bioRxiv · 10.1101/461558
Multiple mechanisms link prestimulus neural oscillations to sensory responses
Abstract
Spontaneous fluctuations of neural activity may explain why sensory responses vary across repeated presentation of the same physical stimulus. To test this hypothesis, we recorded electroencephalography in humans during stimulation with identical visual stimuli and analyzed how prestimulus neural oscillations modulate different stages of sensory processing reflected by distinct components of the event-related potential (ERP). We found that strong prestimulus alpha- and beta-band power resulted in a suppression of early ERP components (C1 and N150) and in an amplification of late components (after 0.4 s). Whereas functional inhibition of sensory processing underlies the reduction of early ERP responses, we found that the modulation of non-zero-mean oscillations (baseline shift) accounted for the amplification of late responses. Distinguishing between these two mechanisms is crucial for the understanding of how internal brain states modulate the processing of incoming sensory information.
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Iemi, L., Busch, N. A., Laudini, A., Samaha, J., Villringer, A., Nikulin, V. V.. 2018-11-04. Multiple mechanisms link prestimulus neural oscillations to sensory responses. https://doi.org/10.1101/461558
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