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首页> 外文期刊>Applied optics >In vivo quantitative three-dimensional localization of tumor labeled with exogenous specific fluorescence markers
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In vivo quantitative three-dimensional localization of tumor labeled with exogenous specific fluorescence markers

机译:用外源特异性荧光标记物标记的肿瘤的体内三维三维定位

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摘要

We introduce a diffused optical detection system based on the administration of a fluorophore-antibody conjugate to diseased tissue. The conjugate interacts with the antigens expressed by the diseased tissue, resulting in fluorescent labeling of the antigen. By combining an optical detection system with a reconstruction algorithm developed on the basis of the random-walk model, we were able to determine the position of the fluorophore (and, thus, of the diseased cells) in the tissue. We present three-dimensional reconstructions of the location of a fluorophore (FITC-fluorescein isothiocyanate) in the tongues of mice. Measurements were performed with the fluorophore embedded at various simulated depths. The simulations were performed with agarose-based gel slabs applied to the tongue as tissuelike phantoms. Reconstructed fluorophore locations agree well with the actual values. (C) 2003 Optical Society of America. [References: 24]
机译:我们介绍了基于对患病组织施用荧光团-抗体共轭物的扩散光学检测系统。缀合物与患病组织表达的抗原相互作用,导致抗原的荧光标记。通过将光学检测系统与基于随机游走模型开发的重建算法相结合,我们能够确定组织中荧光团(以及因此患病细胞)的位置。我们目前在小鼠的舌头中的荧光团(异硫氰酸荧光素-荧光素)的位置的三维重建。使用嵌入在各种模拟深度的荧光团进行测量。通过将基于琼脂糖的凝胶平板作为组织状体模应用于舌头来进行模拟。重建的荧光团位置与实际值非常吻合。 (C)2003年美国眼镜学会。 [参考:24]

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