Computational refocusing in phase-unstable polarization-sensitive optical coherence tomography

We present computational refocusing in polarization-sensitive optical coherence tomography (PS-OCT) to improve spatial resolution in the calculated polarimetric parameters and extend the depth-of-field in phase-unstable, fiber-based PS-OCT systems. To achieve this, we successfully adapted short A-li...

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Veröffentlicht in:Optics letters 2023-09, Vol.48 (18), p.4765-4768
Hauptverfasser: Ruiz-Lopera, Sebastián, Restrepo, René, Cannon, Taylor M, Villiger, Martin, Bouma, Brett E, Uribe-Patarroyo, Néstor
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Sprache:eng
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Zusammenfassung:We present computational refocusing in polarization-sensitive optical coherence tomography (PS-OCT) to improve spatial resolution in the calculated polarimetric parameters and extend the depth-of-field in phase-unstable, fiber-based PS-OCT systems. To achieve this, we successfully adapted short A-line range phase-stability adaptive optics (SHARP), a computational aberration correction technique compatible with phase-unstable systems, into a Stokes-based PS-OCT system with inter-A-line polarization modulation. Together with the spectral binning technique to mitigate system-induced chromatic polarization effects, we show that computational refocusing improves image quality in tissue polarimetry of swine eye anterior segment ex vivo with PS-OCT. The benefits, drawbacks, and potential applications of computational refocusing in anterior segment imaging are discussed.
ISSN:0146-9592
1539-4794
1539-4794
DOI:10.1364/OL.499051