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R E Proudfoot

Publications and source records attributed to R E Proudfoot.

3 recordsLinked to original sources

Hemiretinal differences in face recognition: accuracy versus reaction time.

A face-recognition task involving monocular presentation of laterally displaced stimuli yielded a nasal hemiretinal advantage for reaction time for correct identifications, but a temporal hemiretinal advantage for accuracy (d'). These hemiretinal effects, in conjunction with eye dominance, could in principle distort or obscure interpretations of hemispheric processing differences obtained with binocular stimulation.

Adult↗

Hemispheric asymmetry for face recognition: cognitive style and the "crossover" effect.

Photographs of faces were serially presented for central viewing, while Ss made either "social" or "physical" judgments about each face. Subsequent tachistoscopic recognition of laterally displaced targets displayed a pattern of contrasting visual field superiorities for faces seen under the two conditions. This "crossover" pattern occurred in opposite directions for reaction time and for accuracy. Field dependent and field independent Ss displayed the crossover equally, but crossovers by field independent Ss showed a consistent direction within each dependent measure, whereas those by field dependent Ss were equally divided between the two directions. Choices of encoding strategy by field independent Ss appear to be more strongly task-determined than those by field dependent Ss, but the relation between the encoding manipulation, presumed encoding strategy differences, and specific visual field advantage remains unknown.

Adult↗

Hemispheric asymmetry for face recognition: some effects of visual masking, hemiretinal stimulation and learning task.

Five overlearned target faces were presented hemiretinally and identified by name on the recognition trials (Experiment 1). A post-exposure pattern mask was projected by the opposite eye to either the same (MASK) or the opposite (DISTRACTOR) hemisphere as the targets. Target exposure durations yielding 50% accuracy showed significant left-hemisphere and temporal hemiretinal superiorities in DISTRACTOR, but not in MASK. In Experiment 2, recognition accuracy for six faces at a constant exposure duration, under DISTRACTOR and no-mask control conditions, replicated the left-hemisphere advantage. Manipulation of the information accompanying targets during the initial learning task, to encourage either "social" or "physical" encoding of the faces, produced a "crossover" pattern of contrasting hemispheric asymmetries under the two encoding conditions. The overall results suggest that within this design, face recognition can be accomplished in three different ways, producing either no hemispheric asymmetry, undirectional asymmetry, or complex, contrasting asymmetries. These effects appear to have different functional loci. Hemiretinal differences and individual differences in encoding strategies also contributed to complex patterns of hemispheric asymmetry.

Adult↗