American Journal of Ophthalmology
Volume 144, Issue 3 , Pages 378-386 , September 2007

Corneal Changes and Wavefront Analysis after Orthokeratology Fitting Test

,Accepted 18 May 2007.

References 

  1. Jessen G. Orthofocus techniques. Contacto. 1962;6:200–204
  2. Pearson R. The concept of orthokeratology in which corneal lenses are fitted in order to temporarily reduce or eliminate a refractive error. Cont Lens Anterior Eye. 2000;23:67
  3. Binder PS, May CH, Grant SC. An evaluation of orthokeratology. Ophthalmology. 1980;87:729–744
  4. Coon LJ. Orthokeratology (Part II: Evaluating the Tabb method). J Am Optom Assoc. 1984;55:409–418
  5. Polse KA, Brand RJ, Schwalbe JS, Vastine DW, Keener RJ. The Berkeley Orthokeratology Study, Part II: Efficacy and duration. Am J Optom Physiol Opt. 1983;60:187–198
  6. Dave T, Ruston D. Current trends in modern orthokeratology. Ophthalmic Physiol Opt. 1998;18:224–233
  7. Mountford J. An analysis of the changes in corneal shape and refractive error induced by accelerated orthokeratology. Int Contact Lens Clin. 1997;24:128–143
  8. Sridharan R, Swarbrick H. Corneal response to short-term orthokeratology lens wear. Optom Vis Sci. 2003;80:200–206
  9. Nichols JJ, Marsich MM, Nguyen M, Barr JT, Bullimore MA. Overnight orthokeratology. Optom Vis Sci. 2000;77:252–259
  10. Swarbrick HA, Wong G, O’Leary DJ. Corneal response to orthokeratology. Optom Vis Sci. 1998;75:791–799
  11. Swarbrick HA. Orthokeratology review and update. Clin Exp Optom. 2006;89:124–143
  12. Alharbi A, Swarbrick HA. The effects of overnight orthokeratology lens wear on corneal thickness. Invest Ophthalmol Vis Sci. 2003;44:2518–2523
  13. Choo J, Caroline P, Harlin D. How does the cornea change under corneal reshaping contact lenses?. Eye Contact Lens. 2004;30:211–213discussion 218
  14. Owens H, Garner LF, Craig JP, Gamble G. Posterior corneal changes with orthokeratology. Optom Vis Sci. 2004;81:421–426
  15. Mao XJ, Lu F, Qu J. Effects after orthokeratology on corneal topography and monochromic wavefront aberration. Zhonghua Yan Ke Za Zhi. 2004;40:471–473
  16. Berntsen DA, Barr JT, Mitchell GL. The effect of overnight contact lens corneal reshaping on higher-order aberrations and best-corrected visual acuity. Optom Vis Sci. 2005;82:490–497
  17. Hiraoka T, Matsumoto Y, Okamoto F, et al. Corneal higher-order aberrations induced by overnight orthokeratology. Am J Ophthalmol. 2005;139:429–436
  18. Joslin CE, Wu SM, McMahon TT, Shahidi M. Higher-order wavefront aberrations in corneal refractive therapy. Optom Vis Sci. 2003;80:805–811
  19. Joslin CE, Wu SM, McMahon TT, Shahidi M. Is “whole eye” wavefront analysis helpful to corneal refractive therapy?. Eye Contact Lens. 2004;30:186–188
  20. Lowe R. Corneal refractive therapy, uncorrected visual acuity, and “E” values: personal experiences. Eye Contact Lens. 2004;30:238–241
  21. Thibos LN, Applegate RA, Schwiegerling JT, Webb R. Standards for reporting the optical aberrations of eyes. J Refract Surg. 2002;18:S652–S660
  22. Rah MJ, Jackson JM, Jones LA, Marsden HJ, Bailey MD, Barr JT. Overnight orthokeratology: preliminary results of the Lenses and Overnight Orthokeratology (LOOK) study. Optom Vis Sci. 2002;79:598–605
  23. Soni PS, Nguyen TT, Bonanno JA. Overnight orthokeratology: visual and corneal changes. Eye Contact Lens. 2003;29:137–145
  24. Tahhan N, Du Toit R, Papas E, Chung H, La Hood D, Holden AB. Comparison of reverse-geometry lens designs for overnight orthokeratology. Optom Vis Sci. 2003;80:796–804
  25. Soni PS, Nguyen TT, Bonanno JA. Overnight orthokeratology: refractive and corneal recovery after discontinuation of reverse-geometry lenses. Eye Contact Lens. 2004;30:254–262
  26. Alharbi A, La Hood D, Swarbrick HA. Overnight orthokeratology lens wear can inhibit the central stromal edema response. Invest Ophthalmol Vis Sci. 2005;46:2334–2340
  27. Wang J, Fonn D, Simpson TL, Sorbara L, Kort R, Jones L. Topographical thickness of the epithelium and total cornea after overnight wear of reverse geometry rigid contact lenses for myopia reduction. Invest Ophthalmol Vis Sci. 2003;44:4742–4746
  28. Applegate RA, Hilmantel G, Howland HC. Corneal aberrations increase with the magnitude of radial keratotomy refractive correction. Optom Vis Sci. 1996;73:585–589
  29. Oliver K, Hemenger R, Corbett M, et al. Corneal optical aberrations induced by photorefractive keratectomy. J Refract Surg. 1997;13:246–254
  30. Oshika T, Klyce SD, Applegate RA, Howland HC, El Danasoury MA. Comparison of corneal wavefront aberrations after photorefractive keratectomy and laser in situ keratomileusis. Am J Ophthalmol. 1999;127:1–7
  31. Schwiergerling J, Snyder RW. Corneal ablation patterns to correct for spherical aberration in photorefractive keratectomy. J Cataract Refract Surg. 2000;26:214–221
  32. Oshika T, Miyata K, Tokunaga T, et al. Higher-order wavefront aberrations of cornea and magnitude of refractive correction in laser in situ keratomileusis. Ophthalmology. 2002;109:1154–1158
  33. Marcos S, Barbero S, Llorente L, Merayo-Lloves J. Optical response to LASIK surgery for myopia from total and corneal aberration measurements. Invest Ophthalmol Vis Sci. 2001;42:3349–3356
  34. Yang X, Gong XM, Dai ZY, Wei L, Li SX. Topographical evaluation on decentration of orthokeratology lenses. Zhonghua Yan Ke Za Zhi. 2003;39:335–338
  35. Applegate RA, Sarver EJ, Khemsara V. Are all aberrations equal?. J Refract Surg. 2002;18:S556–S562
  36. Applegate RA, Marsack JD, Ramos R, Sarver EJ. Interaction between aberrations to improve or reduce visual performance. J Cataract Refract Surg. 2003;29:1487–1495

PII: S0002-9394(07)00513-2

doi: 10.1016/j.ajo.2007.05.030

American Journal of Ophthalmology
Volume 144, Issue 3 , Pages 378-386 , September 2007