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RESEARCH

Higher order aberrations according to spherical, and astigmatic refractive errors in children

, ORCID Icon, , , & ORCID Icon
Received 06 Jul 2022, Accepted 04 Feb 2024, Published online: 01 Apr 2024

References

  • Wojciechowski R, Hysi PG, Gibson G. Focusing in on the complex genetics of myopia. PLoS Genet 2013; 9: e1003442. doi:10.1371/journal.pgen.1003442.
  • Candy T, Wang J, Ravikumar S Retinal image quality and postnatal visual experience during infancy. Optom Vis Sci 2009; 86: 556–571. doi:10.1097/OPX.0b013e3181a76e6f.
  • Braddick O, Atkinson J Development of human visual function. Vision Res 2011; 51: 1588–1609. doi:10.1016/j.visres.2011.02.018.
  • Li T, Zhou X, Chen Z et al. Relationship between ocular wavefront aberrations and refractive error in Chinese school children. Clin Exp Optom 2012; 95: 399–403. doi:10.1111/j.1444-0938.2012.00739.x.
  • Flitcroft D The complex interactions of retinal, optical and environmental factors in myopia aetiology. Prog Retin Eye Res 2012; 31: 622–660. doi:10.1016/j.preteyeres.2012.06.004.
  • Zhao PF, Zhou YH, Wang NL et al. Study of the wavefront aberrations in children with amblyopia. Chin Med J (Engl) 2010; 123: 1431–1435.
  • Martin J, Vasudevan B, Himebaugh N et al. Unbiased estimation of refractive state of aberrated eyes. Vision Res 2011; 51: 1932–1940. doi:10.1016/j.visres.2011.07.006.
  • Porter J, Awwal A, Lin J et al. Adaptive optics for vision science principles, practices, design, and applications. Hoboken (NJ): John Wiley & Sons; 2006.
  • Vincent SJ, Collins MJ, Read SA et al. Monocular amblyopia and higher order aberrations. Vision Res 2012; 66: 39–48. doi:10.1016/j.visres.2012.06.016.
  • Williams D, Geun-Young Y, Jason P et al. Visual benefit of correcting higher order aberrations of the eye. J Refract Surg 2000; 16: 554–559. doi:10.3928/1081-597X-20000901-12.
  • Philip K, Martinez A, Ho A et al. Total ocular, anterior corneal and lenticular higher order aberrations in hyperopic, myopic and emmetropic eyes. Vision Res 2012; 52: 31–37. doi:10.1016/j.visres.2011.10.018.
  • Artal P, Berrio E, Guirao A et al. Contribution of the cornea and internal surfaces to the change of ocular aberrations with age. J Opt Soc Am A 2002; 19: 137. doi:10.1364/JOSAA.19.000137.
  • Philip K, Sankaridurg P, Holden B et al. Influence of higher order aberrations and retinal image quality in myopisation of emmetropic eyes. Vision Res 2014; 105: 233–243. doi:10.1016/j.visres.2014.10.003.
  • Mutti D, Zadnik K, Fusaro RE et al. Optical and structural development of the crystalline lens in childhood. Invest Ophthalmol Vis Sci 1998; 39: 120–123.
  • Zadnik K, Manny RE, Yu JA et al. Ocular component data in schoolchildren as a function of age and gener. Optom Vis Sci 2003; 80: 226–236. doi:10.1097/00006324-200303000-00012.
  • Gifford P, Swarbrick HA Repeatability of internal aberrometry with a new simultaneous capture aberrometer/corneal topographer. Optom Vis Sci 2012; 89: 929–938. doi:10.1097/OPX.0b013e31825017c4.
  • Hughes RPJ, Vincent SJ, Read SA et al. Higher order aberrations, refractive error development and myopia control: a review. Clin Exp Optom 2019; 103: 68–85. doi:10.1111/cxo.12960.
  • Wallman J, Winawer J Homeostasis of eye growth and the question of myopia. Neuron 2004; 43: 447–468. doi:10.1016/j.neuron.2004.08.008.
  • Thapa D, Fleck A, Lakshminarayanan V et al. Ocular wavefront aberration and refractive error in pre-school children. J Mod Opt 2011; 58: 1681–1689. doi:10.1080/09500340.2011.564316.
  • Kirwan C, O’Keefe M, Soeldner H Higher-order aberrations in children. Am J Ophthalmol 2006; 141: 67–70. doi:10.1016/j.ajo.2005.08.031.
