Optical quality of the Visian Implantable Collamer Lens for different refractive powers
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  • 作者:Cari Pérez-Vives (1) (2)
    Alberto Domínguez-Vicent (1)
    Teresa Ferrer-Blasco (1)
    álvaro M. Pons (1)
    Robert Montés-Micó (1)
  • 关键词:ICL ; Optical quality ; Wavefront aberrations ; MTF
  • 刊名:Graefe's Archive for Clinical and Experimental Ophthalmology
  • 出版年:2013
  • 出版时间:May 2013
  • 年:2013
  • 卷:251
  • 期:5
  • 页码:1423-1429
  • 全文大小:301KB
  • 参考文献:1. The Implantable Contact Lens in Treatment of Myopia (ITM) Study Group (2003) . U.S. Food and Drug Administration clinical trial of the implantable contact lens for moderate to high myopia. Ophthalmology 110:255-66 CrossRef
    2. ICL in Treatment of Myopia (ITM) Study Group (2004) United States Food and Drug Administration clinical trial of the Implantable Collamer Lens (ICL) for moderate to high myopia; three-year follow up. Ophthalmology 111:1683-692 CrossRef
    3. Gonvers M, Othenin-Girard P, Bornet C, Sickenberg M (2001) Implantable contact lens for moderate to high myopia: short-term follow-up of 2 models. J Cataract Refract Surg 27:380-88 CrossRef
    4. Uusitalo RJ, Aine E, Sen NH, Laatikainen L (2002) Implantable contact lens for high myopia. J Cataract Refract Surg 28:29-6 CrossRef
    5. Pineda-Fernández A, Jaramillo J, Vargas J, Jaramillo M, Jaramillo J, Galíndez A (2004) Phakic posterior chamber intraocular lens for high myopia. J Cataract Refract Surg 30:2277-283 CrossRef
    6. Ieong A, Rubin GS, Allan BDS (2009) Quality of life in high myopia. Implantable collamer lens implantation versus contact lens wear. Ophthalmology 116:275-80 CrossRef
    7. Ieong A, Hau SCH, Rubin GS, Allan BDS (2010) Quality of life in high myopia before and after implantable collamer lens implantation. Ophthalmology 117:2295-300 CrossRef
    8. Lackner B, Pieh S, Schmidinger G, Simader C, Franz C, Dejaco-Ruhswurm I, Skorpik C (2004) Long-term results of implantation of phakic posterior chamber intraocular lenses. J Cataract Refract Surg 30:2269-276 CrossRef
    9. Kamiya K, Shimizu K, Igarashi A, Hikita F, Komatsu M (2009) Four-year follow-up of posterior chamber phakic intraocular lens implantation for moderate to high myopia. Arch Ophthalmol 127:845-50 CrossRef
    10. Alfonso JF, Baamonde B, Fernández-Vega L, Fernandes P, González-Méijome JM, Montés-Micó R (2011) Posterior chamber collagen copolymer phakic intraocular lenses to correct myopia: five-year follow-up. J Cataract Refract Surg 37:873-80 CrossRef
    11. Davidorf JM, Zaldivar R, Oscherow S (1998) Posterior chamber phakic intraocular lens for hyperopia of +4 to +11 diopters. J Refract Surg 14:306-11
    12. Pesando PM, Ghiringhello MP, Di Meglio G, Fanton G (2007) Posterior chamber phakic intraocular lens (ICL) for hyperopia: ten-year follow-up. J Cataract Refract Surg 33:1579-584 CrossRef
    13. Alfonso JF, Fernández-vega L, Fernandes P, González-Méijome JM, Montés-Micó R (2010) Collagen copolymer toric posterior chamber phakic intraocular lens for myopic astigmatism: one-year follow-up. J Cataract Refract Surg 36:568-76 CrossRef
    14. Alfonso JF, Baamonde B, Madrid-Costa D, Fernandes P, Jorge J, Montés-Micó R (2010) Collagen copolymer toric posterior chamber phakic intraocular lenses to correct high myopic astigmatism. J Cataract Refract Surg 36:1349-357 CrossRef
    15. Sanders DR, Vukich JA (2003) Comparison of implantable contact lens and laser assisted in situ keratomileusis for moderate to high myopia. Cornea 22:324-31 CrossRef
    16. Kamiya K, Shimizu K, Igarashi A, Komatsu M (2008) Comparison of collamer toric contact lens implantation and wavefront-guided laser in situ keratomileusis for high myopic astigmatism. J Cataract Refract Surg 34:1687-693 CrossRef
    17. Igarashi A, Kamiya K, Shimizu K, Komatsu M (2009) Visual performance after implantable collamer lens implantation and wavefront-guided laser in situ keratomileusis for high myopia. Am J Ophthalmol 148:164-70 CrossRef
    18. Shin JY, Ahn H, Seo KY, Kim EK, Kim (2012) Comparison of higher-order aberrations after implantable collamer lens implantation and wavefront-guided LASEK in high myopia. J Refract Surg 28:106-11 CrossRef
    19. Kamiya K, Igarashi A, Shimizu K, Matsumura K, Komatsu M (2012) Visual performance after posterior chamber phakic intraocular lens implantation and wavefront-guided laser in situ keratomileusis for low to moderate myopia. Am J Ophthalmol 153:1178-186 CrossRef
    20. Sanders D, Vukich JA (2006) Comparison of implantable collamer lens (ICL) and laser-assisted in situ keratomileusis (LASIK) for low myopia. Cornea 25:1139-146 CrossRef
    21. Sanders DR (2007) Matched population comparison of the Visian implantable collamer lens and standard LASIK for myopia of ?.00 to ?.88 diopters. J Refract Surg 23:537-53
    22. Gatinel D, Adam PA, Chaabouni S, Munck J, Thevenot M, Hoang-Xuan T, Pieger S, Fujieda M, Bains HS (2010) Comparison of corneal and total ocular aberrations before and after myopic LASIK. J Refract Surg 26:333-40 CrossRef
