Kienle A, Patterson M S, Ott L, Steiner R
Appl Opt. 1996 Jul 1;35(19):3404-12. doi: 10.1364/AO.35.003404.
Laser Doppler measurements were performed on scattering liquids flowing through a highly scattering static medium to determine the scattering coefficient and the anisotropy factor of the liquids. Monte Carlo simulations of light propagation in the static and moving media were used to calculate the Doppler spectra for suspensions of polystyrene spheres in water, and these spectra were in excellent agreement with experimental results. A faster Monte Carlo code was developed so that nonlinear regressions to the measured laser Doppler spectra could be used to determine the anisotropy factor of other liquids. This approach was used to deduce the scattering properties of Intralipid and blood at λ = 820 nm. It was found that the anisotropy factor of blood is well described by Mie theory in contradiction to results reported in the literature that were obtained by goniometric measurement of the phase function.
对流经高散射静态介质的散射液体进行了激光多普勒测量,以确定液体的散射系数和各向异性因子。利用蒙特卡罗模拟光在静态和动态介质中的传播,计算了水中聚苯乙烯球悬浮液的多普勒光谱,这些光谱与实验结果高度吻合。开发了一种更快的蒙特卡罗代码,以便对测量的激光多普勒光谱进行非线性回归,从而确定其他液体的各向异性因子。该方法用于推导在λ = 820 nm时英脱利匹特脂肪乳剂和血液的散射特性。结果发现,血液的各向异性因子能用米氏理论很好地描述,这与文献中通过相位函数角度测量得到的结果相矛盾。