Autonomic and respiratory components of orienting behaviors are mediated by descending pathways originating from the superior colliculus
Lynch, E.; Dempsey, B. R.; Monteiro, E.; Turner, A. J.; Saleeba, C.; Burke, P. G.; Allen, A. M.; Dampney, R. A.; Hildreth, C. M.; Cornish, J. L.; Goodchild, A. K.; McMullan, S.
Show abstract
The ability to discriminate competing, external stimuli, and initiate contextually appropriate behaviors, is a key brain function. Neurons in the deep superior colliculus (dSC) integrate multisensory inputs and activate descending projections to premotor pathways responsible for orienting and attention, behaviors which involve adjustments to respiratory and cardiovascular parameters. However, the neural pathways that subserve the physiological components of orienting are poorly understood. We report that orienting responses to optogenetic dSC stimulation are accompanied by short-latency autonomic, respiratory and electroencephalographic effects in awake rats, closely mimicking those evoked by naturalistic alerting stimuli. Physiological responses were not accompanied by detectable aversion or fear and persisted under urethane anesthesia, indicating independence from emotional stress. Moreover, autonomic responses were replicated by selective stimulation of dSC inputs to a subregion in the ventromedial medulla containing spinally-projecting premotor neurons. This putative disynaptic pathway from the dSC represents a likely substrate for autonomic components of orienting.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Superior colliculus projections drive dopamine neuron activity and movement but not value 97%
- Acute restraint stress and pain modulation depend on the interaction between the periaqueductal gray and the lateral septum 97%
- Rostral ventromedial medulla (RVM) projects to the lateral hypothalamic area (LHA) to drive aversion and anxiety 96%
Similar papers in this journal
- Presynaptic inhibition of cutaneous afferents prevents self-generated itch 95%
- Dissociable roles of central striatum and anterior lateral motor area in initiating and sustaining naturalistic behavior 95%
- Prepronociceptin expressing neurons in the extended amygdala encode and promote rapid arousal responses to motivationally salient stimuli 94%
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.