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Image reconstruction by backprojection from frequency-domain optical measurements in highly scattering media

机译:在高散射介质中通过频域光学测量中的反投影进行图像重建

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摘要

The reconstruction of the location and optical properties of objects in turbid media requires the solution of the inverse problem. Iterative solutions to this problem can require large amounts of computing time and may not converge to a unique solution. Instead, we propose a fast, simple method for approximately solving this problem in which calculated effective absorption and reduced scattering coefficients are backprojected to create an image of the objects. We reconstructed images of objects with centimeter dimensions embedded in a diffusive medium with optical characteristics similar to those of human tissue. Data were collected by a frequency-domain spectrometer operating at 120 MHz with a laser diode light source emitting at 793 nm. Intensity and phase of the incident photon density wave were collected from linear scans at different projection angles. Although the positions of the objects are correctly identified by the reconstructed images, the optical parameters of the objects are recovered only qualitatively. (C) 1997 optical Society of America
机译:浑浊介质中物体位置和光学特性的重建需要反问题的解决。该问题的迭代解决方案可能需要大量的计算时间,并且可能无法收敛到唯一的解决方案。取而代之的是,我们提出了一种快速,简单的方法来近似解决该问题,在该方法中,将计算出的有效吸收量和减小的散射系数反投影以创建对象的图像。我们重建了具有弥散性介质的厘米尺寸的物体的图像,该物体具有类似于人体组织的光学特性。数据是通过工作在120 MHz的频域光谱仪和发射793 nm的激光二极管光源收集的。从不同投影角度的线性扫描收集入射光子密度波的强度和相位。尽管通过重构图像正确地识别出物体的位置,但是物体的光学参数仅被定性地恢复。 (C)1997年美国光学学会

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