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来自混浊介质的荧光和漫反射发射的实验和模拟角分布

Experimental and simulated angular profiles of fluorescence and diffuse reflectance emission from turbid media.

作者信息

Gebhart Steven C, Mahadevan-Jansen Anita, Lin Wei-Chiang

机构信息

Department of Biomedical Engineering, Vanderbilt University, Station B, Box 351631, Nashville, Tennessee 37235, USA.

出版信息

Appl Opt. 2005 Aug 10;44(23):4884-901. doi: 10.1364/ao.44.004884.

Abstract

Given the wavelength dependence of sample optical properties and the selective sampling of surface emission angles by noncontact imaging systems, differences in angular profiles due to excitation angle and optical properties can distort relative emission intensities acquired at different wavelengths. To investigate this potentiality, angular profiles of diffuse reflectance and fluorescence emission from turbid media were evaluated experimentally and by Monte Carlo simulation for a range of incident excitation angles and sample optical properties. For emission collected within the limits of a semi-infinite excitation region, normalized angular emission profiles are symmetric, roughly Lambertian, and only weakly dependent on sample optical properties for fluorescence at all excitation angles and for diffuse reflectance at small excitation angles relative to the surface normal. Fluorescence and diffuse reflectance within the emission plane orthogonal to the oblique component of the excitation also possess this symmetric form. Diffuse reflectance within the incidence plane is biased away from the excitation source for large excitation angles. The degree of bias depends on the scattering anisotropy and albedo of the sample and results from the correlation between photon directions upon entrance and emission. Given the strong dependence of the diffuse reflectance angular emission profile shape on incident excitation angle and sample optical properties, excitation and collection geometry has the potential to induce distortions within diffuse reflectance spectra unrelated to tissue characteristics.

摘要

考虑到样品光学特性的波长依赖性以及非接触成像系统对表面发射角的选择性采样,由于激发角和光学特性导致的角度分布差异会扭曲在不同波长下获取的相对发射强度。为了研究这种可能性,通过实验和蒙特卡罗模拟,针对一系列入射激发角和样品光学特性,评估了浑浊介质的漫反射和荧光发射的角度分布。对于在半无限激发区域范围内收集的发射,归一化的角发射分布是对称的,大致呈朗伯分布,并且对于所有激发角下的荧光以及相对于表面法线较小激发角下的漫反射,仅微弱地依赖于样品光学特性。在与激发的倾斜分量正交的发射平面内的荧光和漫反射也具有这种对称形式。对于大激发角,入射平面内的漫反射偏向远离激发源的方向。偏差程度取决于样品的散射各向异性和反照率,并且是由光子入射和发射时方向之间的相关性导致的。鉴于漫反射角发射分布形状对入射激发角和样品光学特性的强烈依赖性,激发和收集几何结构有可能在与组织特征无关的漫反射光谱中引起失真。

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