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Three Different Protocols of Corneal Collagen Crosslinking in Keratoconus: Conventional, Accelerated and Iontophoresis
Published on: November 12, 2015
Corneal crosslinking via the Dresden protocol versus the accelerated approach in pediatric patients - a retrospective
Júlia Maggi Vieira1, Isadora Brito Coelho2, Fellype Borges de Oliveira3
1Glaucoma Instituto, Belo Horizonte, MG, Brazil.
Insights
Both accelerated and Dresden protocols effectively halt pediatric keratoconus progression. The accelerated protocol offers reduced surgical time while maintaining similar clinical outcomes to the Dresden protocol.
Area of Science:
- Ophthalmology
- Corneal Surgery
- Pediatric Eye Care
Background:
- Pediatric keratoconus often exhibits more severe and rapid progression than in adults.
- Corneal crosslinking is a key treatment for halting keratoconus progression.
Purpose of the Study:
- To compare the efficacy of the accelerated versus the Dresden protocol for corneal crosslinking in pediatric patients (<18 years).
- To evaluate visual acuity, keratometry, and corneal thickness changes over 12 months post-treatment.
Main Methods:
- Retrospective study of 36 eyes from 27 pediatric patients.
- Comparison of Dresden protocol (n=21) and accelerated protocol (n=15) for corneal crosslinking.
- Assessment of visual acuity, maximal keratometry (Kmax), corneal thickness, and endothelial cell counts at multiple postoperative intervals.
Main Results:
- Both protocols successfully halted keratoconus progression in all patients at 12 months.
- The Dresden protocol showed a significant reduction in Kmax and improvement in corrected distance visual acuity.
- No significant difference in corrected distance visual acuity was observed between the two groups, despite Dresden's superiority in reducing Kmax.
Conclusions:
- The accelerated protocol is as effective as the Dresden protocol in stabilizing pediatric keratoconus progression.
- While the Dresden protocol reduced Kmax more significantly, clinical outcomes were comparable.
- The accelerated protocol is an efficient and viable option for pediatric keratoconus, offering reduced surgical time.
Purpose:
Keratoconus presents certain peculiarities in pediatric patients when compared with adults. The greatest challenge in children is that the disease is more severe and faster in progression. In this retrospective study, we aimed to compare the accelerated and Dresden protocols for corneal crosslinking in patients aged <18 years who were followed-up for at least 12 months. Methods: A total of 36 eyes from 27 patients were included in the study. The best corrected and uncorrected visual acuity, maximal keratometry, corneal thickness, foveal thickness, and endothelial microscopy findings were evaluated at baseline and during the postoperative period at one, three, and six months. Thereafter, the patients were evaluated at one, three, six and twelve months postoperative. Corneal crosslinking was performed in all patients via the Dresden protocol (n=21 eyes) or the accelerated protocol (n=15 eyes). Data between the two groups were compared and XY statistical analysis was used.
Results:
Both protocols were effective in halting keratoconus progression. No patient had progression at the 12-month follow-up. A significant reduction in Kmax and improvement in the corrected distance visual acuity were observed only in the Dresden protocol group. Although the Dresden protocol was superior to the accelerated protocol in reducing Kmax (p=0.002), there was no significant difference in corrected distance visual acuity between the two groups.
Conclusion:
The accelerated protocol is as efficient as the Dresden protocol in stabilizing keratoconus progression. Although the Dresden protocol was superior to the accelerated protocol in reducing the Kmax, it did not produce better clinical results. Thus, the accelerated protocol is an efficient option. Furthermore, considering the advantages of reduced surgical time, the accelerated protocol is effective in halting keratoconus progression in the pediatric age group.
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