Low-frequency (alpha-band) activity shapes fine-scale information routing in early visual cortex — alpha oscillations in V1 carry spatially specific figure-ground information and modulate inter-areal V1-V4 coupling during visual processing, supporting the hypothesis that alpha-band synchrony implements hierarchical feedback gating.
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Low-frequency (alpha-band) activity shapes fine-scale information routing in early visual cortex — alpha oscillations in V1 carry spatially specific figure-ground information and modulate inter-areal V1-V4 coupling during visual processing, supporting the hypothesis that alpha-band synchrony implements hierarchical feedback gating.
triggers
["alpha oscillations visual cortex routing","low frequency visual cortex information routing","alpha band figure ground segregation","V1 V4 alpha coupling","nested oscillatory visual processing","visual cortex feedback alpha","hierarchical oscillatory gating","alpha band inter-areal communication","cortical excitability modulation alpha","visual processing alpha synchrony"]
authors
["Shelepenkov, D.","Acacia, G.","Bonnefond, M."]
source
biorxiv:10.64898/2026.05.25.727722
published
2026-05-25
Low-Frequency Alpha Activity Shapes Visual Cortex Information Routing
Overview
This work demonstrates that alpha-band (~8-12 Hz) oscillations in V1 encode spatially-specific visual information and dynamically gate inter-areal communication between V1 and V4 during active visual processing. Using reanalysis of macaque LFP/MUA recordings during figure-ground segregation, the study establishes alpha as a routing mechanism rather than merely reflecting idle cortical inhibition.
Core Findings
Alpha Carries Spatial Visual Information
Alpha activity in V1 (not just gamma) encodes:
Figure position: spatial location of foreground object
Stimulus orientation: fine-grained feature information
This information is present transiently post-stimulus, coinciding with the emergence of figure-ground modulation
Same window coincides with dominant V4→V1 feedback flow
Alpha Modulates Local Spiking
During the transient post-stimulus window:
V1 spiking (MUA) depends on alpha amplitude — higher alpha = modulated local excitability
Alpha phase shapes the timing of local population firing
This contradicts the simple "alpha = inhibition" view