NEW OPPORTUNITIES OF MONITORING PATIENTS WITH MYOPIA
https://doi.org/10.21516/2072-0076-2018-11-3-30-35
Full Text:
Abstract
Purpose: to study the changes of axial length and distension of the posterior pole retina of the eye in patients with myopia, using two optical methods: contactless biometrics and optical coherence tomography (OCT). Material and methods. We conducted a combined clinical and instrumental examination of 83 patients (166 eyes) with low and moderate myopia aged 10-19 (ave. 13.8 ± 2.5 years). The examination included the measurement of axial length, using a Lenstar contactless laser biometer Lenstar, and retinal nerve fiber layer (RNFL) thickness using optical coherent tomography (OCT Stratus). 32 patients (64 eyes) with emmetropia aged 7 to 18 (ave. 11.7 ± 2.6 years) served as control. Results. The analysis of contactless biometrics and OCT results collected for 1 year helped specify four clinical groups: Myopia progression, Latent myopia progression, Myopic refractogenesis, and Stable myopia. It was also found that RNFL thickness in different retinal sectors is decreasing unevenly in latent myopia progression. To facilitate the evaluation of myopia progression, a structural indicator of progression was proposed. Conclusion. Progressing myopia monitoring by two modern optical methods: biometrics (for AL) and OCT (for RNFL thickness) enables the detection of changes in the fibrous eye capsule and identification of individual features of myopic progression. For citation: Strakhov V.V., Makhova M.V., Klimova O.N. New opportunities of monitoring patients with myopia. Russian ophthalmological journal. 2018; 11 (3): 30-5 (In Russian). doi: 10.21516/2072-0076-2018-11-3-30-35
About the Authors
V. V. Strakhov
Yaroslavl State Medical University, Yaroslavl, Russia
Russian Federation
M. V. Makhova
Eye Clinic of Innovative Technologies, Yaroslavl, Russia
Russian Federation
O. N. Klimova
Yaroslavl State Medical University, Yaroslavl, Russia
Russian Federation
References
1. Левченко О.Г. Прогрессирующая близорукость у детей. Ташкент: Медицина; 1985.
2. Левченко О.Г., Друкман А.Б. Связь анатомо-оптических и функциональных показателей глаз в процессе развития миопии. Вестник офтальмологии. 1982; 5:36-9.
3. Вургафт М.Б. О роли наследственности при миопии. Офтальмологический журнал. 1990; 4: 231-5.
4. Аветисов Э.С. Близорукость. Москва: Медицина; 1999.
5. Smith E.L. 3rd, Ramamirtham R., Qiao-Grider Y., et al. Effects of foveal ablation on emmetropization and form-deprivation myopia. Invest. Ophthalmol. Vis. Sci. 2007; 48(9): 3914-22. doi:10.1167/iovs.06-1264
6. Тарутта Е.П., Милаш С.В., Тарасова Н.А. и др. Периферическая рефракция и контур сетчатки у детей с миопией по результатам рефрактометрии и частично когерентной интерферометрии. Вестник офтальмологии. 2014; 6: 44-9.
7. Ferre C.E., Rand G., Hardy C. Refractive asymmetry in the temporal and nasal halves of the visual field. Amer. J. Ophthalmol. 1932; 15: 513-22.
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