Abstract
What is the neural substrate that enables the cerebral cortex to control a single mystacial vibrissa and orchestrate its movement? To answer this question, we injected rabies virus into the intrinsic muscle that protracts the rat C3 vibrissa and used retrograde transneuronal transport to identify the cortical neurons that influence the muscle. A surprisingly diverse set of cortical areas is the origin of disynaptic control over the motoneurons that influence the C3 protractor. More than two thirds of these layer 5 pyramidal neurons (L5PNs) are dispersed in frontal and parietal areas outside the primary motor cortex (vM1). This observation emphasizes the importance of descending motor commands from non-primary motor areas. More than a third of the L5PNs originate from somatosensory areas, such as the barrel field (vS1). The barrel field has been long considered a prototypic model system for studying sensory processing at the level of the cerebral cortex. Even so, we find that the number of L5PNs in vS1, and even their peak density, rivals the number and peak density of L5PNs in vM1. Thus, our results emphasize the importance of the barrel field in processing motor output. The distribution of L5PNs in vM1 and vS1 leads us to propose a model of vibrissa protraction in which vM1 output results in protraction, and vS1 output results in reciprocal inhibition (suppression) of protraction. This paired initiation and suppression of complementary movements may be a general feature of the descending output from the rodent M1 and S1.
| Original language | English |
|---|---|
| Article number | e2503325122 |
| Pages (from-to) | 1-8 |
| Number of pages | 8 |
| Journal | Proceedings of the National Academy of Sciences of the United States of America (PNAS) |
| Volume | 122 |
| Issue number | 23 |
| Early online date | 3 Jun 2025 |
| DOIs | |
| Publication status | Published - 10 Jun 2025 |
Bibliographical note
Publisher Copyright:Copyright © 2025 the Author(s).
Funding
We thank Dr. M. Schnell (Thomas Jefferson University, Philadelphia, PA) for supplying rabies virus, Dr. A. Wandeler (Animal Diseases Research Institute, Nepean, ON, Canada) for supplying antibody for the rabies virus, M. Page (GreatIslandSoftware.com) for developing software for anatomical reconstructions, M. Engelhardt, Y. Li, A. Wendlandt, and K. Kanzler for help with neuroanatomical reconstructions, and H. Park and M. Seetharama for developing early versions of analysis routines. Funding was provided by the Max Planck Institute for Neurobiology of Behavior (M.O.), European Research Council Grants 633428 and 101069192 (M.O.), Deutsche Forschungsgemeinschaft Grants SFB 1089 and SPP 2041 (M.O.), German Federal Ministry of Education and Research Grants 01GQ1002 and 01IS18052 (M.O.), Neuroscience Network North Rhine-Westphalia grant iBehave (M.O.), NIH grant P40OD010996 (P.L.S.), and the David Scaife family Charitable Foundation Grant 1805R01 (P.L.S.). ACKNOWLEDGMENTS. We thank Dr. M. Schnell (Thomas Jefferson University, Philadelphia, PA) for supplying rabies virus, Dr. A. Wandeler (Animal Diseases Research Institute, Nepean, ON, Canada) for supplying antibody for the rabies virus, M. Page (GreatIslandSoftware.com) for developing software for anatomical reconstructions, M. Engelhardt, Y. Li, A. Wendlandt, and K. Kanzler for help with neuroanatomical reconstructions, and H. Park and M. Seetharama for developing early versions of analysis routines. Funding was provided by the Max Planck Institute for Neurobiology of Behavior (M.O.), European Research Council Grants 633428 and 101069192 (M.O.), Deutsche Forschungsgemeinschaft Grants SFB 1089 and SPP 2041 (M.O.), German Federal Ministry of Education and Research Grants 01GQ1002 and 01IS18052 (M.O.), Neuroscience Network North Rhine-Westphalia grant iBehave (M.O.), NIH grant P40OD010996 (P.L.S.), and the David Scaife family Charitable Foundation Grant 1805R01 (P.L.S.).
Keywords
- brainstem
- cortex
- forelimb
- motor control
- whisker
Fingerprint
Dive into the research topics of 'Multiple cortical systems influence a single vibrissa muscle'. Together they form a unique fingerprint.Cite this
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver