C. Bruckmann, A. Breska
Predictions about the timing of upcoming stimuli allow to allocate attention proactively, facilitating perceptual processing. While both periodic and aperiodic predictions were associated with anticipatory suppression of occipital alpha-band activity, periodic predictions are thought to uniquely affect perception through entrainment of delta-band activity directly at the level of the sensory cortex. Here we isolated the perceptual effects of interval-based aperiodic predictions using a challenging perceptual paradigm with a delayed response. We compared the perceptual facilitation to entrainment-based predictions in isochronous streams, and how they are mediated by distinct neural mechanisms in delta and alpha bands. Compared to an irregular non-predictive condition, both interval-based and periodic temporal predictions facilitated objective discrimination performance and subjective visibility reports to an equal degree. Neurally, interval-based predictions led to increased delta-band phase alignment, equally to that observed in isochronous streams, with both effects centered on occipital regions. A computational model of oscillatory entrainment revealed that these results cannot be explained by entrainment to the aperiodic stream. Interestingly, anticipatory alpha-band suppression did not differ between predictive and the non-predictive conditions, dissociating the perceptual effects of temporal attention from modulations of occipital alpha amplitude. Overall, these results indicate that top-down temporal predictions can shape visual processing through phase alignment of non-oscillatory low-frequency activity at the sensory cortex, pointing to the context-independent neural mechanisms of temporal attention at the cortical level. More broadly, they highlight the unique functional and neural features of temporal attention.