bioRxiv · 10.1101/2024.05.23.595462
Top-down and bottom-up interactions rely on nested brain oscillations.
Abstract
Adaptive visual processing is enabled through the dynamic interplay between top-down and bottom-up (feedback/feedforward) information exchange, presumably propagated through brain oscillations. Here we causally tested for the oscillatory mechanisms governing this interaction in the visual system. Using concurrent TMS-EEG, we emulated top-down signals by a single TMS-pulse over the Frontal Eye Field (right-FEF), while manipulating the strength of sensory input through the presentation of moving concentric gratings (compared to a control-TMS site). FEF-TMS without sensory input led to a top-down controlled occipital phase-realignment, alongside higher fronto-occipital phase-connectivity, in the alpha/beta-band. Sensory input in the absence of FEF-TMS increased occipital gamma activity. Crucially, testing the interaction between top-down and bottom-up processes (FEF-TMS during sensory input) revealed an increased nesting of the bottom-up gamma activity in the alpha/beta-band cycles. This establishes a causal link between phase-to-power coupling and top-down modulation of feedforward signals, providing novel mechanistic insights into how attention interacts with sensory input at the neural level, shaping rhythmic sampling.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Trajkovic, J., Veniero, D., Hanslmayr, S., Palva, S., Cruz, G., Romei, V., Thut, G.. 2024-05-23. Top-down and bottom-up interactions rely on nested brain oscillations.. https://doi.org/10.1101/2024.05.23.595462
Cite the original work for its findings. Save a collection to share your selection of sources.