Multimodal Imaging Based on Digital Holography

Multimodal Imaging Based on Digital Holography
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DOI:
10.1109/jproc.2017.2656148
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发表时间:
2017-02
影响因子:
20.6
通讯作者:
O. Matoba;X. Quan;P. Xia;Y. Awatsuji;T. Nomura
O. Matoba;X. Quan;P. Xia;Y. Awatsuji;T. Nomura
中科院分区:
计算机科学1区
文献类型:
--
作者:
O. Matoba;X. Quan;P. Xia;Y. Awatsuji;T. Nomura

文献摘要

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数字全息术提供了一种通过简单的光学系统和计算机进行三维记录和数值重建的方法。定量测量和数值重新聚焦是主要特征。到目前为止,许多物理参数,如振幅,相位,偏振,荧光和光谱可以独立获得。近来,已经出现了通过组合数字全息显微镜和诸如荧光光学显微镜和拉曼散射显微镜的其它光学显微镜来同时获得两个或更多个物理参数的多模态成像。本文综述了基于数字全息的物理参量成像技术,并对这些技术进行了改进,以发展基于数字全息的多模态成像。
Digital holography provides a method of the 3-D recording and numerical reconstruction by a simple optical system and a computer. Quantitative measurement and numerical refocusing are major characteristics. So far, many physical parameters such as amplitude, phase, polarization, fluorescence, and spectra can be obtained independently. Recently, multimodal imaging that can obtain simultaneously two or more physical parameters by combining digital holographic microscope and other optical microscopes such as a fluorescence optical microscope and a Raman scattering microscope has emerged. In this review, physical parametric imaging techniques based on digital holography are presented and then these techniques are enhanced to develop multimodal imaging based on digital holography.