Jeffrey Skidmore
Neuroscience · The Ohio State University
Publications
45
Citations
572
Est. group size
~3
Recurring co-author estimate
Active years
30
Publishing since 1995
Jeffrey Skidmore studies how the auditory (hearing) nerve responds to electrical stimulation in people who use cochlear implants, which are devices that restore hearing by directly stimulating the auditory nerve. His work uses electrophysiological measurements, such as the electrically evoked compound action potential (a recorded electrical response of the nerve to stimulation), to understand how nerve health relates to speech perception outcomes in both adults and children. This research aims to identify objective biological markers that could help explain and predict why cochlear implant users vary in how well they understand speech.
Publication output has grown from a low base around 2017-2019 to a peak of about 9 papers in 2022, with continued but somewhat reduced activity in 2023-2024.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Peripheral Neural Synchrony in Postlingually Deafened Adult Cochlear Implant Users
Ear and Hearing · 2024
- Assessing Neural Synchrony in the Cochlear Nerve to Electrical Stimulation in Children With Auditory Neuropathy Spectrum Disorder
Ear and Hearing · 2024
- A new method for removing artifacts from recordings of the electrically evoked compound action potential: Single-pulse stimulation
medRxiv · 2024
- The Relationship Between Cochlear Implant Speech Perception Outcomes and Electrophysiological Measures of the Electrically Evoked Compound Action Potential
Ear and Hearing · 2023
- Longitudinal Electrocochleography as an Objective Measure of Serial Behavioral Audiometry in Electro-Acoustic Stimulation Patients
Ear and Hearing · 2023
- Relationships Between the Auditory Nerve’s Ability to Recover From Neural Adaptation, Cortical Encoding of and Perceptual Sensitivity to Within-channel Temporal Gaps in Postlingually Deafened Adult Cochlear Implant Users
Ear and Hearing · 2023
- Peripheral neural synchrony in post-lingually deafened adult cochlear implant users
medRxiv · 2023
- Responsiveness of the electrically stimulated cochlear nerve in patients with a missense variant in ACTG1: preliminary results
Frontiers in Audiology and Otology · 2023
- Peripheral neural synchrony in pediatric cochlear implant users
The Journal of the Acoustical Society of America · 2023
- Peripheral neural status and auditory temporal resolution in cochlear implant users
The Journal of the Acoustical Society of America · 2023
- Comparison of response properties of the electrically stimulated auditory nerve reported in human listeners and in animal models
Hearing Research · 2022
- Characteristics of the Adaptation Recovery Function of the Auditory Nerve and Its Association With Advanced Age in Postlingually Deafened Adult Cochlear Implant Users
Ear and Hearing · 2022
- Postlingually Deafened Adult Cochlear Implant Users With Prolonged Recovery From Neural Adaptation at the Level of the Auditory Nerve Tend to Have Poorer Speech Perception Performance
Ear and Hearing · 2022
- Interpreting the interphase gap effect on the electrically evoked compound action potential
JASA Express Letters · 2022
- Relationships between the auditory nerve’s ability to recover from neural adaptation, cortical encoding of and perceptual sensitivity to within-channel temporal gaps in postlingually deafened adult cochlear implant users
medRxiv · 2022
- Ear and Hearing×16
- medRxiv×6
- The Journal of the Acoustical Society of America×2
- Otology & Neurotology×1
- Hearing Research×1
- Oliver F. Adunka
Neuroscience · The Ohio State University
- Diana Hallak
Neuroscience · The Ohio State University
- François Deloche
Neuroscience · Purdue University West Lafayette
- Priyanka Reddy
Neuroscience · The Ohio State University
- Shuman He
Neuroscience · The Ohio State 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 19, 2026.
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