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Non-invasive fluorescence imaging under ambient light conditions using a modulated ICCD and laser diode

机译:使用调制的ICCD和激光二极管在环境光条件下进行非侵入式荧光成像

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摘要

One limitation of fluorescence molecular imaging that can limit clinical implementation and hamper small animal imaging is the inability to eliminate ambient light. Herein, we demonstrate the ability to conduct rapid non-invasive, far-red and near-infrared fluorescence imaging in living animals and a phantom under ambient light conditions using a modulated image intensified CCD (ICCD) and a laser diode operated in homodyne detection. By mapping AC amplitude from three planar images at varying phase delays, we show improvement in target-to-background ratios (TBR) and reasonable signal-to-noise ratios (SNR) over continuous wave measurements. The rapid approach can be used to accurately collect fluorescence in situations where ambient light cannot be spectrally conditioned or controlled, such as in the case of fluorescent molecular image-guided surgery.
机译:荧光分子成像的一项局限性是无法消除环境光,这可能会限制临床应用并妨碍小动物成像。在这里,我们展示了使用调制的图像增强型CCD(ICCD)和在零差检测中运行的激光二极管在环境光条件下在活体动物和体模中进行快速非侵入性,远红外和近红外荧光成像的能力。通过以变化的相位延迟映射来自三个平面图像的AC振幅,我们显示了在连续波测量中目标背景比(TBR)和合理的信噪比(SNR)的改善。在环境光无法进行光谱调节或控制的情况下,例如在荧光分子图像引导手术的情况下,可以使用快速方法来准确地收集荧光。

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