<p>Computational psychiatry studies suggest that individuals with autism spectrum disorder (ASD) inflexibly update their expectations. Here we leveraged high-yield rodent psychophysics, extensive behavioral modeling and brain-wide single-cell extracellular recordings to assess whether mice with different genetic perturbations associated with ASD show this same computational anomaly, and if so, what neurophysiological features are shared across genotypes. Mice harboring mutations in <i>Fmr1</i>, <i>Cntnap2</i> or <i>Shank3B</i> show a blunted update of priors during decision-making. Compared with mice that flexibly updated their priors, inflexible updating of priors was associated with a shift in the weighting of prior encoding from sensory to frontal cortices. Furthermore, frontal areas in mouse models of ASD showed more units encoding deviations from the animals’ long-run prior, and sensory responses did not differentiate between expected and unexpected observations. These findings suggest that distinct genetic instantiations of ASD may yield common neurophysiological and behavioral phenotypes.</p>

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A common computational and neural anomaly across mouse models of autism

  • Jean-Paul Noel,
  • Edoardo Balzani,
  • Luigi Acerbi,
  • Julius Benson,
  • Dora Angelaki,
  • Daniel Birman,
  • Niccolo Bonacchi,
  • Matteo Carandini,
  • Joana A. Catarino,
  • Gaelle A. Chapuis,
  • Anne K. Churchland,
  • Yang Dan,
  • Felicia Davatolhagh,
  • Peter Dayan,
  • Eric EJ DeWitt,
  • Tatiana A. Engel,
  • Mayo Faulkner,
  • Ila Rani Fiete,
  • Laura Freitas-Silva,
  • Berk Gercek,
  • Kenneth D. Harris,
  • Michael Hausser,
  • Sonja B. Hofer,
  • Fei Hu,
  • Julia M. Huntenburg,
  • Anup Khanal,
  • Christopher Krasniak,
  • Zachary F. Mainen,
  • Guido T. Meijer,
  • Nathaniel J. Miska,
  • Thomas D. Mrsic-Flogel,
  • Alejandro Pan-Vazquez,
  • Liam Paninski,
  • Alexandre Pouget,
  • Cyrille Rossant,
  • Noam Roth,
  • Michael Schartner,
  • Karolina Z. Socha,
  • Nicholas A. Steinmetz,
  • Karel Svoboda,
  • Anne E. Urai,
  • Miles J. Wells,
  • Steven Jon West,
  • Matthew R. Whiteway,
  • Olivier Winter,
  • Ilana B. Witten,
  • Cristina Savin,
  • Dora E. Angelaki

摘要

Computational psychiatry studies suggest that individuals with autism spectrum disorder (ASD) inflexibly update their expectations. Here we leveraged high-yield rodent psychophysics, extensive behavioral modeling and brain-wide single-cell extracellular recordings to assess whether mice with different genetic perturbations associated with ASD show this same computational anomaly, and if so, what neurophysiological features are shared across genotypes. Mice harboring mutations in Fmr1, Cntnap2 or Shank3B show a blunted update of priors during decision-making. Compared with mice that flexibly updated their priors, inflexible updating of priors was associated with a shift in the weighting of prior encoding from sensory to frontal cortices. Furthermore, frontal areas in mouse models of ASD showed more units encoding deviations from the animals’ long-run prior, and sensory responses did not differentiate between expected and unexpected observations. These findings suggest that distinct genetic instantiations of ASD may yield common neurophysiological and behavioral phenotypes.