Gardner C M, Jacques S L, Welch A J
Appl Opt. 1996 Apr 1;35(10):1780-92. doi: 10.1364/AO.35.001780.
We present a method for recovering the intrinsic fluorescence coefficient, defined as the product of the fluorophore absorption coefficient and the fluorescence energy yield, of an optically thick, homogeneous, turbid medium from a surface measurement of fluorescence and from knowledge of medium optical properties. The measured fluorescence signal is related to the intrinsic fluorescence coefficient by an optical property dependent path-length factor. A simple expression was developed for the path-length factor, which characterizes the penetration of excitation light and the escape of fluorescence from the medium. Experiments with fluorescent tissue phantoms demonstrated that intrinsic fluorescence line shape could be recovered and that fluorophore concentration could be estimated within ±15%, over a wide range of optical properties.
我们提出了一种方法,可从荧光的表面测量以及介质光学特性的相关知识中,恢复光学厚、均匀、浑浊介质的本征荧光系数(定义为荧光团吸收系数与荧光能量产率的乘积)。测量得到的荧光信号通过一个与光学特性相关的光程因子与本征荧光系数相关联。我们推导出了一个光程因子的简单表达式,该表达式表征了激发光在介质中的穿透以及荧光从介质中的逸出情况。对荧光组织模型进行的实验表明,在广泛的光学特性范围内,可以恢复本征荧光线形,并且可以将荧光团浓度估计在±15%的误差范围内。