about
Pitch representations in the auditory nerve: two concurrent complex tones.Pitch, harmonicity and concurrent sound segregation: psychoacoustical and neurophysiological findings.Spatiotemporal representation of the pitch of harmonic complex tones in the auditory nerveThe vibrating reed frequency meter: digital investigation of an early cochlear modelEnergy Flux in the Cochlea: Evidence Against Power Amplification of the Traveling Wave.Fast Waves at the Base of the CochleaSuppression tuning of distortion-product otoacoustic emissions: results from cochlear mechanics simulation.Sensitivity of cochlear nucleus neurons to spatio-temporal changes in auditory nerve activity.Von Békésy and cochlear mechanicsThe spatial buildup of compression and suppression in the mammalian cochleaMaturation and aging of the human cochlea: a view through the DPOAE looking glass.Mechanics of the mammalian cochlea.Basilar-membrane responses to broadband noise modeled using linear filters with rational transfer functions.Reply to "on cochlear impedances and the miscomputation of power gain" by Shera et Al. J. Assoc. Re. Otolaryngol.Deviations from Scaling Symmetry in the Apical Half of the Human Cochlea.Breaking away: violation of distortion emission phase-frequency invariance at low frequencies.The breaking of cochlear scaling symmetry in human newborns and adults.Signal processing in the cochlea: the structure equations.Timing of cochlear responses inferred from frequency-threshold tuning curves of auditory-nerve fibers.Coherent reflection without traveling waves: on the origin of long-latency otoacoustic emissions in lizardsThreshold tuning curves of chinchilla auditory-nerve fibers. I. Dependence on characteristic frequency and relation to the magnitudes of cochlear vibrationsTesting coherent reflection in chinchilla: Auditory-nerve responses predict stimulus-frequency emissions.A ratchet mechanism for amplification in low-frequency mammalian hearing.Use of stimulus-frequency otoacoustic emission latency and level to investigate cochlear mechanics in human earsLimiting frequency of the cochlear amplifier based on electromotility of outer hair cells.Revised estimates of human cochlear tuning from otoacoustic and behavioral measurements.Across-channel timing differences as a potential code for the frequency of pure tones.Comparing otoacoustic emissions evoked by chirp transients with constant absorbed sound power and constant incident pressure magnitude.Comparisons of transient evoked otoacoustic emissions using chirp and click stimuli.
P2860
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P2860
description
1976 nî lūn-bûn
@nan
1976 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
1976 թվականի հունվարին հրատարակված գիտական հոդված
@hy
1976年の論文
@ja
1976年学术文章
@wuu
1976年学术文章
@zh-cn
1976年学术文章
@zh-hans
1976年学术文章
@zh-my
1976年学术文章
@zh-sg
1976年學術文章
@yue
name
Basilar membrane motion.
@ast
Basilar membrane motion.
@en
Basilar membrane motion.
@nl
type
label
Basilar membrane motion.
@ast
Basilar membrane motion.
@en
Basilar membrane motion.
@nl
prefLabel
Basilar membrane motion.
@ast
Basilar membrane motion.
@en
Basilar membrane motion.
@nl
P1476
Basilar membrane motion.
@en
P2093
P304
P356
10.1101/SQB.1976.040.01.058
P577
1976-01-01T00:00:00Z