Abstract
Temporal information in acoustic signals is important for the perception of environmental sounds, including speech. This review focuses on several aspects of temporal processing within human auditory cortex and its relevance for the processing of speech sounds. Periodic non-speech sounds, such as trains of acoustic clicks and bursts of amplitude-modulated noise or tones, can elicit different percepts depending on the pulse repetition rate or modulation frequency. Such sounds provide convenient methodological tools to study representation of timing information in the auditory system. At low repetition rates of up to 8–10 Hz, each individual stimulus (a single click or a sinusoidal amplitude modulation cycle) within the sequence is perceived as a separate event. As repetition rates increase up to and above approximately 40 Hz, these events blend together, giving rise first to the percept of flutter and then to pitch. The extent to which neural responses of human auditory cortex encode temporal features of acoustic stimuli is discussed within the context of these perceptual classes of periodic stimuli and their relationship to speech sounds. Evidence for neural coding of temporal information at the level of the core auditory cortex in humans suggests possible physiological counterparts to perceptual categorical boundaries for periodic acoustic stimuli. Temporal coding is less evident in auditory cortical fields beyond the core. Finally, data suggest hemispheric asymmetry in temporal cortical processing.
©2011 by Walter de Gruyter Berlin New York
Articles in the same Issue
- Imaging spatial learning in the brain using immediate early genes: insights, opportunities and limitations
- Silencing of CDK5 as potential therapy for Alzheimer’s disease
- The role of CREB signaling in Alzheimer’s disease and other cognitive disorders
- The positive impact of physical activity on cognition during adulthood: a review of underlying mechanisms, evidence and recommendations
- Representation of temporal sound features in the human auditory cortex
- Modulation of fear memory by retrieval and extinction: a clue for memory deconsolidation
- Adenosine 2A receptor: a crucial neuromodulator with bidirectional effect in neuroinflammation and brain injury
- Errata
- Anatomical reference frame versus planar analysis: implications for the kinematics of the rat hindlimb during locomotion
- Estradiol acts through nuclear- and membrane-initiated mechanisms to maintain a balance between GABAergic and glutamatergic signaling in the brain: implications for hormone replacement therapy
Articles in the same Issue
- Imaging spatial learning in the brain using immediate early genes: insights, opportunities and limitations
- Silencing of CDK5 as potential therapy for Alzheimer’s disease
- The role of CREB signaling in Alzheimer’s disease and other cognitive disorders
- The positive impact of physical activity on cognition during adulthood: a review of underlying mechanisms, evidence and recommendations
- Representation of temporal sound features in the human auditory cortex
- Modulation of fear memory by retrieval and extinction: a clue for memory deconsolidation
- Adenosine 2A receptor: a crucial neuromodulator with bidirectional effect in neuroinflammation and brain injury
- Errata
- Anatomical reference frame versus planar analysis: implications for the kinematics of the rat hindlimb during locomotion
- Estradiol acts through nuclear- and membrane-initiated mechanisms to maintain a balance between GABAergic and glutamatergic signaling in the brain: implications for hormone replacement therapy