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Changes in sensory evoked responses coincide with rapid improvement in speech identification performance

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TLDR
Rapid physiological changes in the human auditory system that coincide with learning during a 1-hour test session in which participants learned to identify two consonant vowel syllables that differed in voice onset time are reported.
Abstract
Perceptual learning is sometimes characterized by rapid improvements in performance within the first hour of training (fast perceptual learning), which may be accompanied by changes in sensory and/or response pathways. Here, we report rapid physiological changes in the human auditory system that coincide with learning during a 1-hour test session in which participants learned to identify two consonant vowel syllables that differed in voice onset time. Within each block of trials, listeners were also presented with a broadband noise control stimulus to determine whether changes in auditory evoked potentials were specific to the trained speech cue. The ability to identify the speech sounds improved from the first to the fourth block of trials and remained relatively constant thereafter. This behavioral improvement coincided with a decrease in N1 and P2 amplitude, and these learning-related changes differed from those observed for the noise stimulus. These training-induced changes in sensory evoked responses were followed by an increased negative peak (between 275 and 330 msec) over fronto-central sites and by an increase in sustained activity over the parietal regions. Although the former was also observed for the noise stimulus, the latter was specific to the speech sounds. The results are consistent with a top-down nonspecific attention effect on neural activity during learning as well as a more learning-specific modulation, which is coincident with behavioral improvements in speech identification.

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Citations
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Going beyond rote auditory learning: Neural patterns of generalized auditory learning

TL;DR: The authors examined the differences in neural responses to generalized versus rote learning in auditory cortical processing by training listeners to understand a novel synthetic talker using a pretest-posttest design with electroencephalography (EEG).
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TL;DR: In this article, the authors used multichannel EEG to track behaviorally relevant neuroplastic changes in the auditory event-related potentials (ERPs) pre- to post-training.
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Short-Term Audiovisual Spatial Training Enhances Electrophysiological Correlates of Auditory Selective Spatial Attention.

TL;DR: In this paper, the authors investigated training-induced modulations of event-related potential (ERP) components that have been associated with processes of auditory selective spatial attention when a speaker of interest has to be localized in a multiple speaker (cocktail-party) scenario.
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Task, time and context as potential mediators of repetition priming effects

TL;DR: Three types of evidence from the auditory literature (negative priming, perceptual learning, sensory gating) that reveal stimulus repetition can be associated with decreased rather than increased early evoked responses are considered.
References
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Electrical Signs of Selective Attention in the Human Brain

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TL;DR: The P300 wave is a positive deflection in the human event-related potential that may represent the transfer of information to consciousness, a process that involves many different regions of the brain.
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Increased auditory cortical representation in musicians

TL;DR: The results, when interpreted with evidence for modified somatosensory representations of the fingering digits in skilled violinists, suggest that use-dependent functional reorganization extends across the sensory cortices to reflect the pattern of sensory input processed by the subject during development of musical skill.
Journal ArticleDOI

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TL;DR: Investigation of the hypothesis that task performance can rapidly and adaptively reshape cortical receptive field properties in accord with specific task demands and salient sensory cues found that attending to a specific target frequency during the detection task consistently induced localized facilitative changes in STRF shape.
Journal ArticleDOI

Endogeneous brain potentials associated with selective auditory attention

TL;DR: It was concluded that the effect of selective auditory attention on the N1 component is not due solely to an enlargement of the exogenous N1 components of the vertex potential, but rather includes the addition of a prolonged endogenous component.
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