A neuronal pathway for the supraspinal relay of warm and cool sensation
Zhang, X.; Bourojeni, F. B.; Ferland, S.; McFarlane, A.; Boyle, K. A.; Koyanagi, M.; Paquet, M.-E.; Todd, A. J.; Hachisuka, J.; De Koninck, Y.; Wang, F.; Kania, A.
Show abstract
Cutaneous thermosensation is a fundamental sense allowing discrimination of external temperature changes and driving adaptive responses essential for survival and well-being. This sensory process begins with the activation of peripheral thermoreceptors, which encode the quality and intensity of thermal stimuli into neuronal activity that is further integrated by spinal cord circuits and relayed to supraspinal centres through the anterolateral tract (ALT). While classical experiments identified thermal responsive ALT neurons in the superficial spinal dorsal horn, the functional logic of innocuous temperature relay remains poorly understood. We show that, in mice, the majority of Phox2a-lineage lamina I ALT are selectively tuned to innocuous warming or cooling, and receive direct inputs from peripheral thermoreceptors. Their genetic ablation, chemogenetic or optogenetic manipulation impaired temperature discrimination. Our findings contrast with the previous finding that the majority of ALT neurons being mechano- and thermo-nociceptive and provide novel evidence for the existence of a large ensemble of genetically defined warming- and cooling- responsive ALT neurons. The large representation of innocuous temperature in supraspinal-relaying ALT neurons indicates substantial spinal amplification of thermal information and underscores the importance of innocuous thermosensation in the ascending sensory pathway.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A parabrachial-hypothalamic parallel circuit governs cold defense in mice 98%
- Single cell transcriptomics of primate sensory neurons identifies cell types associated with human chronic pain 98%
- Perinatal serotonin signalling dynamically influences the development of cortical GABAergic circuits with consequences for lifelong sensory encoding 98%
Similar papers in this journal
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.