Study of Corneal Biomechanics in Glaucoma Patients Using Brillouin Microscopy
Start Date
9/1/2025
Completion Date
6/1/2026
Summary
This pilot study evaluates the biomechanical properties of the cornea in glaucoma patients using Brillouin microscopy, a non-contact imaging technique. The study aims to compare corneal stiffness between patients with normal-tension glaucoma, high-tension glaucoma, and healthy controls, and to assess changes in corneal biomechanics following intraocular pressure (IOP)-lowering treatment. The goal is to determine whether Brillouin-derived biomechanical measurements can serve as biomarkers for glaucoma risk and progression.
Detailed Description
This study explores the biomechanical properties of the cornea in patients with glaucoma using a novel, non-contact imaging technique called Brillouin microscopy. The technology allows in vivo assessment of tissue stiffness without physical perturbation, potentially offering new insights into glaucoma risk and response to therapy. The study includes two parts: a cross-sectional comparison between patients with normal- and high-tension glaucoma and healthy controls, and a longitudinal analysis of biomechanical changes following IOP-lowering treatment with either prostaglandin analogs or beta blockers. The goal is to determine whether corneal biomechanics can serve as a biomarker for glaucoma susceptibility and progression, and to evaluate the feasibility of integrating Brillouin imaging into clinical glaucoma care.
Eligibility Criteria
Age Range: 18 years to No maximum
Interventions
Prostaglandin Analogue -Containing IOP-Lowering Therapy
Beta Blocker
Brillouin Microscopy
Conditions
Locations
University of Maryland School of Medicine
Baltimore, Maryland 21201-1757
United States