The goal of this project is to study how the pitch of complex periodic tones is coded at the earliest stages of the auditory nervous system. Pitch is an important attribute of human voice and most musical sounds, and is therefore important for communication and quality of life. We will approach this problem by recording the activity of single units in the auditory nerve and cochlear nucleus of anesthetized cats in response to a large set of complex-tone stimuli modeled after those used in psychophysical experiments. Some of these stimuli share a common periodicity, but produce different pitches, while others produce the same pitch even though their waveforms are very different on pitch. We will identify response features that may encode pitch over a broad range of stimulus conditions, and examine how the different theories of pitch of complex tones fit with our results. Specifically, we will examine under what conditions the average rates of discharge of auditory-nerve fibers increase when their characteristic frequency is a small integer multiple of the fundamental frequency, thereby providing a rate-place cue to the pitch of complex tones. We will also examine whether interspike intervals corresponding to the pitch appear prominently in the responses of auditory- nerve fibers and cochlear-nucleus units, particularly choppers. These responses will be interpreted in terms of a model of chopper neurons that simulates response properties likely to be important for pitch processing. This model, which complements existing ones in that it emphasizes intrinsic oscillatory behavior in nerve membranes rather than patterns of synaptic inputs, will be tested against data for individual units. Understanding the neural mechanisms of pitch processing may lead to improvements in the performance of hearing aids and cochlear implants for both speech and music.

Project Start
Project End
Budget Start
Budget End
Support Year
17
Fiscal Year
1992
Total Cost
Indirect Cost
Name
Massachusetts Eye and Ear Infirmary
Department
Type
DUNS #
073825945
City
Boston
State
MA
Country
United States
Zip Code
02114
Gutschalk, Alexander; Oxenham, Andrew J; Micheyl, Christophe et al. (2007) Human cortical activity during streaming without spectral cues suggests a general neural substrate for auditory stream segregation. J Neurosci 27:13074-81
Micheyl, Christophe; Carlyon, Robert P; Gutschalk, Alexander et al. (2007) The role of auditory cortex in the formation of auditory streams. Hear Res 229:116-31
Wilson, E Courtenay; Melcher, Jennifer R; Micheyl, Christophe et al. (2007) Cortical FMRI activation to sequences of tones alternating in frequency: relationship to perceived rate and streaming. J Neurophysiol 97:2230-8
Fullerton, Barbara C; Pandya, Deepak N (2007) Architectonic analysis of the auditory-related areas of the superior temporal region in human brain. J Comp Neurol 504:470-98
Sigalovsky, Irina S; Melcher, Jennifer R (2006) Effects of sound level on fMRI activation in human brainstem, thalamic and cortical centers. Hear Res 215:67-76
Sigalovsky, Irina S; Fischl, Bruce; Melcher, Jennifer R (2006) Mapping an intrinsic MR property of gray matter in auditory cortex of living humans: a possible marker for primary cortex and hemispheric differences. Neuroimage 32:1524-37
Hawley, Monica L; Melcher, Jennifer R; Fullerton, Barbara C (2005) Effects of sound bandwidth on fMRI activation in human auditory brainstem nuclei. Hear Res 204:101-10
Harms, Michael P; Guinan Jr, John J; Sigalovsky, Irina S et al. (2005) Short-term sound temporal envelope characteristics determine multisecond time patterns of activity in human auditory cortex as shown by fMRI. J Neurophysiol 93:210-22
Talavage, Thomas M; Edmister, Whitney B (2004) Nonlinearity of FMRI responses in human auditory cortex. Hum Brain Mapp 22:216-28
Penagos, Hector; Melcher, Jennifer R; Oxenham, Andrew J (2004) A neural representation of pitch salience in nonprimary human auditory cortex revealed with functional magnetic resonance imaging. J Neurosci 24:6810-5

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