Literature DB >> 25675878

The importance of the context in the hippocampus and brain related areas throughout the performance of a fear conditioning task.

Natalia Arias1,2, Marta Méndez1,2, Jorge L Arias1,2.   

Abstract

The importance context has been broadly studied in the management of phobias and in the drug addiction literature. The way in which changes to a context influence behavior after the simple acquisition of a passive avoidance task remains unclear. The hippocampus has long been implicated in the contextual and spatial processing required for contextual fear, but its role in encoding the aversive component of a contextual fear memory is still inconclusive. Our work tries to elucidate whether a change in context, represented as differences in the load of the stimuli, is critical for learning about the context-shock association and whether this manipulation of the context could be linked to any change in metabolic brain activity requirements. For this purpose, we used an avoidance conditioning task. Animals were divided into three different experimental conditions. In one group, acquisition was performed in an enriched stimuli environment and retention was performed in a typically lit chamber (the PA-ACQ-CONTX group). In another group, acquisition was performed in the typically lit chamber and retention was undertaken in the highly enriched chamber (the PA-RET-CONTX group). Finally, for the control group, PA-CN-CONTX, acquisition, and retention were performed in the enriched stimuli environment. Our results showed that the PA-ACQ-CONTX group had longer escape latencies and poorer retention than the PA-RET-CONTX and PA-CN-CONTX groups after 24 h of acquisition under contextual changes. To study metabolic brain activity, histochemical labelling of cytochrome c-oxidase (CO) was performed. CO results suggested a neural circuit including the hippocampus, amygdala, thalamus, parahippocampal cortices, and mammillary nuclei that is involved in the learning and memory processes that enable context-dependent behavior. These results highlight how dysfunction in this network may be involved in the contextualization of fear associations that underlie several forms of psychopathology, including post-traumatic stress disorder, schizophrenia, and substance abuse disorders.
© 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  cytochrome c-oxidase; mammillary nuclei; parahippocampal cortices; passive avoidance; rat

Mesh:

Year:  2015        PMID: 25675878     DOI: 10.1002/hipo.22430

Source DB:  PubMed          Journal:  Hippocampus        ISSN: 1050-9631            Impact factor:   3.899


  8 in total

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3.  Transneuronal Propagation of Pathologic α-Synuclein from the Gut to the Brain Models Parkinson's Disease.

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5.  Large-scale networks underlie cognitive insight differs between untreated adolescents ongoing their first schizophrenic episode and their reference non-schizophrenic mates.

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6.  Maintenance of the Amygdala-Hippocampal Circuit Function with Safe and Feasible Shaking Exercise Therapy in SAMP-10 Mice.

Authors:  Runhong Yao; Kazuhiro Nishii; Naoki Aizu; Takumi Kito; Kazuyoshi Sakai; Kouji Yamada
Journal:  Dement Geriatr Cogn Dis Extra       Date:  2021-05-19

7.  Exposure to Enriched Environment Restores Altered Passive Avoidance Learning and Ameliorates Hippocampal Injury in Male Albino Wistar Rats Subjected to Chronic Restraint Stress.

Authors:  Raju Suresh Kumar; Sareesh Naduvil Narayanan; Naveen Kumar; Satheesha Nayak
Journal:  Int J Appl Basic Med Res       Date:  2018 Oct-Dec

8.  Akkermansia muciniphila and environmental enrichment reverse cognitive impairment associated with high-fat high-cholesterol consumption in rats.

Authors:  Sara G Higarza; Silvia Arboleya; Jorge L Arias; Miguel Gueimonde; Natalia Arias
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  8 in total

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