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Quantitative fluorescence molecular imaging in highly light-absorbing melanomas using a dual-tracer kinetic modeling normalization method

机译:使用双示踪动力学建模归一化方法对高吸光性黑色素瘤进行定量荧光分子成像

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摘要

Tissues with high light absorption, such as melanomas, present a significant challenge to fluorescence imaging approaches that seek to estimate molecular expression in vivo, since any fluorescence originating in the tissue will suffer substantial attenuation prior to detection. This can lead to sizable underestimations in estimated fluorescent tracer concentration in these tissues using conventional fluorescence imaging. In this study, a dual-tracer fluorescence imaging approach was employed to correct for severe tissue absorption by 1) using simultaneous injection and imaging of an untargeted tracer to normalize tissue absorption effects on the targeted tracer, and 2) using kinetic modeling that capitalizes on subtle differences in the dynamics of targeted and untargeted tracer uptake to quantify targeted molecule concentrations in the high absorbing tissue. Monte Carlo simulation and kinetic models demonstrated that the effect of optical properties on the approach could be eliminated by a pixel-by-pixel normalization of the targeted and untargeted tracer uptakes prior to 5 min post-tracer injection for fluorescence planar dynamic imaging.
机译:具有高光吸收率的组织(例如黑色素瘤)对试图估计体内分子表达的荧光成像方法提出了重大挑战,因为源自组织的任何荧光在检测之前都会遭受明显的衰减。使用常规的荧光成像,这可能导致这些组织中荧光示踪剂浓度的估计值被大大低估。在这项研究中,采用了双重示踪荧光成像方法来纠正严重的组织吸收,方法是:1)同时注射和成像未靶向的示踪剂以使组织对靶示踪剂的吸收作用归一化,以及2)使用利用靶向和非靶向示踪剂摄取动力学的细微差别可量化高吸收组织中的靶向分子浓度。蒙特卡罗模拟和动力学模型表明,在荧光平面动态成像的示踪剂后注入5分钟之前,可以通过对目标和非目标示踪剂摄取进行逐像素归一化来消除光学性能对该方法的影响。

著录项

  • 来源
    《Photonic therapeutics and diagnostics X》|2014年|89260T.1-89260T.7|共7页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Department of Biomedical Engineering, Illinois Institute of Technology, 3255 S Dearborn St., Chicago, IL USA 60616;

    Thayer School of Engineering, Dartmouth College, 14 Engineering, Hanover, NH USA 03755-8001;

    Department of Pathology 1 Rope Ferry Rd., Hanover, NH USA 03755-1404;

    Thayer School of Engineering, Dartmouth College, 14 Engineering, Hanover, NH USA 03755-8001, Surgery, Geisel School of Medicine, 1 Rope Ferry Rd., Hanover, NH USA 03755-1404;

    The Wellman Institute of Photomedicine, Massachusetts General Hospital, 40 Blossom St., Boston, MA USA 02114;

    Department of Pathology 1 Rope Ferry Rd., Hanover, NH USA 03755-1404;

    Thayer School of Engineering, Dartmouth College, 14 Engineering, Hanover, NH USA 03755-8001, Surgery, Geisel School of Medicine, 1 Rope Ferry Rd., Hanover, NH USA 03755-1404, The Wellman Institute of Photomedicine, Massachusetts General Hospital, 40 Blossom St., Boston, MA USA 02114;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    planar fluorescence imaging; multiple reporter; mouse xenograft model; plasmalemmal vesicle associated protein (PV1);

    机译:平面荧光成像;多名记者;小鼠异种移植模型质膜囊泡相关蛋白(PV1);
  • 入库时间 2022-08-26 13:45:06

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