The Lateralization of Speech-Brain Coupling Is Differentially Modulated by Intrinsic Auditory and Top-Down Mechanisms

Frontiers in Integrative Neuroscience
M F AssaneoDavid Poeppel

Abstract

The lateralization of neuronal processing underpinning hearing, speech, language, and music is widely studied, vigorously debated, and still not understood in a satisfactory manner. One set of hypotheses focuses on the temporal structure of perceptual experience and links auditory cortex asymmetries to underlying differences in neural populations with differential temporal sensitivity (e.g., ideas advanced by Zatorre et al. (2002) and Poeppel (2003). The Asymmetric Sampling in Time theory (AST) (Poeppel, 2003), builds on cytoarchitectonic differences between auditory cortices and predicts that modulation frequencies within the range of, roughly, the syllable rate, are more accurately tracked by the right hemisphere. To date, this conjecture is reasonably well supported, since - while there is some heterogeneity in the reported findings - the predicted asymmetrical entrainment has been observed in various experimental protocols. Here, we show that under specific processing demands, the rightward dominance disappears. We propose an enriched and modified version of the asymmetric sampling hypothesis in the context of speech. Recent work (Rimmele et al., 2018b) proposes two different mechanisms to underlie the auditory tracking of ...Continue Reading

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Citations

May 8, 2020·Nature Reviews. Neuroscience·David Poeppel, M Florencia Assaneo
Apr 8, 2020·Frontiers in Human Neuroscience·Helene Gudi-MindermannBrigitte Röder
Jun 9, 2021·Psychonomic Bulletin & Review·Pius KernJohanna M Rimmele

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Methods Mentioned

BETA
PCA

Software Mentioned

FieldTrip
Brainnetome
MATLAB
Praat
Brainnetome Atlas
FieldtTrip
MBROLA
FreeSurfer

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