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Updated parameters and expanded simulation options for a model of the auditory periphery
American Institute of Physics | 2014|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Comparison of nine methods to estimate ear-canal stimulus levels
American Institute of Physics | 2014|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
A comparison of spectral magnitude and phase-locking value analyses of the frequency-following response to complex tones
American Institute of Physics | 2013|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Otoacoustic-emission-based medial-olivocochlear reflex assays for humans
American Institute of Physics | 2014|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Wave motion on the surface of the human tympanic membrane: Holographic measurement and modeling analysis
American Institute of Physics | 2013|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Nonlinear stiffness characteristics of the annular ligament
American Institute of Physics | 2014|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Opposing and following vocal responses to pitch-shifted auditory feedback: Evidence for different mechanisms of voice pitch control
American Institute of Physics | 2012|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Maturation of the human medial efferent reflex revisited
American Institute of Physics | 2013|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Characteristics of the 2f1-f2 distortion product otoacoustic emission in a normal hearing population
American Institute of Physics | 2014|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Nonlinear time-domain cochlear model for transient stimulation and human otoacoustic emission
American Institute of Physics | 2012|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Effect of cochlear implants on children’s perception and production of speech prosody
American Institute of Physics | 2012|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Aging of the medial olivocochlear reflex and associations with speech perception
American Institute of Physics | 2014|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Measuring stimulus-frequency otoacoustic emissions using swept tones
American Institute of Physics | 2013|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
A phenomenological model of the synapse between the inner hair cell and auditory nerve: Long-term adaptation with power-law dynamics
American Institute of Physics | 2009|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Input/output functions of different-latency components of transient-evoked and stimulus-frequency otoacoustic emissions
American Institute of Physics | 2013|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Relationship among the physiologic channel interactions, spectral-ripple discrimination, and vowel identification in cochlear implant users
American Institute of Physics | 2014|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
A direct approach for the design of chirp stimuli used for the recording of auditory brainstem responses
American Institute of Physics | 2010|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Perceptually optimized gain function for cochlear implant signal-to-noise ratio based noise reduction
American Institute of Physics | 2012|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
External and middle ear sound pressure distribution and acoustic coupling to the tympanic membrane
American Institute of Physics | 2014|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64] -
Time-frequency domain filtering of evoked otoacoustic emissions
American Institute of Physics | 2012|Schlagwörter: PHYSIOLOGICAL ACOUSTICS [64]
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