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A Within-subjects Experimental Protocol to Assess the Effects of Social Input on Infant EEG
Published on: May 3, 2017
Effects of noise and age on the infant brainstem response to speech
Gabriella Musacchia1, Silvia Ortiz-Mantilla2, Cynthia P Roesler2
1Department of Audiology, University of the Pacific, 155 Fifth Street, San Francisco, CA 94103, United States; Department of Otolaryngology Head and Neck Surgery, Stanford Medical School, Stanford, CA, United States.
Objective:
Background noise makes hearing speech difficult for people of all ages. This difficulty can be exacerbated by co-occurring developmental deficits that often emerge in childhood. Sentence-type speech-in-noise (SIN) tests are available clinically but cannot be administered to very young individuals. Our objective was to examine the use of an electrophysiological test of SIN, suitable for infants, to track developmental trajectories.
Methods:
Speech-evoked brainstem potentials were recorded from 30 typically-developing infants in quiet and +10 dB SNR background noise. Infants were divided into two age groups (7-12 and 18-24 months) and examined across development. Spectral power of the frequency following response (FFR) was computed using a fast Fourier Transform. Cross-correlations between quiet and noise responses were computed to measure encoding resistance to noise.
Results:
Older infants had more robust FFR encoding in noise and had higher quiet-noise correlations than their younger counterparts. No group differences were observed in the quiet condition.
Conclusions:
By two years of age, infants show less vulnerability to the disruptive effects of background noise, compared to infants under 12 months.
Significance:
Speech-in-noise electrophysiology can be easily recorded across infancy and provides unique insights into developmental differences that tests conducted in quiet may miss.
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