Optic Atrophy From Retrograde Transsynaptic Axonal Degeneration Following Pediatric Brain Injury

Jack Jonathan Maran1, Cynthia Sharpe, David Perry

  • 1Buchanan Ocular Therapeutics Unit (JJM), Department of Ophthalmology, New Zealand National Eye Centre, University of Auckland, Auckland, New Zealand; Faculty of Medical and Health Sciences (JJM, CS, HVD-M, SH), University of Auckland, Auckland, New Zealand; Departments of Pediatric Neurology (CS) and Pediatric Radiology (DP), Starship Children's Health, Te Whatu Ora, Health New Zealand, Auckland, New Zealand; and Department of Ophthalmology (HVD-M, SH), Greenlane Clinical Centre, Te Whatu Ora, Health New Zealand, Auckland, New Zealand.

Insights

Optic atrophy in children with brain lesions shows significant retinal nerve fiber layer thinning, especially in temporal sectors. Bitemporal optic disc pallor suggests underlying intracranial pathology requiring neuroimaging.

Area of Science:

  • Ophthalmology
  • Pediatric Neurology
  • Neuroscience

Background:

  • Retrograde transsynaptic degeneration (RTSD) patterns causing optic atrophy in children are not well-defined.
  • Pediatric optic atrophy linked to focal intracerebral lesions requires further characterization.

Purpose of the Study:

  • To characterize the patterns of optic atrophy in pediatric patients with focal intracerebral lesions.

Main Methods:

  • Retrospective review of pediatric patients with optic atrophy and focal intracerebral lesions.
  • Ophthalmic data collection: visual acuity, color vision, visual fields, and optical coherence tomography (OCT) of peripapillary retinal nerve fiber layer (pRNFL) and ganglion cell layer.

Main Results:

  • Six pediatric patients (83.33% male) were included. Mean visual acuity was 0.30 logMAR (20/40 Snellen) in all eyes.
  • Bitemporal optic disc pallor observed in 5/6 patients. OCT revealed significant pRNFL thinning in temporal, inferotemporal, and superotemporal sectors.
  • Average pRNFL thickness was significantly reduced in both ipsilateral and contralateral eyes compared to normative data.

Conclusions:

  • Optic atrophy in children, especially with bitemporal presentation, warrants neuroimaging.
  • Identifying optic atrophy patterns aids in diagnosing underlying serious intracranial pathology in pediatric cases.
Abstract

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