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Am J Ophthalmol ; 199: 177-183, 2019 03.
Article in English | MEDLINE | ID: mdl-30529566

ABSTRACT

PURPOSE: To evaluate the role of a novel automated detection software as compared to human operators in assessing the presence and depth of stromal demarcation line on optical coherence tomography (OCT) in keratoconus eyes post cross-linking. DESIGN: Reliability analysis study. METHODS: Two independent operators and an automated detection software examined corneal OCTs of 25 eyes of 25 patients post corneal cross-linking using the Dresden protocol, at 3 months postoperatively. Operators evaluated the presence of the demarcation line and measured its depth by looking at OCT images (128 cuts) on 2 separate occasions 1 week apart. The automated software examined all 128 cuts of each OCT measurement. RESULTS: The mean corneal demarcation line depth was 321.54 ± 47.71, 322.86 ± 45.77, and 309.21 ± 40.98 µm, as computed by the automated detection software and the human operators, respectively. The intraclass correlation coefficients (ICC) between the automated detection software and Observers #1 and #2 were 0.884 and 0.847, respectively (P < .001). The ICC for interoperator reproducibility was 0.890, and for intraoperator repeatability for Operator #1 and Observer #2 were 0.922 and 0.925, respectively. The ICC for intersoftware repeatability was 1. Bland-Altman plots showed a good agreement between both observers and the software, with adequate 95% limits of agreement. CONCLUSION: Detection of the demarcation line by human operators is repeatable and reproducible, but it can be further optimized and standardized by an ultrafast and accurate automated software detection tool, providing a reliable indicator for treatment success.


Subject(s)
Corneal Stroma/diagnostic imaging , Cross-Linking Reagents , Keratoconus/drug therapy , Photochemotherapy/methods , Photosensitizing Agents/therapeutic use , Tomography, Optical Coherence/methods , Adult , Collagen/metabolism , Corneal Stroma/metabolism , Corneal Topography , Female , Humans , Image Processing, Computer-Assisted/methods , Keratoconus/metabolism , Male , Prospective Studies , Reproducibility of Results , Riboflavin/therapeutic use , Ultraviolet Rays , Young Adult
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