Biswal Nrusingh, Gupta Sharad, Ghosh Nirmalya, Pradhan Asima
Opt Express. 2003 Dec 1;11(24):3320-31. doi: 10.1364/oe.11.003320.
Fluorescence from fluorophores embedded in a turbid medium like biological tissue gets strongly modulated by the wavelength dependent absorption and scattering properties of tissue. This makes it extremely difficult to extract valuable biochemical information from tissue which is present in the intrinsic line shape and intensity of fluorescence from tissue fluorophores. We present an experimental approach to remove the distorting effect of scattering and absorption on intrinsic fluorescence of fluorophores embedded in a turbid medium like tissue. The method is based on simultaneous measurement of polarized fluorescence and polarized elastic scattering spectra from a turbid medium. The polarized fluorescence normalized by the polarized elastic scattering spectra (in the wavelength range of fluorescence emission) was found to be free from the distorting effect of absorption and scattering properties of the medium. The applicability range of this technique to recover intensity and line shape information of intrinsic fluorescence has been investigated by carrying out studies on a variety of tissue phantoms having different absorption and scattering properties. The results obtained show that this technique can be used to recover intrinsic line shape and intensity information of fluorescence from fluorophores embedded in a scattering medium for the range of optical transport parameters typically found in biological tissue.
嵌入生物组织等浑浊介质中的荧光团发出的荧光,会受到组织波长依赖性吸收和散射特性的强烈调制。这使得从组织中提取存在于组织荧光团固有线形和强度中的有价值生化信息变得极其困难。我们提出了一种实验方法,用于消除散射和吸收对嵌入组织等浑浊介质中的荧光团固有荧光的扭曲效应。该方法基于同时测量浑浊介质的偏振荧光和偏振弹性散射光谱。发现用偏振弹性散射光谱(在荧光发射波长范围内)归一化后的偏振荧光不受介质吸收和散射特性的扭曲影响。通过对具有不同吸收和散射特性的多种组织模型进行研究,考察了该技术恢复固有荧光强度和线形信息的适用范围。所得结果表明,对于生物组织中典型的光传输参数范围,该技术可用于恢复嵌入散射介质中的荧光团的固有线形和强度信息。