Presentation + Paper
12 March 2024 Polarization-sensitive Brillouin microscopy for corneal imaging
Hongyuan Zhang, Giuliano Scarcelli, James Bradley Randleman
Author Affiliations +
Abstract
Due to anisotropic fibril orientations across the cornea, different phase retardation is superimposed on the reflection, depending on the imaging area. As polarized light is commonly used in Brillouin microscopy to maximize the collection of the scattered light, polarization mismatch can strongly reduce the intensity of Brillouin signal, making the deep stroma undetectable. Therefore, a quarter wave plate was added to compensate corneal phase retardation according to the intensity of Brillouin scattering, aiming at getting a clear depth-dependent profile of Brillouin shifts. The compensated Brillouin profile showed similarity with profiles measured at points with limited phase retardation impact, 60 MHz smaller than the profile without compensation.
Conference Presentation
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Hongyuan Zhang, Giuliano Scarcelli, and James Bradley Randleman "Polarization-sensitive Brillouin microscopy for corneal imaging", Proc. SPIE 12844, Optical Elastography and Tissue Biomechanics XI, 1284404 (12 March 2024); https://doi.org/10.1117/12.3003378
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KEYWORDS
Polarization

Microscopy

Cornea

Corneal imaging

Beam splitters

Spectroscopy

Wave plates

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