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Evaluating the Effects of Riboflavin/UV-A and Rose-Bengal/Green Light Cross-Linking of the Rabbit Cornea by Noncontact Optical Coherence Elastography

PURPOSE: The purpose of this study was to use noncontact optical coherence elastography (OCE) to evaluate and compare changes in biomechanical properties that occurred in rabbit cornea in situ after corneal collagen cross-linking by either of two techniques: ultraviolet-A (UV-A)/riboflavin or rose-B...

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Autores principales: Singh, Manmohan, Li, Jiasong, Han, Zhaolong, Vantipalli, Srilatha, Liu, Chih-Hao, Wu, Chen, Raghunathan, Raksha, Aglyamov, Salavat R., Twa, Michael D., Larin, Kirill V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Association for Research in Vision and Ophthalmology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4968774/
https://www.ncbi.nlm.nih.gov/pubmed/27409461
http://dx.doi.org/10.1167/iovs.15-18888
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author Singh, Manmohan
Li, Jiasong
Han, Zhaolong
Vantipalli, Srilatha
Liu, Chih-Hao
Wu, Chen
Raghunathan, Raksha
Aglyamov, Salavat R.
Twa, Michael D.
Larin, Kirill V.
author_facet Singh, Manmohan
Li, Jiasong
Han, Zhaolong
Vantipalli, Srilatha
Liu, Chih-Hao
Wu, Chen
Raghunathan, Raksha
Aglyamov, Salavat R.
Twa, Michael D.
Larin, Kirill V.
author_sort Singh, Manmohan
collection PubMed
description PURPOSE: The purpose of this study was to use noncontact optical coherence elastography (OCE) to evaluate and compare changes in biomechanical properties that occurred in rabbit cornea in situ after corneal collagen cross-linking by either of two techniques: ultraviolet-A (UV-A)/riboflavin or rose-Bengal/green light. METHODS: Low-amplitude (≤10 μm) elastic waves were induced in mature rabbit corneas by a focused air pulse. Elastic wave propagation was imaged by a phase-stabilized swept source OCE (PhS-SSOCE) system. Corneas were then cross-linked by either of two methods: UV-A/riboflavin (UV-CXL) or rose-Bengal/green light (RGX). Phase velocities of the elastic waves were fitted to a previously developed modified Rayleigh-Lamb frequency equation to obtain the viscoelasticity of the corneas before and after the cross-linking treatments. Micro-scale depth-resolved phase velocity distribution revealed the depth-wise heterogeneity of both cross-linking techniques. RESULTS: Under standard treatment settings, UV-CXL significantly increased the stiffness of the corneas by ∼47% (P < 0.05), but RGX did not produce statistically significant increases. The shear viscosities were unaffected by either cross-linking technique. The depth-wise phase velocities showed that UV-CXL affected the anterior ∼34% of the corneas, whereas RGX affected only the anterior ∼16% of the corneas. CONCLUSIONS: UV-CXL significantly strengthens the cornea, whereas RGX does not, and the effects of cross-linking by UV-CXL reach deeper into the cornea than cross-linking effects of RGX under similar conditions.
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spelling pubmed-49687742017-01-01 Evaluating the Effects of Riboflavin/UV-A and Rose-Bengal/Green Light Cross-Linking of the Rabbit Cornea by Noncontact Optical Coherence Elastography Singh, Manmohan Li, Jiasong Han, Zhaolong Vantipalli, Srilatha Liu, Chih-Hao Wu, Chen Raghunathan, Raksha Aglyamov, Salavat R. Twa, Michael D. Larin, Kirill V. Invest Ophthalmol Vis Sci Articles PURPOSE: The purpose of this study was to use noncontact optical coherence elastography (OCE) to evaluate and compare changes in biomechanical properties that occurred in rabbit cornea in situ after corneal collagen cross-linking by either of two techniques: ultraviolet-A (UV-A)/riboflavin or rose-Bengal/green light. METHODS: Low-amplitude (≤10 μm) elastic waves were induced in mature rabbit corneas by a focused air pulse. Elastic wave propagation was imaged by a phase-stabilized swept source OCE (PhS-SSOCE) system. Corneas were then cross-linked by either of two methods: UV-A/riboflavin (UV-CXL) or rose-Bengal/green light (RGX). Phase velocities of the elastic waves were fitted to a previously developed modified Rayleigh-Lamb frequency equation to obtain the viscoelasticity of the corneas before and after the cross-linking treatments. Micro-scale depth-resolved phase velocity distribution revealed the depth-wise heterogeneity of both cross-linking techniques. RESULTS: Under standard treatment settings, UV-CXL significantly increased the stiffness of the corneas by ∼47% (P < 0.05), but RGX did not produce statistically significant increases. The shear viscosities were unaffected by either cross-linking technique. The depth-wise phase velocities showed that UV-CXL affected the anterior ∼34% of the corneas, whereas RGX affected only the anterior ∼16% of the corneas. CONCLUSIONS: UV-CXL significantly strengthens the cornea, whereas RGX does not, and the effects of cross-linking by UV-CXL reach deeper into the cornea than cross-linking effects of RGX under similar conditions. The Association for Research in Vision and Ophthalmology 2016-07-13 2016-07 /pmc/articles/PMC4968774/ /pubmed/27409461 http://dx.doi.org/10.1167/iovs.15-18888 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
spellingShingle Articles
Singh, Manmohan
Li, Jiasong
Han, Zhaolong
Vantipalli, Srilatha
Liu, Chih-Hao
Wu, Chen
Raghunathan, Raksha
Aglyamov, Salavat R.
Twa, Michael D.
Larin, Kirill V.
Evaluating the Effects of Riboflavin/UV-A and Rose-Bengal/Green Light Cross-Linking of the Rabbit Cornea by Noncontact Optical Coherence Elastography
title Evaluating the Effects of Riboflavin/UV-A and Rose-Bengal/Green Light Cross-Linking of the Rabbit Cornea by Noncontact Optical Coherence Elastography
title_full Evaluating the Effects of Riboflavin/UV-A and Rose-Bengal/Green Light Cross-Linking of the Rabbit Cornea by Noncontact Optical Coherence Elastography
title_fullStr Evaluating the Effects of Riboflavin/UV-A and Rose-Bengal/Green Light Cross-Linking of the Rabbit Cornea by Noncontact Optical Coherence Elastography
title_full_unstemmed Evaluating the Effects of Riboflavin/UV-A and Rose-Bengal/Green Light Cross-Linking of the Rabbit Cornea by Noncontact Optical Coherence Elastography
title_short Evaluating the Effects of Riboflavin/UV-A and Rose-Bengal/Green Light Cross-Linking of the Rabbit Cornea by Noncontact Optical Coherence Elastography
title_sort evaluating the effects of riboflavin/uv-a and rose-bengal/green light cross-linking of the rabbit cornea by noncontact optical coherence elastography
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4968774/
https://www.ncbi.nlm.nih.gov/pubmed/27409461
http://dx.doi.org/10.1167/iovs.15-18888
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