The 3D Structural Phenotype of the Glaucomatous Optic Nerve Head and its Relationship with The Severity of Visual Field Damage
Fabian A. Braeu, Thanadet Chuangsuwanich, Tin A. Tun, Shamira A., Perera, Rahat Husain, Aiste Kadziauskiene, Leopold Schmetterer, Alexandre H., Thi\'ery, George Barbastathis, Tin Aung, and Micha\"el J.A. Girard

TL;DR
This study uses 3D imaging and AI to analyze structural changes in the optic nerve head across glaucoma stages, revealing early localized changes and widespread damage in advanced disease.
Contribution
It introduces a combined approach of human-defined parameters and deep learning to characterize 3D ONH changes with glaucoma severity, providing new insights into disease progression.
Findings
Most ONH changes occur early in glaucoma.
Structural changes are prominent in superior and inferior quadrants.
Widespread damage occurs in advanced glaucoma.
Abstract
: To describe the 3D structural changes in both connective and neural tissues of the optic nerve head (ONH) that occur concurrently at different stages of glaucoma using traditional and AI-driven approaches. : We included 213 normal, 204 mild glaucoma (mean deviation [MD] -6.00 dB), 118 moderate glaucoma (MD of -6.01 to -12.00 dB), and 118 advanced glaucoma patients (MD < -12.00 dB). All subjects had their ONHs imaged in 3D with Spectralis optical coherence tomography. To describe the 3D structural phenotype of glaucoma as a function of severity, we used two different approaches: (1) We extracted human-defined 3D structural parameters of the ONH including retinal nerve fiber layer (RNFL) thickness, lamina cribrosa (LC) shape and depth at different stages of glaucoma; (2) we also employed a geometric deep learning method (i.e. PointNet) to identify the…
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Taxonomy
TopicsGlaucoma and retinal disorders · Corneal surgery and disorders · Retinal Imaging and Analysis
