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1.
Rev. bras. pesqui. méd. biol ; Braz. j. med. biol. res;52(5): e8026, 2019. tab, graf
Article in English | LILACS | ID: biblio-1001526

ABSTRACT

Carassius auratus is a teleost fish that has been largely used in behavioral studies. However, little is known about potential environmental influences on its performance of learning and memory tasks. Here, we investigated this question in C. auratus, and searched for potential correlation between exercise and visuospatial enrichment with the total number of telencephalic glia and neurons. To that end, males and females were housed for 183 days in either an enriched (EE) or impoverished environment (IE) aquarium. EE contained toys, natural plants, and a 12-hour/day water stream for voluntary exercise, whereas the IE had none of the above. A third plus-maze aquarium was used for spatial and object recognition tests. Different visual clues in 2 of its 4 arms were used to guide fish to reach the criteria to complete the task. The test consisted of 30 sessions and was concluded when each animal performed three consecutive correct choices or seven alternated, each ten trials. Learning rates revealed significant differences between EE and IE fish. The optical fractionator was used to estimate the total number of telencephalic cells that were stained with cresyl violet. On average, the total number of cells in the subjects from EE was higher than those from subjects maintained in IE (P=0.0202). We suggest that environmental enrichment significantly influenced goldfish spatial learning and memory abilities, and this may be associated with an increase in the total number of telencephalic cells.


Subject(s)
Animals , Male , Female , Telencephalon/metabolism , Cell Proliferation/physiology , Fishes/physiology , Spatial Learning/physiology , Spatial Memory/physiology , Physical Conditioning, Animal , Behavior, Animal/physiology , Cell Count
2.
Rev. bras. pesqui. méd. biol ; Braz. j. med. biol. res;49(1): 00603, 2016. graf
Article in English | LILACS | ID: lil-765008

ABSTRACT

The semipalmated sandpiper Calidris pusilla and the spotted sandpiper Actitis macularia are long- and short-distance migrants, respectively. C. pusilla breeds in the sub-arctic and mid-arctic tundra of Canada and Alaska and winters on the north and east coasts of South America. A. macularia breeds in a broad distribution across most of North America from the treeline to the southern United States. It winters in the southern United States, and Central and South America. The autumn migration route of C. pusilla includes a non-stop flight over the Atlantic Ocean, whereas autumn route of A. macularia is largely over land. Because of this difference in their migratory paths and the visuo-spatial recognition tasks involved, we hypothesized that hippocampal volume and neuronal and glial numbers would differ between these two species. A. macularia did not differ from C. pusilla in the total number of hippocampal neurons, but the species had a larger hippocampal formation and more hippocampal microglia. It remains to be investigated whether these differences indicate interspecies differences or neural specializations associated with different strategies of orientation and navigation.


Subject(s)
Animals , Animal Migration , Charadriiformes/anatomy & histology , Hippocampus/anatomy & histology , Microglia/cytology , Neurons/cytology , Breeding , Charadriiformes/physiology , Hippocampus/cytology , Immunohistochemistry , Organ Size , Orientation , Photomicrography , Phylogeny , Species Specificity , Spatial Navigation/physiology , Telencephalon/anatomy & histology
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