Morphological and molecular changes in the inner hair cell region of the rat cochlea after amikacin treatment
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R. Pujol | M. Eybalin | M. Lenoir | N. Daudet | P. Vago | G. Humbert | N. Renard | M. Gallégo | G. Humbert | Nicolas Daudet | M. Gallego | Michel Eybalin
[1] A. Wyllie. Cell death: a new classification separating apoptosis from necrosis , 1981 .
[2] D. Talreja,et al. Replacement of hair cells after laser microbeam irradiation in cultured organs of corti from embryonic and neonatal mice , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[3] Y. Raphael,et al. Reorganization of cytoskeletal and junctional proteins during cochlear hair cell degeneration. , 1991, Cell motility and the cytoskeleton.
[4] E. Rubel,et al. Hair cell regeneration after streptomycin toxicity in the avian vestibular epithelium , 1993, The Journal of comparative neurology.
[5] E. Rubel,et al. Light microscopic evidence of hair cell regeneration after gentamicin toxicity in chick cochlea. , 1987, Archives of otolaryngology--head & neck surgery.
[6] M. Lenoir,et al. Attempt at hair cell neodifferentiation in developing and adult amikacin intoxicated rat cochleae , 1998, Brain Research.
[7] G. Moonen,et al. Retinoic acid stimulates regeneration of mammalian auditory hair cells. , 1993, Science.
[8] M. Lenoir,et al. Amikacin intoxication induces apoptosis and cell proliferation in rat organ of Corti , 1998, Neuroreport.
[9] R. Wenthold,et al. SNARE complex at the ribbon synapses of cochlear hair cells: analysis of synaptic vesicle‐ and synaptic membrane‐associated proteins , 1999, The European journal of neuroscience.
[10] A. Forge,et al. Two modes of hair cell loss from the vestibular sensory epithelia of the guinea pig inner ear , 1995, The Journal of comparative neurology.
[11] S. Chamberlain,et al. Immunoelectron microscopic and immunofluorescent localization of cytoskeletal and muscle-like contractile proteins in inner ear sensory hair cells , 1985, Hearing Research.
[12] Y. Raphael,et al. Scar formation after drug-induced cochlear insult , 1991, Hearing Research.
[13] A. Forge. Outer hair cell loss and supporting cell expansion following chronic gentamicin treatment , 1985, Hearing Research.
[14] H. Sobkowicz,et al. Neuronal sprouting and synapse formation in response to injury in the mouse organ of corti in culture , 1992, International Journal of Developmental Neuroscience.
[15] D. Lim,et al. Functional structure of the organ of Corti: a review , 1986, Hearing Research.
[16] B. Ryals,et al. Hair cell regeneration after acoustic trauma in adult Coturnix quail. , 1988, Science.
[17] Y. Raphael,et al. Organization of cell junctions and cytoskeleton in the reticular lamina in normal and ototoxically damaged organ of Corti , 1997, Hearing Research.
[18] D. Cotanche. Regeneration of hair cell stereociliary bundles in the chick cochlea following severe acoustic trauma , 1987, Hearing Research.
[19] Andrew Forge,et al. Hair cell recovery in the vestibular sensory epithelia of mature guinea pigs , 1998, The Journal of comparative neurology.
[20] Jean-Luc Puel,et al. Excitotoxicity and repair of cochlear synapses after noise‐trauma induced hearing loss , 1998, Neuroreport.
[21] M. Thomasset,et al. Appearance and distribution of neuron-specific enolase and calbindin (CaBP 28 kDa) in the developing human inner ear. , 1988, Brain research.
[22] M. Lenoir,et al. Does the organ of coati attempt to differentiate new hair cells after antibiotic intoxication in rat pups? , 1997, International Journal of Developmental Neuroscience.
[23] R. Pujol,et al. Characterization of atypical cells in the juvenile rat organ of corti after aminoglycoside ototoxicity , 1998, The Journal of comparative neurology.
[24] D. Cotanche,et al. Regeneration of sensory hair cells after acoustic trauma. , 1988, Science.
[25] J. Aran,et al. The comparative ototoxicities of gentamicin, tobramycin and dibekacin in the guinea pig. A functional and morphological cochlear and vestibular study. , 1982, Acta oto-laryngologica. Supplementum.
[26] Y. Raphael,et al. New hair cells arise from supporting cell conversion in the acoustically damaged chick inner ear , 1996, Neuroscience Letters.
[27] H. Sobkowicz,et al. Epithelial repair following mechanical injury of the developing organ of Corti in culture: An electron microscopic and autoradiographic study , 1992, Experimental Neurology.
[28] J. Puel,et al. Excitatory amino acid antagonists protect cochlear auditory neurons from excitotoxicity , 1994, The Journal of comparative neurology.
[29] D. Robertson. Functional significance of dendritic swelling after loud sounds in the guinea pig cochlea , 1983, Hearing Research.
[30] R. Pujol,et al. Development of Sensory and Neural Structures in the Mammalian Cochlea , 1998 .
[31] Y. Raphael. Reorganization of the chick basilar papilla after acoustic trauma , 1993, The Journal of comparative neurology.
[32] D. Cotanche. Structural Recovery from Sound and Aminoglycoside Damage in the Avian Cochlea , 1999, Audiology and Neurotology.
[33] S. Ben‐Sasson,et al. Identification of programmed cell death in situ via specific labeling of nuclear DNA fragmentation , 1992, The Journal of cell biology.
[34] H. Sobkowicz,et al. Cellular interactions as a response to injury in the organ of corti in culture , 1997, International Journal of Developmental Neuroscience.
[35] F. Ribaupierre,et al. Replacement of mammalian auditory hair cells , 1998, Neuroreport.
[36] E. Rubel,et al. Mammalian vestibular hair cell regeneration , 1995, Science.
[37] R. Romand,et al. Regeneration and mammalian auditory hair cells , 1995, Science.