Neurovascular segregation of the retinal nerve fiber layer in glaucoma

Author:

Yow Ai Ping12ORCID,Chua Jacqueline34,Tan Bingyao135,Chong Rachel34,Nongpiur Monisha E.34,Gupta Preeti34,Lamoureux Ecosse36,Husain Rahat34,Schmetterer Leopold13457,Wong Damon1348ORCID

Affiliation:

1. SERI‐NTU Advanced Ocular Engineering (STANCE) Singapore

2. Institute for Digital Molecular Analytics and Science (IDMxS) Singapore

3. Singapore Eye Research Institute Singapore National Eye Centre Singapore

4. Academic Clinical Program Duke‐NUS Medical School Singapore

5. School of Chemistry, Chemical Engineering and Biotechnology Nanyang Technological University Singapore

6. Duke‐NUS Medical School Singapore

7. Department of Clinical Pharmacology Medical University of Vienna Vienna Austria

8. Institute of Molecular and Clinical Ophthalmology Basel Switzerland

Abstract

AbstractThe imaging data of one eye from 154 healthy and 143 glaucoma participants were acquired to evaluate the contributions of the neuronal and vascular components within the retinal nerve fiber layer (RNFL) for detecting glaucoma and modeling visual field loss through the use of optical coherence tomography (OCT) and OCT angiography. The neuronal and vascular components within the circumpapillary RNFL were independently evaluated. In healthy eyes, the neuronal component showed a stronger association with age (r = −0.52, p < 0.001) compared to measured RNFL thickness (r = −0.46, p < 0.001). Using the neuronal component alone improved detection of glaucoma (AUC: 0.890 ± 0.020) compared to measured RNFL thickness (AUC: 0.877 ± 0.021; χ2 = 5.54, p = 0.019). Inclusion of the capillary components with the sectoral neuronal component resulted in a significant improvement in glaucoma detection (AUC: 0.927 ± 0.015; χ2 = 15.34, p < 0.001). After adjusting for potential confounders, AUC increased to 0.952 ± 0.011. Results from modeling visual field loss in glaucoma eyes suggest that visual field losses associated with neuronal thinning were moderated in eyes with a larger capillary component. These findings suggest that segregation of the neurovascular components could help improve understanding of disease pathophysiology and affect disease management in glaucoma.

Funder

National Research Foundation Singapore

Agency for Science, Technology and Research

National Medical Research Council

Publisher

Wiley

Subject

History and Philosophy of Science,General Biochemistry, Genetics and Molecular Biology,General Neuroscience

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