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Biomedical subjects

M Mazzotto

Publications and source records attributed to M Mazzotto.

2 recordsLinked to original sources

Piriform cortex ablations block navigational map learning in homing pigeons.

Young homing pigeons were subjected to ablations of the piriform cortex or left intact and allowed to learn a navigational map. Three months later, control and piriform cortex lesioned pigeons were released from three unfamiliar locations. Control pigeons oriented homeward indicating successful navigational map learning. In contrast, piriform cortex ablated pigeons consistently oriented east, took more time to return home and were more likely to get lost. The results demonstrate that piriform cortex ablations in young homing pigeons disrupt navigational learning. The data support the conclusion that participation of the piriform cortex is necessary for navigational map learning, and its role in navigational learning cannot be substituted for by other telencephalic olfactory processing regions. Further, the results show that the role of olfactory cues in building up the navigational map cannot be replaced by other non olfactory environmental stimuli.

Animals↗

Memory of radial maze behavior in pigeons after ablations of the presumed equivalent of mammalian prefrontal cortex.

Pigeons were trained and postoperatively tested in an 8-arm radial maze in which 1 arm was always used for start, 3 were never baited, and 4 were always baited. Of 2 groups of pigeons, 1 (n = 6) received ablations of the postero-dorso-lateral neostriatum (PDLNS) as well as the corticoid, and the other (n = 8) was sham operated. After the surgery, in the PDLNS group the number of reference memory errors (entering the never-baited arms) was significantly increased, but the number of working memory errors (entering previously visited baited arms) was not. Two of 6 pigeons with PDLNS ablations did not show any impairment, 3 were impaired in the reference memory, and 1 was impaired in working memory. This outcome resembles behavioral effects obtained in rats with prefrontal lesions. In pigeons and rats, the lesion seems to "release" the normal "win-shift" tendency and/or impair the ability to choose correctly in simultaneous multiple-choice situations.

Animals↗