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Dual contributions of cerebellar-thalamic networks to learning and offline consolidation of a complex motor task

Andres P Varani, Romain W Sala, Caroline Mailhes-Hamon, Jimena L Frontera, Clément Léna, Daniela Popa
doi: https://doi.org/10.1101/2020.08.27.270330
Andres P Varani
1Institut de biologie de l’Ecole normale supérieure (IBENS), Ecole normale supérieure, CNRS, INSERM, PSL Research University, 75005 Paris, France
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Romain W Sala
1Institut de biologie de l’Ecole normale supérieure (IBENS), Ecole normale supérieure, CNRS, INSERM, PSL Research University, 75005 Paris, France
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Caroline Mailhes-Hamon
1Institut de biologie de l’Ecole normale supérieure (IBENS), Ecole normale supérieure, CNRS, INSERM, PSL Research University, 75005 Paris, France
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Jimena L Frontera
1Institut de biologie de l’Ecole normale supérieure (IBENS), Ecole normale supérieure, CNRS, INSERM, PSL Research University, 75005 Paris, France
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Clément Léna
1Institut de biologie de l’Ecole normale supérieure (IBENS), Ecole normale supérieure, CNRS, INSERM, PSL Research University, 75005 Paris, France
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Daniela Popa
1Institut de biologie de l’Ecole normale supérieure (IBENS), Ecole normale supérieure, CNRS, INSERM, PSL Research University, 75005 Paris, France
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  • For correspondence: dpopa@biologie.ens.fr
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SUMMARY

The contribution of cerebellum to motor learning is often considered to be limited to adaptation, a short-timescale tuning of reflexes and previous learned skills. Yet, the cerebellum is reciprocally connected to two main players of motor learning, the motor cortex and the basal ganglia, via the ventral and midline thalamus respectively. Here, we evaluated the contribution of cerebellar neurons projecting to these thalamic nuclei in a skilled locomotion task in mice. In the cerebellar nuclei, we found task-specific neuronal activities during the task, and lasting changes after the task suggesting an offline processing of task-related information. Using pathway-specific inhibition, we found that dentate neurons projecting to the midline thalamus contribute to learning and retrieval, while interposed neurons projecting to the ventral thalamus contribute to the offline consolidation of savings. Our results thus show that two parallel cerebello-thalamic pathways perform distinct computations operating on distinct timescales in motor learning.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • ↵* these authors jointly directed the work

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-ND 4.0 International license.
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Posted August 27, 2020.
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Dual contributions of cerebellar-thalamic networks to learning and offline consolidation of a complex motor task
Andres P Varani, Romain W Sala, Caroline Mailhes-Hamon, Jimena L Frontera, Clément Léna, Daniela Popa
bioRxiv 2020.08.27.270330; doi: https://doi.org/10.1101/2020.08.27.270330
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Dual contributions of cerebellar-thalamic networks to learning and offline consolidation of a complex motor task
Andres P Varani, Romain W Sala, Caroline Mailhes-Hamon, Jimena L Frontera, Clément Léna, Daniela Popa
bioRxiv 2020.08.27.270330; doi: https://doi.org/10.1101/2020.08.27.270330

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