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Updated: Jul 26, 2025

Binocular Dynamic Visual Acuity in Eyeglass-Corrected Myopic Patients
Published on: March 29, 2022
Relative peripheral hyperopia leads to greater short-term axial length growth in White children with myopia
Rebecca E Leighton1, Karen M Breslin1, Patrick Richardson1
1Centre for Optometry and Vision Science Research, School of Biomedical Sciences, Ulster University, Coleraine, UK.
Insights
Peripheral hyperopic relative peripheral refraction (RPR) in the nasal retina indicates a higher risk of axial elongation in myopic children. This finding may aid in myopia management decisions.
Area of Science:
- Ophthalmology
- Pediatric Ophthalmology
- Optometry
Background:
- Childhood myopia is a growing concern with ongoing debate about the role of peripheral visual input.
- Understanding factors influencing myopia progression is crucial for effective intervention.
Purpose of the Study:
- To investigate the relationship between relative peripheral refraction (RPR) and changes in refractive error and axial length (AL) over 12 months.
- To evaluate these associations in White children aged 6-7 and 12-13 years with varying refractive errors.
Main Methods:
- Longitudinal observational study involving 222 children aged 6-7 and 245 aged 12-13 years.
- Cycloplegic autorefraction and axial length (AL) measurements were taken at baseline and after 12 months.
- Relative peripheral refraction (RPR) was calculated by comparing central and peripheral refractive measurements.
Main Results:
- Myopic eyes exhibited more hyperopic RPR compared to emmetropic or hyperopic eyes.
- A significant association was found between more hyperopic nasal RPR and greater axial elongation in myopic teens (p=0.04).
- Each diopter of nasal relative peripheral hyperopia correlated with an additional 0.10 mm annual increase in AL.
Conclusions:
- Hyperopic RPR in the nasal retina of myopic children is a potential indicator of accelerated axial elongation.
- This metric may assist clinicians in making informed decisions for myopia management strategies.
Purpose:
Controversy exists regarding the influence of peripheral visual experience on the onset and progression of childhood myopia. This longitudinal, observational study evaluated the relationship between relative peripheral refraction (RPR) and changes in refractive error and axial length (AL) over 12 months in White children aged 6-7 and 12-13 years with a range of baseline refractive errors.
Methods:
Cycloplegic baseline autorefraction at horizontal retinal eccentricities of 0° and ±30° were recorded with the Shin-Nippon NVision-K 5001 while AL was measured using the Zeiss IOLMaster 700. Measurements were repeated after 12 months on a subgroup. Refractive data were transposed into power vectors as mean spherical equivalent (M), J0 and J45 . RPR was calculated by subtracting central from peripheral measurements. Participants were defined as myopic (M ≤ -0.50 D), premyopic (-0.50 D < M ≤ +0.75 D), emmetropic (+0.75 D < M < +2.00 D) or hyperopic (M ≥ +2.00 D).
Results:
Data were collected from 222 and 245 participants aged 6-7 and 12-13 years, respectively. Myopic eyes demonstrated, on average, more hyperopic RPR. Emmetropes and premyopes displayed emmetropic RPR, and hyperopes showed a myopic RPR. Fifty-six 6- to 7-year-olds and seventy 12- to 13-year-olds contributed 12-month repeated measures. Longitudinal data demonstrated a significant relationship between a more hyperopic RPR in the nasal retina and greater short-term axial elongation in teens with myopia at baseline (β = 0.69; p = 0.04). Each dioptre of relative peripheral hyperopia in the nasal retina was associated with an additional 0.10 mm (95% CI: 0.02-0.18 mm) annual increase in AL.
Conclusions:
Hyperopic RPR in the nasal retina of myopic children is indicative of increased risk for rapid axial elongation and may be a useful metric to support decision-making in myopia management.
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