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Optical imaging of turbid media using independent component analysis: theory and simulation

机译:使用独立分量分析对混浊介质进行光学成像:理论与仿真

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摘要

A new imaging approach for 3-D localization and characterization of objects in a turbid medium using independent component analysis (ICA) from information theory is developed and demonstrated using simulated data. This approach uses a multisource and multidetector signal acquisition scheme. ICA of the perturbations in the spatial intensity distribution measured on the medium boundary sorts out the embedded objects. The locations and optical characteristics of the embedded objects are obtained from a Green's function analysis based on any appropriate model for light propagation in the background medium. This approach is shown to locate and characterize absorptive and scattering inhomogeneities within highly scattering medium to a high degree of accuracy. In particular, we show this approach can discriminate between absorptive and scattering inhomogeneities, and can locate and characterize complex inhomogeneities, which are both absorptive and scattering. The influence of noise and uncertainty in background absorption or scattering on the performance of this approach is investigated.
机译:开发了一种新的成像方法,用于通过信息理论的独立成分分析(ICA)对浑浊的介质中的物体进行3-D定位和表征,并使用模拟数据进行了演示。该方法使用多源和多检测器信号采集方案。在介质边界上测得的空间强度分布中的扰动ICA挑选出嵌入的对象。嵌入对象的位置和光学特性是根据格林函数分析得出的,该函数基于任何适当的模型在背景介质中进行光传播。已显示该方法可以高度准确地定位和表征高散射介质中的吸收和散射不均匀性。特别是,我们显示了这种方法可以区分吸收和散射的不均匀性,并且可以定位和表征吸收和散射的复杂的不均匀性。研究了噪声和背景吸收或散射中的不确定性对该方法性能的影响。

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