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AI-GUIDED ENDPOINT SELECTION FOR NEUROPROTECTION TRIALS IN GLAUCOMA
Medrxiv : the Preprint Server for Health Sciences
|September 5, 2025
Summary
A new AI model identifies high-risk visual field locations for glaucoma progression. This approach significantly improves trial efficiency and sensitivity for detecting meaningful visual field changes.
Area of Science:
- Ophthalmology
- Artificial Intelligence
- Medical Imaging
Background:
- Standard Automated Perimetry (SAP) is crucial for monitoring glaucoma progression.
- FDA acceptance of SAP as a trial endpoint requires stringent criteria for progression.
- Identifying high-risk visual field locations for clinical trials remains a challenge.
Purpose of the Study:
- To develop an attention-based graph neural network (GNN) to predict visual field points most likely to deteriorate (High-5).
- To validate the GNN model's ability to identify progression and improve clinical trial efficiency.
Main Methods:
- Developed an attention-based GNN model using baseline SAP data.
- Trained and validated the model across three large datasets: BPOR, DGR, and UWHVF.
- Compared the predictive performance of High-5 locations against Mean Deviation (MD) and Low-5 points.
Main Results:
- High-5 points showed significantly faster deterioration rates in progressors compared to Low-5 and MD across all cohorts.
- The GNN model demonstrated superior discrimination of progressors from non-progressors (AUC 0.883-0.937).
- High-5 identified progression in nearly all cases, leading to an estimated 42% reduction in required trial size.
Conclusions:
- The GNN-based framework enables data-driven identification of high-risk SAP locations.
- This approach aligns with regulatory definitions of progression and enhances trial sensitivity.
- The High-5 method substantially improves the efficiency and power of glaucoma clinical trials.
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