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Experimental verification of a theory for the time-resolved fluorescence spectroscopy of thick tissues

机译:厚组织时间分辨荧光光谱理论的实验验证

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摘要

Fluorescence spectroscopy provides potential contrast enhancement for near-infrared tissue imaging and physiologically correlated spectroscopy. We present a fluorescence photon migration model and test its quantitative predictive capabilities with a frequency-domain measurement that involves a homogeneous multiple-scattering tissue phantom (with optical properties similar to those of tissue in the near infrared) that contains a fluorophore (rhodamine B). After demonstrating the validity of the model, we explore its ability to recover the fluorophore's spectral properties from within the multiple-scattering medium. The absolute quantum yield and the lifetime of the fluorophore are measured to within a few percent of the values measured independently in the absence of scattering. Both measurements are accomplished without the use of reference fluorophores. In addition, the model accurately predicts the fluorescence emission spectrum in the scattering medium. Implications of these absolute measurements of lifetime, quantum yield, concentration, and emission spectrum from within multiple-scattering media are discussed. (C) 1997 Optical Society of America
机译:荧光光谱为近红外组织成像和生理相关光谱提供了潜在的对比度增强。我们提出了一种荧光光子迁移模型,并通过频域测量来测试其定量预测能力,该测量涉及包含荧光团(若丹明B)的均质多散射组织体模(光学特性类似于近红外组织的光学特性) 。在证明了该模型的有效性之后,我们探索了其从多重散射介质中恢复荧光团光谱性质的能力。测得的荧光团的绝对量子产率和寿命在不存在散射的情况下独立测量的值的百分之几以内。两种测量均无需使用参考荧光团即可完成。此外,该模型可准确预测散射介质中的荧光发射光谱。讨论了在多个散射介质中对寿命,量子产率,浓度和发射光谱的这些绝对测量的含义。 (C)1997年美国眼镜学会

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