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Biophysical Journal|February 8, 2018
Forward and Reverse Waves: Modeling Distortion Products in the Intracochlear Fluid PressureThomas Bowling, Julien MeaudHearing Research|May 27, 2018
Investigation of the 2f1-f2 and 2f2-f1 distortion product otoacoustic emissions using a computational model of the gerbil earHaiqi Wen, Thomas Bowling, Julien MeaudScientific Reports|May 18, 2019
Reducing tectorial membrane viscoelasticity enhances spontaneous otoacoustic emissions and compromises the detection of low level soundThomas Bowling, Charlsie Lemons, Julien MeaudScientific Reports|July 2, 2021
Intracochlear distortion products are broadly generated by outer hair cells but their contributions to otoacoustic emissions are spatially restrictedThomas Bowling, Haiqi Wen, Sebastiaan W F Meenderink, et al.Biophysical Journal|March 30, 2012
Response to a pure tone in a nonlinear mechanical-electrical-acoustical model of the cochleaJulien Meaud, Karl GroshThe Journal of the Acoustical Society of America|April 2, 2022
Link between stimulus otoacoustic emissions fine structure peaks and standing wave resonances in a cochlear modelHaiqi Wen, Julien MeaudBiophysical Journal|June 7, 2011
Coupling active hair bundle mechanics, fast adaptation, and somatic motility in a cochlear modelJulien Meaud, Karl GroshHearing Research|October 13, 2009
WITHDRAWN: Predicting the role of OHC somatic motility and HB motility in cochlear amplification using a mathematical modelJulien Meaud, Karl GroshThe Journal of the Acoustical Society of America|March 25, 2010
The effect of tectorial membrane and basilar membrane longitudinal coupling in cochlear mechanicsJulien Meaud, Karl GroshHearing Research|March 19, 2026
An alternative pathway for delivery of power by outer hair cells to cochlear traveling wavesGeorge Samaras, Julien MeaudPageof 2