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The Myopia Progression in School-Age Children after Home Quarantine Due to COVID-19

https://doi.org/10.18008/1816-5095-2021-4-922-925

Abstract

Myopia is an actual health issue in the world. The World Health Organization estimates that 50 % of the world population may be myopic by 2050. In response to the coronavirus disease 2019 (COVID-19) outbreak, the Russian government started a nationwide school closure as an emergency measure to prevent spreading of the infection since the 23rd of March 2020. The present study was organized to investigate prevalence of myopia in school-aged children during the COVID-19 home confinement in Moscow. The studied group included school-age children: pupils of 1, 5, 11th classes. The inclusion criteria were: myopia — refraction above –0.5 D in conditions of cycloplegia. The results of survey 523 pupils from Moscow schools, the proportion of patients with myopia was 20.1 %, while the proportion of patients with myopia among 1st class pupils was only 8.3 %. In 5th class, the rate was 16 %, in the 11th grade reached 42.1 %, i.e. increased more than 5 times. The trend with an increase in the number of children with myopia in the learning process is explained by the increased visual load of the high school curriculum. Home confinement during the COVID-19 pandemic appeared to be associated with a significant myopic shift for children aged 6 to 8 years due to the visual load increase in and a decrease in time spent outdoors. Further research is needed to evaluate these results and long-term follow-up of these children.

About the Authors

E. Yu. Markova
S. Fyodorov Eye Microsurgery Federal State Institution
Russian Federation

Markova Elena Yu., MD, head of the microsurgery department and eye functional rehabilitation in children

Beskudnikovsky blvd, 59A, Moscow, 127486



R. S. Isabekov
S. Fyodorov Eye Microsurgery Federal State Institution
Russian Federation

Isabekov Ruslan S., resident

Beskudnikovsky blvd, 59A, Moscow, 127486



L. V. Venediktova
Children’s Polyclinic № 12, Branch № 1
Russian Federation

Venediktovа Lyubov’ V., ophthalmologist

Eletskaya str., 35, bld. 1, Moscow, 115583



References

1. Morgan I.G., Ohno-Matsui K., Saw S.M. Myopia. Lancet. 2012;379(9827):1739– 1748. DOI: 10.1016/S0140-6736(12)60272-4

2. Holden B., Mariotti S., Kocur I. The impact of myopia and high myopia: report of the Joint WHO–Brien Holden Vision Institute, Global Scientific Meeting on Myopia. 2015. ISBN 978-92-4-151119-3

3. He M., Xiang F., Zeng Y. Effect of time spent outdoors at school on the development of myopia among children in China: a randomized clinical trial. JAMA. 2015;314(11):1142–1148. DOI: 10.1001/jama.2015.10803

4. Lingham G., Mackey D.A., Lucas R., Yazar S. How does spending time outdoors protect against myopia? a review. Br J Ophthalmol. 2020;104(5):593–599. DOI: 10.1136/bjophthalmol-2019-314675

5. Wen L., Cao Y., Cheng Q. Objectively measured near work, outdoor exposure and myopia in children. Br J Ophthalmol. 2020;104(11):1542–1547. DOI: 10.1136/ bjophthalmol-2019-315258

6. Pellegrini M., Bernabei F., Scorcia V., Giannaccare G. May home confinement during the COVID-19 outbreak worsen the global burden of myopia? Graefes Arch Clin Exp Ophthalmol. 2020;258(9):2069–2070. DOI: 10.1007/s00417-02004728-2

7. Navel V., Beze S., Dutheil F. COVID-19, sweat, tears… and myopia? Clin Exp Optom. 2020;103(4):555. DOI: 10.1111/cxo.13086

8. Markova E.Yu., Pronko N.A., Aminulla L.V., Venediktova L.V., Bezmelnitsyna L.Yu. On the question of school myopia. Оphthalmology in Russia = Oftal’mologiya.. 2018;15(1):87–91 (In Russ.). DOI: 10.18008/1816-5095-2018-1-87-91

9. Vorontsova T.N. The results of drug therapy of habitually excessive stress of accommodation in children and students. Russian ophthalmological journal = Rossiyskiy oftal’mologicheskiy zhurnal. 2016;9(2):18–21 (In Russ.). DOI: 10.21516/20720076-2016-9-2-18-21

10. Markova E.Yu., Matveev A.V., Ulshina L.V., Venediktova L.V. An integrated approach to the treatment of accommodative disorders in children. Overview. Оphthalmology in Russia = Oftal’mologiya. 2012;9(4):27–30 (In Russ.). DOI: 10.18008/1816-5095-2012-4-27-30

11. Antipova Yu.N., Kalenich L.A. The results of using a 2.5 % solution of irifrin in the treatment of myopia in schoolchildren. Point of view. EastWest = Tochka zrenija. Vostok — Zapad. 2014;1:206 (In Russ.).

12. Tarutta E.P., Iomdina E.N., Tarasova N.A., Filinova O.B. An impact of 2.5 % irifrin on the parameters of accommodation and dynamics of refraction in patients with progressive myopia. Russian ophthalmological journal = Rossiyskiy oftal’mologicheskiy zhurnal. 2010;3(2):30–33 (In Russ.).

13. Chen C.-A., Lin P.-Y., Wu P.-C. Treatment effect of posterior scleral reinforcement on controlling myopia progression: A systematic review and meta-analysis. PLoS ONE 2020;15(5):e0233564. DOI: 10.1371/journal.pone.0233564

14. Miao Z. Modified Posterior Scleral Reinforcement as a Treatment for High Myopia in Children and Its Therapeutic Effect. BioMed Research International, 2019. Volume 2019 Article ID 5185780 DOI: 10.1155/2019/5185780

15. Iomdina E.N., Daragan V.A., Ilyina E.E. Certain biomechanical properties and crosslinking of the sclera shell of the eye in progressive myopia. Proceedings of XIVth congress on biomechanics. Paris: International Society of Biomechanics. 1993. P. 616–617.


Review

For citations:


Markova E.Yu., Isabekov R.S., Venediktova L.V. The Myopia Progression in School-Age Children after Home Quarantine Due to COVID-19. Ophthalmology in Russia. 2021;18(4):922-925. (In Russ.) https://doi.org/10.18008/1816-5095-2021-4-922-925

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ISSN 1816-5095 (Print)
ISSN 2500-0845 (Online)