PubMed Health⌕ Search

Biomedical subjects

M Dakis

Publications and source records attributed to M Dakis.

5 recordsLinked to original sources

Intrahippocampal injections of phencyclidine but not naloxone disrupt acquisition of a spatial continuous recognition memory task.

Rats with 36 nM or 54 nM of phencyclidine (PCP), 36 nM of naloxone or saline injected into the dentate gyrus of the hippocampus were tested for acquisition of a spatial continuous recognition memory task. Results indicate that relative to controls and rats with 36 nM of PCP or 36 nM of naloxone injections, rats with 54 nM of PCP injections were impaired in acquisition of the task across all lags as measured by increased in latency for repeated items. Since it is assumed that successful learning of this continuous recognition memory task depends upon processes associated with consolidation of new learning into long term memory, it appears that high doses of PCP, but not naloxone are sufficient to impair this process.

Animals↗

Phencyclidine injections into the dorsal hippocampus disrupt long- but not short-term memory within a spatial learning task.

Since the hippocampus is likely to be a major site of phencyclidine (PCP) action, the effects of various doses of PCP (1.8, 18 or 36 nM) as well as 3.6 nM MK-801 or saline injected directly into the dentate gyrus of the hippocampus was tested for acquisition of a spatial navigation task (dry land version of a water maze) using a paradigm that assesses short term memory based on learning within a day and long term memory based on learning between days. Results indicated that relative to saline or 1.8 nM PCP injected rats, rats with 18 or 36 nM PCP or 3.6 nM MK-801 injections were impaired in acquisition of the task as measured by increased distances traveled to find the food location between days but not within days. In additional experiments 36 nM PCP or 3.6 nM MK-801 did not produce any deficits in the acquisition of an object discrimination task. It is suggested that PCP through its blocking action of the NMDA receptor in the dentate gyrus or CA1 region of the dorsal hippocampus mediates the consolidation of new spatial location information.

Animals↗

Memory for spatial locations, motor responses, and objects: triple dissociation among the hippocampus, caudate nucleus, and extrastriate visual cortex.

Based on behavioral procedures aimed at measuring working or data-based memory for spatial location, response, and visual object information, it is shown that there is a triple dissociation among the hippocampus, caudate nucleus, and extrastriate visual cortex in mediating spatial location, response, and visual object information, respectively. The hippocampus appears to subserve only spatial location, the caudate nucleus only response, and the extrastriate visual cortex only visual object information. The results support the neurobiological foundation of the attribute memory model.

Animals↗

Phencyclidine disrupts long- but not short-term memory within a spatial learning task.

In the first experiment rats with 1, 2, 3 or 4 mg/kg phencyclidine (PCP), or saline injections were tested for acquisition or retention of a cheese board spatial task (dry land version of a water maze). Results indicate that relative to controls or rats with injections of 1 and 2 mg/kg PCP, rats with 3 or 4 mg/kg PCP injections were impaired in acquisition and retention of the task as measured by increased distances traveled to find the correct food location. This impairment was primarily observed in between days but not within days performance. In the second experiment rats with 4 mg/kg PCP or saline injections were tested for memory performance of a delayed spatial matching-to-sample task. Results indicate that relative to controls rats with 4 mg/kg PCP injections were not impaired at either 1-5 or 30 s delays. It is suggested that PCP through its blocking action of the NMDA receptor mediates long- but not short-term memory for spatial location information as well as the ability to retrieve previously learned spatial location information.

Analysis of Variance↗

Phencyclidine disrupts acquisition and retention performance within a spatial continuous recognition memory task.

Rats with 1 or 2 mg/kg phencyclidine (PCP), 4 mg/kg PCP, or saline injections were tested for acquisition or retention performance of a spatial continuous recognition memory task. Results indicate that relative to controls and rats with injections of 1 and 2 mg/kg PCP rats with 4-mg/kg PCP injections were profoundly impaired in acquisition and somewhat impaired in retention of the task across all lags as measured by increases in latency for repeated items. Phencyclidine, through it presumed blocking action of the NMDA receptor, alters the consolidation of new spatial location information but does not have a major affect on short-term maintenance of previously learned information.

Analysis of Variance↗