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Original Article

Freeze Fracturing of the Human Stria Vascularis

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Pages 64-72 | Published online: 08 Jul 2009

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Dan Bagger-sjöbäck, Berit Engström & Maria Hillerdal. (1988) Membrane specializations in the human organ of corti. Acta Oto-Laryngologica 106:1-2, pages 19-28.
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Luoying Jiang, Daqi Wang, Yingzi He & Yilai Shu. (2023) Advances in gene therapy hold promise for treating hereditary hearing loss. Molecular Therapy 31:4, pages 934-950.
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Li Zhang, Xuewen Wu & Xi Lin. (2020) Gene therapy for genetic mutations affecting non-sensory cells in the cochlea. Hearing Research 394, pages 107858.
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Pernilla Videhult Pierre, Jesper Edvardsson Rasmussen, Sahar Nikkhou Aski, Peter Damberg & Göran Laurell. (2020) High-Dose Furosemide Enhances the Magnetic Resonance Signal of Systemic Gadolinium in the Mammalian Cochlea. Otology & Neurotology 41:4, pages 545-553.
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Tsubasa Saeki, Makoto Hosoya, Shinsuke Shibata, Hideyuki Okano, Masato Fujioka & Kaoru Ogawa. (2020) Distribution of tight junctions in the primate cochlear lateral wall. Neuroscience Letters 717, pages 134686.
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Fabio Mammano. (2019) Inner Ear Connexin Channels: Roles in Development and Maintenance of Cochlear Function. Cold Spring Harbor Perspectives in Medicine 9:7, pages a033233.
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Weiwei GUO, Chen Lei, Li Dengke, Sun Wei & Yang Shiming. (2012) Endocochlear Potential and Potassium Concentration Recording in Minipig Cochlea. Journal of Otology 7:2, pages 103-105.
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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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R R Ciuman. (2008) Stria vascularis and vestibular dark cells: characterisation of main structures responsible for inner-ear homeostasis, and their pathophysiological relations. The Journal of Laryngology & Otology 123:2, pages 151-162.
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Fabio A. Thiers, Joseph B. NadolJr.Jr. & M. Charles Liberman. (2008) Reciprocal Synapses Between Outer Hair Cells and their Afferent Terminals: Evidence for a Local Neural Network in the Mammalian Cochlea. Journal of the Association for Research in Otolaryngology 9:4, pages 477-489.
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Gail Ishiyama, Joshua Tokita, Ivan Lopez, Yong Tang & Akira Ishiyama. (2006) Unbiased Stereological Estimation of the Spiral Ligament and Stria Vascularis Volumes in Aging and Ménière’s Disease Using Archival Human Temporal Bones. Journal of the Association for Research in Otolaryngology 8:1, pages 8-17.
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Gleydes G. Parreira, Rossana C.N. Melo & Lonnie D. Russell. (2002) Relationship of Sertoli-Sertoli Tight Junctions to Ectoplasmic Specialization in Conventional and En Face Views. Biology of Reproduction 67:4, pages 1232-1241.
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Akinobu Kakigi, Shunji Takeuchi, Motonori Ando, Kasumi Higashiyama, Hiroshi Azuma, Takayuki Sato & Taizo Takeda. (2002) Reduction in the endocochlear potential caused by Cs+ in the perilymph can be explained by the five-compartment model of the stria vascularis. Hearing Research 166:1-2, pages 54-61.
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Angel Merchan-Perez & M. Charles Liberman. (1996) Ultrastructural differences among afferent synapses on cochlear hair cells: Correlations with spontaneous discharge rate. The Journal of Comparative Neurology 371:2, pages 208-221.
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Norma B. Slepecky. 1996. The Cochlea. The Cochlea 44 129 .
CARLOS ESCOBAR, ADELINA ZUASTI, CONCEPCION FERRER & FELIX GARCIA‐ORTEGA. (2006) Melanocytes in the Stria Vascularis and Vestibular Labyrinth of the Mongolian Gerbil ( Meriones unguiculatus ) . Pigment Cell Research 8:5, pages 271-278.
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L. Luciano, G. Reiss, S. Iurato & E. Reale. (1995) The junctions of the spindle-shaped cells of the stria vascularis: A link that completes the barrier between perilymph and endolymph. Hearing Research 85:1-2, pages 199-209.
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Mireille Lavigne-Rebillard & Dan Bagger-Sjöbäck. (1992) Development of the human stria vascularis. Hearing Research 64:1, pages 39-51.
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Jonathan H. Siegel. (1990) Serial reconstruction of inner hair cell afferent innervation using semithick sections. Journal of Electron Microscopy Technique 15:3, pages 197-208.
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M. Hara, Y. Nomura, T. Okuno & M. Yagi. (1989) A method for determining reference points in celloidin specimens for computer graphic reconstruction. Archives of Oto-Rhino-Laryngology 246:2, pages 97-99.
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Alec N. Salt, Ivo Mleichar & Ruediger Thalmann. (2009) Mechanisms of endocochlear potential generation by stria vascularis. The Laryngoscope 97:8, pages 984-991.
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