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Updated: Jan 15, 2026

Testing for Odor Discrimination and Habituation in Mice
Published on: May 5, 2015
Odor Experience Stabilizes Glomerular Output Representations in Two Mouse Models of Autism
Kassandra L Sturm1, Daryna Semak1, Zoe A Scheier1
1College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, New York 11568.
Abstract:
Novel stimuli can be stressful for individuals with autism spectrum disorders (ASD), though repeated exposure can reduce this effect. In Cntnap2-/- and Shank3B+/- mouse models of ASD, novel background odors impaired behavioral target odor recognition but that deficit improved with training. To investigate the neural basis of this improvement, we used wide-field calcium imaging to measure olfactory bulb responses in Cntnap2-/- and Shank3B+/- mice and WT mice of either sex. Training with background odors enhanced both behavioral performance and neural discriminability of odor mixtures in both Cntnap2-/- and Shank3B+/- as well as WT mice. Naive Cntnap2-/- and Shank3B+/- mice showed greater trial-to-trial neural variability than WT mice, but training stabilized neural responses. Critically, training produced a widespread reduction in olfactory bulb responses to background odors in ASD models, but not in WT mice. Thus, despite similar behavioral improvements as WT mice, Cntnap2-/- and Shank3B+/- mice relied on a distinct broad suppression of background odor responses to enhance olfactory coding in the presence of background odors.
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