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Original Article

Saccular and Cochlear Endolymphatic Potentials in Experimentally Induced Endolymphatic Hydrops of Guinea Pigs

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Pages 27-33 | Published online: 08 Jul 2009

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Read on this site (3)

Hideki Okubo, Hiromitsu Akizuki, Nobuyoshi Kawashima, Yasuhisa Morita, Zenya Ito, Yuji Ase, Hozumi Nakata & Jun Kusakari. (1995) Distortion-product Otoacoustic Emissions in Experimentally Induced Hydropic Ears. Acta Oto-Laryngologica 115:sup519, pages 97-101.
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Zenya Ito, Jun Kusakari, Minoru Takeyama, Norihide Nishikawa, Akira Hara & Hozumi Nakata. (1991) The Effect of Furosemide on the Endocochlear Potential in Ears with Experimentally Induced Endolymphatic Hydrops. Acta Oto-Laryngologica 111:sup481, pages 83-87.
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Jun Kusakari, Toshimitsu Kobayashi, Eiichi Arakawa, Masaaki Rokugo & Kenji Ohyama. (1987) Time-Related Changes in Cochlear Potentials in Guinea Pigs with Experimentally Induced Endolymphatic Hydrops. Acta Oto-Laryngologica 104:sup435, pages 27-32.
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Articles from other publishers (13)

Idir Djennaoui & Paul Avan. (2021) Meniere’s attack – a volume or pressure phenomenon?. Journal of Vestibular Research 31:4, pages 283-287.
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Minbum Kim & Mi Joo Kim. (2016) Experiemental Model for Ménière’s Disease Using Surgical Ablation of Endolymphatic Sac. Research in Vestibular Science 15:4, pages 95-100.
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Alec N. Salt & Stefan K. Plontke. (2010) Endolymphatic Hydrops: Pathophysiology and Experimental Models. Otolaryngologic Clinics of North America 43:5, pages 971-983.
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Peter J.F.M Lohuis, Sjaak F.L Klis, W.Martin C Klop, Maarten G van Emst & Guido F Smoorenburg. (1999) Signs of endolymphatic hydrops after perilymphatic perfusion of the guinea pig cochlea with cholera toxin; a pharmacological model of acute endolymphatic hydrops. Hearing Research 137:1-2, pages 103-113.
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Akinobu Kakigi & Taizo Takeda. (1998) Effect of artificial endolymph injection into the cochlear duct on the endocochlear potential. Hearing Research 116:1-2, pages 113-118.
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Alec N. Salt & John DeMott. (1994) Time course of endolymph volume increase in experimental hydrops measured in vivo with an ionic volume marker. Hearing Research 74:1-2, pages 165-172.
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Giuseppe Magliulo, Roberto Petti, Gianluca Maria Vingolo & Piera Cristofari. (2016) Experimental Endolymphatic Hydrops and Glycerol Electrophysiologic Study. Annals of Otology, Rhinology & Laryngology 102:8, pages 596-599.
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K.C. Horner. (1993) Functional changes associated with experimentally induced endolymphatic hydrops. Hearing Research 68:1, pages 1-18.
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Istvan Sziklai, Evelyne Ferrary, Kathleen C. Horner, Olivier Sterkers & Claude Amiel. (2009) Time‐related alteration of endolymph composition in an experimental model of endolymphatic hydrops. The Laryngoscope 102:4, pages 431-438.
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James C. Andrews, Andreas Bohmer & Larry F. Hoffman. (2009) The measurement and manipulation of intralabyrinthine pressure in experimental endolymphatic hydrops. The Laryngoscope 101:6, pages 661-668.
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Katsuhisa Ikeda & Tetsuo Morizono. (1991) Ionic activities of the inner ear fluid and ionic permeabilities of the cochlear duct in endolymphatic hydrops of the guinea pig. Hearing Research 51:2, pages 185-192.
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Sjaak F. L. Klis, Jacqueline Buijs & Guido F. Smoorenburg. (2016) Quantification of the Relation between Electrophysiologic and Morphologic Changes in Experimental Endolymphatic Hydrops. Annals of Otology, Rhinology & Laryngology 99:7, pages 566-570.
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Jun Kusakari, Zenya Ito, Norihide Nishikawa, Minoru Takeyama, Yasuo Furuhashi, Akira Hara, Tetsuaki Kawase, Kenji Ohyama, Toshimitsu Kobayashi, Eiichi Arakawa & Masaaki Rokugo. 1990. Ménière’s Disease. Ménière’s Disease 45 56 .

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