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Research Article

The Effect of Fractal Contact Lenses on Peripheral Refraction in Myopic Model Eyes

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Pages 1151-1160 | Received 07 Oct 2013, Accepted 04 Mar 2014, Published online: 21 Apr 2014

References

  • Gwiazda J. Treatment options for myopia. Optom Vis Sci 2009;86:624–628
  • Tarutta E, Chua W-H, Young T, Goldschmidt E, Saw SM, Rose KA, et al. Myopia: Why study the mechanisms of myopia? Novel approaches to risk factors signalling eye growth – how could basic biology be translated into clinical insights? Where are genetic and proteomic approaches leading? How does visual function contribute to and interact with ametropia? Does eye shape matter? Why ametropia at all? Optom Vis Sci 2011;88:404–447
  • Smith EL, Kee C, Ramamirtham R, Qiao-Grider Y, Hung L-F. Peripheral vision can influence eye growth and refractive development in infant monkeys. Invest Ophthalmol Vis Sci 2005;46:3965–3972
  • Smith EL. The Charles F. Prentice award lecture 2010: a case for peripheral optical treatment strategies for myopia. Optom Vis Sci 2012;88:1029–1044
  • Troilo D, Gottlieb MD, Wallman J. Visual deprivation causes myopia in chicks with optic nerve section. Curr Eye Res 1987;6:993–999
  • Ho W-C, Wong O-Y, Chan Y-C, Wong S-W, Kee C-S, Chan HH-L. Sign-dependent changes in retinal electrical activity with positive and negative defocus in the human eye. Vis Res 2012;52:47–53
  • Rosén R, Lundström L, Unsbo P. Sign-dependent sensitivity to peripheral defocus for myopes due to aberrations. Inves Opthal Vis Sci 2012;53:7176–7182
  • Buehren T, Iskander DR, Collins MJ, Davis B. Potential higher-order aberration cues for sphero-cylindrical refractive error development. Optom Vis Sci 2007;84:163–174
  • Yamaguchi T, Ohnuma K, Konomi K, Satake Y, Shimazaki J, Negishi K. Peripheral optical quality and myopia progression in children. Graefes Arch Clin Exp Ophthalmol 2013;251:2451–2461
  • Thibos LN, Bradley A, Liu T, López-Gil N. Spherical aberration and the sign of defocus. Optom Vis Sci 2013;90:1284–1291
  • Tabernero J, Vazquez D, Seidemann A, Uttenweiler D, Schaeffel F. Effects of myopic spectacle correction and radial refractive gradient spectacles on peripheral refraction. Vis Res 2009;49:2176–2186
  • Ticak A, Walline JJ. Peripheral optics with bifocal soft and corneal reshaping contact lenses. Optom Vis Sci 2013;90:3–8
  • Santodomingo-Rubido J, Villa-Collar C, Gilmartin B, Gutiérrez-Ortega R. Myopia control with orthokeratology contact lenses in Spain: refractive and biometric changes. Invest Ophthalmol Vis Sci 2012;53:5060–5065
  • Rosén R, Jaeken B, Lindskoog Petterson A, Artal P, Unsbo P, Lundström L. Evaluating the peripheral optical effect of multifocal contact lenses. Ophthalmic Physiol Opt 2012;32:527–534
  • Kang P, Fan Y, Oh K, Trac K, Zhang F, Swarbrick HA. The effect of multifocal soft contact lenses on peripheral refraction. Optom Vis Sci 2013;90:658–666
  • Walline JJ, Greiner KL, McVey ME, Jones-Jordan LA. Multifocal contact lens myopia control. Optom Vis Sci 2013;90:1207–1214
  • Kollbaum PS, Jansen ME, Tan J, Meyer DM, Rickert ME. Vision performance with a contact lens designed to slow myopia progression. Optom Vis Sci 2013;90:205–214
  • Sankaridurg P, Holden B, Smith EL, Naduvilath T, Chen X, de la Jara PL, et al. Decrease in rate of myopia progression with a contact lens designed to reduce relative peripheral hyperopia: one-year results. Invest Ophthalmol Vis Sci 2011;52:9362–9367
  • Anstice NS, Phillips JR. Effect of dual-focus soft contact lens wear on axial myopia progression in children. Ophthalmology 2011;118:1152–1161
  • Atchison DA. Optical models for human myopic eyes. Vis Res 2006;46:2236–2250
  • Bakaraju RC, Ehrmann K, Papas E, Ho A. Finite schematic eye models and their accuracy to in-vivo data. Vis Res 2008;48:1681–1694
  • Atchison DA, Pritchard N, Schmid KL. Peripheral refraction along the horizontal and vertical visual fields in myopia. Vis Res 2006;46:1450–1458
  • Navarro R, Santamaria J. Accommodation-dependent model of the human eye with aspherics. J Opt Soc Am A 1985;2:1273–1281
  • Furlan WD, Andres P, Saavedra G, Pons A, Monsoriu JA, Calatayud A, et al. Multifocal ophthalmic lens and method for obtaining same. ES Patent 070559. 2011. WO 2012/028755 A1
  • Saavedra G, Furlan WD, Monsoriu JA. Fractal zone plates. Opt Lett 2003;28:971–973
