Pseudoexfoliation Syndrome
23
2
3
12
Key Insights
Highlights
Success Rate
86% trial completion
Clinical Risk Assessment
Based on trial outcomes
High Risk
Score: 62/100
8.7%
2 terminated out of 23 trials
85.7%
-0.8% vs benchmark
9%
2 trials in Phase 3/4
0%
0 of 12 completed with results
Key Signals
Data Visualizations
Phase Distribution
Trial Status
Trial Success Rate
Benchmark: 86.5%
Based on 12 completed trials
Clinical Trials (23)
Pseudoexfoliation and Carpal Tunnel Study
Vitreous Proteomics of Patients Suffering From Pseudoexfoliation Syndrome
Bromfenac to Reduce Inflammation in Patients With Pseudoexfoliation Syndrome After Cataract Surgery
Real World Evidence of Xen45 Gel Implant in Pseudoexfoliation Glaucoma
Corneal Biomechanics, Optical Properties and Anterior Segment Structural Features in Patients With Pseudoexfoliation
The Correlation Between Pupil Size and Retinal Nerve Fibers Changes in Pseudoexfoliation Syndrome.
Scleral Fixation for Intraocular Lens-Bag Dislocation
Pseudoexfoliation Syndrome, Sarcopenia and Chronic Pain
Outcome of Two Surgical Methods for IOLImplantation in Eyes With Pseudoexfoliation Syndrome
Corneal Endothelium After Phacoemulsification in Pseudo Exfoliation Syndrome
Correlation Between Pupil Size and Ocular Signs of Pseudoexfoliation Syndrome
Cataract Surgery in Patients With Pseudoexfoliation and Pseudoexfoliation Glaucoma
The Possible Association Between Pseudoexfoliation Syndrome And Corneal Endothelial Cell Changes
The Oscillation of Crystalline and Intraocular Lenses
The Endothelial Count in Pxf
Long-term Intraocular Lens (IOL) Decentration and Tilt in Eyes With Pseudoexfoliation Syndrome (PES) Following Cataract Surgery
Intracameral Mydriasis Versus Topical Mydriasis in Cataract Surgery
Aqueous Flare of a Hydrophobic Acrylic Single-piece Open-loop IOL With Modified Material Surface Properties
LOXL1 Polymorphism in Pseudoexfoliation Syndrome
Optical Low Coherence Reflectometry Enables Preoperative Detection of Zonular Weakness in Pseudoexfoliation Syndrome