Corneal Tissue Engineering and Regeneration

Displaying 1 - 6 of 6CSV
Buonanno, M., Hashmi, R., Petersen, C. E., Tang, Z., Welch, D., Shuryak, I., & Brenner, D. J. (2025). Wavelength-dependent DNA damage induced by single wavelengths of UV-C radiation (215 to 255 nm) in a human cornea model. Scientific Reports, 15(1). https://doi.org/10.1038/s41598-024-84196-4
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Przybek-Skrzypecka, J., Ryk-Adamska, M., Szewczuk, A., Skrzypecki, J., Izdebska, J., Udziela, M., Rypniewska, A., Suh, L. H., & Szaflik, J. P. (2024). Severe Microbial Keratitis in Virgin and Transplanted Cornea—Probability of Visual Acuity Improvement. Journal of Clinical Medicine, 14(1), 124. https://doi.org/10.3390/jcm14010124
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Yun, J. K., Ryu, Y. J., & Lee, Y. (2024). Case report: Squamous cell carcinoma in situ of the cornea without involvement of the limbus and conjunctiva. Frontiers in Medicine, 11. https://doi.org/10.3389/fmed.2024.1418228
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Gad, R. E., Kahn, J., & Trief, D. (2024). Spontaneous Reattachment of a Detached Sutured Descemet-Stripping Automated Endothelial Keratoplasty Graft. Case Reports in Ophthalmology, 15(1), 41–46. Portico. https://doi.org/10.1159/000535402
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Shukla, A. G., Milman, T., Fertala, J., Steplewski, A., & Fertala, A. (2023). Scar formation in the presence of mitomycin C and the anti-fibrotic antibody in a rabbit model of glaucoma microsurgery: A pilot study. Heliyon, 9(4), e15368. https://doi.org/10.1016/j.heliyon.2023.e15368
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