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Biomedical subjects

B Stabell

Publications and source records attributed to B Stabell.

At least 37 records · Page 2Linked to original sources

Extrafoveal spectral sensitivity during dark adaptation.

The extrafoveal spectral sensitivity function was measured during dark adaptation at different intensity levels above the cone plateau of the long-term dark-adaptation curve using both flicker and heterochromatic brightness-matching techniques. During most of the cone-plateau period, the spectral sensitivity function was found to be photopic in form at all the intensity levels employed. In the dark-adapted state, the two psychophysical techniques appeared to measure different processes. Thus, the flicker technique yielded a spectral sensitivity function which was basically scotopic in form at all the intensity levels employed while the spectral sensitivity function obtained with the brightness technique was basically photopic in form. It is suggested that, in a dark-adapted state, both rods and cones contribute to the brightness response at each wavelength over the major portion of the spectrum for a long transitional intensity range when the brightness technique is used. The flicker technique, on the other hand, appears to single out the rod activity.

Adaptation, Ocular↗

Variation in density of macular pigmentation and in short-wave cone sensitivity with eccentricity.

Using both absolute threshold and flicker techniques, we measured the relative spectral sensitivity at different eccentricities during the cone-plateau period of the long-term dark-adaptation curve. With both techniques the relative spectral sensitivity tended to increase with eccentricity in the short-wave region of the spectrum. The results suggest that the relatively high short-wave sensitivity of the extrafovea obtained with the threshold technique, is due both to variation in density of macular pigmentation nd in short-wave cone sensitivity, while the relatively high short-wave sensitivity obtained with the flicker technique is due to variation in density of macular pigmentation alone. The results were used as a basis for analyzing the variation in density of macular pigmentation and in short-wave cone sensitivity with eccentricity.

Color↗

Spectral sensitivity in the far peripheral retina.

Relative spectral sensitivity was measured at different intensity levels 45 degrees temporally during the cone-plateau period and in a dark-adapted state. Both heterochromatic brightness matching, flicker photometry, and threshold measurements were employed. The relative spectral sensitivity obtained during the cone-plateau period was found to coincide closely with the foveal luminosity function in the long and medium regions of the spectrum irrespective of intensity and method employed, suggesting that the relative spectral sensitivities and the weighted contributions of the long- and medium-wavelength cone photopigments do not change appreciably between fovea and 45 degrees. The relative spectral sensitivity obtained in the dark-adapted state, on the other hand, was found to be purely scotopic in form invariant to intensity and method, suggesting that it is dominated almost completely by rod activity even at intensity levels commonly labeled "photopic.

Dark Adaptation↗

Bezold-brücke phenomenon of the extrafoveal retina.

With the use of an asymmetric matching technique, the Bezold-Brück phenomenon of the extrafoveal retina was measured at different eccentricities during the cone-plateau period of the long-term dark-adaptation curve and after 30 min dark adaptation. The results indicate that both the rod and the cone mechanisms contribute to the luminance-dependent hue shift of the extrafoveal retina.

Color Perception↗