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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.
Abstract:
Visual evoked potentials to chromatic stimulus (cVEP) are believed to selectively test the parvocellular visual pathway which is responsible for processing information about colour. The aim was to evaluate cVEP in children with red-green congenital colour vision deficiency. VEP responses of 15 colour deficient children were compared to 31 children with normal colour vision. An isoluminant red-green stimulus composed of horizontal gratings was presented in an onset-offset manner. The shape of the waveform was studied, as well as the latency and amplitude of positive (P) and negative (N) waves. cVEP response did not change much with increased age in colour deficient children, whereas normative data showed changes from a predominantly positive to a negative response with increased age. A P wave was present in 87% of colour deficient children (and in 100% of children with normal colour vision), whereas the N wave was absent in a great majority of colour deficient children and was present in 80% of children with normal colour vision. Therefore, the amplitude of the whole response (N-P) decreased linearly with age in colour deficient children, whereas in children with normal colour vision it increased linearly. P wave latency shortened with increased age in both groups. cVEP responses differ in children with congenital colour vision deficiency compared to children with normal colour vision.
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