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Infant Auditory Processing and Event-related Brain Oscillations
Authors:Gabriella Musacchia  Silvia Ortiz-Mantilla  Teresa Realpe-Bonilla  Cynthia P. Roesler  April A. Benasich
Affiliation:1Center for Molecular & Behavioral Neuroscience, Rutgers University, State University of New Jersey, Newark;2Department of Audiology, University of the Pacific;3Department of Otolaryngology, Head & Neck Surgery, Stanford University
Abstract:Rapid auditory processing and acoustic change detection abilities play a critical role in allowing human infants to efficiently process the fine spectral and temporal changes that are characteristic of human language. These abilities lay the foundation for effective language acquisition; allowing infants to hone in on the sounds of their native language. Invasive procedures in animals and scalp-recorded potentials from human adults suggest that simultaneous, rhythmic activity (oscillations) between and within brain regions are fundamental to sensory development; determining the resolution with which incoming stimuli are parsed. At this time, little is known about oscillatory dynamics in human infant development. However, animal neurophysiology and adult EEG data provide the basis for a strong hypothesis that rapid auditory processing in infants is mediated by oscillatory synchrony in discrete frequency bands. In order to investigate this, 128-channel, high-density EEG responses of 4-month old infants to frequency change in tone pairs, presented in two rate conditions (Rapid: 70 msec ISI and Control: 300 msec ISI) were examined. To determine the frequency band and magnitude of activity, auditory evoked response averages were first co-registered with age-appropriate brain templates. Next, the principal components of the response were identified and localized using a two-dipole model of brain activity. Single-trial analysis of oscillatory power showed a robust index of frequency change processing in bursts of Theta band (3 - 8 Hz) activity in both right and left auditory cortices, with left activation more prominent in the Rapid condition. These methods have produced data that are not only some of the first reported evoked oscillations analyses in infants, but are also, importantly, the product of a well-established method of recording and analyzing clean, meticulously collected, infant EEG and ERPs. In this article, we describe our method for infant EEG net application, recording, dynamic brain response analysis, and representative results.
Keywords:Behavior   Issue 101   Infant   Infant Brain   Human Development   Auditory Development   Oscillations   Brain Oscillations   Theta   Electroencephalogram   Child Development   Event-related Potentials   Source Localization   Auditory Cortex
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