Exploring Neural Signatures of Self-Initiated Saccadic and Blink Events in the Real World
Grasso-Cladera, A.; Nolte, D.; Zaidan, A.; Akkaya, A. M.; Kietzmann, T. C.; König, P.
Show abstract
During natural vision, the human brain constantly has to account for self-produced interruptions of visual input, through blinks and saccades, to maintain a stable perception of the world. It remains unclear whether these event-related neural responses are treated similarly due to a common underlying mechanism. To systematically investigate this functional connection, we recorded synchronized mobile EEG and eye-tracking data from freely moving participants as they (visually) explored a city center. Our results replicate prior findings showing that a substantial portion of the neural response is aligned to event onsets in comparison to offset, underscoring the relevance of investigating the beginning and end of these events. Using advanced deconvolution techniques, we disentangled overlapping, time-locked neural contributions associated with the onsets and offsets of saccades and blinks. The results demonstrate that the deconvoluted neural kernels are highly correlated when comparing saccade onset to blink onset, as well as saccade offset to blink offset, for both evoked and induced activity across electrodes. Together, our findings demonstrate that despite their distinct physical profiles, saccades and blinks share a common neural signature that governs both their onset and offset dynamics during unconstrained real-world behavior. HighlightsO_LICo-registration of portable EEG and Eye-Tracking yielded meaningful real world data. C_LIO_LIWe studied blinks and saccades as natural interruptions of visual processes. C_LIO_LIAligning EEG data to onset and offset underscored the relevance of both timepoints. C_LIO_LIWe deconvoluted overlapping neural activity for onsets/offsets of saccades/blinks. C_LIO_LIERPs and TFRs are highly correlated for onset/offset of blinks and saccades. C_LI
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Early beta oscillations in multisensory association areas underlie crossmodal performance enhancement 97%
- Automated EEG mega-analysis I: Spectral and amplitude characteristics across studies 97%
- Quantifying the individual auditory and visual brain response in 7- month-old infants watching a brief cartoon movie 96%
"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.