光学
显微镜
光传递函数
显微镜
相位成像
相位恢复
计算机科学
相衬显微术
材料科学
微透镜
空间频率
相(物质)
传递函数
镜头(地质)
物理
傅里叶变换
电气工程
工程类
量子力学
作者
Micah H. Jenkins,Thomas K. Gaylord
出处
期刊:Applied optics-OT
[The Optical Society]
日期:2015-09-30
卷期号:54 (28): 8566-8566
被引量:54
摘要
Although the field of quantitative phase imaging (QPI) has wide-ranging biomedical applicability, many QPI methods are not well-suited for such applications due to their reliance on coherent illumination and specialized hardware. By contrast, methods utilizing partially coherent illumination have the potential to promote the widespread adoption of QPI due to their compatibility with microscopy, which is ubiquitous in the biomedical community. Described herein is a new defocus-based reconstruction method that utilizes a small number of efficiently sampled micrographs to optimally invert the partially coherent phase optical transfer function under assumptions of weak absorption and slowly varying phase. Simulation results are provided that compare the performance of this method with similar algorithms and demonstrate compatibility with large phase objects. The accuracy of the method is validated experimentally using a microlens array as a test phase object. Lastly, time-lapse images of live adherent cells are obtained with an off-the-shelf microscope, thus demonstrating the new method's potential for extending QPI capability widely in the biomedical community.
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