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Frequency-domain methods in optical tomography: detection of localized absorbers and a backscattering reconstruction scheme

机译:光学层析成像中的频域方法:局部吸收体的检测和反向散射重建方案

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Abstract: We studied the ability to detect small absorbing objects embedded in a highly scattering medium. Absorbing spheres of varying size, from 0.8 mm to 6.8 mm radius, submerged in a solution of highly scattering, low absorbing liquid: skim milk, were studied in a trans-illumination geometry. Groups of more than one sphere and a single circular disk, with radius identical to that of one of the spheres, were also studied. Single linear raster scans in the plane of the sphere, with the spheres centered between the source and detector, were made. Data was taken in the frequency-domain, yielding profiles of the objects in each of the three measurable quantities: dc intensity, phase, and modulation. The diffraction pattern form the sphere differed from that of the disk, demonstrating a volume effect associated with photon diffusion. The diffraction pattern of multiple spheres differed from that of single spheres. !6
机译:摘要:我们研究了检测嵌入高散射介质中的小吸收物体的能力。以透射照明几何学研究了直径在0.8毫米至6.8毫米之间的大小不等的吸收球,这些吸收球浸没在高散射,低吸收液体:脱脂牛奶的溶液中。还研究了一组以上的球体和一个圆盘,其半径与其中一个球体的半径相同。在球体平面内进行单个线性光栅扫描,使球体位于源和检测器之间。在频域中获取数据,得出三个可测量量(直流强度,相位和调制)中每个量的物体轮廓。球形的衍射图样不同于圆盘的衍射图样,表明了与光子扩散相关的体积效应。多个球的衍射图不同于单个球。 !6

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