Showing results (1-10 of 58) with videos related to
Sort By:
Pageof 6
Cellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology|November 26, 2011
The role of pendrin in the development of the murine inner earPhiline WangemannAudiology & Neuro-Otology|July 5, 2002
K(+) cycling and its regulation in the cochlea and the vestibular labyrinthPhiline WangemannAdvances in Oto-Rhino-Laryngology|March 12, 2002
Adrenergic and muscarinic control of cochlear endolymph productionPhiline WangemannCellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology|January 17, 2014
Mouse models for pendrin-associated loss of cochlear and vestibular functionPhiline WangemannThe Journal of Physiology|July 22, 2006
Supporting sensory transduction: cochlear fluid homeostasis and the endocochlear potentialPhiline WangemannHearing Research|August 2, 2005
Neurogenic regulation of cochlear blood flow occurs along the basilar artery, the anterior inferior cerebellar artery and at branch points of the spiral modiolar arteryPhiline Wangemann, Kai WonnebergerAmerican Journal of Physiology. Renal Physiology|October 26, 2007
Free radical stress-mediated loss of Kcnj10 protein expression in stria vascularis contributes to deafness in Pendred syndrome mouse modelRuchira Singh, Philine WangemannPlos One|November 25, 2010
Failure of fluid absorption in the endolymphatic sac initiates cochlear enlargement that leads to deafness in mice lacking pendrin expressionHyoung-Mi Kim, Philine WangemannPageof 6