Cross-free in both lateral and axial directions Fourier-domain full-field optical coherence tomography

Author(s):  
Jinxi Li ◽  
Jason Zhang ◽  
Luozhi Zhang ◽  
Xing Bai ◽  
Zhan Yu ◽  
...  

Abstract Fourier-domain full-field optical coherence tomography (FD-FF-OCT) has the advantages of high resolution and parallel detection. However, using parallel detection can result in optical crosstalk. Toward minimizing crosstalk, we implemented a very fast deformable membrane (DM) that introduces random phase illumination, which can effectively reduce the crosstalk by washing out fringes originating from multiply scattered light. However, for one thing, although the application of DM has reduced the crosstalk problem in parallel detection to a certain extent, there will still be a lot of background noises, which may come from the circadian rhythm of the sample and multiple scattered photons. The problem could be solved by employing the adaptive singular value decomposition (SVD) filtering. We also combined SVD with the cumulative sum method, which can improve image resolution well. For the other thing, the random phase introduced by DM in the spectral domain will cause axial crosstalk after inverse Fourier transform. As far as we know, we are the first team to notice axial crosstalk and proposes that this problem can be solved by controlling the deformation range of DM. We have carried out a theoretical analysis of the above methods and verified its feasibility by simulation.

Author(s):  
Egidijus Auksorius ◽  
Dawid Borycki ◽  
Patrycjusz Stremplewski ◽  
Kamil Liżewski ◽  
Slawomir Tomczewski ◽  
...  

2005 ◽  
Author(s):  
Andrei V. Zvyagin ◽  
Paul Blazkiewicz ◽  
Julien Vintrou

Author(s):  
Egidijus Auksorius ◽  
Dawid Borycki ◽  
Kamil Lizewski ◽  
Slawomir Tomczewski ◽  
Ieva Zickiene ◽  
...  

2020 ◽  
Vol 11 (5) ◽  
pp. 2849 ◽  
Author(s):  
Egidijus Auksorius ◽  
Dawid Borycki ◽  
Patrycjusz Stremplewski ◽  
Kamil Liżewski ◽  
Slawomir Tomczewski ◽  
...  

2022 ◽  
Author(s):  
Egidijus Auksorius ◽  
Dawid Borycki ◽  
Piotr Wegrzyn ◽  
Ieva Zickiene ◽  
Karolis ADOMAVICIUS ◽  
...  

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