MEASUREMENT OF AMPLITUDE AND DELAY OF STIMULUS FREQUENCY OTOACOUSTIC EMISSIONS.

PubWeight™: 0.75‹?›

🔗 View Article (PMID 25035693)

Published in J Otol on June 01, 2013

Authors

Tianying Ren1, Jiefu Zheng2, Wenxuan He1, Alfred L Nuttall1

Author Affiliations

1: Oregon Hearing Research Center, Department of Otolaryngology and Head & Neck Surgery, Oregon Health and Science University, 3181 SW Sam Jackson Park Road, Portland, OR 97239.
2: Department of Radiology Nuclear Medicine, University of Iowa Hospitals and Clinics, 200 Hawkins Drive, Iowa City, IA 52242.

Articles cited by this

Evoked otoacoustic emissions arise by two fundamentally different mechanisms: a taxonomy for mammalian OAEs. J Acoust Soc Am (1999) 3.73

A guide to the effective use of otoacoustic emissions. Ear Hear (1990) 2.31

Longitudinal pattern of basilar membrane vibration in the sensitive cochlea. Proc Natl Acad Sci U S A (2002) 2.01

Delays of stimulus-frequency otoacoustic emissions and cochlear vibrations contradict the theory of coherent reflection filtering. J Acoust Soc Am (2005) 1.95

Reverse propagation of sound in the gerbil cochlea. Nat Neurosci (2004) 1.83

Evidence of mechanical nonlinearity and frequency selective wave amplification in the cochlea. Arch Otorhinolaryngol (1979) 1.82

Otoacoustic emissions, travelling waves and cochlear mechanisms. Hear Res (1986) 1.53

The evoked cochlear mechanical response and the auditory microstructure - evidence for a new element in cochlear mechanics. Scand Audiol Suppl (1979) 1.42

Acoustic distortion products in rabbit ear canal. II. Sites of origin revealed by suppression contours and pure-tone exposures. Hear Res (1987) 1.21

Measurement of cochlear power gain in the sensitive gerbil ear. Nat Commun (2011) 1.16

Properties of the generator of stimulated acoustic emissions. Hear Res (1980) 1.07

Interrelation of different oto-acoustic emissions. J Acoust Soc Am (1984) 1.07

Localization of the cochlear amplifier in living sensitive ears. PLoS One (2011) 0.98

Noninvasive measurement of the cochlear traveling-wave ratio. J Acoust Soc Am (1993) 0.98

Towards a model for the origin of cochlear echoes. Hear Res (1980) 0.96

The role of prestin in the generation of electrically evoked otoacoustic emissions in mice. J Neurophysiol (2008) 0.94

Fine structure and multicomponents of the electrically evoked otoacoustic emission in gerbil. Hear Res (2000) 0.86

Electrically evoked cubic distortion product otoacoustic emissions from gerbil cochlea. Hear Res (1996) 0.86

The sources of electrically evoked otoacoustic emissions. Hear Res (2003) 0.84

Long-term effects of acoustic trauma on electrically evoked otoacoustic emission. J Assoc Res Otolaryngol (2005) 0.81