Subanesthetic ketamine administration decreases deviance detection responses at the cellular, populational and mesoscale connectivity levels
Carreno-Munoz, M. I.; Ciancone Chama, A.; Chehrazi, P.; Chattopadhyaya, B.; Di Cristo, G.
Show abstract
In the neocortex, neuronal processing of sensory events is significantly influenced by their predictability. A common example is the suppression of responses to repetitive stimuli in sensory cortices, a phenomenon known as habituation. Within a sensory information stream, whenever a novel stimulus deviates from expectations, enhanced brain responses are observed. Mismatch negativity (MMN), the electroencephalographic waveform reflecting rule violations, is a well-established biomarker for auditory deviant detection. MMN has been shown to depend on intact NMDA receptor signaling across species; nevertheless, the underlying mechanisms at the neuronal and mesoscale levels are still not fully understood. Using multi-electrode array recordings in awake mice, we identified a specific biphasic spiking response in a subpopulation of primary auditory cortex (A1) neurons elicited by deviant, but not standard, sounds, wherein the second peak is abolished by acute sub-anesthetic injection of ketamine, a partial non-competitive NMDA receptor antagonist. We further showed that the posterior parietal cortex (PPC), a critical hub for multisensory integration and sensorimotor coordination, responds to deviant, but not repetitive, sounds, and this response is dependent upon intact NMDA receptor-mediated signaling. Finally, to explore the effects of ketamine on inter-cortical communication following deviance detection, we performed Weighted Phase Lag Index (wPLI) analyses during the presentation of deviant and standard sounds. This analysis showed a functional connectivity between A1 and PPC following deviant detection, which is impaired by ketamine administration. Altogether, our findings provide novel insights into the NMDA receptor-dependent mechanisms underlying the processing of novelty in auditory stimuli.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A Rapid Anterior Auditory Processing Stream Through the Insulo-Parietal Auditory Field in the Rat 96%
- Dopamine D1 receptor activation drives plasticity in the songbird auditory pallium 96%
- Synaptic properties of layer 6 auditory corticothalamic inputs in normal hearing and noise-induced hearing loss 95%
Similar papers in this journal
- Emergence and function of cortical offset responses in sound termination detection 96%
- Microprism-based two-photon imaging of the lateral cortex of the mouse inferior colliculus reveals novel organizational principles of the auditory midbrain 95%
- Audiovisual task switching rapidly modulates sound encoding in mouse auditory cortex 95%
Similar papers in this journal
Similar papers in this journal
- Early retinal deprivation crossmodally alters nascent subplate circuits and activity in the auditory cortex during the precritical period 96%
- Spatiotemporal dynamics across visual cortical laminae support a predictive coding framework for interpreting mismatch responses 96%
- Biological constraints on stereotaxic targeting of functionally-defined cortical areas 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.