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Two functionally distinct Purkinje cell populations implement an internal model within a single olivo-cerebellar loop

  • Olivo-cerebellar loops, where anatomical patches of the cerebellar cortex and inferior olive project one onto the other, form an anatomical unit of cerebellar computation. Here, we investigated how successive computational steps map onto olivo-cerebellar loops. Lobules IX-X of the cerebellar vermis, i.e. the nodulus and uvula, implement an internal model of the inner ear’s graviceptor, the otolith organs. We have previously identified two populations of Purkinje cells that participate in this computation: Tilt-selective cells transform egocentric rotation signals into allocentric tilt velocity signals, to track head motion relative to gravity, and translation-selective cells encode otolith prediction error. Here we show that, despite very distinct simple spike response properties, both types of Purkinje cells emit complex spikes that are proportional to sensory prediction error. This indicates that both cell populations comprise a single olivo-cerebellar loop, in which only translation-selective cells project to the inferior olive. We propose a neural network model where sensory prediction errors computed by translation-selective cells are used as a teaching signal for both populations, and demonstrate that this network can learn to implement an internal model of the otoliths.

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Metadaten
Author:Dora E. AngelakiORCiD, Jean LaurensORCiD
URN:urn:nbn:de:hebis:30:3-729288
DOI:https://doi.org/10.1101/2021.05.09.443096
Parent Title (English):bioRxiv
Document Type:Preprint
Language:English
Date of Publication (online):2021/08/30
Date of first Publication:2021/08/30
Publishing Institution:Universitätsbibliothek Johann Christian Senckenberg
Release Date:2023/03/20
Issue:2021.05.09.443096
Page Number:32
HeBIS-PPN:506717151
Sammlungen:Universitätspublikationen
Licence (German):License LogoCreative Commons - CC BY-ND - Namensnennung - Keine Bearbeitungen 4.0 International