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Wallez, Catherine; Schaeffer, Jennifer; Meguerditchian, Adrien; Vauclair, Jacques; Schapiro, Steven J.; Hopkins, William D. – Brain and Language, 2012
Studies involving oro-facial asymmetries in nonhuman primates have largely demonstrated a right hemispheric dominance for communicative signals and conveyance of emotional information. A recent study on chimpanzee reported the first evidence of significant left-hemispheric dominance when using attention-getting sounds and rightward bias for…
Descriptors: Evidence, Brain Hemisphere Functions, Specialization, Lateral Dominance
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Konishi, Masakazu – Brain and Language, 2010
Central nervous networks, be they a part of the human brain or a group of neurons in a snail, may be designed to produce distinct patterns of movement. Central pattern generators can account for the development and production of normal vocal signals without auditory feedback in non-songbirds. Songbirds need auditory feedback to develop and…
Descriptors: Animals, Auditory Perception, Feedback (Response), Acoustics
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Nottebohm, Fernando; Liu, Wan-Chun – Brain and Language, 2010
We do not know how vocal learning came to be, but it is such a salient trait in human evolution that many have tried to imagine it. In primates this is difficult because we are the only species known to possess this skill. Songbirds provide a richer and independent set of data. I use comparative data and ask broad questions: How does vocal…
Descriptors: Evolution, Infants, Anatomy, Animals
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White, Stephanie A. – Brain and Language, 2010
Could a mutation in a single gene be the evolutionary lynchpin supporting the development of human language? A rare mutation in the molecule known as FOXP2 discovered in a human family seemed to suggest so, and its sequence phylogeny reinforced a Chomskian view that language emerged wholesale in humans. Spurred by this discovery, research in…
Descriptors: Genetics, Language Acquisition, Molecular Structure, Linguistic Theory