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Published on: September 12, 2012
Attention to Pseudotone Melodies Enhances Cortical But Not Brainstem Responses in Humans
Victoria Figarola1, Yunshu Li2, Adam Tierney3
1Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213 vif@andrew.cmu.edu bgsc@andrew.cmu.edu.
None:
Auditory selective attention, the ability to focus on specific sounds while ignoring competitors, enables communication in complex soundscapes. Though attention clearly modulates cortical responses to sound, whether and where this modulation occurs in subcortical structures remains disputed. Here, we use electroencephalography to record cortical and subcortical (auditory brainstem responses, ABRs) activity during a selective attention task. Human participants (18 males, 17 females, 1 of either sex) attend to a three-note melody in one pitch range presented to one ear while ignoring a competing, interleaved melody in a different pitch range played to the other ear (Laffere et al., 2020, 2021). The melodies consist of pitch-evoking pseudotones formed by convolving a periodic impulse train with a brief tone pip. These stimuli allow us to measure both ABRs (elicited by each individual tone pip within a pseudonote) and cortical responses (elicited by the onsets of pseudonotes) simultaneously. We observed robust ABRs, but no evidence of modulation by attention. Conversely, cortical responses, measured by event-related potentials, demonstrated attentional modulation of the P1-N1 peak. We found no evidence that selective attention modulates short-latency ABRs under conditions that elicit robust cortical attentional effects.
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