Ventral Pallidum and Amygdala Cooperate to Restrain Reward Approach from Overriding Defensive Behaviors
Hernandez-Jaramillo, A.; Illescas-Huerta, E.; Sotres-Bayon, F.
Show abstract
Foraging decisions involve assessing potential risks and prioritizing food sources, which can be challenging when confronted with changing and conflicting circumstances. A crucial aspect of this decision-making process is the ability to actively suppress defensive reactions to threats (fear) and focus on achieving specific goals. The ventral pallidum (VP) and basolateral amygdala (BLA) are two brain regions that play key roles in regulating behavior motivated by either rewards or threats. However, it is unclear whether these regions are necessary in decision-making processes involving competing motivational drives during conflict. Our aim was to investigate the requirements of the VP and BLA for foraging choices in conflicts involving fear suppression. Here, we used a novel foraging task and pharmacological techniques to inactivate either the VP or BLA, or to disconnect these brain regions before conducting a conflict test. Our findings showed that BLA is necessary for making calculated risky choices during conflicts, whereas VP is necessary for invigorating the drive to obtain food, regardless of the presence of conflict. Importantly, our research revealed that the connection between VP and BLA is critical in limiting risk behaviors when searching for food that requires effort in conflict situations. This study provides a new perspective on the collaborative function of VP and BLA in driving behavior, aimed at achieving goals in the face of danger.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Rodent perirhinal cortex, but not ventral hippocampus, inhibition induces approach bias under object-based approach-avoidance conflict 97%
- Backward Conditioning Reveals Flexibility in Infralimbic Cortex Inhibitory Memories 96%
- The Paraventricular Thalamus is a Critical Mediator of Top-down Control of Cue-motivated Behavior in Rats 96%
Similar papers in this journal
Similar papers in this journal
- Basolateral amygdala and orbitofrontal cortex, but not dorsal hippocampus, are necessary for the control of reward-seeking by occasion setters 97%
- Metabotropic group II glutamate receptors in the basolateral amygdala mediate cue-triggered increases in incentive motivation 97%
- Effects of hM4Di activation in CamKII basolateral amygdala neurons and CNO treatment on Sensory-Specific vs. General-PIT; refining PIT circuits and considerations for using CNO. 96%
Similar papers in this journal
- A common stay-on-goal mechanism in anterior cingulate cortex for information and effort choices 96%
- Sounding the alarm: sex differences in rat ultrasonic vocalizations during Pavlovian fear conditioning and extinction 96%
- Mediodorsal thalamus is critical for updating during extra-dimensional shifts but not reversals in the attentional set-shifting task 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.