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Original Article

Mechanical Properties of Basilar Membrane

Pages 331-335 | Received 05 Apr 1978, Published online: 08 Jul 2009

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Read on this site (3)

Tetsuo Ishii, Mikiko Takayama & Yuko Takahashi. (1995) Mechanical Properties of Human Round Window, Basilar and Reissner's Membranes. Acta Oto-Laryngologica 115:sup519, pages 78-82.
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L. Voldich & L. Ualehlovaa. (1982) The Role of the Spiral Ligament in Cochlear Mechanics. Acta Oto-Laryngologica 93:1-6, pages 169-173.
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Glenn H. Frommer. (1982) Observations of the Organ of Corti Under in Vivo-Like Conditions. Acta Oto-Laryngologica 94:1-6, pages 451-460.
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Articles from other publishers (59)

Aleksandrs Zosuls, Laura C. Rupprecht & David. C. Mountain. (2021) Inner hair cell stereocilia displacement in response to focal stimulation of the basilar membrane in the ex vivo gerbil cochlea. Hearing Research 412, pages 108372.
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Yooil Kim, Ji-Sik Kim & Gi-Woo Kim. (2018) A Novel Frequency Selectivity Approach Based on Travelling Wave Propagation in Mechanoluminescence Basilar Membrane for Artificial Cochlea. Scientific Reports 8:1.
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Liu-Jie Ren, Cheng Hua, Guang-Hong Ding, Lin Yang, Pei-Dong Dai & Tian-Yu Zhang. Three-dimensional finite element hydrodynamical modeling of straight and spiral cochlea. Three-dimensional finite element hydrodynamical modeling of straight and spiral cochlea.
LIUJIE REN, CHENG HUA, GUANGHONG DING, LIN YANG, PEIDONG DAI & TIANYU ZHANG. (2017) PARAMETER ANALYSIS OF 2D COCHLEAR MODEL AND QUANTITATIVE RESEARCH ON THE TRAVELING WAVE PROPAGATION. Journal of Mechanics in Medicine and Biology 17:02, pages 1750033.
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Robert S. MacKay. (2017) Mode conversion in the cochlea?. Transactions of Mathematics and Its Applications 1:1.
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Annalisa De Paolis, Hirobumi Watanabe, Jeremy T. Nelson, Marom Bikson, Mark Packer & Luis Cardoso. (2017) Human cochlear hydrodynamics: A high-resolution μCT-based finite element study. Journal of Biomechanics 50, pages 209-216.
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N. Eze & E.S. Olson. (2011) Basilar Membrane Velocity in a Cochlea with a Modified Organ of Corti. Biophysical Journal 100:4, pages 858-867.
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Mario Fleischer, Rolf Schmidt & Anthony W. Gummer. (2010) Compliance profiles derived from a three-dimensional finite-element model of the basilar membrane. The Journal of the Acoustical Society of America 127:5, pages 2973-2991.
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Julien Meaud & Karl Grosh. (2010) The effect of tectorial membrane and basilar membrane longitudinal coupling in cochlear mechanics. The Journal of the Acoustical Society of America 127:3, pages 1411-1421.
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Shuangqin Liu & Robert D. White. (2008) Orthotropic material properties of the gerbil basilar membrane. The Journal of the Acoustical Society of America 123:4, pages 2160-2171.
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Michio Murakoshi, Naohiro Yoshida, Koji Iida, Shun Kumano, Toshimitsu Kobayashi & Hiroshi Wada. (2006) Local mechanical properties of mouse outer hair cells: Atomic force microscopic study. Auris Nasus Larynx 33:2, pages 149-157.
