Inverted encoding of neural responses to audiovisual stimuli reveals super-additive multisensory enhancement
Buhmann, Z.; Robinson, A. K.; Mattingley, J. B.; Rideaux, R.
Show abstract
A central challenge for the brain is how to combine separate sources of information from different sensory modalities to optimally represent objects and events in the external world, such as combining someones speech and lip movements to better understand them in a noisy environment. At the level of individual neurons, audiovisual stimuli often elicit super-additive interactions, where the neural response is greater than the sum of auditory and visual responses. However, investigations using electroencephalography (EEG) to record brain activity have revealed inconsistent interactions, with studies reporting a mix of super- and sub-additive effects. A possible explanation for this inconsistency is that standard univariate analyses obscure multisensory interactions present in EEG responses by overlooking multivariate changes in activity across the scalp. To address this shortcoming, we investigated EEG responses to audiovisual stimuli using inverted encoding, a population tuning approach that uses multivariate information to characterise feature-specific neural activity. Participants (n = 41) completed a spatial localisation task for both unisensory stimuli (auditory clicks, visual flashes) and combined audiovisual stimuli (spatiotemporally congruent clicks and flashes). To assess multivariate changes in EEG activity, we used inverted encoding to recover stimulus location information from event-related potentials (ERPs). Participants localised audiovisual stimuli more accurately than unisensory stimuli alone. For univariate ERP analyses we found an additive multisensory interaction. By contrast, multivariate analyses revealed a super-additive interaction [~]180 ms following stimulus onset, such that the location of audiovisual stimuli was decoded more accurately than that predicted by maximum likelihood estimation. Our results suggest that super-additive integration of audiovisual information is reflected within multivariate patterns of activity rather than univariate evoked responses.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Responses to Visual Speech in Human Posterior Superior Temporal Gyrus Examined with iEEG Deconvolution 97%
- Sensory target detection at local and global timescales reveals a hierarchy of supramodal dynamics in the human cortex 97%
- Neural alpha oscillations and pupil size differentially index cognitive demand under competing audio-visual task conditions 97%
Similar papers in this journal
- The Electrophysiological Markers of Statistically Learned Attentional Enhancement: Evidence for a Saliency Based Mechanism 96%
- Suppressive interactions between nearby stimuli in visual cortex reflect crowding 96%
- Steady-state visually evoked potentials and feature-based attention: Pre-registered null results and a focused review of methodological considerations. 96%
Similar papers in this journal
- Auditory and visual gratings elicit distinct gamma responses 97%
- An automatic domain-general error signal is shared across tasks and predicts confidence in different sensory modalities 97%
- Strength of low-frequency EEG phase entrainment to external stimuli is associated with fluctuations in the brain's internal state 97%
Similar papers in this journal
"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.