Why would Musical Training Benefit the Neural Encoding of Speech? The OPERA Hypothesis
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Open Access
- 1 January 2011
- journal article
- review article
- Published by Frontiers Media SA in Frontiers in Psychology
- Vol. 2, 142
- https://doi.org/10.3389/fpsyg.2011.00142
Abstract
Mounting evidence suggests that musical training benefits the neural encoding of speech. This paper offers a hypothesis specifying why such benefits occur. The “OPERA” hypothesis proposes that such benefits are driven by adaptive plasticity in speech-processing networks, and that this plasticity occurs when five conditions are met. These are: (1) Overlap: there is anatomical overlap in the brain networks that process an acoustic feature used in both music and speech (e.g., waveform periodicity, amplitude envelope), (2) Precision: music places higher demands on these shared networks than does speech, in terms of the precision of processing, (3) Emotion: the musical activities that engage this network elicit strong positive emotion, (4) Repetition: the musical activities that engage this network are frequently repeated, and (5) Attention: the musical activities that engage this network are associated with focused attention. According to the OPERA hypothesis, when these conditions are met neural plasticity drives the networks in question to function with higher precision than needed for ordinary speech communication. Yet since speech shares these networks with music, speech processing benefits. The OPERA hypothesis is used to account for the observed superior subcortical encoding of speech in musically trained individuals, and to suggest mechanisms by which musical training might improve linguistic reading abilities.Keywords
This publication has 75 references indexed in Scilit:
- Adults with dyslexia are impaired in categorizing speech and nonspeech sounds on the basis of temporal cuesProceedings of the National Academy of Sciences, 2010
- Projections from auditory cortex to midbrain cholinergic neurons that project to the inferior colliculusNeuroscience, 2010
- The descending corticocollicular pathway mediates learning-induced auditory plasticityNature Neuroscience, 2009
- Context-Dependent Encoding in the Human Auditory Brainstem Relates to Hearing Speech in Noise: Implications for Developmental DyslexiaNeuron, 2009
- Learning to Encode Timing: Mechanisms of Plasticity in the Auditory BrainstemNeuron, 2009
- Relationships between behavior, brainstem and cortical encoding of seen and heard speech in musicians and non-musiciansHearing Research, 2008
- Gradient sensitivity to within-category variation in words and syllables.Journal of Experimental Psychology: Human Perception and Performance, 2008
- Musicians have enhanced subcortical auditory and audiovisual processing of speech and musicProceedings of the National Academy of Sciences, 2007
- The Genetics of Congenital Amusia (Tone Deafness): A Family-Aggregation StudyAmerican Journal of Human Genetics, 2007
- Auditory associative memory and representational plasticity in the primary auditory cortexHearing Research, 2007