Keratoconus Clinical Trial
Official title:
Corneal Biomechanical Analysis Using Brillouin Microscopy
Verified date | February 2024 |
Source | The Cleveland Clinic |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Observational |
The objective of this study is to measure the Brillouin biomechanical properties in keratoconic corneas and characterize biomechanical alterations that occur after corneal procedures that inherently strengthen or weaken the cornea by evaluating the change in Brillouin metrics before and after treatments.
Status | Enrolling by invitation |
Enrollment | 220 |
Est. completion date | December 2024 |
Est. primary completion date | July 2024 |
Accepts healthy volunteers | |
Gender | All |
Age group | 18 Years to 60 Years |
Eligibility | Inclusion Criteria: - patients aged 18-60 with keratoconus - patients aged 18-60 with normal corneas, - patients aged 18-60 undergoing refractive surgery (LASIK, PRK, SMILE) - patients aged 18-60 with keratoconus undergoing CXL Exclusion Criteria: - outside age range - history of previous ocular surgeries - unable to cooperate for the Brillouin microscopic examination - unable to provide informed consent |
Country | Name | City | State |
---|---|---|---|
United States | Cleveland Clinic Cole Eye Institute | Cleveland | Ohio |
Lead Sponsor | Collaborator |
---|---|
The Cleveland Clinic | University of Maryland |
United States,
Randleman JB, Su JP, Scarcelli G. Biomechanical Changes After LASIK Flap Creation Combined With Rapid Cross-Linking Measured With Brillouin Microscopy. J Refract Surg. 2017 Jun 1;33(6):408-414. doi: 10.3928/1081597X-20170421-01. — View Citation
Scarcelli G, Besner S, Pineda R, Kalout P, Yun SH. In vivo biomechanical mapping of normal and keratoconus corneas. JAMA Ophthalmol. 2015 Apr;133(4):480-2. doi: 10.1001/jamaophthalmol.2014.5641. No abstract available. — View Citation
Scarcelli G, Besner S, Pineda R, Yun SH. Biomechanical characterization of keratoconus corneas ex vivo with Brillouin microscopy. Invest Ophthalmol Vis Sci. 2014 Jun 17;55(7):4490-5. doi: 10.1167/iovs.14-14450. — View Citation
Scarcelli G, Kling S, Quijano E, Pineda R, Marcos S, Yun SH. Brillouin microscopy of collagen crosslinking: noncontact depth-dependent analysis of corneal elastic modulus. Invest Ophthalmol Vis Sci. 2013 Feb 19;54(2):1418-25. doi: 10.1167/iovs.12-11387. — View Citation
Scarcelli G, Pineda R, Yun SH. Brillouin optical microscopy for corneal biomechanics. Invest Ophthalmol Vis Sci. 2012 Jan 20;53(1):185-90. doi: 10.1167/iovs.11-8281. — View Citation
Webb JN, Langille E, Hafezi F, Randleman JB, Scarcelli G. Biomechanical Impact of Localized Corneal Cross-linking Beyond the Irradiated Treatment Area. J Refract Surg. 2019 Apr 1;35(4):253-260. doi: 10.3928/1081597X-20190304-01. — View Citation
Zhang H, Roozbahani M, Piccinini AL, Golan O, Hafezi F, Scarcelli G, Randleman JB. Depth-Dependent Reduction of Biomechanical Efficacy of Contact Lens-Assisted Corneal Cross-linking Analyzed by Brillouin Microscopy. J Refract Surg. 2019 Nov 1;35(11):721-728. doi: 10.3928/1081597X-20191004-01. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Change in Brillouin Metrics | Brillouin metrics to be evaluated include localized Mean Brillouin modulus measure across the cornea and at each depth of the corneal stroma | Difference between baseline and 3 months after intervention |
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