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Role of Corneal Screening in Pediatric Patients With Allergic Rhinoconjunctivitis: A Proactive Approach to Preventive
Kamil Bilgihan1, Lütfi Raşid Alkan1, Betül Seher Uysal1
1Ophthalmology Department, Gazi University School of Medicine, Ankara, Turkey.
Insights
Children with allergic rhinoconjunctivitis (AR) may show early corneal changes like abnormal anterior elevation. Early corneal imaging in pediatric AR patients can help detect these subtle abnormalities.
Area of Science:
- Ophthalmology
- Pediatric Allergy
- Corneal Imaging
Background:
- Allergic rhinoconjunctivitis (AR) is common in children.
- Corneal involvement in pediatric AR is not well-characterized.
Purpose of the Study:
- To characterize corneal tomographic and imaging findings in children with AR.
- To examine the correlation between these findings and the severity of ocular allergic signs and symptoms.
Main Methods:
- Prospective cross-sectional study of 402 children with AR.
- Corneal tomography (Pentacam, MS-39 AS-OCT) and biomechanical analysis (Corvis ST) were performed.
- Symptom severity was assessed using the rhinoconjunctivitis total symptom score and clinical grading of conjunctival papillary reaction.
Main Results:
- 20.7% of eyes showed suspicious or abnormal anterior corneal elevation (Df); 0.5% were diagnosed with keratoconus.
- Df values positively correlated with papillary reaction severity and total symptom score (P < 0.001).
- Eyes with abnormal Df (>1.6) had increased epithelial thickness and anterior aberrations compared to normal eyes (P < 0.001).
Conclusions:
- Children with AR can exhibit early corneal alterations, including anterior elevation, increased epithelial thickness, and anterior aberrations.
- Corneal imaging may aid in early detection of subtle abnormalities in pediatric AR.
- Routine ophthalmologic screening is important for managing pediatric allergy care.
Purpose:
To characterize corneal tomographic and imaging findings in children with allergic rhinoconjunctivitis (AR) and examine their correlation with the severity of ocular allergic signs and symptoms.
Methods:
Children diagnosed with AR by pediatric allergists were referred for ophthalmologic evaluation, including corneal tomography (Pentacam, MS-39 AS-OCT) and biomechanical analysis (Corvis ST), in this prospective cross-sectional study. The severity of allergic symptoms was assessed with the rhinoconjunctivitis total symptom score, whereas the intensity of conjunctival papillary reaction was graded clinically.
Results:
Suspicious or abnormal anterior corneal elevation (Df) was detected in 20.7% of 804 eyes evaluated from 402 pediatric cases with AR; keratoconus was diagnosed in 3 eyes of 2 patients (0.5%). A significant positive correlation was found between Df values and both severity of papillary reaction and rhinoconjunctivitis total symptom score (all P < 0.001). Patients were classified into 2 groups based on Df values. Those with a Df value within the normal range (≤1.6) were classified as group 1, whereas those with abnormal Df values (>1.6) were classified as group 2. Group 2 showed significantly increased epithelial thickness ( P < 0.001) and anterior corneal aberrations compared with group 1, whereas no significant differences were observed in corneal biomechanical indices ( P > 0.05 for all).
Conclusions:
Children with AR may exhibit early corneal alterations, particularly in anterior elevation, together with increased epithelial thickness and anterior aberrations. Incorporating corneal imaging into routine evaluation of symptomatic pediatric patients with AR could enable early detection of subtle tomographic and aberrometric abnormalities, underscoring the importance of preventive ophthalmologic screening within pediatric allergy care.
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