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Analytical model for sub-diffusive light reflection and the application to spatial frequency-domain imaging

机译:子扩散光反射的分析模型及其在空间频域成像的应用

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We present here an analytical model describing light reflectance at an arbitrary source-detector separation covering both sub-diffusive and diffusion regimes for forward-peaked scattering media such as biological tissue. The model incorporates the small-angle scattering approximation (SAA) to radiative transfer for sub-diffusive light reflectance at a source-detector separation less than one single scattering length where the details of the phase function of light scattering dominate. The performance of the model is verified by Monte Carlo simulations. We also present the application of this analytical model in spatial frequency-domain imaging, in particular, when the spatial frequency is pushed below the reduced scattering coefficient.
机译:这里我们在这里存在一个分析模型,该分析模型描述了覆盖了诸如生物组织的前峰散射介质的子扩散和扩散制度的任意源检测器分离处的光反射率。该模型包含小角度散射近似(SAA),以在源极 - 检测器分离处的子扩散光反射率的小于一个单个散射长度,其中光散射支配的相位函数的细节。 Monte Carlo仿真验证了模型的性能。我们还介绍了该分析模型在空间频域成像中的应用,特别是当空间频率被推低于降低的散射系数时。

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