Describing the Structural Phenotype of the Glaucomatous Optic Nerve Head Using Artificial Intelligence

12/17/2020
by   Satish K. Panda, et al.
0

The optic nerve head (ONH) typically experiences complex neural- and connective-tissue structural changes with the development and progression of glaucoma, and monitoring these changes could be critical for improved diagnosis and prognosis in the glaucoma clinic. The gold-standard technique to assess structural changes of the ONH clinically is optical coherence tomography (OCT). However, OCT is limited to the measurement of a few hand-engineered parameters, such as the thickness of the retinal nerve fiber layer (RNFL), and has not yet been qualified as a stand-alone device for glaucoma diagnosis and prognosis applications. We argue this is because the vast amount of information available in a 3D OCT scan of the ONH has not been fully exploited. In this study we propose a deep learning approach that can: (1) fully exploit information from an OCT scan of the ONH; (2) describe the structural phenotype of the glaucomatous ONH; and that can (3) be used as a robust glaucoma diagnosis tool. Specifically, the structural features identified by our algorithm were found to be related to clinical observations of glaucoma. The diagnostic accuracy from these structural features was 92.0 ± 2.3 % with a sensitivity of 90.0 ± 2.4 % (at 95 % specificity). By changing their magnitudes in steps, we were able to reveal how the morphology of the ONH changes as one transitions from a `non-glaucoma' to a `glaucoma' condition. We believe our work may have strong clinical implication for our understanding of glaucoma pathogenesis, and could be improved in the future to also predict future loss of vision.

READ FULL TEXT

page 4

page 7

page 8

page 11

page 12

page 24

page 25

page 26

research
04/14/2022

Geometric Deep Learning to Identify the Critical 3D Structural Features of the Optic Nerve Head for Glaucoma Diagnosis

Purpose: The optic nerve head (ONH) undergoes complex and deep 3D morpho...
research
01/07/2023

The 3D Structural Phenotype of the Glaucomatous Optic Nerve Head and its Relationship with The Severity of Visual Field Damage

Purpose: To describe the 3D structural changes in both connective and ne...
research
06/09/2022

AI-based Clinical Assessment of Optic Nerve Head Robustness Superseding Biomechanical Testing

𝐏𝐮𝐫𝐩𝐨𝐬𝐞: To use artificial intelligence (AI) to: (1) exploit biomechanic...
research
11/07/2021

The Three-Dimensional Structural Configuration of the Central Retinal Vessel Trunk and Branches as a Glaucoma Biomarker

Purpose: To assess whether the three-dimensional (3D) structural configu...
research
02/24/2018

Generating retinal flow maps from structural optical coherence tomography with artificial intelligence

Despite significant advances in artificial intelligence (AI) for compute...
research
01/26/2017

Structural Connectome Validation Using Pairwise Classification

In this work, we study the extent to which structural connectomes and to...

Please sign up or login with your details

Forgot password? Click here to reset