Short-term monocular deprivation boosts neural responsiveness to audio-visual events for the undeprived eye
Federici, A.; Bernardi, G.; Senna, I.; Fantoni, M.; Ernst, M. O.; Ricciardi, E.; Bottari, D.
Show abstract
A brief period of monocular deprivation (MD) induces short-term plasticity of the adult visual system. Whether MD elicits changes beyond visual processing is yet unclear. Here, we assessed the specific impact of MD on multisensory processes. Neural oscillations associated with visual and audio-visual processing were measured for both the deprived and the undeprived eye. Results revealed that MD changed neural activities associated with unimodal and multisensory processes in an eye-specific manner. Selectively for the deprived eye, alpha activity was reduced within the first 150 ms of visual processing. Conversely, gamma activity was enhanced in response to audio-visual events only for the undeprived eye within 100-300 ms after stimulus onset. The analysis of gamma responses to unimodal auditory events revealed that MD elicited a crossmodal upweighting for the undeprived eye. Distributed source modeling suggested that the right parietal cortex played a major role in all neural effects induced by MD. Finally, visual and audio-visual processing alterations emerged selectively for the induced (but not the evoked) component of the neural oscillations, indicating a major role of feedback connectivity. These findings support a model in which MD increases excitability to visual events for the deprived eye and to audio-visual and auditory events for the undeprived eye. On the one hand, these results reveal the causal impact of MD on both unisensory and multisensory processes but with distinct frequency-specific profiles. On the other hand, they highlight the feedback nature of short-term neural plasticity. Overall this study shed light on the high flexibility and interdependence of unimodal and multisensory functions. Highlights- We unveiled the impact of temporary MD on visual and audio-visual processing - MD enhanced visual excitability for the deprived eye - MD boosted neural responses to audio-visual events for the undeprived eye - Analyses of auditory processing revealed crossmodal effects following MD - Short-term MD primarily affects induced, non-phase-locked, oscillatory activity
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Distinct roles of forward and backward alpha-band waves in spatial visual attention 96%
- Cortical tracking of hierarchical rhythms orchestrates the multisensory processing of biological motion 96%
- Local cortical desynchronization and pupil-linked arousal differentially shape brain states for optimal sensory performance 95%
Similar papers in this journal
- Reduced alpha amplitudes predict perceptual suppression 95%
- Disentangling the Functional Roles of Pre-Stimulus Oscillations in Crossmodal Associative Memory Formation via Sensory Entrainment 95%
- Bayesian Prior Uncertainty and Surprisal Elicit Distinct Neural Patterns During Sound Localization in Dynamic Environments 95%
Similar papers in this journal
- Dissociated amplitude and phase effects of alpha oscillation in a nested structure of rhythm- and sequence-based temporal expectation 95%
- Using occipital α-bursts to modulate behaviour in real-time 95%
- Dissociable neural information dynamics of perceptual integration and differentiation during bistable perception 95%
"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.