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基于独立成分分析的混浊介质中物体的三维定位与光学成像

Three-dimensional localization and optical imaging of objects in turbid media with independent component analysis.

作者信息

Xu M, Alrubaiee M, Gayen S K, Alfano R R

机构信息

Department of Physics, the Institute for Ultrafast Spectroscopy and Lasers, New York State Center of Advanced Technology for Ultrafast Photonic Materials and Applications, City College of New York, 10031, USA.

出版信息

Appl Opt. 2005 Apr 1;44(10):1889-97. doi: 10.1364/ao.44.001889.

Abstract

A new approach for optical imaging and localization of objects in turbid media that makes use of the independent component analysis (ICA) from information theory is demonstrated. Experimental arrangement realizes a multisource illumination of a turbid medium with embedded objects and a multidetector acquisition of transmitted light on the medium boundary. The resulting spatial diversity and multiple angular observations provide robust data for three-dimensional localization and characterization of absorbing and scattering inhomogeneities embedded in a turbid medium. ICA of the perturbations in the spatial intensity distribution on the medium boundary sorts out the embedded objects, and their locations are obtained from Green's function analysis based on any appropriate light propagation model. Imaging experiments were carried out on two highly scattering samples of thickness approximately 50 times the transport mean-free path of the respective medium. One turbid medium had two embedded absorptive objects, and the other had four scattering objects. An independent component separation of the signal, in conjunction with diffusive photon migration theory, was used to locate the embedded inhomogeneities. In both cases, improved lateral and axial localizations of the objects over the result obtained by use of common photon migration reconstruction algorithms were achieved. The approach is applicable to different medium geometries, can be used with any suitable photon propagation model, and is amenable to near-real-time imaging applications.

摘要

展示了一种利用信息论中的独立成分分析(ICA)对混浊介质中的物体进行光学成像和定位的新方法。实验装置实现了对含有嵌入式物体的混浊介质的多源照明以及在介质边界上对透射光的多探测器采集。由此产生的空间多样性和多角度观测为混浊介质中嵌入的吸收性和散射性不均匀性的三维定位和表征提供了可靠的数据。对介质边界上空间强度分布中的扰动进行ICA,可分离出嵌入式物体,并基于任何合适的光传播模型,通过格林函数分析获得其位置。对两个厚度约为各自介质输运平均自由程50倍的高散射样本进行了成像实验。一种混浊介质中有两个嵌入式吸收性物体,另一种有四个散射物体。结合扩散光子迁移理论,通过对信号进行独立成分分离来定位嵌入式不均匀性。在这两种情况下,与使用普通光子迁移重建算法得到的结果相比,物体在横向和轴向上的定位都得到了改善。该方法适用于不同的介质几何形状,可与任何合适的光子传播模型一起使用,并且适用于近实时成像应用。

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