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Auditory Signal Processing

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Cover of 'Auditory Signal Processing'

Table of Contents

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    Book Overview
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    Chapter 1 Nonlinearities at the apex of the cochlea: Implications for auditory perception
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    Chapter 2 Reconstructing the traveling wave from auditory nerve responses
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    Chapter 3 A computational algorithm for computing cochlear frequency selectivity: Further studies
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    Chapter 4 Auditory Signal Processing
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    Chapter 5 Reaction-time data support the existence of Softness Imperception in cochlear hearing loss
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    Chapter 6 Normal and impaired level encoding: Effects of noise-induced hearing loss on auditory-nerve responses
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    Chapter 7 Estimates of Cochlear Compression from Measurements of Loudness Growth
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    Chapter 8 Auditory Signal Processing
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    Chapter 9 Psychophysical response growth under suppression
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    Chapter 10 The function(s) of the medial olivocochlear efferent system in hearing
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    Chapter 11 A computational model of cochlear nucleus neurons
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    Chapter 12 Study on improving regularity of neural phase locking in single neurons of AVCN via a computational model
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    Chapter 13 Fibers in the trapezoid body show enhanced synchronization to broadband noise when compared to auditory nerve fibers
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    Chapter 14 Representations of the pitch of complex tones in the auditory nerve
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    Chapter 15 Coding of pitch and amplitude modulation in the auditory brainstem: One common mechanism?
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    Chapter 16 Pitch perception of complex tones within and across ears and frequency regions
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    Chapter 17 Internal noise and memory for pitch
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    Chapter 18 Time constants in temporal pitch extraction: A comparison of psychophysical and neuromagnetic data
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    Chapter 19 Auditory processing at the lower limit of pitch studied by magnetoencephalography
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    Chapter 20 Auditory maps in the midbrain: The inferior colliculus
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    Chapter 21 Representation of frequency modulation in the primary auditory cortex of New World monkeys
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    Chapter 22 Frequency change velocity and acceleration detector: A bird or a red herring?
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    Chapter 23 Representations of the pitch of complex tones in the auditory nerve
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    Chapter 24 The role of spectral change detectors in sequential grouping of tones
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    Chapter 25 Performance measures of auditory organization
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    Chapter 26 Auditory streaming without spectral cues in hearing-impaired subjects
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    Chapter 27 The role of temporal structure in envelope processing
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    Chapter 28 Detecting changes in amplitude-modulation frequency: A test of the concept of excitation pattern in the temporal-envelope domain
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    Chapter 29 Modeling the role of duration in intensity increment detection
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    Chapter 30 Minimum integration times for processing of amplitude modulation
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    Chapter 31 Neural mechanisms for analyzing temporal patterns in echolocating bats
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    Chapter 32 Time-critical frequency integration of complex communication sounds in the auditory cortex of the mouse
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    Chapter 33 Transformation of stimulus representations in the ascending auditory system
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    Chapter 34 AM and FM coherence sensitivity in the auditory cortex as a potential neural mechanism for sound segregation
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    Chapter 35 Auditory perception with slowly-varying amplitude and frequency modulations
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    Chapter 36 The role of auditory-vocal interaction in hearing
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    Chapter 37 From sound to meaning: Hierarchical processing in speech comprehension
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    Chapter 38 Effects of differences in the accent and gender of competing voices on speech segregation
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    Chapter 39 The Articulation Index is a Shannon channel capacity
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    Chapter 40 Comodulation masking release and the role of wideband inhibition in the cochlear nucleus
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    Chapter 41 The relevance of rate and time cues for CMR in starling auditory forebrain neurons
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    Chapter 42 Effects of concurrent and sequential streaming in comodulation masking release
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    Chapter 43 Effects of contralateral sound stimulation on forward masking in the guinea pig
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    Chapter 44 Inhibition in models of coincidence detection
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    Chapter 45 What can auditory evoked potentials tell us about binaural processing in humans?
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    Chapter 46 Sensitivity to changes in interaural time difference and interaural correlation in the inferior colliculus
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    Chapter 47 Processing of interaural temporal disparities with both “transposed” and conventional stimuli
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    Chapter 48 Sound localization in the frontal horizontal plane by post-lingually deafened adults fitted with bilateral cochlear implants
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    Chapter 49 Discrimination of different temporal envelope structures of diotic and dichotic target signals within diotic wide-band noise
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    Chapter 50 A cat’s cocktail party: Psychophysical, neurophysiological, and computational studies of spatial release from masking
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    Chapter 51 Localization of noise in a reverberant environment
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    Chapter 52 Listening in real-room reverberation: Effects of extrinsic context
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    Chapter 53 Psychophysical and physiological studies of the precedence effect and echo threshold in the behaving cat
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    Chapter 54 Some similarities between the temporal resolution and the temporal integration of interaural time differences
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    Chapter 55 Binaural “sluggishness” as a function of stimulus bandwidth
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    Chapter 56 Auditory thresholds re-visited
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    Chapter 57 Discrimination of temporal fine structure by birds and mammals
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    Chapter 58 Dependence of binaural and cochlear “best delays” on characteristic frequency
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    Chapter 59 The enigma of cortical responses: Slow yet precise
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    Chapter 60 Learning-induced sensory plasticity: Rate code, temporal code, or both?
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    Chapter 61 Synaptic dynamics and intensity coding in the cochlear nucleus
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    Chapter 62 Learning and generalization on five basic auditory discrimination tasks as assessed by threshold changes
Attention for Chapter 46: Sensitivity to changes in interaural time difference and interaural correlation in the inferior colliculus
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Chapter title
Sensitivity to changes in interaural time difference and interaural correlation in the inferior colliculus
Chapter number 46
Book title
Auditory Signal Processing
Published by
Springer, New York, NY, January 2005
DOI 10.1007/0-387-27045-0_46
Book ISBNs
978-0-387-21915-8, 978-0-387-27045-6
Authors

Trevor M. Shackleton, Alan R. Palmer

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 5 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 1 20%
Unknown 4 80%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 3 60%
Researcher 1 20%
Other 1 20%
Readers by discipline Count As %
Psychology 4 80%
Neuroscience 1 20%