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K Van Orden

Publications and source records attributed to K Van Orden.

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Selective attenuation in brightness for brief stimuli and at low intensities supports age-related transient channel losses.

A brightness estimation experiment was conducted on 10 old (ages 60 to 77) and 10 young (ages 22 to 27) volunteers. Participants were introduced to magnitude estimation by scaling the lengths of line stimuli, after which they dark adapted for 10 minutes. Stimuli for brightness estimation were presented binocularly via a free-viewing system and consisted of circular flashes of 2 degrees. Stimuli covered a 3 log unit range of luminance levels in 0.5 log unit steps, and 3 durations (10, 100, 1000 msec). Linear regression analysis yielded dual-branched functions with a low intensity segment which was significantly steeper in slope than the high intensity segment. The slope for the older group was significantly less steep than that of the younger observers only at the low intensity segment. Findings with respect to stimulus duration showed a significantly attenuated slope for the old as compared to the young group only at 10 msec. The results extend previous threshold results to suprathreshold levels, and are consistent with an hypothesis of a selective loss of transient channels with age.

Adult

Older observers have attenuated increment thresholds upon transient backgrounds.

Foveal increment thresholds were measured in young, middle-aged, and older observers. These thresholds, which involved the detection of a small test flash as a function of the intensity of a larger background adapting field (AF), were measured at the instant of onset of the AF (transient condition) and when the eye had been fully light adapted to the AF (steady-state condition). All stimuli were presented to the left eye in a free-viewing system through a 2 mm artificial pupil. For the steady-state condition for all age groups, the functions were similar, but for the transient condition, the slope for the older observers was significantly less steep than that for the younger observers. These findings are consistent with an hypothesis of a selective loss of transient (Y) channels in the aging visual system.

Adult