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Experimental Brain Research|January 1, 1980
Stimulus-induced release of endogenous amino acids from skins containing the lateral-line organ in Xenopus laevisS C Bledsoe, R P Bobbin, R Thalmann, et al.Hearing Research|July 1, 1990
Nimodipine, an L-channel Ca2+ antagonist, reverses the negative summating potential recorded from the guinea pig cochleaR P Bobbin, P J Jastreboff, M Fallon, et al.Hearing Research|February 1, 1991
Guinea pigs show post-natal stability in frequency mapping at the basal turnR P Bobbin, M Fallon, L Li, et al.Hearing Research|December 1, 1987
Cytochalasin D suppresses sound evoked potentials in the guinea pig cochleaS E Barron, R P Bobbin, P Guth, et al.Hearing Research|June 15, 1989
The quinoxalinediones DNOX, CNOX and two related congeners suppress hair cell-to-auditory nerve transmissionT Littman, R P Bobbin, M Fallon, et al.Hearing Research|August 1, 1992
Intracochlear application of acetylcholine alters sound-induced mechanical events within the cochlear partitionS G Kujawa, T J Glattke, M Fallon, et al.Hearing Research|March 21, 1998
Conditioning the auditory system with continuous vs. interrupted noise of equal acoustic energy: is either exposure more protective?R A Skellett, J K Cullen, M Fallon, et al.Hearing Research|August 1, 1997
Nitrosoglutathione suppresses cochlear potentials and DPOAEs but not outer hair cell currents or voltage-dependent capacitanceA P Nenov, R A Skellett, M Fallon, et al.Hearing Research|April 1, 1994
A nicotinic-like receptor mediates suppression of distortion product otoacoustic emissions by contralateral soundS G Kujawa, T J Glattke, M Fallon, et al.Hearing Research|August 1, 1996
Time-varying alterations in the f2-f1 DPOAE response to continuous primary stimulation. II. Influence of local calcium-dependent mechanismsS G Kujawa, M Fallon, R A Skellett, et al.Pageof 1,196