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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Fluorophore quantitation in tissue-simulating media with confocal detection
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Fluorophore quantitation in tissue-simulating media with confocal detection

机译:共聚焦检测组织模拟培养基中的荧光团定量

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摘要

Fluorescence measurements from tissue are increasingly being used as a medical diagnostic procedure to assess tissue malignancy or tissue function. Unfortunately, the reemitted fluorescent intensity measured from a tissue surface is not necessarily proportional to the fluorophore concentration because the light is altered by the tissue's intrinsic absorption and scattering properties. By measuring fluorescence from tissue volumes which are smaller than the average scattering length, the effects of the tissue's intrinsic absorption are diminished. In this study, experiments with tissue simulating phantoms are used, as well as Monte Carlo simulations of the experiment, to demonstrate the utility of point fluorescence detection for diagnostic measurements. Potential applications of this technique range from photosensitizer quantitation in vivo, pharmacokinetic measurements of fluorophore in different tissues, to any application where fluorophore quantification is required from a highly scattering medium.
机译:来自组织的荧光测量越来越多地用作评估组织恶性或组织功能的医学诊断程序。不幸的是,从组织表面测得的重新发射的荧光强度不一定与荧光团浓度成正比,因为光因组织的固有吸收和散射特性而改变。通过从小于平均散射长度的组织体积中测量荧光,可以减少组织固有吸收的影响。在这项研究中,使用了具有组织模拟体模的实验以及该实验的蒙特卡洛模拟,以证明点荧光检测在诊断测量中的实用性。该技术的潜在应用范围包括体内的光敏剂定量,不同组织中荧光团的药代动力学测量,以及需要从高度散射的介质进行荧光团定量的任何应用。

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