Author:
Hosseinaee Zohreh,Nima Abbasi ,Pellegrino Nicholas,Khalili Layla,Mukhangaliyeva Lyazzat,Haji Reza Parsin
Abstract
AbstractEarly diagnosis of ocular diseases improves the understanding of pathophysiology and aids in accurate monitoring and effective treatment. Advanced, multimodal ocular imaging platforms play a crucial role in visualization of ocular components and provide clinicians with a valuable tool for evaluating various eye diseases. Here, for the first time we present a non-contact, multiwavelength photoacoustic remote sensing (PARS) microscopy and swept-source optical coherence tomography (SS-OCT) for in-vivo functional and structural imaging of the eye. The system provides complementary imaging contrasts of optical absorption and optical scattering, and is used for simultaneous, non-contact, in-vivo imaging of murine eye. Results of vasculature and structural imaging as well as melanin content in the retinal pigment epithelium layer are presented. Multiwavelength PARS microscopy using Stimulated Raman scattering is applied to enable in-vivo, non-contact oxygen saturation estimation in the ocular tissue. The reported work may be a major step towards clinical translation of ophthalmic technologies and has the potential to advance the diagnosis and treatment of ocular diseases.
Funder
New Frontiers in Research Fund – Exploration
Natural Sciences and Engineering Research Council of Canada
Canada Foundation for Innovation
Mitacs
illumiSonics
University of Waterloo
Centre for Bioengineering and Biotechnology
Publisher
Springer Science and Business Media LLC
Cited by
31 articles.
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