Xu Min
Physics Department, Fairfield University, CT 06824, USA.
Sci Rep. 2016 Mar 3;6:22535. doi: 10.1038/srep22535.
Light reflectance has been widely used to diagnose random media in both in situ and in vivo applications. The quantification of the phase function of the medium from reflectance measurements, however, remains elusive due to the lack of an explicit connection between the light reflectance profile and the phase function. Here we first present an analytical model for reflectance of scattered light at an arbitrary source-detector separation by forward-peaked scattering media such as biological tissue and cells. The model incorporates the improved small-angle scattering approximation (SAA) to radiative transfer for sub-diffusive light reflectance and expresses the dependence of the light reflectance on the phase function of the scattering medium in a closed form. A spreading length scale, lΘ, is found to characterise subdiffusive light reflectance at the high spatial frequency (close separation) limit. After validation by Monte Carlo simulations, we then demonstrate the application of the model in accurate determination of the complete set of optical properties and the phase function of a turbid medium from the profile of subdiffusive and diffusive light reflectance.
光反射率已被广泛应用于原位和体内应用中对随机介质的诊断。然而,由于光反射率分布与相位函数之间缺乏明确的联系,从反射率测量中量化介质的相位函数仍然难以实现。在这里,我们首先提出了一个分析模型,用于描述诸如生物组织和细胞等前向峰值散射介质在任意源 - 探测器间距下的散射光反射率。该模型将改进的小角散射近似(SAA)纳入到亚扩散光反射率的辐射传输中,并以封闭形式表达了光反射率对散射介质相位函数的依赖性。发现一个展宽长度尺度(l_{\Theta})来表征高空间频率(近距离分离)极限下的亚扩散光反射率。在通过蒙特卡罗模拟验证后,我们接着展示了该模型在从亚扩散和扩散光反射率分布精确确定浑浊介质的全套光学特性和相位函数方面的应用。