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Photon path distributions in turbid media: a

机译:混浊介质中的光子路径分布:

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Abstract: Near-IR optical tomography is thwarted by the highly scattering nature of light propagation in tissue. We propose a weighted back-projection method to produce a spatial map of an optical parameter which characterized the investigated medium. We have studied the problem of the choice of the back-projection weight function for the absorption coefficient ($mu$-a$/) and for the reduced scattering coefficient ($mu$-s$/$PRM@) of tissuelike phantoms. Working in frequency-domain optical imaging, we have initially approached the problem of quantifying the effect caused by a small absorbing defect embedded in the medium on the measured DC intensity, AC amplitude, and phase. The collection of DC, AC, and phase changes during a 1 mm step raster scan of the absorbing defect provides information on the photon path distributions and, in general, on the probed spatial region when DC, AC, and phase are, respectively, the measured parameters. We report experimentally determined weight functions for $mu$-a$/ and $mu$-s$/$PRM@. They indicate that absorption and scattering maps can significantly differ in terms of resolution. !11
机译:摘要:近红外光学层析成像受到组织中光传播的高度散射特性的阻碍。我们提出了一种加权反投影方法来产生表征被研究介质的光学参数的空间图。我们已经研究了选择背投影权重函数的问题,该函数是针对组织状体模的吸收系数($ mu $ -a $ /)和降低的散射系数($ mu $ -s $ / $ PRM @)。在频域光学成像中,我们最初已经解决了量化由嵌入介质中的小吸收缺陷对测量的DC强度,AC振幅和相位造成的影响的问题。在吸收缺陷的1毫米步进光栅扫描过程中,DC,AC和相位变化的收集提供了有关光子路径分布的信息,并且通常提供了当DC,AC和相位分别为所探测的空间区域时的信息。测量参数。我们报告了通过实验确定的权重函数$ mu $ -a $ /和$ mu $ -s $ / $ PRM @。它们表明吸收图和散射图在分辨率方面可能存在显着差异。 !11

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