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Bioptigen Inc
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Optovue
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Optovue
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Thorlabs
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Photonics Inc
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Kaggle Inc
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optical coherence tomography oct imaging datasets - by Bioz Stars,
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Radboud University
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Optovue
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Tomey Corporation
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Journal: Bioactive Materials
Article Title: Bacterial synthesis of personalized biomimetic biological cornea
doi: 10.1016/j.bioactmat.2025.12.047
Figure Lengend Snippet: Evaluation of personalized biomimetic bio-cornea for short-term epithelial repair in large corneal defects in vivo . A) Representative corneal images before treatment, immediately after operation, and at 3, 7, 14, and 28 days post-OP (bright-field and fluorescein staining). B) Time-course of epithelialization percentage for each group (n = 5). C) Representative AS-OCT images and measurements of corneal and epithelial thickness immediately post-OP and 28 days post-OP. The white arrow shows transplanted bio-corneas. The red line shows the boundary. The red arrow shows the scar formed at 28 days post-OP. D) Statistical analysis of corneal thickness at 28 days post-OP (n = 5). E) Statistical analysis of epithelial thickness at 28 days post-OP (n = 5). Data in B), D) and E) are presented as mean ± SD. ns, no significant difference, # p < 0.05, ## p < 0.01 compared to the DBC group; ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001 compared to the injury group. ST, immediately after operation; OP, operation.
Article Snippet: The examinations at each time point included slit-lamp biomicroscopy (S360, MediWork, CHN) to observe and perform anterior segment photography,
Techniques: In Vivo, Staining
Journal: Bioactive Materials
Article Title: Bacterial synthesis of personalized biomimetic biological cornea
doi: 10.1016/j.bioactmat.2025.12.047
Figure Lengend Snippet: Long-term in vivo evaluation of personalized biomimetic bio-cornea in scar-free repair of large cornea l defects. A) Representative corneal images at 3 months post-OP (bright-field and fluorescein staining). B) Representative AS-OCT images of cornea and corneal thickness, epithelial thickness measurements at 3 months post-OP. The red arrow shows the scar formed at 3 months post-OP. C) Corneal topography images at 3 months post-OP. D) Statistical analysis of corneal thickness from AS-OCT at 3 months post-OP (n = 4). E) Statistical analysis of corneal epithelial thickness from AS-OCT at 3 months post-OP (n = 4). F) Statistical analysis of corneal curvature from corneal topography at 3 months post-OP (n = 4). G) Representative corneal H&E and Masson staining images at 3 months post-OP. H) Immunofluorescence images of FN and COL1A1 in cornea at 3 months post-OP. Data in D)-F) are presented as mean ± SD. ns, no statistical difference; ∗ p < 0.05; ∗∗ p < 0.01.
Article Snippet: The examinations at each time point included slit-lamp biomicroscopy (S360, MediWork, CHN) to observe and perform anterior segment photography,
Techniques: In Vivo, Staining, Immunofluorescence
Journal: Frontiers in Ophthalmology
Article Title: Refractive outcomes after cataract surgery in eyes with pterygium: validation of a regression-based keratometric prediction model
doi: 10.3389/fopht.2026.1759853
Figure Lengend Snippet: Measurement of horizontal pterygium size (HPS) using CASIA2. A horizontal corneal cross-section obtained with the CASIA2 anterior segment OCT system is shown. The pterygium distance (A) was defined as the perpendicular distance from the nasal angle recess to a vertical line (B) drawn from the apex of the pterygium. HPS was calculated by dividing this distance by the horizontal angle-to-angle distance (C) .
Article Snippet: Mean K and anterior chamber depth (ACD) were measured using the
Techniques: