Monosynaptic Inputs To Excitatory And Inhibitory Neurons Of The Intermediate And Deep Layers Of The Superior Colliculus
Doykos, T. K.; Gilmer, J. I.; Person, A. L.; Felsen, G.
Show abstract
The intermediate and deep layers of the midbrain superior colliculus (SC) are a key locus for several critical functions, including spatial attention, multisensory integration and behavioral responses. While the SC is known to integrate input from a variety of brain regions, progress in understanding how these inputs contribute to SC-dependent functions has been hindered by the paucity of data on innervation patterns to specific types of SC neurons. Here, we use G-deleted rabies virus-mediated monosynaptic tracing to identify inputs to excitatory and inhibitory neurons of the intermediate and deep SC. We observed stronger and more numerous projections to excitatory than inhibitory SC neurons. However, a subpopulation of excitatory neurons thought to mediate behavioral output received weaker inputs, from far fewer brain regions, than the overall population of excitatory neurons. Additionally, extrinsic inputs tended to target rostral excitatory and inhibitory SC neurons more strongly than their caudal counterparts, and commissural SC neurons tended to project to similar rostrocaudal positions in the other SC. Our findings support the view that active intrinsic processes are critical to SC-dependent functions, and will enable the examination of how specific inputs contribute to these functions.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Motor Control of Distinct Layer 6 Corticothalamic Feedback Circuits 96%
- A selective projection from the subthalamic nucleus to parvalbumin-expressing interneurons of the striatum 96%
- Selective Targeting of a Defined Subpopulation of Corticospinal Neurons using a Novel Klhl14-Cre Mouse Line Enables Molecular and Anatomical Investigations through Development into Maturity 96%
Similar papers in this journal
- Expression of FoxP2 in the Basal Ganglia Regulates Vocal Motor Sequences in the Adult Songbird 95%
- Morphological pseudotime ordering and fate mapping reveals diversification of cerebellar inhibitory interneurons 94%
- Two opposing hippocampus to prefrontal cortex pathways for the control of approach and avoidance behavior 94%
"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.