Chromatic VEP in children with congenital colour vision deficiency

Manca Tekavčič Pompe1, Branka Stirn Kranjc, Jelka Brecelj

  • 1Eye Clinic, University Medical Centre, Grablovičeva 46, Ljubljana, Slovenia. manca.tekavcic-pompe@guest.arnes.si

Insights

Chromatic visual evoked potentials (cVEP) reveal distinct patterns in children with red-green color vision deficiency. These differences highlight the impact on the parvocellular pathway, crucial for color processing.

Area of Science:

  • Neuroscience
  • Ophthalmology
  • Visual Science

Background:

  • The parvocellular visual pathway is essential for color processing.
  • Chromatic visual evoked potentials (cVEP) are used to assess this pathway.
  • Congenital color vision deficiency (CCVD) affects color perception.

Purpose of the Study:

  • To investigate cVEP characteristics in children with red-green CCVD.
  • To compare cVEP responses between color-deficient and normal-vision children.
  • To understand developmental changes in cVEP in CCVD.

Main Methods:

  • Evaluated cVEP in 15 children with red-green CCVD and 31 controls.
  • Utilized isoluminant red-green horizontal grating stimuli in an onset-offset paradigm.
  • Analyzed waveform shape, latency, and amplitude of positive (P) and negative (N) waves.

Main Results:

  • cVEP responses showed significant differences between CCVD and normal-vision children.
  • The N wave was largely absent in color-deficient children, unlike controls.
  • Amplitude (N-P) decreased with age in CCVD, contrasting with an increase in controls.

Conclusions:

  • cVEP responses are significantly altered in children with congenital red-green color vision deficiency.
  • These findings underscore the functional impact of CCVD on the parvocellular pathway.
  • cVEP can serve as a valuable tool for evaluating visual pathway function in CCVD.

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