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Biomedical subjects

B V DiMattia

Publications and source records attributed to B V DiMattia.

5 recordsLinked to original sources

Crossmodal short-term memory of haptic and visual information.

Rhesus monkeys were trained on a within-subjects design to assess whether they could perform concurrently visual-to-haptic (V-H) and haptic-to-visual (H-V) crossmodal delayed matching-to-sample (DMS). A parametric analysis was conducted of the effect of delay between presentation and re-presentation of the test discriminanda (three-dimensional geometric objects). The results indicate that (a) monkeys are capable of concurrent V-H and H-V crossmodal matching of objects by shape, size, and texture; (b) monkeys acquire faster and perform better crossmodal matching in the V-H direction than in the H-V direction; (c) as they learn to perform DMS with successive object pairs, monkeys transfer some--procedural--knowledge from the use of one pair to the use of the next; and (d) in the monkey, crossmodal short-term memory, as measured by DMS performance, has a temporal decline.

Animals

Double dissociation of egocentric and allocentric space following medial prefrontal and parietal cortex lesions in the rat.

Animals with medial prefrontal cortex or parietal cortex lesions and sham-operated and non-operated controls were tested for the acquisition of an adjacent arm task that accentuated the importance of egocentric spatial localization and a cheese board task that accentuated the importance of allocentric spatial localization. Results indicated that relative to controls, animals with medial-prefrontal cortex lesions are impaired on the adjacent arm task but displayed facilitation on the cheese board task. In contrast, relative to controls, rats with parietal cortex lesions are impaired on the cheese board task but show no impairment on the adjacent arm task. The data suggest a double dissociation of function between medial prefrontal cortex and parietal cortex in terms of coding of egocentric versus allocentric spatial information.

Animals

Role of the posterior parietal association cortex in the processing of spatial event information.

Humans and monkeys with damage to the parietal association cortex (PC) exhibit deficits on visual-spatial tasks that are often dependent upon the attentional requirements of the task at hand. In order to test whether there is a correspondence between humans and rats in terms of the function of PC in the processing of spatial information, separate groups of rats were trained in two list-learning tasks, a win-stay task and a win-shift task, on an eight-arm radial maze. It is assumed that these two tasks vary in degree of required attention effort, because the win-shift rule is considerably easier for the rat to learn than the win-stay rule. One group of animals in each condition was given preoperative training before receiving bilateral aspiration lesions of PC. Another group in each condition received PC lesions prior to training. The results indicated that animals with PC lesions are unable to acquire either the win-stay or the win-shift rule. However, of the animals with preoperative training, only the win-stay trained animals were deleteriously affected by the brain lesion. The win-shift animals showed no postoperative decline in performance. Because rats with PC lesions are only impaired on the more demanding spatial task, these results are consistent with the human clinical observations.

Animals

Evidence for neocortical involvement in reference memory.

Rats were trained on an eight-arm radial maze task using a procedure that provides for an assessment of both working and reference memory. Following training, rats received parietal cortex, medial prefrontal cortex, visual cortex, or nucleus basalis magnocellularis lesions. Rats with visual cortex lesions showed no change in performance on either working or reference memory. Rats with parietal cortex lesions displayed a temporary deficit in reference, but no deficit on working memory. Animals with medial prefrontal cortex lesions showed a temporary deficit on both working and reference memory. Rats with extensive lateral frontal and parietal cortex depletion of acetylcholinesterase following nucleus basalis magnocellularis lesions had a marked disruption only of reference but not of working memory. It is concluded that neocortex and possibly the cholinergic projections to neocortex play an important role in mediating reference memory.

Animals

Serial position curves in rats: automatic versus effortful information processing.

Rats were trained to remember lists of five arms on an Olton eight-arm radial maze. A forced-choice memory recognition test procedure was used which required the animal to choose between an arm previously visited during the study phase of a trial and an arm not visited. To receive additional food reinforcement, 10 animals were required to return to the previously visited arm (win-stay) and 10 animals were required to choose the novel, unvisited arm (win-shift). In this way, a direct comparison was made between the serial position curves (SPCs) generated by win-stay trained and win-shift trained animals. The results indicated that only win-stay trained animals produced the classical U-shaped SPC, which included significant primacy and recency effects. Win-shift subjects showed only recency effects. These findings are discussed in terms of differential processing requirements for the two procedures. It is suggested that the win-stay rule necessitates relatively more effortful, elaborative processing than does the win-shift rule, which is used automatically.

Animals