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采用离轴干涉复用技术的宽视场宽带定量相显微镜。

Broadband quantitative phase microscopy with extended field of view using off-axis interferometric multiplexing.

作者信息

Girshovitz Pinhas, Frenklach Irena, Shaked Natan T

出版信息

J Biomed Opt. 2015 Nov;20(11):111217. doi: 10.1117/1.JBO.20.11.111217.

Abstract

We propose a new portable imaging configuration that can double the field of view (FOV) of existing off-axis interferometric imaging setups, including broadband off-axis interferometers. This configuration is attached at the output port of the off-axis interferometer and optically creates a multiplexed interferogram on the digital camera, which is composed of two off-axis interferograms with straight fringes at orthogonal directions. Each of these interferograms contains a different FOV of the imaged sample. Due to the separation of these two FOVs in the spatial-frequency domain, they can be fully reconstructed separately, while obtaining two complex wavefronts from the sample at once. Since the optically multiplexed off-axis interferogram is recorded by the camera in a single exposure, fast dynamics can be recorded with a doubled imaging area. We used this technique for quantitative phase microscopy of biological samples with extended FOV. We demonstrate attaching the proposed module to a diffractive phase microscopy interferometer, illuminated by a broadband light source. The biological samples used for the experimental demonstrations include microscopic diatom shells, cancer cells, and flowing blood cells.

摘要

我们提出了一种新的便携式成像配置,它可以将现有离轴干涉成像装置(包括宽带离轴干涉仪)的视场(FOV)扩大一倍。这种配置连接在离轴干涉仪的输出端口,并在数码相机上光学地创建一个多路复用干涉图,该干涉图由两个在正交方向上具有直条纹的离轴干涉图组成。这些干涉图中的每一个都包含成像样本的不同视场。由于这两个视场在空间频率域中是分离的,它们可以分别完全重建,同时一次从样本中获得两个复波前。由于光学多路复用离轴干涉图由相机在单次曝光中记录,因此可以在成像面积加倍的情况下记录快速动态过程。我们将这种技术用于具有扩展视场的生物样品的定量相显微镜检查。我们展示了将所提出的模块连接到由宽带光源照明的衍射相显微镜干涉仪上。用于实验演示的生物样品包括微观硅藻壳、癌细胞和流动血细胞。

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