A Study to Assess Brillouin Hydration Mapping for the Evaluation of Ocular Tissues and Diseases
A Study to Assess Brillouin Hydration Mapping for the Evaluation of Ocular Tissues and Diseases
The overall goal of this study is to develop Brillouin microscope as a novel tool for measuring biomechanical and hydration properties of human tissues in vivo.
Our long-term goal is to establish a direct, accurate, and clinically viable method for measuring corneal hydration, enabling earlier detection, more precise diagnosis, and improved management of corneal diseases and postoperative complications. The objective of this study is to develop and validate Brillouin based hydration mapping as a diagnostic tool to quantify water content in the cornea across healthy individuals and patients with diverse ocular conditions. Our central hypothesis is that spatially resolved Brillouin frequency shifts can reveal disease-specific hydration profiles that are not detectable through conventional thickness-based methods. This hypothesis is based on recent evidence from our group demonstrating that Brillouin microscopy is sensitive to hydration. The rationale for this research is that Brillouin-based hydration maps will offer an unprecedented, morphology-independent metric of corneal fluid balance, which could improve clinical decision-making in a range of pathologies.
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Exclusion Criteria:
sahn14@mgh.harvard.edu3396009736
syun@mgh.harvard.edu6177688704
sahn14@mgh.harvard.edu3396009736
syun@mgh.harvard.edu6177688704