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Long-range connectivity defines behavioral specificity of amygdala neurons. | LitMetric

AI Article Synopsis

  • Memories are formed through large networks of neurons in the brain, but the exact roles of these neural connections in learning are not fully understood.
  • The amygdala and medial prefrontal cortex (mPFC) are linked brain regions critical for overcoming fear, with specific neurons in the basal amygdala showing different activities during high fear and fear extinction.
  • Experiments using optogenetics reveal that the balance of activity between different amygdala-mPFC pathways is essential for forming long-lasting extinction memories.

Article Abstract

Memories are acquired and encoded within large-scale neuronal networks spanning different brain areas. The anatomical and functional specificity of such long-range interactions and their role in learning is poorly understood. The amygdala and the medial prefrontal cortex (mPFC) are interconnected brain structures involved in the extinction of conditioned fear. Here, we show that a defined subpopulation of basal amygdala (BA) projection neurons targeting the prelimbic (PL) subdivision of mPFC is active during states of high fear, whereas BA neurons targeting the infralimbic (IL) subdivision are recruited, and exhibit cell-type-specific plasticity, during fear extinction. Pathway-specific optogenetic manipulations demonstrate that the activity balance between pathways is causally involved in fear extinction. Together, our findings demonstrate that, although intermingled locally, long-range connectivity defines distinct subpopulations of amygdala projection neurons and indicate that the formation of long-term extinction memories depends on the balance of activity between two defined amygdala-prefrontal pathways.

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Source
http://dx.doi.org/10.1016/j.neuron.2013.11.006DOI Listing

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