Related Experiment Video
Updated: Sep 26, 2026

Full-Field Optical Coherence Microscopy for Histology-Like Analysis of Stromal Features in Corneal Grafts
Published on: October 21, 2022
From Morphology to Biomarkers: Optical Coherence Tomography in Corneal Disease
Lanxing Fu1, Yvonne H-L Luo1, Nick Kopsachilis1
1Department of Ophthalmology, East Kent Hospitals University NHS Foundation Trust, Kent CT1 3NG, UK.
Background:
Optical coherence tomography (OCT) has been recognised as a non-invasive imaging modality capable of offering high-resolution visualisation of the corneal tissue.
Objective:
This review evaluates the role of OCT in chronic corneal disease, focusing on how descriptive imaging has progressed to quantitative imaging biomarkers with translational potential.
Methods:
A comprehensive review of the published literature on OCT imaging in corneal disease was conducted, emphasising structural features, quantitative parameters, and biomarkers.
Results:
OCT facilitates detailed visualisation of corneal microstructure, including variations in epithelial thickness, stromal reflectivity patterns, corneal thickness distribution, and interface abnormalities. These morphological observations are converted into quantitative measures that function as imaging biomarkers for disease severity, progression, and therapeutic effectiveness. In conditions such as keratoconus, chronic infectious keratitis, and corneal dystrophies, OCT-derived parameters offer valuable information for phenotyping and longitudinal monitoring. Additionally, advances in automated image analysis and artificial intelligence further increase the potential of OCT for biomarker discovery and evidence-based clinical decision-making.
Conclusions:
The development and validation of robust OCT-based biomarkers have the potential to enable earlier diagnosis, improved disease monitoring, and personalised treatment strategies. Future research that integrates quantitative imaging, computational analysis, and longitudinal clinical data will be essential to fully realise the translational potential of OCT in corneal disease management.

