Experience-dependent enhancement of pitch-specific responses in the auditory cortex is limited to acceleration rates in normal voice range
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- Type
- article
- Published
- 2015-07-09
- Cited by
- 7
- References
- 65
- Access
- Open access
- OpenAlex
- https://openalex.org/W763529258
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:18915568
Keywords
Acceleration, Audiology, Auditory cortex, Asymmetry, Range (aeronautics)
References
- Tone perception in Far Eastern languages.
- Analysis of temporal structure in sound by the human brain
- Hierarchical process memory: memory as an integral component of information processing
- Pitch processing of dynamic lexical tones in the auditory cortex is influenced by sensory and extrasensory processes
- Crosslanguage Differences in Tone Perception: a Multidimensional Scaling Investigation
- Temporal dynamics of pitch in human auditory cortex
- Functions of the left and right posterior temporal lobes during segmental and suprasegmental speech perception
- Role of the right temporal neocortex in retention of pitch in auditory short-term memory.
- Cortical pitch response components index stimulus onset/offset and dynamic features of pitch contours
- Cortical pitch response components show differential sensitivity to native and nonnative pitch contours
- Language experience enhances early cortical pitch-dependent responses
- The brain basis of language processing: from structure to function.
- Depth electrode recordings show double dissociation between pitch processing in lateral Heschl’s gyrus and sound onset processing in medial Heschl’s gyrus
- Auditory sensory storage in relation to the growth of sensation and acoustic information extraction.
- Frequency-specific adaptation in human auditory cortex depends on the spectral variance in the acoustic stimulation.
- Brain Stem Response to Speech: A Biological Marker of Auditory Processing
- Discrimination of fundamental frequency contours in synthetic speech: implications for models of pitch perception.
- Just noticeable difference of tone pitch contour change for English- and Chinese-native listeners.
- Pitch perception of complex tones and human temporal-lobe function.
- Dichotic pitch activates pitch processing centre in Heschl's gyrus
Cited by
- Language-experience plasticity in neural representation of changes in pitch salience
- Language-dependent changes in pitch-relevant neural activity in the auditory cortex reflect differential weighting of temporal attributes of pitch contours
- Changes in pitch height elicit both language universal and language dependent changes in neural representation of pitch in the brainstem and auditory cortex
- Differential sensitivity to changes in pitch acceleration in the auditory brainstem and cortex
- Language experience-dependent advantage in pitch representation in the auditory cortex is limited to favorable signal-to-noise ratios
- Subcortical sources dominate the neuroelectric auditory frequency‐following response to speech
- Tone language experience-dependent advantage in pitch representation in brainstem and auditory cortex is maintained under reverberation
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