Subcortical Laterality of Speech Encoding
- 20 December 2008
- journal article
- research article
- Published by S. Karger AG in Audiology and Neurotology
- Vol. 14 (3) , 198-207
- https://doi.org/10.1159/000188533
Abstract
It is well established that in the majority of the population language processing is lateralized to the left hemisphere. Evidence suggests that lateralization is also present in the brainstem. In the current study, the syllable /da/ was presented monaurally to the right and left ears and electrophysiological responses from the brainstem were recorded in adults with symmetrical interaural click-evoked responses. Responses to the right-ear presentation occurred earlier than those to left-ear presentation in two peaks of the frequency following response (FFR) and approached significance for the third peak of the FFR and the offset peak. Interestingly, there were no differences in interpeak latencies indicating the response to right-ear presentation simply occurred earlier over this region. Analyses also showed more robust frequency encoding when stimuli were presented to the right ear than the left ear. The effect was found for the harmonics of the fundamental that correspond to the first formant of the stimulus, but was not seen in the fundamental frequency range. The results suggest that left lateralization of processing acoustic elements important for discriminating speech extends to the auditory brainstem and that these effects are speech specific.Keywords
This publication has 40 references indexed in Scilit:
- Deficient brainstem encoding of pitch in children with Autism Spectrum DisordersClinical Neurophysiology, 2008
- Right-Hemisphere Auditory Cortex Is Dominant for Coding Syllable Patterns in SpeechJournal of Neuroscience, 2008
- Developmental Plasticity in the Human Auditory BrainstemJournal of Neuroscience, 2008
- Musicians have enhanced subcortical auditory and audiovisual processing of speech and musicProceedings of the National Academy of Sciences, 2007
- Musical experience shapes human brainstem encoding of linguistic pitch patternsNature Neuroscience, 2007
- Phase-Locked Responses to Pure Tones in the Inferior ColliculusJournal of Neurophysiology, 2006
- Asymmetry of evoked potential latency to speech sounds predicts the ear advantage in dichotic listeningCognitive Brain Research, 2005
- Encoding of pitch in the human brainstem is sensitive to language experienceCognitive Brain Research, 2005
- Encoding of temporal speech features (formant transients) during binaural and dichotic stimulus application:: A whole-head magnetencephalography studyCognitive Brain Research, 2000
- Response Asymmetry and Binaural Interaction in the AuditoryEar & Hearing, 1988