Does the “Reticular Lamina Nonlinearity” Contribute to the Basal DPOAE Source?
Author:
Publisher
Springer Science and Business Media LLC
Subject
Sensory Systems,Otorhinolaryngology
Link
https://link.springer.com/content/pdf/10.1007/s10162-020-00771-2.pdf
Reference20 articles.
1. Abdala C, Sininger YS, Ekelid M, Zeng FG (1996) Distortion product otoacoustic emission suppression tuning curves in human adults and neonates. Hear Res 98:38–53
2. Botti T, Sisto R, Sanjust F, Moleti A, D'Amato L (2016) Distortion product otoacoustic emission generation mechanisms and their dependence on stimulus level and primary frequency ratio. J Acoust Soc Am 139:658–673
3. de Boer E (1990) Can shape deformations of the organ of Corti influence the travelling wave in the cochlea? Hear Res 44:83–92
4. Dewey JB, Applegate BE, Oghalai JS (2019) Amplification and suppression of traveling waves along the mouse organ of Corti: evidence for spatial variation in the longitudinal coupling of outer hair cell-generated forces. J Neurosci 39:1805–1816
5. Dong W, Olson ES (2008) Supporting evidence for reverse cochlear traveling waves. J Acoust Soc Am 123:222–240
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