Hashim N, Misron K, Moon S, Noh H, Kim J, Moon I
J Audiol Otol. 2024; 28(4):284-290.
PMID: 39501686
PMC: 11540968.
DOI: 10.7874/jao.2024.00115.
Horii K, Ogawa B, Nagase N, Morimoto I, Abe C, Ogawa T
PNAS Nexus. 2024; 3(7):pgae280.
PMID: 39055687
PMC: 11272074.
DOI: 10.1093/pnasnexus/pgae280.
Walia A, Shew M, Varghese J, Lefler S, Bhat A, Ortmann A
Ear Hear. 2024; 45(6):1406-1417.
PMID: 38880958
PMC: 11493529.
DOI: 10.1097/AUD.0000000000001528.
Lue P, Oliver M, Neeff M, Thorne P, Suzuki-Kerr H
Lab Anim Res. 2023; 39(1):31.
PMID: 38012676
PMC: 10680324.
DOI: 10.1186/s42826-023-00182-3.
Laureano A, Kim J, Martinez E, Kwan K
Hear Res. 2023; 436:108813.
PMID: 37329862
PMC: 10463912.
DOI: 10.1016/j.heares.2023.108813.
On the Tonotopy of the Low-Frequency Region of the Cochlea.
Recio-Spinoso A, Dong W, Oghalai J
J Neurosci. 2023; 43(28):5172-5179.
PMID: 37225436
PMC: 10342220.
DOI: 10.1523/JNEUROSCI.0249-23.2023.
Two stages of bandwidth scaling drives efficient neural coding of natural sounds.
He F, Stevenson I, Escabi M
PLoS Comput Biol. 2023; 19(2):e1010862.
PMID: 36787338
PMC: 9970106.
DOI: 10.1371/journal.pcbi.1010862.
Combining Place and Rate of Stimulation Improves Frequency Discrimination in Cochlear Implant Users.
Bissmeyer S, Goldsworthy R
Hear Res. 2022; 424:108583.
PMID: 35930901
PMC: 10849775.
DOI: 10.1016/j.heares.2022.108583.
Animal-to-Human Translation Difficulties and Problems With Proposed Coding-in-Noise Deficits in Noise-Induced Synaptopathy and Hidden Hearing Loss.
Ripley S, Xia L, Zhang Z, Aiken S, Wang J
Front Neurosci. 2022; 16:893542.
PMID: 35720689
PMC: 9199355.
DOI: 10.3389/fnins.2022.893542.
Tonotopic Selectivity in Cats and Humans: Electrophysiology and Psychophysics.
Guerit F, Middlebrooks J, Richardson M, Arneja A, Harland A, Gransier R
J Assoc Res Otolaryngol. 2022; 23(4):513-534.
PMID: 35697952
PMC: 9437197.
DOI: 10.1007/s10162-022-00851-5.
Detecting Cochlear Synaptopathy Through Curvature Quantification of the Auditory Brainstem Response.
Bao J, Jegede S, Hawks J, Dade B, Guan Q, Middaugh S
Front Cell Neurosci. 2022; 16:851500.
PMID: 35356798
PMC: 8959412.
DOI: 10.3389/fncel.2022.851500.
Cortical tracking of formant modulations derived from silently presented lip movements and its decline with age.
Suess N, Hauswald A, Reisinger P, Rosch S, Keitel A, Weisz N
Cereb Cortex. 2022; 32(21):4818-4833.
PMID: 35062025
PMC: 9627034.
DOI: 10.1093/cercor/bhab518.
The Perception of Ramped Pulse Shapes in Cochlear Implant Users.
Navntoft C, Landsberger D, Barkat T, Marozeau J
Trends Hear. 2021; 25:23312165211061116.
PMID: 34935552
PMC: 8724057.
DOI: 10.1177/23312165211061116.
Prior Acoustic Trauma Alters Type II Afferent Activity in the Mouse Cochlea.
Nowak N, Wood M, Glowatzki E, Fuchs P
eNeuro. 2021; 8(6).
PMID: 34607806
PMC: 8589282.
DOI: 10.1523/ENEURO.0383-21.2021.
Functional subgroups of cochlear inner hair cell ribbon synapses differently modulate their EPSC properties in response to stimulation.
Niwa M, Young E, Glowatzki E, Ricci A
J Neurophysiol. 2021; 125(6):2461-2479.
PMID: 33949873
PMC: 8285665.
DOI: 10.1152/jn.00452.2020.
Biased auditory nerve central synaptopathy is associated with age-related hearing loss.
Wang M, Zhang C, Lin S, Wang Y, Seicol B, Ariss R
J Physiol. 2021; 599(6):1833-1854.
PMID: 33450070
PMC: 8197675.
DOI: 10.1113/JP281014.
The cochlear ear horn: geometric origin of tonotopic variations in auditory signal processing.
Altoe A, Shera C
Sci Rep. 2020; 10(1):20528.
PMID: 33239701
PMC: 7689495.
DOI: 10.1038/s41598-020-77042-w.
A cochlea with three parts? Evidence from otoacoustic emission phase in humans.
Christensen A, Abdala C, Shera C
J Acoust Soc Am. 2020; 148(3):1585.
PMID: 33003861
PMC: 7789857.
DOI: 10.1121/10.0001920.
Pathophysiological changes in inner hair cell ribbon synapses in the ageing mammalian cochlea.
Jeng J, Ceriani F, Olt J, Brown S, Holley M, Bowl M
J Physiol. 2020; 598(19):4339-4355.
PMID: 32710572
PMC: 7612121.
DOI: 10.1113/JP280018.
Gradients in the biophysical properties of neonatal auditory neurons align with synaptic contact position and the intensity coding map of inner hair cells.
Markowitz A, Kalluri R
Elife. 2020; 9.
PMID: 32639234
PMC: 7343388.
DOI: 10.7554/eLife.55378.