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STRIA VASCULARIS AS SOURCE OF ENDOCOCHLEAR POTENTIAL

耳蜗内电位 神经科学 听力学 耳蜗 化学 沟通 医学 心理学
作者
Ichiji Tasaki,C. S. Spyropoulos
出处
期刊:Journal of Neurophysiology [American Physiological Society]
卷期号:22 (2): 149-155 被引量:272
标识
DOI:10.1152/jn.1959.22.2.149
摘要

ArticlesSTRIA VASCULARIS AS SOURCE OF ENDOCOCHLEAR POTENTIALI. Tasaki, and C. S. SpyropoulosI. Tasaki, and C. S. SpyropoulosPublished Online:01 Mar 1959https://doi.org/10.1152/jn.1959.22.2.149MoreSectionsPDF (1 MB)Download PDF ToolsExport citationAdd to favoritesGet permissionsTrack citations ShareShare onFacebookTwitterLinkedInWeChat Previous Back to Top Next Download PDF FiguresReferencesRelatedInformation Cited ByParacellular Channel in Organ SystemThe proteome of perilymph in patients with vestibular schwannoma. A possibility to identify biomarkers for tumor associated hearing loss?1 June 2018 | PLOS ONE, Vol. 13, No. 6Hearing disorders in cats: Classification, pathology and diagnosis1 March 2017 | Journal of Feline Medicine and Surgery, Vol. 19, No. 3Functional significance of channels and transporters expressed in the inner ear and kidneyFlorian Lang, Volker Vallon, Marlies Knipper, and Philine Wangemann1 October 2007 | American Journal of Physiology-Cell Physiology, Vol. 293, No. 4Computational model of vectorial potassium transport by cochlear marginal cells and vestibular dark cellsImran H. Quraishi, and Robert M. Raphael1 January 2007 | American Journal of Physiology-Cell Physiology, Vol. 292, No. 1Gastric type H+,K+-ATPase in the cochlear lateral wall is critically involved in formation of the endocochlear potentialToshiaki Shibata, Hiroshi Hibino, Katsumi Doi, Toshihiro Suzuki, Yasuo Hisa, and Yoshihisa Kurachi1 November 2006 | American Journal of Physiology-Cell Physiology, Vol. 291, No. 5Molecular and Physiological Bases of the K+ Circulation in the Mammalian Inner EarHiroshi Hibino, and Yoshihisa Kurachi1 October 2006 | Physiology, Vol. 21, No. 5Presbycusis: A human temporal bone study of individuals with flat audiometric patterns of hearing loss using a new method to quantify stria vascularis volume3 September 2010 | The Laryngoscope, Vol. 113, No. 10Dystroglycan expression in the mouse cochleaHearing Research, Vol. 177, No. 1-2Dystroglycan expression in the developing and senescent gerbil cochleaHearing Research, Vol. 174, No. 1-2KCNJ10 (Kir4.1) potassium channel knockout abolishes endocochlear potentialDaniel C. Marcus, Tao Wu, Philine Wangemann, and Paulo Kofuji1 February 2002 | American Journal of Physiology-Cell Physiology, Vol. 282, No. 2Ongoing proliferation of melanocytes in the stria vascularis of adult guinea pigsHearing Research, Vol. 79, No. 1-2Turn-specific differences in the endocochlear potential between albino and pigmented guinea pigsHearing Research, Vol. 65, No. 1-2Aldosterone mediates an increase in [3H]ouabain binding at Na+, K+ -ATPase sites in the mammalian inner earBrain Research, Vol. 601, No. 1-2Cochlear Pathology in Presbycusis4 December 2016 | Annals of Otology, Rhinology & Laryngology, Vol. 102, No. 1_supplDevelopment of the human stria vascularisHearing Research, Vol. 64, No. 1Ca2+-activated nonselective cation, maxi K+ and Cl− channels in apical membrane of marginal cells of stria vascularisHearing Research, Vol. 61, No. 1-2Membranous Cytoplasmic Bodies in the Lateral Wall of the Cat Cochlea29 June 2016 | Annals of Otology, Rhinology & Laryngology, Vol. 101, No. 4Mutant golden hamsters with an abnormal outer hair cell stereociliary arrangementHearing Research, Vol. 44, No. 1Effect of high frequency noise on hearing—action potential and endocochlear potential of guinea pigJournal of Sound and Vibration, Vol. 127, No. 3DC potentials in different cells of the stria vascularis measured in vitroHearing Research, Vol. 25, No. 1Single unit