  • He JC, Sun P, Held R et al. Wavefront aberrations in eyes of emmetropic and moderately myopic school children and young adults. Vision Res 2002; 42: 1063–1070. doi:10.1016/S0042-6989(02)00035-4.
  • Martinez AA, Sankaridurg PR, Naduvilath TJ et al. Monochromatic aberrations in hyperopic and emmetropic children. J Vis 2009; 9: 1–14. doi:10.1167/9.1.23.
  • Little JA, McCullough SJ, Breslin KMM et al. Higher order ocular aberrations and their relation to refractive error and ocular biometry in children. Invest Ophthalmol Vis Sci 2014; 55: 4791–4800. doi:10.1167/iovs.13-13533.
  • Carkeet A, Dong Luo H, Tong L et al. Refractive error and monochromatic aberrations in Singaporean children. Vision Res 2002; 42: 1809–1824. doi:10.1016/S0042-6989(02)00114-1.
  • Wang L, Dai E, Koch DD et al. Optical aberrations of the human anterior cornea. J Cataract Refract Surg 2003; 29: 1514–1521. doi:10.1016/S0886-3350(03)00467-X.
  • Miller JM, Harvey EM, Schwiegerling J Higher-order aberrations and best-corrected visual acuity in Native American children with a high prevalence of astigmatism. J AAPOS 2015; 19: 352–357e1. doi:10.1016/j.jaapos.2015.05.004.
  • Gao J, Wang XX, Wang L et al. The effect of the degree of astigmatism on optical quality in children. J Ophthalmol 2017; 2017: 1–4. doi:10.1155/2017/5786265.
  • Çakır B, Aksoy NÖ, Özmen S et al. Corneal topography, anterior segment and high-order aberration assessments in children with≥ 2 diopter astigmatism. Int Ophthalmol 2020; 40: 1461–1467. doi:10.1007/s10792-020-01313-8.
  • Wallman J, Turkel J, Trachtman J Extreme myopia produced by modest change in early visual experience. Sci (1979) 1978; 201: 1249–1251. doi:10.1126/science.694514.
  • Faul F, Erdfelder E, Lang A-G et al. G*power 3: a flexible statistical power analysis program for the social, behavioral, and biomedical sciences. Behav Res Methods 2007; 39: 175–191. doi:10.3758/BF03193146.
  • Grosvenor T, Quintero S, Perrigin DM Predicting refractive astigmatism: a suggested simplification of Javal’s rule. Am J Optom Physiol Opt 1988; 65: 292–297. doi:10.1097/00006324-198804000-00009.
  • Asgari S, Hashemi H, Jafarzadehpur E et al. OPD-Scan III: a repeatability and inter-device agreement study of a multifunctional device in emmetropia, ametropia, and keratoconus. Int Ophthalmol 2016; 36: 697–705. doi:10.1007/s10792-016-0189-4.
  • Miháltz K, Knorz MC, Alió JL et al. Internal aberrations and optical quality after femtosecond laser anterior capsulotomy in cataract surgery. J Refract Surg 2011; 27: 711–716. doi:10.3928/1081597X-20110913-01.
  • Visser N, Berendschot TTJM, Verbakel F et al. Evaluation of the comparability and repeatability of four wavefront aberrometers. Invest Ophthalmol Vis Sci 2011; 52: 1302–1311. doi:10.1167/iovs.10-5841.
  • Thibos LN, Applegate RA, Schwiegerling JT et al. Report from the VSIA taskforce on standards for reporting optical aberrations of the eye. J Refract Surg 2000; 16: 654–655. doi:10.3928/1081-597X-20000901-34.
  • Díaz JA, Fernández-Dorado J, Pizarro C et al. Zernike coefficients for concentric, circular scaled pupils: an equivalent expression. J Mod Opt 2009; 56: 149–155. doi:10.1080/09500340802531224.
  • Rauscher FG, Hiemisch A, Kiess W et al. Monochromatic ocular high‐order aberrations in children and adolescents. Ophthal Physl Opt 2023; 43: 842–859.
  • Atchison DA, Guo H, Charman WN et al. Blur limits for defocus, astigmatism and trefoil. Vision Res 2009; 49: 2393–2403. doi:10.1016/j.visres.2009.07.009.
  • Fernández-Sánchez V, Ponce ME, Lara F et al. Effect of 3rd-order aberrations on human vision. J Cataract Refract Surg 2008; 34: 1339–1344. doi:10.1016/j.jcrs.2008.04.017.
