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Hearing Research|August 26, 1998
Temporal processing across frequency channels by FM selective auditory neurons can account for FM rate selectivityM Gordon, W E O'NeillThe Journal of Comparative Neurology|September 12, 2000
An extralemniscal component of the mustached bat inferior colliculus selective for direction and rate of linear frequency modulationsM Gordon, W E O'NeillJournal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|December 1, 1985
Responses to pure tones and linear FM components of the CF-FM biosonar signal by single units in the inferior colliculus of the mustached batW E O'NeillThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 1, 1982
Encoding of target range and its representation in the auditory cortex of the mustached batW E O'Neill, N SugaScience (New York, N.Y.)|January 5, 1979
Target range-sensitive neurons in the auditory cortex of the mustache batW E O'Neill, N SugaScience (New York, N.Y.)|October 19, 1979
Neural axis representing target range in the auditory cortex of the mustache batN Suga, W E O'NeillThe Journal of the Acoustical Society of America|May 1, 1991
The emission pattern of vocalizations and directionality of the sonar system in the echolocating bat, Pteronotus parnelliD Henze, W E O'NeillJournal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|August 1, 1987
Topographic representation of vocal frequency demonstrated by microstimulation of anterior cingulate cortex in the echolocating bat, Pteronotus parnelli parnelliD M Gooler, W E O'NeillJournal of Neurophysiology|May 30, 1998
Auditory motion induces directionally dependent receptive field shifts in inferior colliculus neuronsW W Wilson, W E O'NeillHearing Research|January 1, 1986
Directional sensitivity of the auditory midbrain in the mustached bat to free-field tonesJ C Makous, W E O'NeillPageof 288