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Review

Translating Ocular Biomechanics into Clinical Practice: Current State and Future Prospects

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Pages 1-18 | Received 13 Jan 2014, Accepted 02 Apr 2014, Published online: 15 May 2014

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Heba A. El Gendy, Noha M. Khalil, Iman M. Eissa & Shireen MA. Shousha. (2018) The Effect of Strabismus Muscle Surgery on Corneal Biomechanics. Journal of Ophthalmology 2018, pages 1-5.
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Seok Hyun Yun & Dimitri Chernyak. (2018) Brillouin microscopy. Current Opinion in Ophthalmology 29:4, pages 299-305.
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Peng Shao, Theo G. Seiler, Amira M. Eltony, Antoine Ramier, Sheldon J. J. Kwok, Giuliano Scarcelli, Roberto Pineda II & Seok-Hyun Yun. (2018) Effects of Corneal Hydration on Brillouin Microscopy In Vivo. Investigative Opthalmology & Visual Science 59:7, pages 3020.
Crossref
Xiaofei Man, Elizabeth Arroyo, Martha Dunbar, David M. Reed, Neil Shah, Larry Kagemann, Wonsuk Kim, Sayoko E. Moroi & Alan Argento. (2018) Perilimbal sclera mechanical properties: Impact on intraocular pressure in porcine eyes. PLOS ONE 13:5, pages e0195882.
Crossref
Francesca Palombo, Ryan S. Edginton, Ellen M. Green, Peter Winlove & Daniele Fioretto. (2018) Dual scale biomechanics of extracellular matrix proteins probed by Brillouin scattering and quasistatic tensile testing. Dual scale biomechanics of extracellular matrix proteins probed by Brillouin scattering and quasistatic tensile testing.
Elias Pavlatos, Hong Chen, Keyton Clayson, Xueliang Pan & Jun Liu. (2018) Imaging Corneal Biomechanical Responses to Ocular Pulse Using High-Frequency Ultrasound. IEEE Transactions on Medical Imaging 37:2, pages 663-670.
Crossref
Anna Pandolfi. 2018. Encyclopedia of Continuum Mechanics. Encyclopedia of Continuum Mechanics 1 19 .
Mitchell A. Kirby, Ivan Pelivanov, Shaozhen Song, Łukasz Ambrozinski, Soon Joon Yoon, Liang Gao, David Li, Tueng T. Shen, Ruikang K. Wang & Matthew O’Donnell. (2017) Optical coherence elastography in ophthalmology. Journal of Biomedical Optics 22:12, pages 1.
Crossref
Isabell P Weber, Seok Hyun Yun, Giuliano Scarcelli & Kristian Franze. (2017) The role of cell body density in ruminant retina mechanics assessed by atomic force and Brillouin microscopy. Physical Biology 14:6, pages 065006.
Crossref
Renato Ambrósio, Jr, Fernando Faria Correia, Bernardo Lopes, Marcella Q. Salomão, Allan Luz, Daniel G. Dawson, Ahmed Elsheikh, Riccardo Vinciguerra, Paolo Vinciguerra & Cynthia J. Roberts. (2017) Corneal Biomechanics in Ectatic Diseases: Refractive Surgery Implications. The Open Ophthalmology Journal 11:1, pages 176-193.
Crossref
J. Bradley Randleman, Johnny P. Su & Giuliano Scarcelli. (2017) Biomechanical Changes After LASIK Flap Creation Combined With Rapid Cross-Linking Measured With Brillouin Microscopy. Journal of Refractive Surgery 33:6, pages 408-414.
Crossref
Eitan Edrei, Malte C. Gather & Giuliano Scarcelli. (2017) Integration of spectral coronagraphy within VIPA-based spectrometers for high extinction Brillouin imaging. Optics Express 25:6, pages 6895.
Crossref
Vladislav V. YakovlevCharles W. BallmannZachary CokerZhaokai MengMaria Troyanova-Wood. What is next for Brillouin microscopy in biology and medicine?. What is next for Brillouin microscopy in biology and medicine?.
Kirill V. Larin & David D. Sampson. (2017) Optical coherence elastography – OCT at work in tissue biomechanics [Invited]. Biomedical Optics Express 8:2, pages 1172.
Crossref
Alina Popa-Cherecheanu, Raluca Claudia Iancu, Leopold Schmetterer, Ruxandra Pirvulescu & Valeria Coviltir. (2017) Intraocular Pressure, Axial Length, and Refractive Changes after Phacoemulsification and Trabeculectomy for Open-Angle Glaucoma. Journal of Ophthalmology 2017, pages 1-6.
Crossref
Gustavo Guerra, Fernando Faria Correia, Daniel G. Dawson, Lia Florim Patrão, Ivan Dias Ferreira & Renato Ambrósio Junior. 2017. Corneal Collagen Cross Linking. Corneal Collagen Cross Linking 1 21 .
. 2016. Biomaterials and Nanotechnology for Tissue Engineering. Biomaterials and Nanotechnology for Tissue Engineering 173 197 .
A.P. Voorhees, J.L. Grimm, R.A. Bilonick, L. Kagemann, H. Ishikawa, J.S. Schuman, G. Wollstein & I.A. Sigal. (2016) What is a typical optic nerve head?. Experimental Eye Research 149, pages 40-47.
Crossref
Francesca Palombo, Marco Madami, Daniele Fioretto, Jayakrupakar Nallala, Hugh Barr, Antoine David & Nick Stone. (2016) Chemico-mechanical imaging of Barrett's oesophagus. Journal of Biophotonics 9:7, pages 694-700.
Crossref
Michaël J.A. Girard, Meghna R. Beotra, Khai Sing Chin, Amanjeet Sandhu, Monica Clemo, Eleni Nikita, Deborah S. Kamal, Maria Papadopoulos, Jean Martial Mari, Tin Aung & Nicholas G. Strouthidis. (2016) In Vivo 3-Dimensional Strain Mapping of the Optic Nerve Head Following Intraocular Pressure Lowering by Trabeculectomy. Ophthalmology 123:6, pages 1190-1200.
Crossref
Rachel E. Exler, Xiaoxin Guo, Darren Chan, Izhar Livne-Bar, Nevena Vicic, John G. Flanagan & Jeremy M. Sivak. (2016) Biomechanical insult switches PEA-15 activity to uncouple its anti-apoptotic function and promote erk mediated tissue remodeling. Experimental Cell Research 340:2, pages 283-294.
Crossref
Ning-Jiun Jan, Jonathan L. Grimm, Huong Tran, Kira L. Lathrop, Gadi Wollstein, Richard A. Bilonick, Hiroshi Ishikawa, Larry Kagemann, Joel S. Schuman & Ian A. Sigal. (2015) Polarization microscopy for characterizing fiber orientation of ocular tissues. Biomedical Optics Express 6:12, pages 4705.
Crossref
Dimitrios Karamichos & Jesper Hjortdal. (2014) Keratoconus: Tissue Engineering and Biomaterials. Journal of Functional Biomaterials 5:3, pages 111-134.
Crossref

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