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Hearing Research|December 1, 2009
Contralateral cochlear effects of ipsilateral damage: no evidence for interaural couplingErik Larsen, M Charles LibermanHearing Research|February 24, 2009
Slow build-up of cochlear suppression during sustained contralateral noise: central modulation of olivocochlear efferents?Erik Larsen, M Charles LibermanJAMA Otolaryngology-- Head & Neck Surgery|November 20, 2025
Peripheral Neural Plasticity in Cochlear Implant Users Across the LifespanErik Larsen, Leonid M Litvak, M Charles Liberman, et al.Journal of the Association for Research in Otolaryngology : JARO|May 27, 2010
Mice lacking adrenergic signaling have normal cochlear responses and normal resistance to acoustic injury but enhanced susceptibility to middle-ear infectionStéphane F Maison, Mina Le, Erik Larsen, et al.Advances in Experimental Medicine and Biology|November 28, 2015
Noise-Induced Hearing Loss: Permanent Versus Temporary Threshold Shifts and the Effects of Hair Cell Versus Neuronal DegenerationM Charles LibermanF1000Research|July 11, 2017
Noise-induced and age-related hearing loss: new perspectives and potential therapiesM Charles LibermanJournal of Neurophysiology|November 17, 2021
Auditory-nerve responses in mice with noise-induced cochlear synaptopathyKirupa Suthakar, M Charles LibermanJournal of Neurophysiology|May 18, 2022
Noise Masking in Cochlear Synaptopathy: Auditory Brainstem Response vs. Auditory Nerve Response in MouseKirupa Suthakar, M Charles LibermanHearing Research|August 23, 2019
A simple algorithm for objective threshold determination of auditory brainstem responsesKirupa Suthakar, M Charles LibermanJournal of the Association for Research in Otolaryngology : JARO|December 24, 2003
Lateral wall histopathology and endocochlear potential in the noise-damaged mouse cochleaKeiko Hirose, M Charles LibermanPageof 29