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Hippocampus ; 23(5): 392-404, 2013 May.
Article in English | MEDLINE | ID: mdl-23436341

ABSTRACT

Damage to anterior thalamic nuclei (ATN) is a well-known cause of diencephalic pathology that produces a range of cognitive deficits reminiscent of a hippocampal syndrome. Anatomical connections of the ATN also extend to cerebral areas that support affective cognition. Enriched environments promote recovery of declarative/relational memory after ATN lesions and are known to downregulate emotional behaviors. Hence, the performance of standard-housed and enriched ATN rats in a range of behavioral tasks engaging affective cognition was compared. ATN rats exhibited reduced anxiety responses in the elevated plus maze, increased activity and reduced corticosterone responses when exploring an open field, and delayed acquisition of a conditioned contextual fear response. ATN rats also exhibited reduced c-Fos and phosphorylated cAMP response element-binding protein (pCREB) immunoreactivity in the hippocampal formation and the amygdala after completion of the contextual fear test. Marked c-Fos hypoactivity and reduced pCREB levels were also evident in the granular retrosplenial cortex and, to a lesser extent, in the anterior cingulate cortex. Unlike standard-housed ATN rats, enriched ATN rats expressed virtually no fear of the conditioned context. These results show that the ATN regulate affective cognition and that damage to this region may produce markedly different behavioral effects as a function of environmental housing conditions.


Subject(s)
Affect/physiology , Anterior Thalamic Nuclei/physiology , Cognition/physiology , Environment , Animals , Anterior Thalamic Nuclei/injuries , Brain/anatomy & histology , Brain/metabolism , CREB-Binding Protein/metabolism , Conditioning, Psychological , Corticosterone/blood , Excitatory Amino Acid Agonists/toxicity , Exploratory Behavior/physiology , Fear , Male , Maze Learning/drug effects , N-Methylaspartate/toxicity , Proto-Oncogene Proteins c-fos/metabolism , Rats , Rats, Long-Evans
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