  • Furlan WD, Andres P, Saavedra G, Pons A, Monsoriu JA, Calatayud A, et al. White-light imaging with fractal zone plates. Opt Lett 2007;32:2109–2111
  • Furlan WD, Saavedra G, Pons A, et al. Multifocal ophthalmic lens and method for obtaining same. Improvements. ES Patent P201330862. 2012
  • Monsoriu JA, Saavedra G, Furlan WD. Fractal zone plates with variable lacunarity. Opt Express 2004;12:4227–4234
  • Phillips J. Contact lens and method US Patent 20080218687 A1. 2008
  • Tabernero J, Schaeffel F. Fast scanning photoretinoscope for measuring peripheral refraction as a function of accommodation. J Opt Soc Am A Opt Image Sci Vis 2009;26:2206–2210
  • Calver R, Radhakrishnan H, Osuobeni E, O’Leary D. Peripheral refraction for distance and near vision in emmetropes and myopes. Ophthalmic Physiol Opt 2007;27:584–593
  • Davies LN, Mallen EA. Influence of accommodation and refractive status on the peripheral refractive profile. Br J Ophthalmol 2009;93:1186–1190
  • Zemax 13. Optical design program. User’s manual. Washington; 2013
  • Plainis S, Charman WN. On-eye power characteristics of soft contact lenses. Optom Vis Sci 1998;75:44–54
  • Hong XIN, Himebaugh N, Thibos LN. On-eye evaluation of optical performance of rigid and soft contact lenses. Optom Vis Sci 2001;78:872–880
  • Garner L. Front surface topography of spherical flexible contact lenses on the eye. Aust J Optom 1977;60:40–45
  • Cox I. Theoretical calculation of the longitudinal spherical aberration of rigid and soft contact lenses. Optom Vis Sci 1990;67:277–282
  • Legras R, Chateau N, Charman WN. A method for simulation of foveal vision during wear of corrective lenses. Optom Vis Sci 2004;81:729–738
  • Watson AB, Yellott JI. A unified formula for light-adapted pupil size. J Vis 2012;12:1–16
  • Kang P, Swarbrick H. Time course of the effects of orthokeratology on peripheral refraction and corneal topography. Ophthal Physiol Opt 2013;33:277–282
  • Smith EL. Optical treatment strategies to slow myopia progression: effects of the visual extent of the optical treatment zone. Exp Eye Res 2013;114:77–78
  • Sankaridurg P, Donovan L, Varnas S, Ho A, Chen X, Martinez A, et al. Spectacle lenses designed to reduce progression of myopia: 12-month results. Optom Vis Sci 2010;87:631–641
  • Charman WN, Radhakrishnan H. Peripheral refraction and the development of refractive error: a review. Ophthalmic Physiol Opt 2010;30:321–338
  • Faria-Ribeiro M, Queirós A, Lopes-Ferreira D, Jorge J, González-Méijome JM. Peripheral refraction and retinal contour in stable and progressive myopia. Optom Vis Sci 2013;90:9–15
  • Chung K, Mohidin N, O’Leary DJ. Undercorrection of myopia enhances rather than inhibits myopia progression. Vis Res 2002;42:2555–2559
  • Berntsen DA, Kramer CE. Peripheral defocus with spherical and multifocal soft contact lenses. Optom Vis Sci 2013;90:1215–1224
  • Lundström L, Mira-Agudelo A, Artal P. Peripheral optical errors and their change with accommodation differ between emmetropic and myopic eyes. J Vis 2009;9:1–11
  • Whatham A, Zimmermann F, Lazon P, Jara D. Influence of accommodation on off-axis refractive errors in myopic eyes. J Vis 2009;9:1–13
  • Navarro R, Palos F, González L. Adaptive model of the gradient index of the human lens. I. Formulation and model of aging ex vivo lenses. J Opt Soc Am A 2007;24:2175–2185
  • Wang J, Jiao S, Ruggeri M, Shousha MA, Shousha MA, Chen Q. In situ visualization of tears on contact lens using ultra high resolution optical coherence tomography. Eye Contact Lens 2009;35:44–49
  • Hong XIN, Himebaugh N, Thibos LN. On-eye evaluation of optical performance of rigid and soft contact lenses. Optom Vis Sci 2001;78:872–880
  • Maldonado-Codina C, Efron N. Impact of manufacturing technology and material composition on the clinical performance of hydrogel lenses. Optom Vis Sci 2004;81:442–454
  • Tranoudis I, Efron N. Parameter stability of soft contact lenses made from different materials. Cont Lens Anterior Eye 2004;27:115–131
  • Rae SM, Price HC. The effect of soft contact lens wear and time from blink on wavefront aberration measurement variation. Clin Exp Optom 2009;92:274–282
  • Efron S, Efron N, Morgan PB. Repeatability and reliability of ocular aberration measurements in contact lens wear. Cont Lens Anterior Eye 2008;31:81–88

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