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Absorption and scattering images of heterogeneous scattering media can be simultaneously reconstructed by use of dc data

机译:异质散射介质的吸收和散射图像可通过使用dc数据同时重建

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摘要

We present a carefully designed phantom experimental study aimed to provide solid evidence that both absorption and scattering images of heterogeneous scattering media can be reconstructed independently from dc data. We also study the important absorption-scattering cross-talk issue. In this regard, we develop a simple normalizing scheme that is incorporated into our nonlinear finite-element-based reconstruction algorithm. Our results from the controlled phantom experiments show that the cross talk of an absorption object appearing in scattering images can be eliminated and that the cross talk of a scattering object appearing in absorption images can be reduced considerably. In addition, these carefully designed phantom experiments clearly suggest that both absorption and scattering images can be simultaneously recovered and quantitatively separated in highly scattering media by use of dc measurements. Finally, we discuss our results in light of recent theoretical findings on nonuniqueness for dc image reconstruction.
机译:我们提出了一个经过精心设计的幻像实验研究,旨在提供可靠的证据,说明异质散射介质的吸收和散射图像都可以独立于直流数据进行重建。我们还研究了重要的吸收散射串扰问题。在这方面,我们开发了一种简单的归一化方案,该方案已整合到基于非线性有限元的重建算法中。我们从受控模型实验获得的结果表明,可以消除散射图像中出现的吸收对象的串扰,并且可以大大减少散射图像中出现的散射对象的串扰。此外,这些经过精心设计的幻像实验清楚地表明,可以通过使用dc测量在高散射介质中同时恢复和定量分离吸收图像和散射图像。最后,我们根据有关直流图像重构的非唯一性的最新理论发现讨论我们的结果。

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