Wayne Knox, PhD

Affiliations: 
Institute of Optics University of Rochester, Rochester, NY 
Area:
Chemical Engineering, Alternative Energy, Energy
Website:
https://www.hajim.rochester.edu/optics/people/faculty/knox_wayne/index.html
Google:
"Wayne Knox"
Cross-listing: Physics Tree

Parents

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Gérard A. Mourou grad student (Physics Tree)

Children

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Yujun Deng grad student 2006 Rochester
Parama Pal grad student 2009 Rochester
Liping Cui grad student 2011 Rochester
Lisen Xu grad student 2013 Rochester
Gustavo A. Gandara-Montano grad student 2019 Rochester
Dan Yu grad student 2021 Rochester
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Publications

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Wozniak KT, Manning ZA, Huang R, et al. (2024) Multiphoton scaling of femtosecond laser-induced refractive index change (LIRIC) in hydrogels and rabbit cornea. Biomedical Optics Express. 15: 6242-6258
Huang R, Yu D, Savage D, et al. (2022) Blue-LIRIC in the rabbit cornea: efficacy, tissue effects, and repetition rate scaling. Biomedical Optics Express. 13: 2346-2363
Wozniak KT, Butler SC, He X, et al. (2021) Temporal evolution of the biological response to laser-induced refractive index change (LIRIC) in rabbit corneas. Experimental Eye Research. 207: 108579
Yu D, Brown EB, Huxlin KR, et al. (2019) Tissue effects of intra-tissue refractive index shaping (IRIS): insights from two-photon autofluorescence and second harmonic generation microscopy. Biomedical Optics Express. 10: 855-867
knox WH. (2019) Inventing a New Way to See Clearly: Non-invasive Vision Correction with Femtosecond Lasers Technology & Innovation. 20: 385-398
Yu D, Huang R, Knox WH. (2019) Femtosecond laser micromachining in ophthalmic hydrogels: spectroscopic study of materials effects Optical Materials Express. 9: 3292
Huang R, Knox WH. (2019) Quantitative photochemical scaling model for femtosecond laser micromachining of ophthalmic hydrogel polymers: effect of repetition rate and laser power in the four photon absorption limit Optical Materials Express. 9: 1049
Gandara-Montano GA, Zheleznyak L, Knox WH. (2018) Optical quality of hydrogel ophthalmic devices created with femtosecond laser induced refractive index modification Optical Materials Express. 8: 295
Wozniak KT, Elkins N, Brooks DR, et al. (2017) Contrasting cellular damage after Blue-IRIS and Femto-LASIK in cat cornea. Experimental Eye Research
Wozniak KT, Gearhart SM, Savage DE, et al. (2017) Comparable change in stromal refractive index of cat and human corneas following blue-IRIS. Journal of Biomedical Optics. 22: 55007
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