  • Brunette I, Bueno JM, Parent M et al. Monochromatic aberrations as a function of age, from childhood to advanced age. Invest Ophthalmol Vis Sci 2003; 44: 5438–5446. doi:10.1167/iovs.02-1042.
  • Atchison DA, Markwell EL, Kasthurirangan S et al. Age-related changes in optical and biometric characteristics of emmetropic eyes. Journal Of Vision 2008; 8: 29.1–20. doi:10.1167/8.4.29.
  • Neri A, Ruggeri M, Protti A et al. Dynamic imaging of accommodation by swept-source anterior segment optical coherence tomography. J Cataract Refract Surg 2015; 41: 501–510. doi:10.1016/j.jcrs.2014.09.034.
  • Shoji T, Kato N, Ishikawa S et al. Association between axial length and in vivo human crystalline lens biometry during accommodation: a swept-source optical coherence tomography study. Jpn J Ophthalmol 2020; 64: 93–101. doi:10.1007/s10384-019-00700-8.
  • Stillitano IG, Chalita MR, Schor P et al. Corneal changes and wavefront analysis after orthokeratology fitting test. Am J Ophthalmol 2007; 144: 378–386. doi:10.1016/j.ajo.2007.05.030.
  • Bakaraju RC, Ehrmann K, Ho A et al. Inherent ocular spherical aberration and multifocal contact lens optical performance. Optom Vis Sci 2010; 87: 1009–1022. doi:10.1097/OPX.0b013e3181fbad60.
  • Brennan NA, Toubouti YM, Cheng X et al. Efficacy in myopia control. Prog Retin Eye Res 2020; 27: 100923. doi:10.1016/j.preteyeres.2020.100923.
  • Cheng X, Bradley A, Hong X et al. Relationship between refractive error and monochromatic aberrations of the eye. Optom Vis Sci 2003; 80: 43–49. doi:10.1097/00006324-200301000-00007.
  • Smith G, Atchison DA The gradient index and spherical aberration of the lens of the human eye. Ophthal Physl Opt 2001; 21: 317–326. doi:10.1046/j.1475-1313.2001.00591.x.
  • Papamastorakis G, Panagopoulou S, Tsilimbaris MK et al. Ocular higher-order aberrations in a school children population. J Optom 2015; 8: 93–100. doi:10.1016/j.optom.2014.07.005.
  • Guirao A, Redondo M, Artal P Optical aberrations of the human cornea as a function of age. J Opt Soc Am A 2000; 17: 1697. doi:10.1364/JOSAA.17.001697.
  • Amano S, Amano Y, Yamagami S et al. Age-related changes in corneal and ocular higher-order wavefront aberrations. Am J Ophthalmol 2004; 137: 988–992. doi:10.1016/j.ajo.2004.01.005.
  • Cheng X, Thibos LN, Bradley A Estimating visual quality from wavefront aberration measurements. J Refract Surg 2003; 19: S579–S584. doi:10.3928/1081-597X-20030901-14.
  • Chen L, Singer B, Guirao A et al. Image metrics for predicting subjective image quality. Optom Vis Sci 2005; 82: 358–369. doi:10.1097/01.OPX.0000162647.80768.7F.
  • Tuan KA, Somani S, Chernyak DA Changes in wavefront aberration with pharmaceutical dilating agents. J Refract Surg 2005; 21: S530–S534. doi:10.3928/1081-597X-20050901-22.
  • Kim J, Lim T, Kim MJ et al. Changes of higher‐order aberrations with the use of various mydriatics. Ophthal Physl Opt 2009; 29: 602–605. doi:10.1111/j.1475-1313.2009.00675.x.
  • Hiraoka T, Miyata K, Nakamura Y et al. Influences of cycloplegia with topical atropine on ocular higher-order aberrations. Ophthalmology 2013; 120: 8–13. doi:10.1016/j.ophtha.2012.07.057.
  • Sabesan R, Jeong TM, Carvalho L et al. Vision improvement by correcting higher-order aberrations with phase plates in normal eyes. Optics Letter 2007; 32: 1000–1002. doi:10.1364/OL.32.001000.
  • Sabesan R, Zheleznyak L, Yoon G Binocular visual performance and summation after correcting higher order aberrations. Biomed Opt Express 2012; 3: 3176. doi:10.1364/BOE.3.003176.
  • Turcotte R, Liang Y, Ji N Adaptive optical versus spherical aberration corrections for in vivo brain imaging. Biomed Opt Express 2017; 8: 3891. doi:10.1364/BOE.8.003891.

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