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  1. From mouth to hand: Gesture, speech, and the evolution of right-handedness.Michael C. Corballis - 2003 - Behavioral and Brain Sciences 26 (2):199-208.
    The strong predominance of right-handedness appears to be a uniquely human characteristic, whereas the left-cerebral dominance for vocalization occurs in many species, including frogs, birds, and mammals. Right-handedness may have arisen because of an association between manual gestures and vocalization in the evolution of language. I argue that language evolved from manual gestures, gradually incorporating vocal elements. The transition may be traced through changes in the function of Broca's area. Its homologue in monkeys has nothing to do with vocal control, (...)
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  • The frame/content theory of evolution of speech production.Peter F. MacNeilage - 1998 - Behavioral and Brain Sciences 21 (4):499-511.
    The species-specific organizational property of speech is a continual mouth open-close alternation, the two phases of which are subject to continual articulatory modulation. The cycle constitutes the syllable, and the open and closed phases are segments framescontent displays that are prominent in many nonhuman primates. The new role of Broca's area and its surround in human vocal communication may have derived from its evolutionary history as the main cortical center for the control of ingestive processes. The frame and content components (...)
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  • Getting the right grasp on executive function.Claudia L. R. Gonzalez, Kelly J. Mills, Inge Genee, Fangfang Li, Noella Piquette, Nicole Rosen & Robbin Gibb - 2014 - Frontiers in Psychology 5.
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  • Primate handedness reconsidered.Peter F. MacNeilage, Michael G. Studdert-Kennedy & Bjorn Lindblom - 1987 - Behavioral and Brain Sciences 10 (2):247-263.
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  • Brain circuits ancient and modern.Stephen F. Walker - 1998 - Behavioral and Brain Sciences 21 (4):531-531.
    I support the application of the “evolution as tinkering” idea to vocalization and emphasize that some of the subcortical parts of the brain circuits used for speech organs retain features common to nonprimate mammals, and in some cases to lower vertebrates, pointing up the importance of cortical evolution as suggested by MacNeilage.
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