clues to cochlear mechanismsHearing Research, Vol. 22, No. 1-3Ionic environment of cochlear hair cellsHearing Research, Vol. 22, No. 1-3Central auditory function in a hearing-impaired white mouseHearing Research, Vol. 23, No. 1A morphometric technique for analysis of cochlear vesselsHearing Research, Vol. 20, No. 2Relationship of gross cochlear potentials to hair cell pathology in the waltzing guinea pigHearing Research, Vol. 15, No. 2Furosemide selectively reduces one component in rate-level functions from auditory-nerve fibersHearing Research, Vol. 15, No. 1The effects of furosemide on the endocochlear potential and auditory-nerve fiber tuning curves in catsHearing Research, Vol. 14, No. 3Electrochemical profile for potassium ions across the cochlear hair cell membranes of normal and noise-exposed guinea pigsHearing Research, Vol. 11, No. 2Mechanism of the Production of the Negative Endocochlear DC Potential in the Guinea Pig1 August 1983 | Otolaryngology-Head and Neck Surgery, Vol. 91, No. 4The volume density of cells and capillaries of the normal stria vascularisHearing Research, Vol. 11, No. 1Effects of Topical Sodium Potassium ATPase Inhibitors upon Endocochlear Potential in Chinchilla1 November 1982 | Otolaryngology-Head and Neck Surgery, Vol. 90, No. 6Effect of furosemide upon endolymph potassium concentrationHearing Research, Vol. 7, No. 2Structure and function of the ear and auditory nervous system.Environmental Health Perspectives, Vol. 44Auditory stimulation alters the pattern of 2-deoxyglucose uptake in the inner earBrain Research, Vol. 234, No. 2Pathophysiology of the Ototoxicity of Cis-Diamminedichloroplatinum11 December 2016 | Otolaryngology-Head and Neck Surgery, Vol. 89, No. 2The Davis theory: A review, and implications of recent electrophysiological evidenceHearing Research, Vol. 3, No. 1Effects of Furosemide and Ethacrynic Acid on The Endocochlear Direct Current Potential in Normal and Kanamycin Sulfate-Treated Guinea Pigs22 April 2016 | Otolaryngology-Head and Neck Surgery, Vol. 88, No. 2Structural and functional changes in the cochlea following ultrasonic irradiationUltrasound in Medicine & Biology, Vol. 6, No. 1Bioelectric Phenomena in the Ototoxicity of Nitrogen Mustard22 April 2016 | Otolaryngology, Vol. 86, No. 6Physiological Basis of Cochlear Transduction and Sensitivity29 June 2016 | Annals of Otology, Rhinology & Laryngology, Vol. 85, No. 6Effect of Intracochlear Aminooxyacetic Acid on Cochlear Potentials and Endolymph Composition28 June 2016 | Annals of Otology, Rhinology & Laryngology, Vol. 84, No. 2Die feinstruktur gefrierge�tzter zellmembran-haftstellen der Stria vascularisAnatomy and Embryology, Vol. 147, No. 2Effect of intravenous aminooxyacetic acid on guinea pig cochlear potentialsNeuropharmacology, Vol. 12, No. 10VI The Effect of Local Anoxia on the Cation Content of the Endolymph28 June 2016 | Annals of Otology, Rhinology & Laryngology, Vol. 78, No. 1XXIV Electric Polarization of the Tectorial Membrane28 June 2016 | Annals of Otology, Rhinology & Laryngology, Vol. 76, No. 2LXXV Endocochlear DC Potential: How is it Maintained along the Cochlear Turns?29 June 2016 | Annals of Otology, Rhinology & Laryngology, Vol. 73, No. 4LVI Cochlear Function under Metabolic Impairment29 June 2016 | Annals of Otology, Rhinology & Laryngology, Vol. 71, No. 3LXXIV The Electrical Polarization of the Semicircular Canals (Guinea Pig)28 June 2016 | Annals of Otology, Rhinology & Laryngology, Vol. 70, No. 4XLI Pressures of the Labyrinthine Fluids. II28 June 2016 | Annals of Otology, Rhinology & Laryngology, Vol. 70, No. 2 More from this issue > Volume 22Issue 2March 1959Pages 149-155 https://doi.org/10.1152/jn.1959.22.2.149PubMed13642091History Published online 1 March 1959 Published in print 1 March 1959 Metrics

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