Thermal and mechanical modalities converge in the noxious range
Wang, F.;Ferland, S.;Côté, S.;Lorenzo, L.;Bélanger, E.;Larqué, P.;Li, C.;Godin, A.;Duan, B.;Coté, D.;Paquet, M.;Koninck, Y.
Show abstract
SummaryThere are competing theories on how nociceptive input is encoded by sensory fibers. That sensory modalities are exclusively conveyed by distinct populations of fibers is supported by ablation studies, indicating that TRPV1+and MrgprD+afferents selectively encode for heat and mechanical input, respectively. However, interpreting ablation results can be clouded by compensatory plasticity. Furthermore, a population-level parametric analysis of afferent response profiles to natural stimuliin vivois still scarce. Using functional imagingin vivoin mice, we found that most TRPV1+neurons responded to noxious heat, but not cooling. While none of them responded to innocuous mechanical input, about half were also sensitive to noxious mechanical stimuli. In contrast, 80% of MrgprD+neurons responded to noxious mechanical stimuli. Yet, 70% were also sensitive to noxious thermal stimuli. Of innocuous mechanosensitive MrgprD+neurons, <15% responded to innocuous warming and none to innocuous cooling. Polymodality in the innocuous thermal and mechanical range also occurred in <10% of all primary afferents. Acute silencing of TRPV1+or MrgprD+afferents inhibited both thermal and mechanical nociception. In contrast, ablation did not reproduce a combined loss of sensitivity, which appeared to be due to compensatory central disinhibition. Our findings reveal that modality separation dominates in the innocuous regime, while polymodality predominates in the noxious range.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A molecularly defined basalo-prefrontal-thalamic circuit regulates sensory and affective dimensions of pain in male mice 98%
- Primary Somatosensory Cortex Bidirectionally Modulates Sensory Gain and Nociceptive Behavior in a Layer-Specific Manner 97%
- Sensory Schwann cells set perceptual thresholds for touch and selectively regulate mechanical nociception 96%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Paradoxical increases in anterior cingulate cortex activity during nitrous oxide-induced analgesia reveal a signature of pain affect 97%
- Cortical astrocyte activation triggers meningeal nociception and migraine-like pain 94%
- Enhanced Sodium Channel Inactivation by Temperature and FHF2 Deficiency Blocks Heat Nociception 94%
Similar papers in this journal
- Rostral ventromedial medulla (RVM) projects to the lateral hypothalamic area (LHA) to drive aversion and anxiety 96%
- Microglial refinement of A-fibre projections in the postnatal spinal cord dorsal horn is required for normal maturation of dynamic touch. 95%
- Monosynaptic inputs to ventral tegmental area glutamate and GABA co-transmitting neurons 95%
"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.