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R Sekuler

Publications and source records attributed to R Sekuler.

At least 73 records · Page 4Linked to original sources

Spatial vision and aging. II: Criterion effects.

The first paper in this series suggested that, in order to see gratings of low spatial frequency, observers in their 70s needed three times as much contrast as did observers in their 20s. Here, we use a signal detection procedure to determine if this age difference was due to actual changes in vision with age or was merely an artifact of changes in criteria for saying that a target was visible. The results show the following: older observers have a genuinely diminished ability to see gratings of low spatial frequency; older observers tend to lack confidence in their judgments of what they had seen; younger, but not older, observers grow more confident of their judgments as gratings become easier to see.

Adolescent↗

Eye movements and choice times in mirror image pattern discrimination.

This paper studied mirror image and nonmirror image pattern discrimination by measuring adults' eye movements as they responded to spatially simple or spatially complex stimulus pairs. Two measures were derived from the eye movement data; the average position of the subject's gaze as a function of time (scanpath), and the distribution of eye positions sampled over the patterns (dwell distribution). The data show that spatial complexity has a qualitative influence on the processing of mirror and nonmirror patterns, that spatially complex pairs tend to be scanned from left-to-right, and that peripheral features are not usually directly fixated. The data also bear on theories of symmetry perception, and indicate that symmetry is not always perceived in a holistic fashion.

Choice Behavior↗

Mutual repulsion between moving visual targets.

When two spatially intermingled sets of random dots move in different directions, the direction of each set may be misperceived. Observers report that each set of dots appears to move in a direction displaced by as much as 20 degrees from the direction of its companion set. Probably the result of inhibitory interactions, this mutual repulsion occurs at a central site in the visual system and may normally enhance discrimination of direction.

Eye Movements↗

Mental set alters visibility of moving targets.

An observer's knowledge of a moving target's direction and velocity enhances detectability. In addition, knowledge of direction and velocity speeds an observer's reaction to the motion of a previously stationary target. Since rival, nonperceptual hypotheses can be ruled out, these effects represent a direct modulation of vision by mental set.

Cognition↗

Rapid measurement of contrast-sensitivity functions.

We have developed a reliable and valid procedure for determining a person's contrast sensitivity function in approximately 6 min. This rapid procedure, which resembles that used in the Bekesy sweep-frequency audiometer, has potential as a clinical tool for diagnostic assessment.

Humans↗

The independence of channels in human vision selective for direction of movement.

1. Human visual selectivity for direction of movement was determined using a subthreshold summation technique. 2. The threshold contrast for detecting a drifting sinusoidal grating was found to be independent of the contrast of an added subthreshold grating which moved in the opposite direction. 3. The detection threshold for a counterphase flickering grating is twice that for a moving grating, suggesting that the visual system analyses a counterphase grating as the sum of two half-contrast gratings which move in opposite directions. 4. Threshold for a counterphase grating may be linearly reduced by the addition of subthreshold background gratings drifting in either direction. Additivity between counterphase grating and moving background is complete. 5. After adaptation to a drifting grating, the behaviour of counterphase detection threshold as a function of the contrast of a moving subthreshold background depends upon the direction of background movement. When the background moves in a direction opposite that of the adaptation stimulus, complete linear additivity results. When the background moves in the same direction as the adapting grating, counterphase threshold is constant for low background contrasts, but drops linearly for higher background contrasts. 6. The results support the hypothesis that directionally selective channels in human vision are independent contrast detectors. Counterphase gratings are detected by one or the other of these direction-specific mechanisms, whichever is momentarily the more sensitive.

Adaptation, Ocular↗

Spatial vision.

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Animals↗

Visual temporal order: a new illusion.

Brief visutal stimuli presented in rapid sequience, one to the left and one to the right, appear to occur left first, then right, regardless of the actual order of presentation. This illutsion persists under conditions of forced-choice testing and does not vary with presemitation to the same or opposite retinal hemifields, A series of experiments suggests that this illutsion may be the product of an internal mechanism that scans visual inputs in a left-to-right order.

Humans↗