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Robert D. White & Karl Grosh. (2005) Microengineered hydromechanical cochlear model. Proceedings of the National Academy of Sciences 102:5, pages 1296-1301.
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Gentiana I. Wenzel, Brian Pikkula, Chul‐Hee Choi, Bahman Anvari & John S. Oghalai. (2004) Laser irradiation of the guinea pig basilar membrane. Lasers in Surgery and Medicine 35:3, pages 174-180.
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Gulam Emadi, Claus-Peter Richter & Peter Dallos. (2004) Stiffness of the Gerbil Basilar Membrane: Radial and Longitudinal Variations. Journal of Neurophysiology 91:1, pages 474-488.
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Olga Ganeshina & Misha Vorobyev. (2003) Contractile cochlear frame in the gecko Teratoscincus scincus . Journal of Comparative Neurology 461:4, pages 539-547.
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Taha S. A. Jaffer, Hans Kunov & Willy Wong. (2002) A model cochlear partition involving longitudinal elasticity. The Journal of the Acoustical Society of America 112:2, pages 576-589.
Crossref
Luis Robles & Mario A. Ruggero. (2001) Mechanics of the Mammalian Cochlea. Physiological Reviews 81:3, pages 1305-1352.
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Claus-Peter Richter, Burt N. Evans, Roxanne Edge & Peter Dallos. (1998) Basilar Membrane Vibration in the Gerbil Hemicochlea. Journal of Neurophysiology 79:5, pages 2255-2264.
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F. Bohnke & W. Arnold. (1998) Nonlinear mechanics of the organ of Corti caused by Deiters cells. IEEE Transactions on Biomedical Engineering 45:10, pages 1227-1233.
Crossref
Robert Patuzzi. 1996. The Cochlea. The Cochlea 186 257 .
Stephen M. Echteler, Richard R. Fay & Arthur N. Popper. 1994. Comparative Hearing: Mammals. Comparative Hearing: Mammals 134 171 .
Douglas A. Cotanche, Miriam M. Henson & O. W. HensonJr.Jr.. (2004) Contractile proteins in the hyaline cells of the chicken cochlea. Journal of Comparative Neurology 324:3, pages 353-364.
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James Lighthill. (2006) Acoustic streaming in the ear itself. Journal of Fluid Mechanics 239:-1, pages 551.
Crossref
F. Schick. (1992) Alterations of bone conducted hearing in cases of modified middle ear mechanics. European Archives of Oto-Rhino-Laryngology 249:5, pages 268-272.
Crossref
Elizabeth S. Olson & David C. Mountain. 1990. The Mechanics and Biophysics of Hearing. The Mechanics and Biophysics of Hearing 296 303 .
Donald Laming. (2010) A reexamination of Sensory Analysis . Behavioral and Brain Sciences 11:2, pages 316-339.
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William A. Yost. (2010) Sensory Analysis: A psychoacoustic view . Behavioral and Brain Sciences 11:2, pages 315-316.
Crossref
Peter Wenderoth. (2010) Critical assumptions in psychophysical analysis. Behavioral and Brain Sciences 11:2, pages 314-315.
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R. J. Watt. (2010) What is Weber's Law?. Behavioral and Brain Sciences 11:2, pages 313-314.
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Mark Wagner. (2010) Presupposing Weber's Law: Theory without independent confirmation is circular. Behavioral and Brain Sciences 11:2, pages 312-313.
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Christopher W. Tyler. (2010) A differentiated view of Weber's Law. Behavioral and Brain Sciences 11:2, pages 311-312.
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David L. Tomko. (2010) Sensory Analysis: The question of balance. Behavioral and Brain Sciences 11:2, pages 311-311.
