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使用单根光纤通过荧光测量对组织模拟介质中的荧光团浓度进行定量分析。

Quantification of fluorophore concentration in tissue-simulating media by fluorescence measurements with a single optical fiber.

作者信息

Diamond Kevin R, Patterson Michael S, Farrell Thomas J

机构信息

Department of Medical Physics, Hamilton Regional Cancer Centre and McMaster University, Concession Street, Hamilton, Ontario L8V 5C2, Canada.

出版信息

Appl Opt. 2003 May 1;42(13):2436-42. doi: 10.1364/ao.42.002436.

Abstract

Quantifying fluorescent compounds in turbid media such as tissue is made difficult by the effects of multiple scattering and absorption of the excitation and emission light. The approach that we used was to measure fluorescence using a single 200-microm optical fiber as both the illumination source and the detector. Fluorescence of aluminum phthalocyanine tetrasulfonate (AlPcS4) was measured over a wide range of fluorophore concentrations and optical properties in tissue-simulating phantoms. A root-mean-square accuracy of 10.6% in AlPcS4 concentration was attainable when fluorescence was measured either interstitially or at the phantom surface. The individual effects of scattering, absorption, and the scattering phase function on the fluorescence signal were also studied by experiments and Monte Carlo simulations.

摘要

由于激发光和发射光的多次散射和吸收效应,对诸如组织等混浊介质中的荧光化合物进行定量分析变得困难。我们采用的方法是使用一根200微米的单光纤同时作为照明源和探测器来测量荧光。在模拟组织的体模中,在广泛的荧光团浓度和光学特性范围内测量了四磺酸铝酞菁(AlPcS4)的荧光。当在体模内部或表面测量荧光时,AlPcS4浓度的均方根精度可达10.6%。还通过实验和蒙特卡罗模拟研究了散射、吸收以及散射相函数对荧光信号的单独影响。

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