NotesFAQContact Us
Collection
Advanced
Search Tips
Showing all 8 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
Loui, Psyche; Li, H. Charles; Hohmann, Anja; Schlaug, Gottfried – Journal of Cognitive Neuroscience, 2011
Connectivity in the human brain has received increased scientific interest in recent years. Although connection disorders can affect perception, production, learning, and memory, few studies have associated brain connectivity with graded variations in human behavior, especially among normal individuals. One group of normal individuals who possess…
Descriptors: Music, Musicians, Brain, Neuropsychology
Peer reviewed Peer reviewed
Direct linkDirect link
Krishnan, Ananthanarayan; Gandour, Jackson T. – Brain and Language, 2009
Historically, the brainstem has been neglected as a part of the brain involved in language processing. We review recent evidence of language-dependent effects in pitch processing based on comparisons of native vs. nonnative speakers of a tonal language from electrophysiological recordings in the auditory brainstem. We argue that there is enhancing…
Descriptors: Tone Languages, Brain, Language Processing, Native Speakers
Peer reviewed Peer reviewed
Direct linkDirect link
Mietz, Anja; Toepel, Ulrike; Ischebeck, Anja; Alter, Kai – Brain and Language, 2008
The current study on German investigates Event-Related brain Potentials (ERPs) for the perception of sentences with intonations which are infrequent (i.e. vocatives) or inadequate in daily conversation. These ERPs are compared to the processing correlates for sentences in which the syntax-to-prosody relations are congruent and used frequently…
Descriptors: Sentences, Brain Hemisphere Functions, Syntax, Brain
Peer reviewed Peer reviewed
Direct linkDirect link
Ross, Elliott D.; Monnot, Marilee – Brain and Language, 2008
Unlike the aphasic syndromes, the organization of affective prosody in brain has remained controversial because affective-prosodic deficits may occur after left or right brain damage. However, different patterns of deficits are observed following left and right brain damage that suggest affective prosody is a dominant and lateralized function of…
Descriptors: Injuries, Brain Hemisphere Functions, Neurological Impairments, Brain
Peer reviewed Peer reviewed
Direct linkDirect link
Rodway, Paul; Schepman, Astrid – Brain and Cognition, 2007
The majority of studies have demonstrated a right hemisphere (RH) advantage for the perception of emotions. Other studies have found that the involvement of each hemisphere is valence specific, with the RH better at perceiving negative emotions and the LH better at perceiving positive emotions [Reuter-Lorenz, P., & Davidson, R.J. (1981)…
Descriptors: Syntax, Brain Hemisphere Functions, Psychological Patterns, Emotional Response
Peer reviewed Peer reviewed
Direct linkDirect link
Van Lancker Sidtis, Diana; Pachana, Nancy; Cummings, Jeffrey L.; Sidtis, John J. – Brain and Language, 2006
Progress in understanding brain/behavior relationships in adult-acquired dysprosody has led to models of cortical hemispheric representation of prosodic processing based on functional (linguistic vs affective) or physical (timing vs pitch) parameters. These explanatory perspectives have not been reconciled, and also a number of neurobehavior…
Descriptors: Brain, Language Processing, Adults, Patients
Peer reviewed Peer reviewed
Direct linkDirect link
Dehaene-Lambertz, G.; Pena, M.; Christophe, A.; Landrieu, P. – Brain and Language, 2004
We report the case of a neonate tested three weeks after a neonatal left sylvian infarct. We studied her perception of speech and non-speech stimuli with high-density event-related potentials. The results show that she was able to discriminate not only a change of timbre in tones but also a vowel change, and even a place of articulation contrast…
Descriptors: Neonates, Vowels, Auditory Discrimination, Verbal Stimuli
Warrier, Catherine M.; Zatorre, Robert J. – Brain, 2004
Pitch constancy, perceiving the same pitch from tones with differing spectral shapes, requires one to extract the fundamental frequency from two sets of harmonics and compare them. We previously showed this difficult task to be easier when tonal context is present, presumably because the context creates a tonal reference point from which to judge…
Descriptors: Brain, Brain Hemisphere Functions, Cues, Intonation