Biomechanical Properties of the Cornea and Related Diseases

Displaying 1 - 16 of 16CSV
Rodriguez, J., Hamm, A., Bensinger, E., Kerti, S., Gomes, P., Ousler III, G., Gupta, P., De Moraes, C., & Abelson, M. (2025). Statistical Evaluation of Smartphone-Based Automated Grading System for Ocular Redness Associated with Dry Eye Disease and Implications for Clinical Trials. Clinical Ophthalmology, Volume 19, 907–914. https://doi.org/10.2147/opth.s506519
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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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Gordon, M. O., Heuer, D. K., Higginbotham, E. J., Parrish, R. K., Liu, L., Brandt, J. D., Huecker, J. B., Miller, J. P., Perera, C., Xie, C., Keltner, J. L., Johnson, C. A., Gardiner, S. K., Liebmann, J. M., & Kass, M. A. (2024). Visual Field Progression in the Ocular Hypertension Treatment Study. American Journal of Ophthalmology. https://doi.org/10.1016/j.ajo.2024.11.017
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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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Meng, Z., Chen, S., Zhe, N., Cao, T., Li, Z., Zhang, Y., & Wei, R. (2023). Short-term Changes in Epithelial and Optical Redistribution Induced by Different Orthokeratology Designs. Eye & Contact Lens: Science & Clinical Practice, 49(12), 528–534. https://doi.org/10.1097/icl.0000000000001045
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Columbia Affiliation
Moster, M. R., Shalaby, W. S., Myers, J. S., Razeghinejad, R., Ramesh, S., Katz, L. J., Kolomeyer, N. N., Lee, D., & Shukla, A. G. (2023). Evaluation of the Hypertensive Phase after Ahmed Glaucoma Valve Implantation in Neovascular Glaucoma. Journal of Current Glaucoma Practice, 17(2), 91–97. https://doi.org/10.5005/jp-journals-10078-1406
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Ambrósio, R., Machado, A. P., Leão, E., Lyra, J. M. G., Salomão, M. Q., Esporcatte, L. G. P., da Fonseca Filho, J. B. R., Ferreira-Meneses, E., Sena, N. B., Haddad, J. S., Costa Neto, A., de Almeida, G. C., Roberts, C. J., Elsheikh, A., Vinciguerra, R., Vinciguerra, P., Bühren, J., Kohnen, T., Kezirian, G. M., … Lopes, B. T. (2023). Optimized Artificial Intelligence for Enhanced Ectasia Detection Using Scheimpflug-Based Corneal Tomography and Biomechanical Data. American Journal of Ophthalmology, 251, 126–142. https://doi.org/10.1016/j.ajo.2022.12.016
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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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Tsamis, E., La Bruna, S., Rai, A., Leshno, A., Grossman, J., Cioffi, G., Liebmann, J. M., De Moraes, C. G., & Hood, D. C. (2023). Progression of Early Glaucomatous Damage: Performance of Summary Statistics From Optical Coherence Tomography and Perimetry. Translational Vision Science & Technology, 12(3), 19. https://doi.org/10.1167/tvst.12.3.19
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Hood, D. C., La Bruna, S., Tsamis, E., Leshno, A., Melchior, B., Grossman, J., Liebmann, J. M., & De Moraes, C. G. (2022). The 24-2 Visual Field Guided Progression Analysis Can Miss the Progression of Glaucomatous Damage of the Macula Seen Using OCT. Ophthalmology Glaucoma, 5(6), 614–627. https://doi.org/10.1016/j.ogla.2022.03.007
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Kim, J., Men, C. J., Ratanawongphaibul, K., Papadogeorgou, G., Tsikata, E., Ben-David, G. S., Antar, H., Poon, L. Y.-C., Freeman, M., Park, E. A., Guzman Aparicio, M. A., de Boer, J. F., & Chen, T. C. (2022). Reproducibility of Neuroretinal Rim Measurements Obtained from High-Density Spectral Domain Optical Coherence Tomography Volume Scans. Clinical Ophthalmology, Volume 16, 2595–2608. https://doi.org/10.2147/opth.s369807
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Nishida, T., Moghimi, S., Mohammadzadeh, V., Wu, J.-H., Yamane, M. L. M., Kamalipour, A., Mahmoudinezhad, G., Micheletti, E., Liebmann, J. M., Fazio, M. A., Girkin, C. A., Zangwill, L. M., & Weinreb, R. N. (2022). Association Between Ganglion Cell Complex Thinning and Vision-Related Quality of Life in Glaucoma. JAMA Ophthalmology. https://doi.org/10.1001/jamaophthalmol.2022.2140
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Zemborain, Z. Z., Tsamis, E., La Bruna, S., Leshno, A., De Moraes, C. G., & Hood, D. C. (2022). Test of a Retinal Nerve Fiber Bundle Trajectory Model Using Eyes With Glaucomatous Optic Neuropathy. Translational Vision Science & Technology, 11(7), 7. https://doi.org/10.1167/tvst.11.7.7
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