Ananthanarayan Krishnan
Neuroscience · Purdue University West Lafayette
Publications
73
Citations
4,698
Est. group size
—
Recurring co-author estimate
Active years
27
Publishing since 1998
This researcher studies how the human auditory system processes pitch, speech, and complex sounds, using electrophysiological recordings from the brainstem and auditory cortex (such as frequency-following responses). A recurring focus is how language background (e.g., speaking a tone language) and musical or listening experience shape neural representations of pitch, as well as how hearing is affected by noise, reverberation, and subtle or 'hidden' hearing loss. This work sits at the intersection of auditory neuroscience, audiology, and speech/language processing.
Publication output peaked around 2017 and has slowed considerably since, with only sporadic single-paper years through 2024.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Quick Estimation of Minimum Hearing Levels Using a Binaural Multifrequency Stimulus Paradigm: Proof of Concept
Ear and Hearing · 2024
- Frequency-Following Response to Steady-State Vowel in Quiet and Background Noise Among Marching Band Participants With Normal Hearing
American Journal of Audiology · 2022
- Cortical hemisphere preference and brainstem ear asymmetry reflect experience-dependent functional modulation of pitch
Brain and Language · 2021
- Search for Electrophysiological Indices of Hidden Hearing Loss in Humans: Click Auditory Brainstem Response Across Sound Levels and in Background Noise
Ear and Hearing · 2020
- Tone language experience-dependent advantage in pitch representation in brainstem and auditory cortex is maintained under reverberation
Hearing Research · 2019
- Human Frequency Following Responses to Vocoded Speech: Amplitude Modulation Versus Amplitude Plus Frequency Modulation
Ear and Hearing · 2019
- Human frequency following responses to iterated rippled noise with positive and negative gain: Differential sensitivity to waveform envelope and temporal fine-structure
Hearing Research · 2018
- Human Frequency Following Responses to Vocoded Speech
Ear and Hearing · 2017
- Changes in pitch height elicit both language-universal and language-dependent changes in neural representation of pitch in the brainstem and auditory cortex
Neuroscience · 2017
- Shaping Brainstem Representation of Pitch-Relevant Information by Language Experience
Springer handbook of auditory research · 2017
- Language experience-dependent advantage in pitch representation in the auditory cortex is limited to favorable signal-to-noise ratios
Hearing Research · 2017
- Differential sensitivity to changes in pitch acceleration in the auditory brainstem and cortex
Brain and Language · 2017
- Language-experience plasticity in neural representation of changes in pitch salience
Brain Research · 2016
- Language-dependent changes in pitch-relevant neural activity in the auditory cortex reflect differential weighting of temporal attributes of pitch contours
Journal of Neurolinguistics · 2016
- Corrigendum to ‘‘Language-experience plasticity in neural representation of changes in pitch salience’’ [Brain Research 1637 (2016) 102–117]
Brain Research · 2016
- Ear and Hearing×4
- Hearing Research×3
- Brain Research×2
- Brain and Language×2
- American Journal of Audiology×1
- Gavin M. Bidelman
Neuroscience · Indiana University
- Malinda J. McPherson
Neuroscience · Purdue University West Lafayette
- Emily B. J. Coffey
Neuroscience · The Ohio State University
- Lindsey Reymore
Neuroscience · The Ohio State University
- Dylan V. Pearson
Neuroscience · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
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