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Published on: January 22, 2019
Establishment of noncycloplegic methods for screening myopia and pre-myopia in preschool children
Yao Yin1,2, Liping Li3, Ting Wang4
1Department of Ophthalmology, Fengcheng Hospital, Fengxian District, Shanghai, China.
Insights
Pre-myopia screening in young children is crucial for myopia prevention. Combining axial length/corneal curvature ratio and spherical equivalent offers accurate, non-cycloplegic screening for pre-myopia and myopia in preschoolers.
Area of Science:
- Ophthalmology
- Pediatric Optometry
- Public Health
Background:
- Pre-myopia, a precursor to myopia, poses a significant risk for vision impairment in children.
- Early detection and intervention are vital for myopia prevention, especially with increasing prevalence in younger populations.
- Limited research exists on effective myopia and pre-myopia screening methods for preschool-aged children.
Purpose of the Study:
- To develop and validate effective non-cycloplegic screening methods for myopia and pre-myopia in preschool children.
- To address the growing need for early detection strategies amidst the myopia pandemic.
Main Methods:
- A cross-sectional study involving 1,308 preschool children in Shanghai, China.
- Measurements included uncorrected distance visual acuity (UDVA), non-cycloplegic axial length (AL), and corneal curvature radius (CR).
- Logistic regression models were used to assess the accuracy of various screening parameters, including spherical equivalent (SE) and AL/CR ratio.
Main Results:
- Prevalence rates were 2.8% for myopia and 21.9% for pre-myopia.
- UDVA alone showed limited accuracy (AUC=0.52) for pre-myopia screening.
- Combining non-cycloplegic SE and AL/CR ratio achieved high accuracy (AUC=0.74 for pre-myopia, AUC=0.94 for myopia).
Conclusions:
- Non-cycloplegic screening using UDVA alone is insufficient for identifying pre-myopia and myopia in young children.
- The combination of AL/CR ratio and SE provides a highly accurate and efficient non-cycloplegic method for screening myopia and pre-myopia in preschoolers.
Purpose:
Pre-myopia, a non-myopic refractive state, is a key concern for myopia prevention because of its association with a significantly higher risk of myopia in children under 3 years of age. Amid the myopia pandemic, its onset at younger ages is increasing, yet research on screening methods for myopia and pre-myopia in preschool children remains limited. This study aimed to establish effective noncycloplegic screening methods for myopia and pre-myopia in preschool children.
Methods:
This cross-sectional study included 16 kindergartens in Shanghai, China. Uncorrected distance visual acuity (UDVA) was recorded using a logMAR visual acuity chart. Pre- and post-cycloplegic refractions were obtained using an auto-refractor (TopconKR-800). Noncycloplegic axial length (AL) and corneal curvature radius (CR) were measured using the IOL Master-700. Logistic regression models were developed to establish accurate noncycloplegic screening methods for myopia and pre-myopia.
Results:
A total of 1,308 children with a mean age of 4.3 ± 0.9 years were included; among them 640 (48.9%) were girls. The myopia prevalence rate was 2.8% (n = 36), and the prevalence of pre-myopia was 21.9% (n = 286). Pre-myopia screening (cycloplegic spherical equivalent [SE] ≤ -0.5 < SE ≤0.75 diopters [D]) using UDVA exhibited an area under the receiver operating curve (AUC) of 0.52, noncycloplegic SE had an AUC of 0.70 and AL had an AUC of 0.63. The accuracy of combining the SE and AL/CR ratio was among the best with the least number of checks used, and the AUC was 0.74 for pre-myopia screening and 0.94 for myopia screening (cycloplegic SE ≤ -0.5 D). The addition of UDVA did not further improve the accuracy.
Conclusion:
Using UDVA alone did not achieve good accuracy in pre-myopia or myopia screening of young children. Under non-cycloplegic conditions, the combination of AL/CR and SE demonstrated favorable results for pre-myopia and myopia screening of preschool children.
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