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J M Rybash

Publications and source records attributed to J M Rybash.

3 recordsLinked to original sources

Hemispheric specialization for categorical and coordinate spatial representations: a reappraisal.

The purpose of the present study was to examine Kosslyn's (1987) claim that the left hemisphere (LH) is specialized for the computation of categorical spatial representations and that the right hemisphere (RH) is specialized for the computation of coordinate spatial representations. Categorical representations involve making judgements about the relative position of the components of a visual stimulus (e.g., whether one component is above/below another). Coordinate representations involve calibrating absolute distances between the components of a visual stimulus (e.g., whether one component is within 5 mm of another). Thirty-two male and 32 female undergraduates were administered two versions of a categorical or a coordinate task over three blocks of 36 trials. Within each block, items were presented to the right visual field-left hemisphere (RVF-LH), the left visual field-right hemisphere (LVF-RH), or a centralized position. Overall, results were more supportive of Kosslyn's assertions concerning the role played by the RH in the computation of spatial representations. Specifically, subjects displayed an LVF-RH advantage when performing both versions of the coordinate task. The LVF-RH advantage on the coordinate task, however, was confirmed to the first block of trials. Finally, it was found that males were more likely than females to display faster reaction times (RTs) on coordinate tasks, slower RTs on categorical tasks, and an LVF-RH advantage in computing coordinate tasks.

Adult

Age and visual field differences in computing visual-spatial relations.

Age and brain hemispheric differences in visual-spatial performance were investigated using 2 versions of categorical and coordinate (metric) spatial relations tasks. Thirty-two young adults (M = 19.2 years) and 32 older adults (M = 68.8 years) participated. An overall age-related decrement in computing visual-spatial relations was obtained for lateralized presentations and when items were presented centrally. In contrast to some previous findings, there was no evidence to suggest differential aging of the right hemisphere in computing visual-spatial relations.

Adult

Effects of a memory aid of the three types of conservation in institutionalized retarded children.

Qualitative identity, quantitative identity, and equivalence conservation were assessed in 60 retarded boys and girls in three groups (MAS 5.4,6.3, and 7.5)9 Half of the Ss were provided a memory aid while the other half were not. The memory aid did not facilitate conservation on any of the tasks. The order of task difficulty found was qualitative identity, quantitative identity, and equivalence conservation. These data were discussed in terms of memory deficits and factors contributing to conservation and M.A.

Audiovisual Aids