TY - JOUR
T1 - Brain-wide representations of prior information in mouse decision-making
AU - International Brain Laboratory
AU - Findling, Charles
AU - Hubert, Felix
AU - Acerbi, Luigi
AU - Benson, Brandon
AU - Benson, Julius
AU - Birman, Daniel
AU - Bonacchi, Niccolò
AU - Buchanan, E. Kelly
AU - Bruijns, Sebastian
AU - Carandini, Matteo
AU - Catarino, Joana A.
AU - Chapuis, Gaelle A.
AU - Churchland, Anne K.
AU - Dan, Yang
AU - Davatolhagh, Felicia
AU - DeWitt, Eric E.J.
AU - Engel, Tatiana A.
AU - Fabbri, Michele
AU - Faulkner, Mayo A.
AU - Fiete, Ila Rani
AU - Freitas-Silva, Laura
AU - Gerçek, Berk
AU - Harris, Kenneth D.
AU - Häusser, Michael
AU - Hofer, Sonja B.
AU - Hu, Fei
AU - Huntenburg, Julia M.
AU - Khanal, Anup
AU - Krasniak, Chris
AU - Langdon, Christopher
AU - Langfield, Christopher A.
AU - Latham, Peter E.
AU - Lau, Petrina Y.P.
AU - Mainen, Zach
AU - Meijer, Guido T.
AU - Miska, Nathaniel J.
AU - Mrsic-Flogel, Thomas D.
AU - Noel, Jean Paul
AU - Nylund, Kai
AU - Pan-Vazquez, Alejandro
AU - Paninski, Liam
AU - Pillow, Jonathan
AU - Rossant, Cyrille
AU - Roth, Noam
AU - Schaeffer, Rylan
AU - Schartner, Michael
AU - Shi, Yanliang
AU - Socha, Karolina Z.
AU - Steinmetz, Nicholas A.
AU - Witten, Ilana B.
N1 - Publisher Copyright:
© The Author(s) 2025.
PY - 2025/9/4
Y1 - 2025/9/4
N2 - The neural representations of prior information about the state of the world are poorly understood1. Here, to investigate them, we examined brain-wide Neuropixels recordings and widefield calcium imaging collected by the International Brain Laboratory. Mice were trained to indicate the location of a visual grating stimulus, which appeared on the left or right with a prior probability alternating between 0.2 and 0.8 in blocks of variable length. We found that mice estimate this prior probability and thereby improve their decision accuracy. Furthermore, we report that this subjective prior is encoded in at least 20% to 30% of brain regions that, notably, span all levels of processing, from early sensory areas (the lateral geniculate nucleus and primary visual cortex) to motor regions (secondary and primary motor cortex and gigantocellular reticular nucleus) and high-level cortical regions (the dorsal anterior cingulate area and ventrolateral orbitofrontal cortex). This widespread representation of the prior is consistent with a neural model of Bayesian inference involving loops between areas, as opposed to a model in which the prior is incorporated only in decision-making areas. This study offers a brain-wide perspective on prior encoding at cellular resolution, underscoring the importance of using large-scale recordings on a single standardized task.
AB - The neural representations of prior information about the state of the world are poorly understood1. Here, to investigate them, we examined brain-wide Neuropixels recordings and widefield calcium imaging collected by the International Brain Laboratory. Mice were trained to indicate the location of a visual grating stimulus, which appeared on the left or right with a prior probability alternating between 0.2 and 0.8 in blocks of variable length. We found that mice estimate this prior probability and thereby improve their decision accuracy. Furthermore, we report that this subjective prior is encoded in at least 20% to 30% of brain regions that, notably, span all levels of processing, from early sensory areas (the lateral geniculate nucleus and primary visual cortex) to motor regions (secondary and primary motor cortex and gigantocellular reticular nucleus) and high-level cortical regions (the dorsal anterior cingulate area and ventrolateral orbitofrontal cortex). This widespread representation of the prior is consistent with a neural model of Bayesian inference involving loops between areas, as opposed to a model in which the prior is incorporated only in decision-making areas. This study offers a brain-wide perspective on prior encoding at cellular resolution, underscoring the importance of using large-scale recordings on a single standardized task.
UR - https://www.scopus.com/pages/publications/105015486100
UR - https://www.scopus.com/pages/publications/105015486100#tab=citedBy
U2 - 10.1038/s41586-025-09226-1
DO - 10.1038/s41586-025-09226-1
M3 - Article
C2 - 40903597
AN - SCOPUS:105015486100
SN - 0028-0836
VL - 645
SP - 192
EP - 200
JO - Nature
JF - Nature
IS - 8079
ER -