High-resolution quantitative phase microscopic imaging in deep UV with phase retrieval

2011 ◽  
Vol 36 (22) ◽  
pp. 4362 ◽  
Author(s):  
Arun Anand ◽  
Ahmad Faridian ◽  
Vani Chhaniwal ◽  
Giancarlo Pedrini ◽  
Wolfgang Osten ◽  
...  
1996 ◽  
Author(s):  
Klony S. Lieberman ◽  
Hanan Terkel ◽  
Michael Rudman ◽  
A. Ignatov ◽  
Aaron Lewis

Sensors ◽  
2019 ◽  
Vol 19 (2) ◽  
pp. 226 ◽  
Author(s):  
Long Peng ◽  
Chenggao Luo ◽  
Bin Deng ◽  
Hongqiang Wang ◽  
Yuliang Qin ◽  
...  

In this paper, we propose a phaseless terahertz coded-aperture imaging (PTCAI) method by using a single incoherent detector or an incoherent detection array. We at first analyze and model the system architecture, derive the matrix imaging equation, and then study the phase retrieval techniques to reconstruct the original target with high resolution. Numerical experiments are performed and the results show that the proposed method can significantly reduce the system complexity in the receiving process while maintaining high resolution imaging capability. Furthermore, the approach of using incoherent detection array instead of single detector is capable of decreasing the encoding and sampling times, and therefore helps to improve the imaging frame rate. In our future research, the method proposed in this paper will be experimentally tested and validated, and high-speed PTCAI at nearly real-time frame rates will be the main work.


2018 ◽  
Vol 8 (11) ◽  
pp. 2147 ◽  
Author(s):  
Daniel Claus ◽  
Jörg Hennenlotter ◽  
Qi Liting ◽  
Giancarlo Pedrini ◽  
Arnulf Stenzl ◽  
...  

Quantitative phase imaging can reveal morphological features without having to stain the biological sample. This property has important implications for intraoperative applications since the time spent during histopathology can be reduced from a few minutes to a few seconds. However, most common quantitative phase imaging techniques are based on the interferometric principle, which makes them more prone to disturbing environmental influences, such as temperature drift and air turbulence. In the last decade, with the advance of computing power, many different iterative quantitative phase imaging techniques, which only require the recording of the diffracted wavefield, and therefore offer increased robustness towards environmental disturbances, have been proposed. These are particularly well-suited for the application outside the well-controlled lab environment such as an operating theatre. The optical performance of our developed iterative phase retrieval method based on variable wavefront curvature will be evaluated by reference to off-axis digital holography and applied for intraoperative discrimination of tissue.


1994 ◽  
Author(s):  
Ulrich P. Schaedeli ◽  
Norbert Muenzel ◽  
Heinz E. Holzwarth ◽  
Sydney G. Slater ◽  
Omkaram Nalamasu

Author(s):  
Rene Claus ◽  
Yow-Gwo Wang ◽  
Markus Benk ◽  
Kenneth A. Goldberg ◽  
Patrick Naulleau ◽  
...  

2016 ◽  
Vol 40 (2) ◽  
pp. 029001
Author(s):  
Heng Chen ◽  
Kun Gao ◽  
Da-Jiang Wang ◽  
Li Song ◽  
Zhi-Li Wang

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