The site of the Media Sphera Publishers contains materials intended solely for healthcare professionals.
By closing this message, you confirm that you are a certified medical professional or a student of a medical educational institution.

Tarutta E.P.

FGBU "Moskovskiĭ NII glaznykh bolezneĭ im. Gel'mgol'tsa" Minzdrava RF

Proskurina O.V.

Helmholtz Moscow Research Institute of Eye Diseases, 14/19 Sadovaya-Chernogryazskaya St., Moscow, Russian Federation, 105062

Tarasova N.A.

FGBU "Moskovskiĭ NII glaznykh bolezneĭ im. Gel'mgol'tsa" Minzdrava Rossii

Milash S.V.

FGBU "Moskovskiĭ NII glaznykh bolezneĭ im. Gel'mgol'tsa" Minzdrava Rossii

Markosian G.A.

FGBU "Moskovskiĭ NII glaznykh bolezneĭ im. Gel'mgol'tsa" Minzdrava RF

Long-term results of perifocal defocus spectacle lens correction in children with progressive myopia

Authors:

Tarutta E.P., Proskurina O.V., Tarasova N.A., Milash S.V., Markosian G.A.

More about the authors

Journal: Russian Annals of Ophthalmology. 2019;135(5): 46‑53

Read: 451 times


To cite this article:

Tarutta EP, Proskurina OV, Tarasova NA, Milash SV, Markosian GA. Long-term results of perifocal defocus spectacle lens correction in children with progressive myopia. Russian Annals of Ophthalmology. 2019;135(5):46‑53. (In Russ.)
https://doi.org/10.17116/oftalma201913505146

Recommended articles:
Correction of myopia with implantable collamer lenses. Russian Annals of Ophthalmology. 2025;(2):5-15
Microbiota of the ocular surface in children with myopia. Russian Annals of Ophthalmology. 2025;(3):5-12

References:

