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Related Experiment Video

Updated: Oct 13, 2025

Author Spotlight: Unraveling the Pathogenesis of Age-Related Macular Degeneration and Discovering Potential Therapies
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Pre- and Postnatal Damage to the Retro-Geniculate Visual Pathways Cause Retinal Degeneration Predictive for Visual

Finn Lennartsson1,2, HannaMaria Öhnell3, Lena Jacobson4

  • 1Diagnostic Radiology, Department of Clinical Sciences, Lund University, Lund, Sweden.

Frontiers in Human Neuroscience
|November 12, 2021
PubMed
Summary

Brain injuries affecting the optic radiation in youth can cause vision problems. However, the immature visual system shows remarkable plasticity, sometimes preserving central vision despite retinal thinning.

Keywords:
brain developmentcerebral visual impairment (CVI)optic radiationoptical coherence tomographyplasticityretinal degenerationvisual field defectvisual system

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Area of Science:

  • Neuroscience
  • Ophthalmology
  • Developmental Biology

Background:

  • Understanding the structure-function relationship in pediatric brain injury is crucial.
  • Visual system development and its vulnerability to damage are key areas of research.
  • Cerebral visual impairment (CVI) classification needs refinement for pediatric cases.

Purpose of the Study:

  • To investigate the impact of optic radiation (OR) damage at different visual system maturation stages.
  • To correlate structural changes in the visual pathway with functional visual field (VF) deficits.
  • To evaluate optical coherence tomography (OCT) as a diagnostic tool for retro-chiasmal visual pathway damage in children.

Main Methods:

  • Diffusion-weighted magnetic resonance imaging (MRI) and fiber tractography of the OR.
  • Optical coherence tomography (OCT) to assess peripapillary retinal nerve fiber layer (pRNFL) and macular ganglion cell + inner plexiform layer (GC+IPL).
  • Humphrey Field Analyzer (HFA) for visual field (VF) function assessment.

Main Results:

  • Immature OR injuries correlated with pRNFL and GC+IPL thinning and VF defects, regardless of injury timing.
  • Bilateral white-matter damage of immaturity (WMDI) showed preserved central VF despite GC+IPL thinning, suggesting plasticity.
  • Unilateral damage, acquired pre- or postnatally, typically resulted in affected central VF.

Conclusions:

  • OCT is a valuable tool for assessing children with retro-geniculate visual pathway damage.
  • Focal GC+IPL thinning is a predictor of VF defects in pediatric CVI.
  • The immature visual system exhibits significant plasticity, influencing functional outcomes after OR injury.