Brain Dynamics Underlying the Nonlinear Threshold for Access to Consciousness
Antoine del Cul, Sylvain Baillet, Stanislas Dehaene
PLoS Biology September 25, 2007 DOI: 10.1371/journal.pbio.0050260 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Observational cohort Peer reviewed |
|---|---|
| Key findings | The authors report that early occipito-temporal activity (<250 ms) supports considerable subliminal processing, whereas a late (>270 ms) and highly distributed fronto-parieto-temporal activation correlates with conscious reportability. |
Abstract
When a flashed stimulus is followed by a backward mask, subjects fail to perceive it unless the target-mask interval exceeds a threshold duration of about 50 ms. Models of conscious access postulate that this threshold is associated with the time needed to establish sustained activity in recurrent cortical loops, but the brain areas involved and their timing remain debated. We used high-density recordings of event-related potentials (ERPs) and cortical source reconstruction to assess the time course of human brain activity evoked by masked stimuli and to determine neural events during which brain activity correlates with conscious reports. Target-mask stimulus onset asynchrony (SOA) was varied in small steps, allowing us to ask which ERP events show the characteristic nonlinear dependence with SOA seen in subjective and objective reports. The results separate distinct stages in mask-target interactions, indicating that a considerable amount of subliminal processing can occur early on in the occipito-temporal pathway (<250 ms) and pointing to a late (>270 ms) and highly distributed fronto-parieto-temporal activation as a correlate of conscious reportability.