Polianskiĭ V B, Evtikhin D V, Sokolov E N
Lomonosov State University, Moscow.
Zh Vyssh Nerv Deiat Im I P Pavlova. 2000 Sep-Oct;50(5):843-54.
The visual evoked potentials to a change in color stimuli were studied. The amplitude of the N85 component was correlated with color discrimination. In cases when the brightness of one color was fixed and that of the other one changed, the amplitude dynamics of N85 was V-shaped with the minimum corresponding to the point of equal brightness of both colors. The N85 amplitude in this point serves as a measure of discrimination between stimuli chromaticity. The perceptual color space in rabbit (possessing two cone pigments) was constructed in accordance with the amplitudes of N85 to color change. This space represented a hypersphere in the four-dimensional Euclidean space. The perceptual spaces for brightness and color reconstructed on the basis of conditioning probabilities and N85 amplitudes evoked by replacement of colored and achromatic stimuli were shown to coincide. This suggests the common mechanism of the vector color coding.
研究了对颜色刺激变化的视觉诱发电位。N85成分的振幅与颜色辨别相关。当一种颜色的亮度固定而另一种颜色的亮度变化时,N85的振幅动态呈V形,最小值对应于两种颜色亮度相等的点。该点处的N85振幅用作刺激色度辨别力的度量。根据对颜色变化的N85振幅构建了兔(具有两种视锥色素)的感知颜色空间。该空间在四维欧几里得空间中表示为一个超球体。基于条件概率和由彩色与非彩色刺激替代所诱发的N85振幅重建的亮度和颜色感知空间显示是一致的。这表明了矢量颜色编码的共同机制。