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Increased Reliability of Visually-Evoked Activity in Area V1 of the MECP2-Duplication Mouse Model of Autism

  • Ryan T. Ash
  • , Ganna Palagina
  • , Jose A. Fernandez-Leon
  • , Jiyoung Park
  • , Rob Seilheimer
  • , Sangkyun Lee
  • , Jasdeep Sabharwal
  • , Fredy Reyes
  • , Jing Wang
  • , Dylan Lu
  • , Muhammad Sarfraz
  • , Emmanouil Froudarakis
  • , Andreas S. Tolias
  • , Samuel M. Wu
  • , Stelios M. Smirnakis

Research output: Contribution to journalArticlepeer-review

Abstract

Atypical sensory processing is now thought to be a core feature of the autism spectrum. Influential theories have proposed that both increased and decreased neural response reliability within sensory systems could underlie altered sensory processing in autism. Here, we report evidence for abnormally increased reliability of visual-evoked responses in layer 2/3 neurons of adult male and female primary visual cortex in the MECP2-duplication syndrome animal model of autism. Increased response reliability was due in part to decreased response amplitude, decreased fluctuations in endogenous activity, and an abnormal decoupling of visual-evoked activity from endogenous activity. Similar to what was observed neuronally, the optokinetic reflex occurred more reliably at low contrasts in mutant mice compared with controls. Retinal responses did not explain our observations. These data suggest that the circuit mechanisms for combining sensory-evoked and endogenous signal and noise processes may be altered in this form of syndromic autism.

Original languageEnglish (US)
Pages (from-to)6469-6482
Number of pages14
JournalJournal of Neuroscience
Volume42
Issue number33
DOIs
StatePublished - Aug 17 2022

Keywords

  • ASD
  • MECP2
  • autism
  • calcium imaging
  • mouse
  • visual cortex

ASJC Scopus subject areas

  • General Neuroscience

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