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April 4, 2026Journal of Vision3 citationsOpen Access

Asymmetries in hue percepts and early cortical color coding: Evidence from chromatic visual evoked potentials

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JMJesse R. MacyczkoOKOsman B. KavcarMCMichael A. Crognale

Key Points

  • This research aims to examine the asymmetries in hue percepts and their presence in early cortical color coding using visual evoked potentials.
  • Comparison of hue differences using visual evoked potentials from the occipital cortex.
  • Stimuli included spatial gratings varying sinusoidally in hue within the cone-opponent plane.
  • Measured amplitude of frequency-tagged signals and behavioral responses in a contrast matching task.
  • Stronger responses recorded for hue separations near the yellow quadrant compared to others.
  • Responses were larger for the yellow quadrant than the blue quadrant.
  • Asymmetries in VEP responses match previous findings in hue scaling functions.

Abstract

Hue percepts vary more rapidly along some directions in color space (e.g., near yellow) than others (e.g., near green), with corresponding differences in the size or stimulus range of different hue categories. The basis for these differences is not known. We examined whether the asymmetries are present in early cortical color coding by comparing the strength of hue differences using visual evoked potentials (VEPs) recorded from the occipital cortex. Stimuli were spatial gratings with a fixed nominal contrast in the cone-opponent plane that varied sinusoidally in hue rather than saturation. The responses to different levels of hue separation were measured by the amplitude of the frequency-tagged signals and also in behavioral measurements employing a contrast matching task. For both, the same separation in hue angle resulted in stronger responses for angular differences centered on the yellow quadrant of the cone-opponent space. Responses were also larger for the yellow than blue quadrant, ruling out a general sensitivity loss to the blue-yellow axis as the basis for the differences. The response differences paralleled the asymmetries in the rates of change in color appearance based on analyses of previous measures of hue scaling functions. The presence of these asymmetries in the VEP responses suggests that they arise relatively early in the cortical sensory representation of color rather than emerging late as a product of inference or color category learning.

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Cite This Study

Macyczko et al. (2026) studied this question.

synapsesocial.com/papers/69d0aefd659487ece0fa4ef1https://doi.org/10.1167/jov.26.4.3
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