  1. Avetisov ES, Rozenblum YuZ. What should be the optical correction of myopia? (To the end of the discussion). Vestnik oftal’mologii. 1970;6:31-36. (In Russ.)
  2. Chung K, Mohidin N, O’Leary DJ. Undercorrection of myopia enhances rather than inhibits myopia progression. Vision Research. 2002;42:2555-2559. https://doi.org/10.1016/S0042-6989(02)00258-4
  3. Sun YY, Li SM, Li SY, Kang MT, Liu LR, Meng B, Zhang FJ, Millodot M, Wang N. Effect of uncorrection versus full correction on myopia progression in 12-year-old children. Graefe’s Archive for Clinical and Experimental Ophthalmology. 2017;255(1):189-195. https://doi.org/10.1007/s00417-016-3529-1
  4. Wallman J, Winawer J. Homeostasis of Eye Growth and Question of Myopia. Neuron. 2004;43(4):447-468. https://doi.org/10.1016/j.neuron.2004.08.008
  5. Smith EL 3rd, Kee CS, Ramamirtham R, Qiao-Grider Y, Hung LF. Peripheral vision can influence eye growth and refractive development in infant monkeys. Investigative Opthalmology and Visual Science. 2005;46(11):3965-3972. https://doi.org/10.1167/iovs.05-0445
  6. Smith EL 3rd, Huang J, Hung LF, Blasdel TL, Humbird TL, Bockhorst KH. Hemiretinal form deprivation: evidence for local control of eye growth and refractive development in infant monkeys. Investigative Opthalmology and Visual Science. 2009;50:5057-5069. https://doi.org/10.1167/iovs.08-3232
  7. Hoogerheide J, Rempt F, Hoogenboom WP. Acquired myopia in young pilots. Ophthalmologica. 1971;163:209-215.
  8. Mutti DO, Hayes JR, Mitchell GL, Jones LA, Moeschberger ML, Cotter SA, Kleinstein RN, Manny RE, Twelker JD, Zadnik K. Refractive error, axial length, and relative peripheral refractive error before and after the onset of myopia. The CLEERE Study Group. Investigative Opthalmology and Visual Science. 2007;48:2510-2519. https://doi.org/10.1167/iovs.06-0562
  9. Tarutta EP, Iomdina EN, Toloraya RR, Kruzhkova GV. The Dynamics of Peripheral Refraction and Eye Shape in Children with Progressive Myopia Wearing Orthokeratology Lenses. Rossijskij oftal’mologicheskij zhurnal. 2016;9(1):62-66. (In Russ.)
  10. Tarutta EP, Verzhanskaya TYu. Stabilizing effect of orthokeratology lenses (ten-year follow-up results). Vestnik oftal’mologii. 2017;133(1):49-54. (In Russ.) https://doi.org/10.17116/oftalma2017133149-54
  11. Neroev VV, Tarutta EP, Khandzhyan AT, Khodzhabekyan NV, Milash SV. Difference in profile of peripheral defocus after orthokeratology and eximer laser correction of myopia. Rossijskij oftal’mologicheskij zhurnal. 2017;10(1):31-35. (In Russ.)
  12. Bullimore M. Myopia control: the time is now. Ophthalmic and Physiological Optics. 2014;34(3):263-266. https://doi.org/10.1111/opo.12130
  13. Wen D, Huang J, Chen H, Bao F, Savini G, Calossi A, Chen H, Li X, Wang Q. Efficacy and acceptability of orthokeratology for slowing myopic progression in children: a systematic review and meta-analysis. Journal of Ophthalmology. 2015;360806:12. https://doi.org/10.1155/2015/360806
  14. Smith G, Atchison DA, Avudainayagam C, Avudainayagam K. Designing lenses to correct peripheral refractive errors of the eye. Journal of the Optical Society of America. A, Optics, Image Science, and Vision. 2002;19(1):10-18. https://doi.org/10.1364/josaa.19.000010
  15. Tabernero J, Vazquez D, Seidemann A, Uttenweiler D, Schaeffel F. Effects of myopic spectacle correction and radial refractive gradient spectacles on peripheral refraction. Vision Research. 2009;49(17):2176-2186. https://doi.org/10.1016/j.visres.2009.06.008
  16. Tarutta EP, Ibatulin RA, Milash SV, Tarasova NA, Proskurina OV, Smirnova TS, Markosyan GA, Epishina MV, Kovychev AS. Influence of glasses «Perifocal» on peripheral defocus and myopia progression in children. Rossijskaya pediatricheskaya oftal’mologiya. 2014;9(4):53(In Russ.)
  17. Tarutta EP, Proskurina OV, Milash SV, Ibatulin RA, Tarasova NA, Kovychev AS, Smirnova TS, Markosyan GA, Khodzhabekyan NV, Maksimova MV, Penkina AV. Peripheral defocus induced by «Perifocal-M» spectacles and myopia progression in children. Rossijskaya pediatricheskaya oftal’mologiya. 2015;10(2):33-37. (In Russ.)
  18. Aller TA, Liu M, Wildsoet CF. Myopia control with bifocal contact lenses: a randomized clinical trial. Optometry and Vision Science. 2016;93(4):344-352. https://doi.org/10.1097/OPX.0000000000000808
  19. Proskurina OV, Parfenova NP. Fitting and prescription soft individual of soft individual defocus lenses for myopia control. Sovremennaya optometriya. 2017;9(109):12-19. (In Russ.)
  20. Walline JJ, Gaume Giannoni A, Sinnott LT, Chandler MA, Huang J, Mutti DO, Jones-Jordan LA, Berntsen DA; BLINK Study Group. A randomized trial of soft multifocal contact lenses for myopia control: baseline data and methods. Optometry and Vision Science. 2017;94(9):856-866. https://doi.org/10.1097/OPX.0000000000001106
  21. Sankaridurg P, Donovan L, Varnas S, Ho A, Chen X,Martinez A, Fisher S, Lin Z, Smith EL III, Ge J, Holden B. Spectacle lenses designed to reduce progression of myopia: 12-month results. Optometry and Vision Science. 2010;87(9):631-641. https://doi.org/10.1097/OPX.0b013e3181ea19c7
  22. Berntsen DA, Barr CD, Mutti DO, Zadnik K. Peripheral defocus and myopia progression in myopic children randomly assigned to wear single vision and progressive addition lenses. Investigative Opthalmology and Visual Science. 2013;54(8):5761-5770. https://doi.org/10.1167/iovs.13-11904
  23. The COMET Group. Myopia stabilization and associated factors among participants in the correction of myopia evaluation trial (COMET). Investigative Opthalmology and Visual Science. 2013;54(13):7871-7884. https://doi.org/10.1167/iovs.13-12403

Email Confirmation

An email was sent to test@gmail.com with a confirmation link. Follow the link from the letter to complete the registration on the site.

Email Confirmation

We use cооkies to improve the performance of the site. By staying on our site, you agree to the terms of use of cооkies. To view our Privacy and Cookie Policy, please. click here.