scholarly journals Stress induced a shift from dorsal hippocampus to prefrontal cortex dependent memory retrieval: role of regional corticosterone

Author(s):  
Gaelle Dominguez ◽  
Pierre Faucher ◽  
Nadia Henkous ◽  
Ali Krazem ◽  
Christophe Piérard ◽  
...  
2017 ◽  
Vol 43 (suppl_1) ◽  
pp. S29-S29
Author(s):  
Amy Jimenez ◽  
Junghee Lee ◽  
Jonathan K. Wynn ◽  
William Horan ◽  
Julio Iglesias ◽  
...  

2012 ◽  
Vol 108 (4) ◽  
pp. 1211-1222 ◽  
Author(s):  
Mark A. Rossi ◽  
Volodya Y. Hayrapetyan ◽  
Benjamin Maimon ◽  
Krystal Mak ◽  
H. Shawn Je ◽  
...  

The prefrontal cortex (PFC) has been implicated in the maintenance of task-relevant information during goal-directed behavior. Using a combination of lesions, local inactivation, and optogenetics, we investigated the functional role of the medial prefrontal cortex (mPFC) in mice with a novel operant delayed alternation task. Task difficulty was manipulated by changing the duration of the delay between two sequential actions. In experiment 1, we showed that excitotoxic lesions of the mPFC impaired acquisition of delayed alternation with long delays (16 s), whereas lesions of the dorsal hippocampus and ventral striatum, areas connected with the PFC, did not produce any deficits. Lesions of dorsal hippocampus, however, significantly impaired reversal learning when the rule was changed from alternation to repetition. In experiment 2, we showed that local infusions of muscimol (an agonist of the GABAA receptor) into mPFC impaired performance even when the animal was well trained, suggesting that the mPFC is critical not only for acquisition but also for successful performance. In experiment 3, to examine the mechanisms underlying the role of GABAergic inhibition, we used Cre-inducible Channelrhodopsin-2 to activate parvalbumin (PV)-expressing GABAergic interneurons in the mPFC of PV-Cre transgenic mice as they performed the task. Using whole cell patch-clamp recording, we demonstrated that activation of PV-expressing interneurons in vitro with blue light in brain slices reliably produced spiking and inhibited nearby pyramidal projection neurons. With similar stimulation parameters, in vivo stimulation significantly impaired delayed alternation performance. Together these results demonstrate a critical role for the mPFC in the acquisition and performance of the delayed alternation task.


Hippocampus ◽  
2014 ◽  
Vol 24 (12) ◽  
pp. 1482-1492 ◽  
Author(s):  
María Cecilia Martínez ◽  
María Eugenia Villar ◽  
Fabricio Ballarini ◽  
Haydée Viola

2004 ◽  
Vol 30 (2) ◽  
pp. 296-309 ◽  
Author(s):  
Rita A Fuchs ◽  
K Allison Evans ◽  
Christopher C Ledford ◽  
Macon P Parker ◽  
Jordan M Case ◽  
...  

Author(s):  
Michael C. Anderson ◽  
Stan B. Floresco

AbstractNeuroimaging has revealed robust interactions between the prefrontal cortex and the hippocampus when people stop memory retrieval. Efforts to stop retrieval can arise when people encounter reminders to unpleasant thoughts they prefer not to think about. Retrieval stopping suppresses hippocampal and amygdala activity, especially when cues elicit aversive memory intrusions, via a broad inhibitory control capacity enabling prepotent response suppression. Repeated retrieval stopping reduces intrusions of unpleasant memories and diminishes their affective tone, outcomes resembling those achieved by the extinction of conditioned emotional responses. Despite this resemblance, the role of inhibitory fronto-hippocampal interactions and retrieval stopping broadly in extinction has received little attention. Here we integrate human and animal research on extinction and retrieval stopping. We argue that reconceptualising extinction to integrate mnemonic inhibitory control with learning would yield a greater understanding of extinction’s relevance to mental health. We hypothesize that fear extinction spontaneously engages retrieval stopping across species, and that controlled suppression of hippocampal and amygdala activity by the prefrontal cortex reduces fearful thoughts. Moreover, we argue that retrieval stopping recruits extinction circuitry to achieve affect regulation, linking extinction to how humans cope with intrusive thoughts. We discuss novel hypotheses derived from this theoretical synthesis.


Hippocampus ◽  
2013 ◽  
Vol 23 (5) ◽  
pp. 342-351 ◽  
Author(s):  
Paul De Saint Blanquat ◽  
Vincent Hok ◽  
Etienne Save ◽  
Bruno Poucet ◽  
Franck A. Chaillan

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