Myopia Progression Risk: Seasonal and Lifestyle Variations in Axial Length Growth in Czech Children
Status PubMed-not-MEDLINE Jazyk angličtina Země Spojené státy americké Médium electronic-ecollection
Typ dokumentu časopisecké články
PubMed
29692929
PubMed Central
PMC5859838
DOI
10.1155/2018/5076454
Knihovny.cz E-zdroje
- Publikační typ
- časopisecké články MeSH
The growth in the prevalence of myopia leads to the growth of socioeconomic stress in society. It is important to detect any potential risk factors leading to myopia onset and progression. Among the potential risk factors, the lack of natural daylight exposure and the lack of the physical activity together with excess of near-work activities in children are the most prevalent. In the study, the axial length growth depending on the season and the type of behaviour was measured. The assessment was performed in 12-year-old children, 398 eyes of whom were included and measured during the winter and summer period. The children were categorized by the amount of time spent on near-work, physical, and outdoor activity. Results. Statistically significantly higher (p < 0.0001) axial length growth was observed during the winter period. Statistically significantly (p < 0.0001) more frequently, the eyeball growth has been proved during the winter season. According to the way of spending leisure time, no statistically significant difference was reported within the individual subgroups in the development of the eyeball length during the observed period. However, statistically significant differences were ascertained in the eyeball initial length within various groups. Conclusion. The lack of daylight exposure may lead to myopia progression.
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Holden B. A., Fricke T. R., Wilson D. A., et al. Global prevalence of myopia and high myopia and temporal trends from 2000 through 2050. Ophthalmology. 2016;123(5):1036–1042. doi: 10.1016/j.ophtha.2016.01.006. PubMed DOI
Foster P. J., Jiang Y. Epidemiology of myopia. Eye. 2014;28(2):202–208. doi: 10.1038/eye.2013.280. PubMed DOI PMC
Praveen M. R., Vasavada A. R., Jani U. D., Trivedi R. H., Choudhary P. K. Prevalence of cataract type in relation to axial length in subjects with high myopia and emmetropia in an Indian population. American Journal of Ophthalmology. 2008;145(1):176–181.e1. doi: 10.1016/j.ajo.2007.07.043. PubMed DOI PMC
Beijing Rhegmatogenous Retinal Detachment Study Group. Incidence and epidemiological characteristics of rhegmatogenous retinal detachment in Beijing, China. Ophthalmology. 2003;110(12):2413–2417. doi: 10.1016/s0161-6420(03)00867-4. PubMed DOI
Mitchell P., Hourihan F., Sandbach J., Wang J. J. The relationship between glaucoma and myopia: the Blue Mountains Eye Study. Ophthalmology. 1999;106(10):2010–2015. doi: 10.1016/S0161-6420(99)90416-5. PubMed DOI
Cui D., Trier K., Munk Ribel-Madsen S. Effect of day length on eye growth, myopia progression, and change of corneal power in myopic children. Ophthalmology. 2013;120(5):1074–1079. doi: 10.1016/j.ophtha.2012.10.022. PubMed DOI
Fulk G. W., Cyert L. A., Parker D. A. Seasonal variation in myopia progression and ocular elongation. Optometry and Vision Science. 2002;79(1):46–51. doi: 10.1097/00006324-200201000-00012. PubMed DOI
Russo A., Semeraro F., Romano M. R., Mastropasqua R., Dell’Omo R., Costagliola C. Myopia onset and progression: can it be prevented? International Ophthalmology. 2014;34(3):693–705. doi: 10.1007/s10792-013-9844-1. PubMed DOI
Muhamedagic L., Muhamedagic B., Halilovic E. A., Halimic J. A., Stankovic A., Muracevic B. Relation between near work and myopia progression in student population. Materia Socio Medica. 2014;26(2):100–103. doi: 10.5455/msm.2014.26.100-103. PubMed DOI PMC
Wu L. J., Wang Y. X., You Q. S., et al. Risk factors of myopic shift among primary school children in Beijing, China: a prospective study. International Journal of Medical Sciences. 2015;12(8):633–638. doi: 10.7150/ijms.12133. PubMed DOI PMC
Goldschmidt E., Jacobsen N. Genetic and environmental effects on myopia development and progression. Eye. 2014;28(2):126–133. doi: 10.1038/eye.2013.254. PubMed DOI PMC
Donovan L., Sankaridurg P., Ho A., et al. Myopia progression in Chinese children is slower in summer than in winter. Optometry and Vision Science. 2012;89(8):1196–1202. doi: 10.1097/OPX.0b013e3182640996. PubMed DOI PMC
https://www.timeanddate.com/sun/czech-republic/plzen?month=10&year=2017.
Katuzny B. J., Koszewska-Kolodziejczak A. Changes of axial dimensions of the eye during growth in emmetropia, myopia and hyperopia. Klinika Oczna. 2005;107(4-6):292–296. PubMed
Myopia and daylight-A combination of factors
Seasonal Variations in Ocular Axial Length Increase among Children in the Czech Republic