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Anterior Segment Biometry and Their Correlation with Corneal Biomechanics in Caucasian Children
Inmaculada Bueno-Gimeno1, Noelia Martínez-Albert1, Andrés Gené-Sampedro1
1a Department of Optics and Optometry and Vision Sciences , University of Valencia , Spain.
Insights
Corneal hysteresis (CH) and corneal resistance factor (CRF) in children are linked to axial length (AL), central corneal thickness (CCT), and corneal volume (CV). CCT and CV were the most significant factors influencing these corneal biomechanical parameters.
Area of Science:
- Ophthalmology
- Biomedical Engineering
- Pediatric Optometry
Background:
- Corneal biomechanics are crucial for refractive error development and progression.
- Understanding these parameters in children is vital for early detection of potential vision issues.
Purpose of the Study:
- To investigate the association between corneal biomechanical properties and anterior segment parameters in healthy Caucasian children.
- To identify key factors influencing corneal hysteresis (CH) and corneal resistance factor (CRF) in pediatric populations.
Main Methods:
- Evaluated 293 healthy children (ages 6-17) using Ocular Response Analyzer for CH and CRF.
- Measured axial length (AL) with IOLMaster and anterior segment parameters (CCT, CV, ACD, ACV, keratometry) with Pentacam.
- Employed multiple linear regression models to analyze associations between CH/CRF and anterior segment parameters.
Main Results:
- CH and CRF showed negative correlations with AL and positive correlations with CCT and CV.
- Anterior chamber depth (ACD), anterior chamber volume (ACV), and mean keratometry did not correlate with CH or CRF.
- Central corneal thickness (CCT) explained more variability in CH (22.1%) and CRF (30.9%) compared to corneal volume (CV).
Conclusions:
- Corneal hysteresis and corneal resistance factor are positively correlated with central corneal thickness and corneal volume, and negatively with axial length in children.
- Corneal parameters, particularly CCT, are significant predictors of corneal biomechanical properties in healthy pediatric eyes.
Purpose:
To assess the relationship between the corneal biomechanical parameters and the anterior segment parameters in Caucasian children.
Methods:
This study included 293 eyes from 293 healthy children aged between 6 and 17 years. Corneal hysteresis (CH) and corneal resistance factor (CRF) were evaluated with the Ocular Response Analyzer, axial length (AL) with IOLMaster and the anterior segment with Pentacam. Anterior segment parameters obtained were the following: central corneal thickness (CCT), corneal volume (CV), anterior chamber depth (ACD), anterior chamber volume (ACV) and mean anterior and posterior keratometry. Two multiple linear regression models were constructed to assess the association between CH and CRF with anterior segment parameters. A value of p < 0.05 was taken as the criterion for statistical significance in all analyses.
Results:
The mean CH and CRF were 12.12 ± 1.71 and 12.30 ± 1.89 mmHg, respectively. Multiple linear regression revealed that CH and CRF were associated negatively with AL in both models, and positively with CCT and CV in the first and second model, respectively. Meanwhile ACD, ACV or mean keratometry did not correlated with CH and CRF. Moreover, when CCT was in the model, it explained more variability for both CH (22.1%) and CRF (30.9%) than when CV was included (16.2% for CH and 16.5% for CRF).
Conclusions:
CH and CRF were correlated positively with CCT and CV, and negatively with AL in healthy Caucasian children. Moreover, corneal parameters were the most contributory variables to CH and CRF changes.
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