Identifying factors associated with fast visual field progression in patients with ocular hypertension based on unsupervised machine learning
Xiaoqin Huang, Asma Poursoroush, Jian Sun, Michael V. Boland, Chris, Johnson, and Siamak Yousefi

TL;DR
This study used unsupervised machine learning to classify ocular hypertension patients into subtypes based on visual field progression and identified clinical factors associated with rapid deterioration.
Contribution
It applied a latent class mixed model to identify distinct progression subtypes and uncovered factors linked to fast visual field decline in ocular hypertension.
Findings
Four progression subtypes identified with different MD decline rates
Fast progressors had higher baseline IOP, age, PSD, RE, and lower CCT
Factors like calcium channel blockers, male gender, and certain health histories are associated with rapid progression
Abstract
Purpose: To identify ocular hypertension (OHT) subtypes with different trends of visual field (VF) progression based on unsupervised machine learning and to discover factors associated with fast VF progression. Participants: A total of 3133 eyes of 1568 ocular hypertension treatment study (OHTS) participants with at least five follow-up VF tests were included in the study. Methods: We used a latent class mixed model (LCMM) to identify OHT subtypes using standard automated perimetry (SAP) mean deviation (MD) trajectories. We characterized the subtypes based on demographic, clinical, ocular, and VF factors at the baseline. We then identified factors driving fast VF progression using generalized estimating equation (GEE) and justified findings qualitatively and quantitatively. Results: The LCMM model discovered four clusters (subtypes) of eyes with different trajectories of MD worsening.…
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Taxonomy
TopicsGlaucoma and retinal disorders · Corneal surgery and disorders · Ocular Surface and Contact Lens
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