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Comparison of baseline biometry measures in eyes with pediatric cataract to age-matched controls
Bharti R Nihalani1, Isdin Oke2, Deborah K VanderVeen2
1Boston Children's Hospital, Harvard Medical School, 300 Longwood Avenue, Boston, MA, 02115, USA. bharti.gangwani@childrens.harvard.edu.
Insights
Pediatric cataract eyes show greater variability in axial length and keratometry compared to healthy eyes. These findings highlight differences in ocular biometry for children with cataracts.
Area of Science:
- Ophthalmology
- Pediatric Ophthalmology
- Biometry
Background:
- Pediatric cataract is a significant cause of visual impairment in children.
- Understanding baseline ocular biometry is crucial for managing pediatric cataracts and predicting visual outcomes.
Purpose of the Study:
- To compare baseline biometry measurements, specifically axial length (AL) and keratometry (K), in eyes with pediatric cataract versus age-matched healthy controls.
- To investigate the variability and trends in AL and K in pediatric cataract eyes.
Main Methods:
- A cross-sectional study with prospective (healthy eyes) and retrospective (cataract eyes) arms.
- Biometry measurements (AL, K) were obtained using optical biometry in children aged 0-10 years.
- Statistical analysis included Wilcoxon rank-sum tests for medians and Levene's test for variances.
Main Results:
- Eyes with pediatric cataract exhibited greater variability in baseline biometry compared to controls.
- A trend towards longer AL and steeper K was observed in cataract eyes.
- Significant differences in AL means were found in the 2-4 year age group, and variances were significant across all age groups.
Conclusions:
- Baseline biometry measures are more variable in pediatric cataract eyes than in age-matched controls.
- There is a trend towards longer axial length and steeper keratometry in pediatric cataract eyes.
- Increased biometry variability may have implications for surgical planning and visual rehabilitation in pediatric cataract.
Purpose:
To compare baseline biometry measurements in eyes with pediatric cataract versus age-matched controls METHODS: This is a cross-sectional study conducted at a tertiary care hospital that included two arms-prospective arm to collect data from normal eyes and retrospective arm for eyes with pediatric cataract. In the prospective arm, biometry measurements were obtained in healthy children aged 0 to 10 years. Children under the age of four had measurements under anesthesia for an unrelated procedure, while older children had in-office measurements using optical biometry. For comparison, biometric data was collected in children with pediatric cataract through record review. One eye of each patient was randomly selected. Axial length (AL) and keratometry (K) were compared by age and laterality. The medians were compared using Wilcoxon rank-sum tests and variances using Levene's test.
Results:
There were 100 eyes in each arm, 10 eyes in each age bin of 1-year interval. There was more variability in baseline biometry in eyes with pediatric cataract and a trend for longer AL and steeper K in cataract eyes than aged-matched controls. The difference in AL means was significant in age group 2-4 years, and variances were significant across all age groups (p=0.018). Unilateral cataracts (n=49) showed a trend toward greater variability in biometry than bilateral cataracts, but this did not reach statistical significance.
Conclusion:
Baseline biometry measures are more variable in eyes with pediatric cataract compared to age-matched controls with a trend toward longer AL and steeper K.
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