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Central Auditory Tests to Track Cognitive Function in People With HIV: Longitudinal Cohort Study
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In: JMIR Form Res (2021)
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Auditory Processing Differences in Toddlers With Autism Spectrum Disorder
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In: J Speech Lang Hear Res (2020)
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Sex differences in subcortical auditory processing only partially explain higher prevalence of language disorders in males
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In: Hear Res (2020)
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Distinct Rhythmic Abilities Align With Phonological Awareness And Rapid Naming In School-Age Children
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In: Cogn Process (2020)
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Stable auditory processing underlies phonological awareness in typically developing preschoolers
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In: Brain Lang (2019)
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Analyzing the FFR: A tutorial for decoding the richness of auditory function
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In: Hear Res (2019)
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Play Sports for a Quieter Brain: Evidence From Division I Collegiate Athletes
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In: Sports Health (2019)
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Music training enhances the automatic neural processing of foreign speech sounds
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In: ISSN: 2045-2322 ; EISSN: 2045-2322 ; Scientific Reports ; https://hal.archives-ouvertes.fr/hal-02446763 ; Scientific Reports, Nature Publishing Group, 2017, 7 (1), ⟨10.1038/s41598-017-12575-1⟩ (2017)
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Short-term learning and memory:training and perceptual learning
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Dyslexia risk gene relates to representation of sound in the auditory brainstem
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Music training enhances the automatic neural processing of foreign speech sounds
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Dyslexia risk gene relates to representation of sound in the auditory brainstem
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Native language shapes automatic neural processing of speech
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In: ISSN: 0028-3932 ; EISSN: 1873-3514 ; Neuropsychologia ; https://hal.archives-ouvertes.fr/hal-01431302 ; Neuropsychologia, Elsevier, 2016, 89, pp.57-65. ⟨10.1016/j.neuropsychologia.2016.05.033⟩ (2016)
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Native language shapes automatic neural processing of speech
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In: ISSN: 0028-3932 ; EISSN: 1873-3514 ; Neuropsychologia ; https://hal.archives-ouvertes.fr/hal-03588420 ; Neuropsychologia, Elsevier, 2016, 89, pp.57-65. ⟨10.1016/j.neuropsychologia.2016.05.033⟩ (2016)
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Hemispheric Asymmetry of Endogenous Neural Oscillations in Young Children: Implications for Hearing Speech In Noise
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Development of subcortical speech representation in human infants
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Abstract:
Previous studies have evaluated representation of the fundamental frequency (F0) in the frequency following response (FFR) of infants, but the development of other aspects of the FFR, such as timing and harmonics, has not yet been examined. Here, FFRs were recorded to a speech syllable in 28 infants, ages three to ten months. The F0 amplitude of the response was variable among individuals but was strongly represented in some infants as young as three months of age. The harmonics, however, showed a systematic increase in amplitude with age. In the time domain, onset, offset, and inter-peak latencies decreased with age. These results are consistent with neurophysiological studies indicating that (1) phase locking to lower frequency sounds emerges earlier in life than phase locking to higher frequency sounds and (2) myelination continues to increase in the first year of life. Early representation of low frequencies may reflect greater exposure to low frequency stimulation in utero. The improvement in temporal precision likely parallels an increase in the efficiency of neural transmission accompanied by exposure to speech during the first year of life.
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Keyword:
Psychological and Physiological Acoustics
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URL: http://www.ncbi.nlm.nih.gov/pubmed/26093424 https://doi.org/10.1121/1.4921032 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4474946/
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Stability and Plasticity of Auditory Brainstem Function Across the Lifespan
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Bilingualism increases neural response consistency and attentional control: Evidence for sensory and cognitive coupling
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