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2D parallel optical coherence tomography and multiple-layer information extraction

机译:二维平行光学相干层析成像和多层信息提取

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During the past decade, optical coherence tomography (OCT) has been vigorously developed into a powerful tool for biomedical diagnosis applications. Because this technology has the nature of extracting the internal features of an object, its applications can be extended to document security, biometrics identification, and industrial inspection. In addition, its high imaging resolution makes OCT an ideal tool for massive storage/retrieval of 3D data. In this paper, we propose the 2D parallel OCT system and its application for multiple-layer information retrieval. We will study the issues that exist exclusively in this type of application, such as interlayer phase/intensity modulation and the parasitic fringe patterns resulting from the surfaces of the information layer. The basic procedure of the proposed OCT system includes three steps: 1) extraction of cross-section raw images at each layer of an object; 2) removal of the interfering fringes by algorithm derived from multiple phase-shifted images; 3) elimination of interlayer modulations and parasitic patterns. Other issues that may degrade the retrieved images are also discussed. The simulation results and experimental tomography obtained from different testing samples are presented and discussed.
机译:在过去的十年中,光学相干断层扫描(OCT)已被大力发展为用于生物医学诊断应用程序的强大工具。由于该技术具有提取对象内部特征的性质,因此其应用范围可以扩展到文档安全性,生物特征识别和工业检查。此外,其高成像分辨率使OCT成为海量存储/检索3D数据的理想工具。在本文中,我们提出了二维并行OCT系统及其在多层信息检索中的应用。我们将研究仅在此类应用程序中存在的问题,例如层间相位/强度调制和信息层表面产生的寄生条纹图案。所提出的OCT系统的基本过程包括三个步骤:1)提取物体每一层的横截面原始图像; 2)通过源自多个相移图像的算法去除干扰条纹; 3)消除层间调制和寄生图案。还讨论了可能会使检索到的图像质量下降的其他问题。给出并讨论了从不同测试样品获得的仿真结果和实验层析成像。

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