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Updated: May 6, 2026

Three Different Protocols of Corneal Collagen Crosslinking in Keratoconus: Conventional, Accelerated and Iontophoresis
Published on: November 12, 2015
Corneal biomechanical and tomographic outcomes following accelerated cross-linking in keratoconus: a focus on cone
Yonca Asfuroğlu1, Emine Esra Karaca2, Döndü Melek Ulusoy3
1Department of Ophthalmology, Ankara Bilkent City Hospital, Universiteler Mahallesi 1604. Cadde No: 9, Çankaya, Ankara, Turkey. yncatalay@gmail.com.
Purpose:
To evaluate the biomechanical and tomographic characteristics of keratoconic corneas undergoing accelerated cross-linking (CXL) for over one year and to assess the impact of cone localization on postoperative biomechanical behavior.
Study Design:
Prospective-comparative.
Methods:
This study included 68 eyes of 68 patients with progressive keratoconus. Based on cone location, the patients were divided into two groups: group 1 (central cone; 34 eyes) and group 2 (paracentral cone; 34 eyes). Scheimpflug imaging was used to assess the corneal thickness, anterior and posterior Kmean, Kmax, and astigmatism. The Ocular Response Analyzer (ORA) measures corneal compensated intraocular pressure (IOPcc), Goldmann-correlated pressure (IOPg), corneal hysteresis (CH), and corneal resistance factor (CRF). All the baseline measurements were repeated at 1, 6, and 12 months. Demarcation line (DL) depth was assessed at 1 month using anterior segment optical coherence tomography. Best corrected visual acuity was recorded at each visit.
Results:
At 1year, anterior Kmean, posterior Kmean and Kmax showed significant reductions (p < 0.01). No significant differences in CH or CRF changes were found between the central and peripheral cones (p = 0.22, p = 0.33). Visual improvement and reduction in spherical equivalent were greater in the central cone group (p = 0.03, p = 0.03). DL depth correlated positively with CH and CRF at 1 month (p = 0.02, p = 0.008), but not at 1 year.
Conclusion:
Accelerated CXL improves corneal shape, but may not produce detectable changes in ORA-derived biomechanics. Regional stiffening may not be captured by global indices, and the cone location appears to be more influential on visual recovery than biomechanical parameters.
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