Single-Shot Ultra-Widefield Polarization-Diversity Optical Coherence Tomography for Assessing Retinal and Choroidal Pathologies

Author:

Tse Tiffany1ORCID,Jung Hoyoung2,Shahidul Islam Mohammad1,Song Jun1,Soo Grace1ORCID,Abbas Khaldon2,Ni Shuibin3ORCID,Sumita Fernando4ORCID,Paton Katherine4,Miao Yusi4,Jian Yifan3ORCID,Mammo Zaid4,Navajas Eduardo V.4,Ju Myeong Jin14ORCID

Affiliation:

1. School of Biomedical Engineering, Faculty of Medicine and Applied Science, University of British Columbia, Vancouver, BC V6T 1Z3, Canada

2. Faculty of Medicine, University of British Columbia, Vancouver, BC V6T 1Z3, Canada

3. Casey Eye Institute, Oregon Health & Science University, Portland, OR 97239, USA

4. Department of Ophthalmology and Visual Sciences, University of British Columbia, Vancouver, BC V6T 1Z3, Canada

Abstract

Background: Optical coherence tomography (OCT) is a leading ocular imaging modality, known for delivering high-resolution volumetric morphological images. However, conventional OCT systems are limited by their narrow field-of-view (FOV) and their reliance on scattering contrast, lacking molecular specificity. Methods: To address these limitations, we developed a custom-built 105∘ ultra-widefield polarization-diversity OCT (UWF PD-OCT) system for assessing various retinal and choroidal conditions, which is particularly advantageous for visualizing peripheral retinal abnormalities. Patients with peripheral lesions or pigmentary changes were imaged using the UWF PD-OCT to evaluate the system’s diagnostic capabilities. Comparisons were made with conventional swept-source OCT and other standard clinical imaging modalities to highlight the benefits of depolarization contrast for identifying pathological changes. Results: The molecular-specific contrast offered by UWF PD-OCT enhanced the detection of disease-specific features, particularly in the peripheral retina, by capturing melanin distribution and pigmentary changes in a single shot. This detailed visualization allows clinicians to monitor disease progression with greater precision, offering more accurate insights into retinal and choroidal pathologies. Conclusions: Integrating UWF PD-OCT into clinical practice represents a major advancement in ocular imaging, enabling comprehensive views of retinal pathologies that are difficult to capture with current modalities. This technology holds great potential to transform the diagnosis and management of retinal and choroidal diseases by providing unique insights into peripheral retinal abnormalities and melanin-specific changes, critical for early detection and timely intervention.

Funder

Canadian Cancer Society

Natural Sciences and Engineering Research Council

Canadian Institutes of Health Research

Alzheimer Society Research Program

Canada Foundation for Innovation

ational Institutes of Health

Mohammad H. Mohseni Charitable Foundation

Publisher

MDPI AG

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