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At least 19 recordsLinked to original sources

New dimensions in color perception.

Colors are generally ordered in three dimensions, with hue and saturation as polar coordinates of a color circle, and brightness as the third dimension. Intuitively, lines of constant hue (but variable saturation) in such a color space should converge on an achromatic point devoid of hue. However, in new experiments by Ekroll et al. using colored patches in colored surrounds, constant hue lines converge not on 'gray' but on the surround color. This paradoxical observation suggests that the standard three-dimensional conception of perceived color is inadequate.

Journal Article↗

The influence of selected light intensities on color perception within the color range of natural teeth.

A study was undertaken to evaluate the influence of light intensity on the ability to discriminate color differences within the color range of natural teeth. The results show that shade selection is not significantly affected within the range of 75 to 300 fc. Neither the specialty of the dentist nor the amount of time in practice appeared to be a factor in making color discriminations. However, 7 of the 50 dentists serving as subjects were found to be color defective, and a difference was found between their color discrimination abilities and those of normal persons. This suggests that color-defective dentists should obtain assistance when matching tooth shades.

Color↗

[Study of color perception using a new color test and desaturated panel D 15 in normal subjects and diabetics].

The authors used two tests (the Lanthony's New Color Test and the desaturated Panel D 15 test) to evaluate color vision in 235 subjects (235 eyes) of which 80 normal and 155 diabetic (85 with background retinopathy and 70 without retinopathy, as demonstrated by fluorescein angiography). The diabetic patients with maculopathy or macular oedema, with mixed or proliferative retinopathy, or with any form of advanced degenerative retinopathy were excluded from this study. The New Color Test was performed in accordance with Lanthony's standardized method, applying only the separation phase (to quantifying the color perception defect, if any) in photopic illuminance conditions at 250 lux. The desaturated Panel D 15 (qualitative classification test) has been performed at illuminance of 500 lux. Both normal and diabetic subjects were divided into two age groups (below and above 45 years) and the discriminatory value of two tests has been assessed in relation to age, diabetes and background retinopathy. The New Color Test showed a highly significant difference between normal subjects and diabetics of comparable age with background retinopathy. There was also a highly significant difference between diabetics with and without retinopathy. On the other hand, the difference between normal subjects and diabetics without retinopathy proved significant in the below-45 age group and no-significant in the above-45 age group. The results obtained in the desaturated Panel D 15 test have been similar: below the 45 years of age all differences among the three subject groups proved significant, whereas in the above-45 age group no significant differences were observed.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

[Physiologic mechanisms of the constancy of color perception].

The color constancy is the ability to recognize correctly the colours of the objects under different illuminations. For this purpose the visual system must identify the character of illumination and estimate the colour of the object, using the light reflected from this object according to the spectrum of illumination. The behavioral experiments with fishes showed that they possess the colour constancy. The electrophysiological studies on colour-coding ganglion cells showed that the simplest mechanisms of estimating the colours of objects according to illumination exist at the retinal level. The presence of colour vision facilitates the recognition of the volume form of the objects. The generally accepted view on the place and role of colour vision in the general function of the visual system of animals has to be changed on the basis of these facts.

Animals↗

Children's color perception in relation to habitat and skin color.

Developmental color perception of negroid and caucasoid children in 3 societies is examined in relation to the theories that proximity to the equator and fundus pigmentation (as measured by skin color) reduce shortwave (blue-green) in comparison with long-wave perception. The 278 4- and 8-year-old native-born, urban, English-speaking children were from latitudes 6 degrees 27' N (Enugu, Nigeria), 17 degrees 18' N (Basseterre, Saint Kitts, East Caribbean), and 34 degrees 3' N (Los Angeles, Calif.). Equal numbers of boys and girls from middle socioeconomic homes were medically examined for normal nutritional status and near vision. Children were individually tested on the Gaines Color Perception Test. The results show that short-wavelength perception is less accurate than long-wave-length perception in all locations, but most of the variance is attributable to conditions of low value or chroma stimuli rather than to proximity to the equator. There were no significant differences between Nigerian, Saint Kittitian and California caucasoid children. In accord with the pigmentation theory, young California negroid children had less accurate short-wavelength color perception than California caucasoid children. However, Nigerian and Saint Kittitian negroid children's perceptual accuracy was at least as accurate as that of caucasoid children. Amount of pigmentation does not appear to be a universal variable in children's color perception. Socioeconomic status, nutritional variables, developmental growth of the eye, or controlled stimulus conditions of the present research could account for the lack of positive relationships between color perception and habitat or skin color.

Child↗

[The characteristics of the color perceptive space in protanomals].

Color vision of three protanomal subjects was studied by means of direct paired comparison technique using 25 colors with different brightness. It was shown that the characteristics of their color vision could be completely and adequately described in the frames of the four-dimensional spherical model of color perception. The spatial axes could be identified as the two color-opponent mechanisms (red-green and blue-yellow) and the two achromatic mechanisms (brightness and darkness). Deformation of the color axes in protanomals (as compared with the normal trichromatics) was demonstrated in the "red" and "yellow" spectral region. The visual disturbance in protanomal subjects involves not only color but also achromatic mechanisms. This is manifested in the a deformation of perceptual brightness scale. In comparison with normal trichromatic subjects, the protanomals perceive the red and adjacent colors as achromatic while green, yellow-green, and orange as more bright but low-saturated colors.

Adolescent↗

Surface color perception under two illuminants: the second illuminant reduces color constancy.

This study investigates color perception in a scene with two different illuminants. The two illuminants, in opposite corners, simultaneously shine on a (simulated) scene with an opaque dividing wall, which controls how much of the scene is illuminated by each source. In the first experiment, the height of the dividing wall was varied. This changed the amount of each illuminant reaching objects on the opposite side of the wall. Results showed that the degree of color constancy decreased when a region on one side of the wall had cues to both illuminants, suggesting that cues from the second illuminant are detrimental to color constancy. In a later experiment, color constancy was found to improve when the specular highlight cues from the second illuminant were altered to be consistent with the first illuminant. This corroborates the influence of specular highlights in surface color perception, and suggests that the reduced color constancy in the first experiment is due to the inconsistent, though physically correct, cues from the two illuminants.

Color Perception↗