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Near infrared fluorescence imaging of small animals with simultaneously estimated structural information

机译:小型动物的近红外荧光成像,同时估计结构信息

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We present a robust technique for diffuse optical fluorescence imaging of tumors in mice and tissue simulating fluorescence phantoms. The detection optics, which is a crucial part of a frequency domain fluorescence imaging system, with appropriate optical filters for efficient rejection of the excitation light, is demonstrated. The image reconstruction is divided into two parts; i.e. reconstructing the target locations such as size and position, and reconstructing the functional information such as fluorophore concentration and image reconstruction. The structural parameters i.e. tumor size and locations of the targets are recovered by a chi-square fitting technique by fitting the experimental data into analytically generated data. Having the structural information beforehand, the images are reconstructed by using our dual-mesh technique. The fluorescence images of targets of few tens of nanomolar fluorophore concentrations in both homogeneous and heterogeneous media are reconstructed in this study.
机译:我们提出了一种健壮的技术,用于在小鼠和模拟荧光体模的组织中对肿瘤进行扩散光学荧光成像。展示了检测光学系统,它是频域荧光成像系统的关键部分,具有适当的滤光片,可有效抑制激发光。图像重建分为两个部分:即重建目标位置(例如大小和位置),以及重建功能信息(例如荧光团浓度和图像重建)。通过将实验数据拟合到分析生成的数据中,通过卡方拟合技术来恢复结构参数,即肿瘤大小和靶标的位置。事先拥有结构信息,然后使用我们的双重网格技术来重建图像。在本研究中,重建了均相和异相介质中数十纳摩尔荧光团浓度的靶标的荧光图像。

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