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1
Tone language experience-dependent advantage in pitch representation in brainstem and auditory cortex is maintained under reverberation
In: Hear Res (2019)
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2
Language experience-dependent advantage in pitch representation in the auditory cortex is limited to favorable signal-to-noise ratios
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3
Changes in pitch height elicit both language universal and language dependent changes in neural representation of pitch in the brainstem and auditory cortex
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4
Language-dependent changes in pitch-relevant neural activity in the auditory cortex reflect differential weighting of temporal attributes of pitch contours
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5
Pitch processing of dynamic lexical tones in the auditory cortex is influenced by sensory and extrasensory processes
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6
Language experience enhances early cortical pitch-dependent responses
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7
Cortical pitch response components show differential sensitivity to native and nonnative pitch contours
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8
LANGUAGE EXPERIENCE SHAPES PROCESSING OF PITCH RELEVANT INFORMATION IN THE HUMAN BRAINSTEM AND AUDITORY CORTEX: ELECTROPHYSIOLOGICAL EVIDENCE
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9
A functional deficit in the sensorimotor interface component as revealed by oral reading in Thai conduction aphasia
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10
Experience-dependent plasticity in pitch encoding: from brainstem to auditory cortex
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11
Neural correlates of musical and linguistic pitch as revealed in the auditory brainstem
In: Theses and Dissertations Available from ProQuest (2011)
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12
Musicians and tone-language speakers share enhanced brainstem encoding but not perceptual benefits for musical pitch
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13
Musicians demonstrate experience-dependent brainstem enhancement of musical scale features within continuously gliding pitch
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14
Functional ear (a)symmetry in brainstem neural activity relevant to encoding of voice pitch: A precursor for hemispheric specialization?
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15
Linguistic status of timbre influences pitch encoding in the brainstem
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16
Neural representation of pitch salience in the human brainstem revealed by psychophysical and electrophysiological indices
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17
Language-dependent pitch encoding advantage in the brainstem is not limited to acceleration rates that occur in natural speech
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18
Hemispheric asymmetries in phonological processing of tones vs. segmental units
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19
The effects of tone language experience on pitch processing in the brainstem
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20
Brainstem pitch representation in native speakers of Mandarin is less susceptible to degradation of stimulus temporal regularity
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