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Original Article

Effect of Ouabain on Cochlear Potentials and Endolymph Composition in Guinea Pigs

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Pages 192-199 | Received 15 Jun 1969, Published online: 08 Jul 2009

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G. Rebillard, J. F. L. Klis, M. Lavigne-rebillard, P. Devaux, J. L. Puel & R. Pujol. (1993) Changes in 2f1-f2 distortion product otoacoustic emissions following alterations of cochlear metabolism. British Journal of Audiology 27:2, pages 117-121.
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M. Tachibana, I. Yamamichi, S. Nakae, Y. Hirasugi, M. Machino And & O. Mizukoshi. (1984) The Site of Involvement of Hypertension within the Cochlea:A Comparative Study of Normotensive and Spontaneously Hypertensive Rats. Acta Oto-Laryngologica 97:3-4, pages 257-265.
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G. Leng & S. D. Comis. (1979) The Effect of Potassium on the Activity of Auditory Nerve Fibres of the Guinea Pig Cochlea. Acta Oto-Laryngologica 87:1-2, pages 39-46.
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Teruzo Konishi & Philip E. Hamrick. (1978) Ion Transport in the Cochlea of Guinea Pig:II. Chloride Transport. Acta Oto-Laryngologica 86:1-6, pages 176-184.
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Teruzo Konishi, Philip E. Hamrick & Phillip J. Walsh. (1978) Ion Transport in Guinea Pig Cochlea:I. Potassium and Sodium Transport. Acta Oto-Laryngologica 86:1-6, pages 22-34.
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S. K. Juhn & J. Pearce. (1977) The Effect of Intracisternally Injected Ouabain on Perilymph Electrolyte Concentrations. Acta Oto-Laryngologica 83:1-6, pages 349-352.
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W. Kuijpers. (1974) Na-K-Atpase Activity in the Cochlea of the Rat During Development. Acta Oto-Laryngologica 78:1-6, pages 341-344.
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S. K. Bosher, C. Smith & R. L. Warren. (1973) The Effects Of Ethacrynic Acid Upon The Cochlear Endolymph And Stria Vascularis: A Preliminary Report. Acta Oto-Laryngologica 75:2-6, pages 184-191.
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T. Konishi & E. Kelsey. (1973) Effect Of Potassium Deficiency On Cochlear Potentials And Cation Contents Of The Endolymph. Acta Oto-Laryngologica 76:1-6, pages 410-418.
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S. K. Bosher. (1972) Neonatal Changes in the Endolymph and Their Possible Relationship to Peri-Natal Deafness. Acta Oto-Laryngologica 73:2-6, pages 203-211.
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T. Konishi. (1972) Action of Tubocurarine and Atropine on the Crossed Olivocochlear Bundles. Acta Oto-Laryngologica 74:1-6, pages 252-264.
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Yong Fu, Dalian Ding, Haiyan Jiang & Richard Salvi. (2012) Ouabain-Induced Cochlear Degeneration in Rat. Neurotoxicity Research 22:2, pages 158-169.
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Robert Patuzzi. (2011) Ion flow in stria vascularis and the production and regulation of cochlear endolymph and the endolymphatic potential. Hearing Research 277:1-2, pages 4-19.
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Paolo Manunta, Elisabetta Messaggio, Nunzia Casamassima, Guido Gatti, Simona Delli Carpini, Laura Zagato & John M. Hamlyn. (2010) Endogenous ouabain in renal Na+ handling and related diseases. Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 1802:12, pages 1214-1218.
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Hiroshi Hibino, Fumiaki Nin, Chizuru Tsuzuki & Yoshihisa Kurachi. (2009) How is the highly positive endocochlear potential formed? The specific architecture of the stria vascularis and the roles of the ion-transport apparatus. Pflügers Archiv - European Journal of Physiology 459:4, pages 521-533.
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Roberto Teggi, Laura Zagato, Simona Delli Carpini, Elisabetta Messaggio, Nunzia Casamassima, Chiara Lanzani, Paolo Manunta & Mario Bussi. (2010) Endogenous Ouabain in Ménière's Disease. Otology & Neurotology 31:1, pages 153-156.
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Will J. McLean, K. Anne Smith, Elisabeth Glowatzki & Sonja J. Pyott. (2008) Distribution of the Na,K-ATPase α Subunit in the Rat Spiral Ganglion and Organ of Corti. Journal of the Association for Research in Otolaryngology 10:1, pages 37-49.
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Zhe Jin, Mats Ulfendahl & Leif Järlebark. (2007) Spatiotemporal loss of K+ transport proteins in the developing cochlear lateral wall of guinea pigs with hereditary deafness. European Journal of Neuroscience 27:1, pages 145-154.
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Florian Lang, Volker Vallon, Marlies Knipper & Philine Wangemann. (2007) Functional significance of channels and transporters expressed in the inner ear and kidney. American Journal of Physiology-Cell Physiology 293:4, pages C1187-C1208.
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Mai Thy Truong, Jody Winzelberg & Kay W. Chang. (2007) Recovery from cisplatin-induced ototoxicity: A case report and review. International Journal of Pediatric Otorhinolaryngology 71:10, pages 1631-1638.
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Toshiaki Shibata, Hiroshi Hibino, Katsumi Doi, Toshihiro Suzuki, Yasuo Hisa & Yoshihisa Kurachi. (2006) Gastric type H + ,K + -ATPase in the cochlear lateral wall is critically involved in formation of the endocochlear potential . American Journal of Physiology-Cell Physiology 291:5, pages C1038-C1048.
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Hiroshi HibinoYoshihisa Kurachi. (2006) Molecular and Physiological Bases of the K + Circulation in the Mammalian Inner Ear . Physiology 21:5, pages 336-345.
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Lin-e WANG, Ke-li CAO, Shan-kai YIN, Zhen WANG & Zheng-nong CHEN. (2006) Cochlear function after selective spiral ganglion cells degeneration induced by ouabain. Chinese Medical Journal 119:12, pages 974-979.
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Dennis M. Freeman, Kinuko Masaki, Abraham R. McAllister, Jesse L. Wei & Thomas F. Weiss. (2003) Static material properties of the tectorial membrane: a summary. Hearing Research 180:1-2, pages 11-27.
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R.A. Schmiedt, H.-O. Okamura, H. Lang & B.A. Schulte. (2001) Ouabain application to the round window of the gerbil cochlea: A model of auditory neuropathy and apoptosis. Journal of the Association for Research in Otolaryngology 3:3, pages 223-233.
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MASAYOSHI TACHIBANA. (2006) Sound Needs Sound Melanocytes to Be Heard. Pigment Cell Research 12:6, pages 344-354.
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Mark Souter & Andrew Forge. (1998) Intercellular junctional maturation in the stria vascularis: possible association with onset and rise of endocochlear potential. Hearing Research 119:1-2, pages 81-95.
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Philine Wangemann. (1995) Comparison of ion transport mechanisms between vestibular dark cells and strial marginal cells. Hearing Research 90:1-2, pages 149-157.
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Devang M. Shah, Dennis M. Freeman & Thomas F. Weiss. (1995) The osmotic response of the isolated, unfixed mouse tectorial membrane to isosmotic solutions: effect of Na+, K+, and Ca2+ concentration. Hearing Research 87:1-2, pages 187-207.
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Philine Wangemann, Jianzhong Liu & Daniel C. Marcus. (1995) Ion transport mechanisms responsible for K+ secretion and the transepithelial voltage across marginal cells of stria vascularis in vitro. Hearing Research 84:1-2, pages 19-29.
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