Unified neural pathways that gate affective pain and multisensory innate threat signals to the amygdala
Kang, S. J.; Liu, S.; Ye, M.; Kim, D.-I.; Kim, J.-H.; Oh, T. G.; Peng, J.; Evans, R. M.; Lee, K.-F.; Goulding, M.; Han, S.
Show abstract
Perception of aversive sensory stimuli such as pain and innate threat cues is essential for animal survival. The amygdala is critical for aversive sensory perception, and it has been suggested that multiple parallel pathways independently relay aversive cues from each sensory modality to the amygdala. However, a convergent pathway that relays multisensory aversive cues to the amygdala has not been identified. Here, we report that neurons expressing calcitonin gene-related peptide (CGRP) in the parvocellular subparafasicular thalamic nucleus (SPFp) are necessary and sufficient for affective-motivational pain perception by forming a spino-thalamo-amygdaloid pain pathway. In addition, we find that this thalamic CGRP pain pathway, together with well-known parabrachio-amygdaloid CGRP pain pathway, is critical for the perception of multisensory innate threat cues. The discovery of unified pathways that collectively gate aversive sensory stimuli from all sensory modalities may provide critical circuit-based insights for developing therapeutic interventions for affective pain- and innate fear-related disorders.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Rostral ventromedial medulla (RVM) projects to the lateral hypothalamic area (LHA) to drive aversion and anxiety 98%
- A central amygdala-globus pallidus circuit conveys unconditioned stimulus information and controls fear learning 96%
- Acute restraint stress and pain modulation depend on the interaction between the periaqueductal gray and the lateral septum 96%
Similar papers in this journal
- Prefrontal cortical dynorphin peptidergic transmission constrains threat-driven behavioral and network states 97%
- Divergent neural pathways emanating from the lateral parabrachial nucleus mediate distinct components of the pain response 96%
- An Amygdalar Oscillator Coordinates Cellular and Behavioral Rhythms 95%
Similar papers in this journal
"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.