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Cai, Weidong; Oldenkamp, Caitlin L.; Aron, Adam R. – Brain and Language, 2012
Some situations require one to quickly stop an initiated response. Recent evidence suggests that rapid stopping engages a mechanism that has diffuse effects on the motor system. For example, stopping the hand dampens the excitability of the task-irrelevant leg. However, it is unclear whether this "global suppression" could apply across wider motor…
Descriptors: Motor Reactions, Brain Hemisphere Functions, Responses, Cognitive Processes
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Cacciari, C.; Bolognini, N.; Senna, I.; Pellicciari, M. C.; Miniussi, C.; Papagno, C. – Brain and Language, 2011
We used Transcranial Magnetic Stimulation (TMS) to assess whether reading literal, non-literal (i.e., metaphorical, idiomatic) and fictive motion sentences modulates the activity of the motor system. Sentences were divided into three segments visually presented one at a time: the noun phrase, the verb and the final part of the sentence. Single…
Descriptors: Sentences, Verbs, Nouns, Figurative Language
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Bergen, Benjamin; Wheeler, Kathryn – Brain and Language, 2010
When processing sentences about perceptible scenes and performable actions, language understanders activate perceptual and motor systems to perform mental simulations of those events. But little is known about exactly what linguistic elements activate modality-specific systems during language processing. While it is known that content words, like…
Descriptors: Sentences, Nouns, Verbs, Grammar
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Yang, Jie; Shu, Hua; Bi, Yanchao; Liu, Youyi; Wang, Xiaoyi – Brain and Language, 2011
Embodied semantic theories suppose that representation of word meaning and actual sensory-motor processing are implemented in overlapping systems. According to this view, association and dissociation of different word meaning should correspond to dissociation and association of the described sensory-motor processing. Previous studies demonstrate…
Descriptors: Semantics, Verbs, Brain Hemisphere Functions, Diagnostic Tests
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Zwaan, Rolf A.; Taylor, Lawrence J.; de Boer, Mirte – Brain and Language, 2010
Neuroimaging and behavioral studies have revealed involvement of the brain's motor system in language comprehension. The Linguistic-Focus Hypothesis [Taylor, L. J., & Zwaan, R. A. (2008). Motor resonance and linguistic focus. "Quarterly Journal of Experimental Psychology,61", 869-904.] postulates that engagement of the motor system during language…
Descriptors: Brain Hemisphere Functions, Diagnostic Tests, Linguistic Theory, Psychomotor Skills
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Liotti, Mario; Ingham, Janis C.; Takai, Osamu; Paskos, Delia Kothmann; Perez, Ricardo; Ingham, Roger J. – Brain and Language, 2010
High-density ERPs were recorded in eight adults with persistent developmental stuttering (PERS) and eight matched normally fluent (CONT) control volunteers while participants either repeatedly uttered the vowel "ah" or listened to their own previously recorded vocalizations. The fronto-central N1 auditory wave was reduced in response to spoken…
Descriptors: Brain Hemisphere Functions, Stuttering, Vowels, Auditory Perception
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Binkofski, Ferdinand; Buccino, Giovanni – Brain and Language, 2004
Broca's region in the dominant cerebral hemisphere is known to mediate the production of language but also contributes to comprehension. This region evolved only in humans and is constituted of Brodmann's areas 44 and 45 in the inferior frontal gyrus. There is, however, evidence that Broca's region overlaps, at least in part, with the ventral…
Descriptors: Brain Hemisphere Functions, Motor Reactions, Language Processing, Comprehension
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Ackermann, Hermann; Riecker, Axel – Brain and Language, 2004
Based on clinical and functional imaging data, the left anterior insula has been assumed to support prearticulatory functions of speech motor control such as the ''programming'' of vocal tract gestures. In order to further elucidate this model, a recent functional magnetic resonance imaging (fMRI) study of our group (Riecker, Ackermann,…
Descriptors: Articulation (Speech), Inner Speech (Subvocal), Motor Reactions, Language Rhythm
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Buccino, Giovanni; Binkofski, Ferdinand; Riggio, Lucia – Brain and Language, 2004
Mirror neurons, first described in the rostral part of monkey ventral premotor cortex (area F5), discharge both when the animal performs a goal-directed hand action and when it observes another individual performing the same or a similar action. More recently, in the same area mirror neurons responding to the observation of mouth actions have been…
Descriptors: Primatology, Observation, Recognition (Psychology), Brain