Orbital Fractures
18
1
2
9
Key Insights
Highlights
Success Rate
90% trial completion (above average)
Clinical Risk Assessment
Based on trial outcomes
Moderate Risk
Score: 50/100
5.6%
1 terminated out of 18 trials
90.0%
+3.5% vs benchmark
0%
0 trials in Phase 3/4
11%
1 of 9 completed with results
Key Signals
Data Visualizations
Phase Distribution
Trial Status
Trial Success Rate
Benchmark: 86.5%
Based on 9 completed trials
Clinical Trials (18)
Stryker Universal Midface and Upper-Face Fixation System: A Retrospective Post Market Follow Up
Modified Anatomical Mesh In The Management Of Orbito-Zygomatico-Maxillary Complex Fractures
Orbital Fractures Registry
Multi-Institutional IMPACT Validation
The Accuracy of Reconstruction of Orbital Walls Fracture Using Prebent Mesh Versus Patient Specific Implant
Accuracy& Orbital Volume Using Patient Specific Titanium Implant Vs Zirconia for Orbital Floor Reconstruction
Orbital Floor Fracture Repair by Titanium Mesh Via Transantral Approach.
The Use of 3D Printing in Orbital Fractures
Exophthalmometry With 3D Face Scanners
Correction of Enophthalmos and Orbital Volume Using Pre-bent Mesh Versus 3d Printed Onlay in Orbital Fracture Cases
Intra-operative (IO) Navigation and IO-CBCT for 3D Orbital Reconstruction
Using the Transconjuctival Approach Alone Versus Using it Together With Lateral Canthotomy in Orbital Fractures
Factors Associated With Postoperative Strabismus After Floor Fracture Repair
Orbital Fractures Measurement: Intraoperative Versus Computed Tomography (CT) Scan
The Use of Prophylactic Antibiotics in Isolated Blowout Fractures
Use of a Low Profile Titanium Mesh in Orbital Reconstruction
Computer Aided Evaluation of Orbital Volume
Reconstruction of the Orbit With a Bioresorbable Polycaprolactone Implant