vivo setting using mice implanted with a 4 T1-luc?+?tumor. A combination of a fluorescent dye and radioactive moiety was used to directly relate the optical images of the module to the SPECT findings. Bioluminescence imaging (BLI) was compared to the localization of the fluorescence signal in the tumors. Results Both the phantom and in vivo mouse studies showed that superficial fluorescence signals could be imaged accurately. The SPECT and bioluminescence images could be used to place the fluorescence findings in perspective, e.g. by showing tracer accumulation in non-target organs such as the liver and kidneys (SPECT) and giving a semi-quantitative read-out for tumor spread (bioluminescence). Conclusions We developed a fully integrated multimodal platform that provides complementary registered imaging of bioluminescent, fluorescent, and SPECT signatures in a single scanning session with a single dose of anesthesia. In our view, integration of these modalities helps to improve data interpretation of optical findings in relation to radionuclide images.
机译:背景技术体内生物发光,荧光和单光子发射计算机断层扫描(SPECT)成像可提供有关生物学过程的补充信息。但是,迄今为止,这些签名在单独的临床前系统上进行了单独评估。在本文中,我们介绍了一个完全集成的生物发光-荧光-SPECT平台。除了物流和图像融合方面的优化之外,这种集成还有助于提高对光学成像(OI)结果的理解。方法为临床前SPECT系统(U-SPECT,Milabs,乌得勒支,荷兰)开发了OI模块。使用植入了4T1-lucβ+β肿瘤的小鼠,在模型和体内环境中评估了该模块在生物发光和荧光成像中的适用性。荧光染料和放射性部分的组合用于直接将模块的光学图像与SPECT发现相关。将生物发光成像(BLI)与荧光信号在肿瘤中的定位进行了比较。结果体模和体内小鼠研究均表明,可以准确地成像浅层荧光信号。 SPECT和生物发光图像可用于将荧光检查结果置于透视图中,例如通过显示示踪剂在非靶器官(例如肝和肾)中的蓄积(SPECT)并给出肿瘤扩散(生物发光)的半定量读数。结论我们开发了一个完全集成的多峰平台,该平台可在单次麻醉过程中通过单次麻醉提供生物发光,荧光和SPECT签名的互补配准成像。我们认为,这些模态的整合有助于改善与放射性核素图像有关的光学发现的数据解释。

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