The Effects of Eye Rubbing on Corneal Topography and Biomechanics in Children With Allergic Conjunctivitis

Xiaoguang Niu1, Aijiao Qin2, Wenbo Zhang1,2

  • 1Department of Ophthalmology, Renmin Hospital of Wuhan University, Wuhan, China.

Insights

Children with allergic conjunctivitis show altered corneal topography and biomechanics linked to eye rubbing. Frequent rubbing increases front elevation and front difference deviation, impacting the Tomographic and Biomechanical Index (TBI).

Area of Science:

  • Ophthalmology
  • Corneal Science
  • Pediatric Eye Care

Background:

  • Allergic conjunctivitis is common in children.
  • Eye rubbing is a frequent behavior in affected children.
  • The impact of eye rubbing on corneal structure in pediatric allergic conjunctivitis is not fully understood.

Purpose of the Study:

  • To characterize corneal topographic and biomechanical changes in children with allergic conjunctivitis.
  • To evaluate the association between eye rubbing frequency and these corneal alterations.
  • To understand the mediating role of eye rubbing in corneal changes.

Main Methods:

  • Cross-sectional study of children aged 8-14 with allergic conjunctivitis and healthy controls.
  • Ophthalmologic examination, corneal topography, and corneal biomechanics assessment.
  • Correlation and mediation analyses between eye rubbing frequency and corneal parameters.

Main Results:

  • Children with allergic conjunctivitis showed higher front elevation (Fe) and front difference deviation (Df).
  • Corneal biomechanics revealed lower first applanation length (A1L) and stiffness parameter (SP-A1) in the allergic group.
  • Fe and Df correlated positively with eye rubbing frequency and mediated its effect on the Tomographic and Biomechanical Index (TBI).

Conclusions:

  • Children with allergic conjunctivitis exhibit distinct corneal topographic abnormalities.
  • Eye rubbing frequency is associated with these changes and influences TBI through specific topographic parameters.
  • Early detection of these changes can guide interventions to mitigate corneal deformation risk.
Abstract