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Statistics of photon penetration depth in diffusive media

机译:扩散媒体中光子渗透深度的统计

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The study of photon migration through highly scattering media opens the way to the non-invasive investigation of biological tissues well below the skin surface. When the medium is addressed in reflectance geometry, a key issue is to maximize the depth reached by migrating photons. By exploiting the Diffusion Approximation of the Radiative Transfer Equation, we calculated the time-resolved and continuous-wave probability density functions for the maximum depth reached by detected photons, for both a homogeneous and a layered laterally-infinite diffusive slab. From the probability density functions it is possible to calculate the mean value of the maximum depth at which detected photons have undergone scattering events.
机译:通过高度散射培养基对光子迁移的研究开辟了对皮肤表面低于皮肤表面的非侵入性研究的方式。当介质以反射几何进行解决时,关键问题是最大化迁移光子达到的深度。通过利用辐射传递方程的扩散近似,我们计算了由检测到的光子达到的最大深度的时间分辨和连续波概率密度函数,用于均匀和层状横向无限扩散板。从概率密度函数来看,可以计算检测到的光子经过散射事件的最大深度的平均值。

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