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Neuroscience|September 13, 2015
Progressive irreversible hearing loss is caused by stria vascularis degeneration in an Slc26a4-insufficient mouse model of large vestibular aqueduct syndromeT Ito, A Nishio, P Wangemann, et al.The American Journal of Physiology|September 1, 1992
Evidence for the involvement of a K+ channel in isosmotic cell shrinking in vestibular dark cellsP Wangemann, N Shiga, C Welch, et al.The Journal of Membrane Biology|May 7, 1998
Vestibular dark cells contain an H+/monocarboxylate- cotransporter in their apical and basolateral membraneM Shimozono, J Liu, M A Scofield, et al.The Journal of Membrane Biology|July 10, 1999
Beta1-adrenergic receptors but not beta2-adrenergic or vasopressin receptors regulate K+ secretion in vestibular dark cells of the inner earP Wangemann, J Liu, M Shimozono, et al.The Journal of Membrane Biology|October 1, 1995
Hypo-osmotic challenge stimulates transepithelial K+ secretion and activates apical IsK channel in vestibular dark cellsP Wangemann, J Liu, Z Shen, et al.The Journal of Membrane Biology|June 2, 2000
K+ secretion in strial marginal cells is stimulated via beta 1-adrenergic receptors but not via beta 2-adrenergic or vasopressin receptorsP Wangemann, J Liu, M Shimozono, et al.Hearing Research|May 30, 1998
Ca2+-dependence and nifedipine-sensitivity of vascular tone and contractility in the isolated superfused spiral modiolar artery in vitroP Wangemann, E S Cohn, D D Gruber, et al.The Journal of Membrane Biology|August 1, 1995
DIDS increases K+ secretion through an IsK channel in apical membrane of vestibular dark cell epithelium of gerbilZ Shen, J Liu, D C Marcus, et al.Hearing Research|June 26, 1998
Alpha1A-adrenergic receptors mediate vasoconstriction of the isolated spiral modiolar artery in vitroD D Gruber, H Dang, M Shimozono, et al.Pageof 106