Rémi Ronzano
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remironzano.bsky.social
Rémi Ronzano
@remironzano.bsky.social
Early Career Wellcome Trust fellow @UCL - fascinated by movements and the neural circuits shaping them.
Pinned
Do comparator modules exist within spinal circuits? Here, we show that spinal dI3 neurons integrate multimodal sensory feedback, receive direct efference copy from Renshaw cells, and mediate corrections of ongoing movements. Thank you so much to everyone involved!!
www.biorxiv.org/content/10.1...
Evidence of spinal cord comparator modules for rapid corrections of movements
Successful movement requires continuous adjustments in response to changes in internal and external environments. To do so, neural circuits continuously compare efference copies of motor commands with sensory input to respond to sensory prediction errors. Some responses need to be very fast and, for limbs, likely occur in as yet undefined spinal cord circuits. Here, we describe spinal circuits involving dI3 neurons, showing that they receive multimodal sensory inputs and direct efferent copies from both Renshaw cells and motor neurons. We further show that they form connections to motor pools, including diverging connections to antagonist motor nuclei. Reducing dI3 neuronal activity diminished stumbling responses, as did disrupting Renshaw cell circuits, providing evidence for a comparator role of dI3 neurons for online corrections. Together, our findings reveal a pivotal role for dI3 neurons functioning as comparators of internal predictions and external sensory feedback to mediate rapid corrections of ongoing movements. ### Competing Interest Statement Robert M. Brownstone is a co-founder and director of Sania Therapeutics Inc. Wellcome Trust, https://ror.org/029chgv08, 221610/Z/20/Z, 227433/Z/23/Z, 225674/Z/22/Z Royal Society, NIF\R1\192316 Canadian Institutes of Health Research, https://ror.org/01gavpb45, PJT 180556, PJT 162357 Biotechnology and Biological Sciences Research Council, BB/S005943/1
www.biorxiv.org
Reposted by Rémi Ronzano
I really like this one 🤓. Work led by Elisa Toscano with invaluable help from many 🙏 @alesantuz.bsky.social, @lowensteined.bsky.social. A spinal circuit for skilled locomotion www.cell.com/current-biol...
A spinal circuit for skilled locomotion
Toscano et al. identify glutamatergic Pitx2+ V0 ascending neurons (V0g-aNs) that receive input from cerebrospinal fluid (CSF)-contacting neurons and target spinal premotor and motor neurons. Eliminati...
www.cell.com
October 3, 2025 at 3:21 PM
Do comparator modules exist within spinal circuits? Here, we show that spinal dI3 neurons integrate multimodal sensory feedback, receive direct efference copy from Renshaw cells, and mediate corrections of ongoing movements. Thank you so much to everyone involved!!
www.biorxiv.org/content/10.1...
Evidence of spinal cord comparator modules for rapid corrections of movements
Successful movement requires continuous adjustments in response to changes in internal and external environments. To do so, neural circuits continuously compare efference copies of motor commands with sensory input to respond to sensory prediction errors. Some responses need to be very fast and, for limbs, likely occur in as yet undefined spinal cord circuits. Here, we describe spinal circuits involving dI3 neurons, showing that they receive multimodal sensory inputs and direct efferent copies from both Renshaw cells and motor neurons. We further show that they form connections to motor pools, including diverging connections to antagonist motor nuclei. Reducing dI3 neuronal activity diminished stumbling responses, as did disrupting Renshaw cell circuits, providing evidence for a comparator role of dI3 neurons for online corrections. Together, our findings reveal a pivotal role for dI3 neurons functioning as comparators of internal predictions and external sensory feedback to mediate rapid corrections of ongoing movements. ### Competing Interest Statement Robert M. Brownstone is a co-founder and director of Sania Therapeutics Inc. Wellcome Trust, https://ror.org/029chgv08, 221610/Z/20/Z, 227433/Z/23/Z, 225674/Z/22/Z Royal Society, NIF\R1\192316 Canadian Institutes of Health Research, https://ror.org/01gavpb45, PJT 180556, PJT 162357 Biotechnology and Biological Sciences Research Council, BB/S005943/1
www.biorxiv.org
September 2, 2025 at 4:31 PM
Reposted by Rémi Ronzano
Hey #motorcontrol researchers! @jul-bouvier.bsky.social, LeMouel & I organize *Searching for principles in Motor Control* Paris Sept 23-24, 25 @sorbonne-universite.fr @institutducerveau.bsky.social @neuropsi.bsky.social: Submit Abstract for Posters by Aug 31! motorconference.sciencesconf.org?lang=en
August 20, 2025 at 12:56 PM