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A near-vision chart for children aged 3-5 years old: new designs and clinical applications
Yang-Qing Huang1, He Huang2, Rong-Zhi Huang3
1Biomedical Engineering Institute of Xi'an Jiaotong University, Xi'an 710049, Shaanxi Province, China.
Insights
A new near-vision chart using simple symbols was developed for children aged 3-5 years. This reliable chart effectively measures visual acuity and aids in detecting amblyopia risk factors in young children.
Area of Science:
- Ophthalmology
- Pediatric Optometry
- Visual Science
Background:
- Accurate near visual acuity assessment in preschool children (3-5 years) is crucial for early detection of visual impairments.
- Traditional eye charts can be challenging for young children due to letter recognition difficulties and symbol complexity.
Purpose of the Study:
- To introduce a novel near-vision chart designed for children aged 3-5 years.
- To evaluate the clinical applications and psychometric properties of this new chart for pediatric vision screening.
Main Methods:
- The chart utilizes a Bailey-Lovie layout with symmetry symbols (circle, square, triangle, cross) suitable for preschool cognitive levels.
- Optotype sizes follow a geometric progression (1.2589 rate) across 15 rows, covering a logMAR range of 1.3 to 0.1.
- Testing is conducted at 25 cm, with near visual acuity recorded in decimal or logMAR notation.
Main Results:
- The new chart meets international design guidelines and demonstrates high correlation (r=0.932) and consistency with a national standard chart.
- It shows excellent test-retest reliability (89% within 0.1 logMAR) and a high response rate in preschoolers.
- The chart effectively overcomes challenges with letter recognition and complex symbol directionality, improving engagement.
Conclusions:
- The new near-vision chart is valid and reliable for measuring near visual acuity in 3-5-year-old children.
- It is particularly suitable for identifying amblyopia risk factors and conducting low vision examinations in this age group.
- The chart is recommended for routine clinical practice in pediatric eye care.
Aim:
To introduce a new near-vision chart for children aged 3-5 years old and its clinical applications.
Methods:
The new near-vision chart which combined the Bailey-Lovie layout with a newly devised set of symmetry symbols was designed based on Weber-Fechner law. It consists of 15 rows of symmetry symbols, corresponding to a visual acuity range from 1.3 to 0.1 logMAR. The optotypes were red against a white background and were specially shaped four basic geometric symbols: circle, square, triangle, and cross, which matched the preschool children's cognitive level. A regular geometric progression of the optotype sizes and distribution was employed to arrange in 15 lines. The progression rate of the optotype size between two lines was 1.2589 and two smaller groups of optotypes ranging from 0.7 to -0.1 logMAR were included for repetitive testing. A near visual acuity was recorded in logMAR or decimal, and the testing distance was 25 cm.
Results:
This new near-vision chart with pediatric acuity test optotypes which consists of 4 different symbols (triangle, square, cross, and circle) met the national and international eye chart design guidelines. When performing the near visual acuity assessment in preschoolers (3-5 years old). It overcame an inability to recognize the letters of the alphabet and difficulties in designating the direction of black abstract symbols such as the tumbling 'E' or Landolt 'C', which the subjects were prone to lose interest in. Near vision may be recorded in different notations: decimal acuity and logMAR. These two notations can be easily converted each other in the new near-vision chart. The measurements of this new chart not only showed a significant correlation and a good consistency with the Chinese national standard logarithmic near-vision chart (r=0.932, P<0.01), but also indicated good test-retest reliability (89% of retest scores were within 0.1 logMAR units of the initial test score) and a high response rate.
Conclusion:
The results of this study support the validity and reliability of near visual acuity measurements using the new near-vision chart in children aged 3-5y over a wide range of visual acuities, and the new eye chart was especially suitable for the detection of amblyopia risk factors and low vision examination in children (3-5y of age). It can be applied in routine clinical practice.
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