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Kent A. Stevens. (2010) Differential coupling for detection versus discrimination. Behavioral and Brain Sciences 11:2, pages 310-311.
Crossref
David H. Raab. (2010) What Miller hath joined, Laming hath put asunder. Behavioral and Brain Sciences 11:2, pages 309-310.
Crossref
E. Pöppel & Nikos Logothetis. (2010) Psychophysical correlates of physiological functions. Behavioral and Brain Sciences 11:2, pages 308-309.
Crossref
Richard E. Pastore. (2010) Problems in modeling intensity discrimination for audition. Behavioral and Brain Sciences 11:2, pages 307-308.
Crossref
John A. Nevin. (2010) Sensory analysis and behavior theory. Behavioral and Brain Sciences 11:2, pages 307-307.
Crossref
Brian C. J. Moore. (2010) Questioning some basic assumptions on the form of psychometric functions, differential coupling, and the amplitude-discrimination of pure tones. Behavioral and Brain Sciences 11:2, pages 306-307.
Crossref
Glenn E. Meyer. (2010) Emerging perceptions of Sensory Analysis . Behavioral and Brain Sciences 11:2, pages 305-306.
Crossref
John C. MaloneJrJr. (2010) Sensory analysis: Phenomena, models, and theories concerning life near threshold. Behavioral and Brain Sciences 11:2, pages 304-305.
Crossref
Neil A. Macmillan. (2010) How sensory an Analysis?. Behavioral and Brain Sciences 11:2, pages 303-304.
Crossref
Gregory R. Lockhead. (2010) Modeling temporal and spatial differences. Behavioral and Brain Sciences 11:2, pages 302-303.
Crossref
Gordon E. Legge & Neal F. Viemeister. (2010) Sensory analysis in vision and audition. Behavioral and Brain Sciences 11:2, pages 301-302.
Crossref
J. J. Kulikowski. (2010) Sensory analysis of vision. Behavioral and Brain Sciences 11:2, pages 300-301.
Crossref
Karel Kranda. (2010) Searching for models. Behavioral and Brain Sciences 11:2, pages 299-300.
Crossref
M. Järvilehto. (2010) Obscure input for sensory analysis: Peripheral information processing is a dynamic entity. Behavioral and Brain Sciences 11:2, pages 298-299.
Crossref
Lewis O. HarveyJrJr. (2010) To honor psychophysics and repeal confusion. Behavioral and Brain Sciences 11:2, pages 298-298.
Crossref
Thomas E. Hanna. (2010) A perspective from auditory psychophysics on differential coupling. Behavioral and Brain Sciences 11:2, pages 297-298.
Crossref
C. R. Cavonius & L. H. van der Tweel. (2010) Limits on the usefulness of Sensory Analysis . Behavioral and Brain Sciences 11:2, pages 296-297.
Crossref
Donald Laming. (2010) Précis of Sensory Analysis . Behavioral and Brain Sciences 11:2, pages 275-296.
Crossref
Salvo D’Angelo, Marcello Masili & Riccardo Malvano. 1986. Peripheral Auditory Mechanisms. Peripheral Auditory Mechanisms 282 289 .
Stephen T. Neely. 1986. Peripheral Auditory Mechanisms. Peripheral Auditory Mechanisms 137 146 .
Claudio Cancelli, Salvo D'Angelo, Marcello Masili & Riccardo Malvano. (2006) Experimental results in a physical model of the cochlea. Journal of Fluid Mechanics 153:-1, pages 361.
Crossref
H. Autrum, L. M. Beidler, H. Davis, H. Engström, G. A. Fry, R. Granit, W. D. Keidel, D. R. Kenshalo, O. Lowenstein, C. Pfaffmann, L. A. Riggs, D. Schneider, T. Tomita, W. D. Wright & J. J. ZwislockiJozef J. Zwislocki. 1984. Foundations of Sensory Science. Foundations of Sensory Science 109 150 .
J. Lighthill. 1983. Mechanics of Hearing. Mechanics of Hearing 63 71 .
C. E. Miller. 1983. Mechanics of Hearing. Mechanics of Hearing 203 210 .
Luboš Voldřich. 1983. Mechanics of Hearing. Mechanics of Hearing 163 167 .
James Lighthill. (2006) Energy flow in the cochlea. Journal of Fluid Mechanics 106:-1, pages 149.
Crossref
R. S. Chadwick. 1981. Mathematical Modeling of the Hearing Process. Mathematical Modeling of the Hearing Process 9 54 .

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