    23. Sarver EJ, Sanders DR, Vukich JA (2003) Image quality in myopic eyes corrected with laser in situ keratomileusis and phakic intraocular lens. J Refract Surg 19:397-04
    24. Kim SW, Yang H, Yoon G, Lee YJ, Kweon MN, Kim JK, Seo KY (2011) Higher-order aberration changes after implantable collamer lens implantation for myopia. Am J Ophthalmol 151:653-62 CrossRef
    25. Joannes L, Hough T, Hutsebaut X, Dubois X, Ligot R, Saoul B, Donink PV, De Coninck K (2010) The reproducibility of a new power mapping instrument based on the phase shifting schlieren method for the measurement of spherical and toric contact lenses. CLAE 33:3-
    26. Joannes L, Dubois F, Legros JC (2003) Phase-shifting schlieren: high-resolution quantitative schlieren that uses the phase-shifting technique principle. Appl Opt 42:5046-053 CrossRef
    27. Gatinel D, Pagnoulle C, Houbrechts Y, Gobin L (2011) Design and qualification of a diffractive trifocal optical profile for intraocular lenses. J Cataract Refract Surg 37:2060-067 CrossRef
    28. International Organization for Standardization (1999) Ophthalmic implants -intraocular lenses - part 2: optical properties and test methods. ISO, Geneva (ISO 11979-)
    29. International Organization for Standardization (2006) Ophthalmic implants -intraocular lenses - part 9: multifocal intraocular lenses. ISO, Geneva (ISO 11979-)
    30. Sekiguchi N, Williams DR, Brainard DH (1993) Efficiency in detection of isoluminant and isochromatic interference fringes. J Opt Soc Am A 10:2118-133 CrossRef
    31. Rocha KM, Vabre L, Harms F, Chateau N, Krueger RR (2007) Effects of Zernike wavefront aberrations on visual acuity measured using electromagnetic adaptive optics technology. J Refract Surg 23:953-59
    32. Montés-Micó R, Ferrer-Blasco T, Cervi?o A (2009) Analysis of the possible benefits of aspheric intraocular lenses: review of the literature. J Cataract Refract Surg 35:172-81 CrossRef
    33. Fernandes P, González-Méijome JM, Madrid-Costa D, Ferrer-Blasco T, Jorge J, Montés-Micó R (2011) Implantable collamer posterior chamber intraocular lenses: a review of potential complications. J Refract Surg 27:765-76 CrossRef
    34. Uozato H, Shimizu K, Kawamorita T, Ohmoto F (2011) Modulation transfer function of intraocular collamer lens with a central artificial hole. Graefes Arch Clin Exp Ophthalmol 249:1081-085 CrossRef
    35. Ohmoto F, Shimizu K, Uozato H, Kawamorita T, Uga S (2010) Optical performance of implantable collamer lenses with and without a central perforation. Kitasato Med J 40:150-53
    36. Shiratani T, Shimizu K, Fujisawa K, Uga S, Nagano K, Murakami Y (2008) Crystalline lens changes in porcine eyes with implanted phakic IOL (ICL) with a central hole. Graefes Arch Clin Exp Ophthalmol 246:719-28 CrossRef
    37. Kamiya K, Shimizu K, Igarashi A, Kobashi H, Ishii R, Sato N (2012) Clinical evaluation of optical quality and intraocular scattering after posterior chamber phakic intraocular lens implantation. Invest Ophthalmol Vis Sci 53:3161-166 CrossRef
    38. Applegate RA, Howland HC (1993) Magnification and visual acuity in refractive surgery. Arch Ophthalmol 111:1335-342 CrossRef
  • 作者单位:Cari Pérez-Vives (1) (2)
    Alberto Domínguez-Vicent (1)
    Teresa Ferrer-Blasco (1)
    álvaro M. Pons (1)
    Robert Montés-Micó (1)

    1. GIO, Optics Department, Faculty of Physics, Universidad de Valencia, Valencia, Spain
    2. Optics Department, University of Valencia, C/ Dr. Moliner 50., 46100, Valencia, Spain
  • ISSN:1435-702X
文摘
Purpose To evaluate the optical quality of the Visian Implantable Collamer Lens (ICL) for different powers and pupil diameters. Methods Wavefront aberrations of the ?, ?, ?, ?2 and ?5 diopters (D) V4b ICLs were measured at 3- and 4.5-mm pupils. The root mean square (RMS) of total higher order aberrations (HOAs), trefoil, coma, tetrafoil, secondary astigmatism, and spherical aberration were evaluated. In addition, modulation transfer function (MTF) of the five ICL powers was measured for a 3-mm pupil. The point spread functions (PSFs) of each ICL evaluated was calculated from the wavefront aberrations at 4.5-mm pupil. Results The ICLs evaluated had negative spherical aberration and negligible amounts of other aberrations. The negative spherical aberration increases when the ICL power increases being related with its innate optical properties. At 3-mm pupil, no statistically significant differences between ICLs were found for all the Zernike coefficient RMS values analyzed (p-gt;-.05). At 4.5-mm pupil, significant RMS values for the spherical aberration and total HOAs were found between medium-low and high powers (p-lt;-.05). Similar MTFs were obtained for all ICLs, although they slightly worsened when increased the ICL power. Conclusions ICLs evaluated provide good optical quality in terms of wavefront aberrations, MTF, and PSF. Although spherical aberration increases with ICL power, these values are clinically negligible to affect the visual quality after its implantation.

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