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       XXIII Annual Congress of the Iranian Society of Ophthalmology        بـیــست و سومین کنــگــره سـالیـانه انـجـمـن چـشـم پـزشـکی ایـــران
مقاله Abstract


Title: Corneal biomechanical properties at different collagen cross-linking (CXL) fluences
Author(s): Arthur Hammer, MD; Samuel Mosquera, PhD; Olivier Richoz, MD; David Tabibian, MD; Florence Hoogewoud, MD; Farhad Hafezi, MDPhD
Presentation Type: Oral
Subject: Cornea and Anterior Segment
Others:
Presenting Author:
Name: Arthur hammer Hammer
Affiliation :(optional) Geneva University Hospitals
E mail: arthur.hammer6@gmail.com
Phone:
Mobile: +41 76 365 96 09
Purpose:

CXL devices recently started using higher fluences and lower irradiation time, keeping the total energy constant according to the Bunsen-Roscoe law and assuming that the increase in biomechanical stiffness will remain the same. However, no clinical data is available to support this hypothesis

Methods:

We investigated the biomechanical properties of porcine corneas in 4 groups (n=16): 3 groups were exposed to riboflavin 0.1 % and to UVA irradiation at 3, 9 and 18 mW of intensity with an exposition time of 30, 10 and 5 minutes respectively. Controls were only exposed to riboflavin 0.1 %. Corneal strength was determined using a Zwick extensometer

Results:

We observed significant differences between 3 mW/cm2 and 9 mW/cm2, 18 mW/cm2 and the control group(p = 0.004, p = 0.024 and p = 0.001 respectively) for the Young’s modulus at 10 % of strain

Conclusion:

The biomechanical effect of CXL seems to decrease to a significantly lower level when using the high fluence/short irradiation time settings, rising concerns about the clinical efficiency of the new CXL devices appearing on the market. Intrastromal oxygen diffusion capacity might be a limiting factor, correspondingly increased oxygen consumption associated to higher fluence may lead to reduced treatment efficiency

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  - بـیــست و سومین کنــگــره سـالیـانه انـجـمـن چـشـم پـزشـکی ایـــران