Dynamics of infant cortical auditory evoked potentials (CAEPs) for tone and speech tokens

Barbara Cone1, Richard Whitaker

  • 1University of Arizona, Department of Speech, Language and Hearing Sciences, PO Box 210071, Tucson, AZ 85721, United States. conewess@u.arizona.edu

Insights

Cortical auditory evoked potentials (CAEPs) in infants show immature neural transmission but adult-like amplitude growth, aiding pediatric audiology. These findings help verify hearing aid or cochlear implant benefits in infants.

Area of Science:

  • Auditory Neuroscience
  • Developmental Audiology
  • Neurophysiology

Background:

  • Auditory development in infants is crucial for language acquisition.
  • Cortical auditory evoked potentials (CAEPs) provide insights into auditory processing beyond the brainstem.
  • Understanding infant auditory development aids in early diagnosis and intervention.

Purpose of the Study:

  • To investigate auditory development in infants using CAEPs.
  • To establish CAEP input-output functions for tonal and speech stimuli.
  • To provide a clinically translatable methodology for pediatric audiological assessment.

Main Methods:

  • CAEPs were recorded in 36 infants (4-12 months) and 9 adults using tone bursts and speech tokens.
  • Input-output functions (latency and amplitude) were measured for stimuli presented at varying sound pressure levels (SPL).
  • Behavioral (perceptual) thresholds were determined using psychophysical techniques in a second experiment.

Main Results:

  • Infant CAEP latencies were prolonged (100-150 ms) compared to adults, with steeper latency-intensity functions.
  • Infant CAEP amplitude growth functions were adult-like, especially for the P1-N1 component.
  • Infant perceptual thresholds were elevated and higher than CAEP detection levels, with steeper amplitude growth relative to threshold.

Conclusions:

  • Infant cortical auditory processing shows immaturity in neural transmission but adult-like amplitude encoding.
  • CAEP input-output functions offer insights into infant perception of stimulus level.
  • The methodology is translatable to clinical settings for verifying auditory device benefit in infants.
Abstract