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光学数字相干检测技术实现了灵活且超快速的定量相位成像。

Optical digital coherent detection technology enabled flexible and ultra-fast quantitative phase imaging.

作者信息

Feng Yuan-Hua, Lu Xing, Song Lu, Guo Xiaojie, Wang Yawei, Zhu Linyan, Sui Qi, Li Jianping, Shi Kebin, Li Zhaohui

出版信息

Opt Express. 2016 Jul 25;24(15):17159-67. doi: 10.1364/OE.24.017159.

Abstract

Quantitative phase imaging has been an important labeling-free microscopy modality for many biomedical and material science applications. In which, ultra-fast quantitative phase imaging is indispensable for dynamic or transient characteristics analysis. Conventional wide field optical interferometry is a common scheme for quantitative phase imaging, while its data acquisition rate is usually hindered by the frame rate of arrayed detector. By utilizing novel balanced-photo-detector based digital optics coherent detection techniques, we report on a method of constructing ultra-fast quantitative phase microscopy at the line-scan rate of 100 MHz with ~2 μm spatial resolution.

摘要

定量相位成像已成为许多生物医学和材料科学应用中一种重要的无标记显微镜技术。其中,超快速定量相位成像对于动态或瞬态特性分析不可或缺。传统的宽场光学干涉术是定量相位成像的常用方案,但其数据采集速率通常受阵列探测器帧率的限制。通过利用基于新型平衡光电探测器的数字光学相干检测技术,我们报道了一种以100 MHz的线扫描速率和约2μm的空间分辨率构建超快速定量相位显微镜的方法。

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