FM1-43 Reveals Membrane Recycling in Adult Inner Hair Cells of the Mammalian Cochlea
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Jonathan F. Ashmore | J. Ashmore | C. B. Griesinger | Claudius B. Griesinger | Chistopher D. Richards | C. D. Richards | C. Griesinger
[1] Fabio Mammano,et al. Reverse transduction measured in the isolated cochlea by laser Michelson interferometry , 1993, Nature.
[2] A. Wolkoff,et al. Microtubule and Motor-Dependent Endocytic Vesicle Sorting in Vitro , 2000, The Journal of cell biology.
[3] C. Hackney,et al. Organization of microtubules in cochlear hair cells. , 1990, Journal of electron microscopy technique.
[4] F. Sasaki,et al. Internalization of styryl dye FM1-43 in the hair cells of lateral line organs in Xenopus larvae. , 1996, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[5] M H Ellisman,et al. Synaptic Vesicle Populations in Saccular Hair Cells Reconstructed by Electron Tomography , 1999, The Journal of Neuroscience.
[6] J. Ashmore,et al. Staining pattern of isolated inner hair cells of the guinea-pig cochlea using the fluorescent probe FM1-43. , 1997 .
[7] W. Almers,et al. Calcium-triggered exocytosis and endocytosis in an isolated presynaptic cell: Capacitance measurements in saccular hair cells , 1994, Neuron.
[8] H. Ohmori,et al. Dihydrostreptomycin modifies adaptation and blocks the mechano-electric transducer in chick cochlear hair cells , 1993, Brain Research.
[9] J. Siegel,et al. Synaptic and Golgi membrane recycling in cochlear hair cells , 1986, Journal of neurocytology.
[10] E. Neher,et al. Multiple Forms of Endocytosis In Bovine Adrenal Chromaffin Cells , 1997, The Journal of cell biology.
[11] T. Moser,et al. Kinetics of exocytosis and endocytosis at the cochlear inner hair cell afferent synapse of the mouse. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[12] K. Steel,et al. Role of myosin VI in the differentiation of cochlear hair cells. , 1999, Developmental biology.
[13] P. De Camilli,et al. Synaptic vesicle proteins and early endosomes in cultured hippocampal neurons: differential effects of Brefeldin A in axon and dendrites , 1993, The Journal of cell biology.
[14] W. Huttner,et al. Biogenesis of constitutive secretory vesicles, secretory granules and synaptic vesicles. , 1993, Current opinion in cell biology.
[15] W. F. Sewell,et al. The relation between the endocochlear potential and spontaneous activity in auditory nerve fibres of the cat. , 1984, The Journal of physiology.
[16] T. Parsons,et al. Chick cochlear hair cell exocytosis mediated by dihydropyridine‐sensitive calcium channels , 2001, The Journal of physiology.
[17] K. Steel,et al. Myosin VIIA Is Required for Aminoglycoside Accumulation in Cochlear Hair Cells , 1997, The Journal of Neuroscience.
[18] J. Ruppersberg,et al. Mechanically and ATP-induced currents of mouse outer hair cells are independent and differentially blocked by d-tubocurarine , 1997, Neuropharmacology.
[19] T. Lentz,et al. Rabies virus entry into cultured rat hippo campalneurons , 1998, Journal of neurocytology.
[20] T. Schroer,et al. Microtubule- and motor-dependent fusion in vitro between apical and basolateral endocytic vesicles from MDCK cells , 1990, Cell.
[21] Ege T. Kavalali,et al. Kinetics and regulation of fast endocytosis at hippocampal synapses , 1998, Nature.
[22] J Mertz,et al. Coherent scattering in multi-harmonic light microscopy. , 2001, Biophysical journal.
[23] R. Snyder,et al. Uptake of horseradish peroxidase from perilymph by cochlear hair cells , 1987, Hearing Research.
[24] D. Corey,et al. Unconventional Myosins in Inner-Ear Sensory Epithelia , 1997, The Journal of cell biology.
[25] Anthony W. Gummer,et al. Pronounced infracuticular endocytosis in mammalian outer hair cells , 2001, Hearing Research.
[26] M. Liberman,et al. Ultrastructural differences among afferent synapses on cochlear hair cells: Correlations with spontaneous discharge rate , 1996, The Journal of comparative neurology.
[27] C. Seiler,et al. Defective calmodulin-dependent rapid apical endocytosis in zebrafish sensory hair cell mutants. , 1999, Journal of neurobiology.
[28] R. Scheller,et al. Synaptic vesicle biogenesis, docking, and fusion: a molecular description. , 1996, Physiological reviews.
[29] S. Spicer,et al. Novel membranous structures in apical and basal compartments of inner hair cells , 1999, The Journal of comparative neurology.
[30] C. Hackney,et al. Tubulin and microtubules in cochlear hair cells: Comparative immunocytochemistry and ultrastructure , 1989, Hearing Research.
[31] A. Forge,et al. Freeze fracture analysis of apical membranes in cochlear cultures: differences between basal and apicalcoil outer hair cells and effects of neomycin , 1993, Journal of neurocytology.
[32] A. Palmer,et al. Phase-locking in the cochlear nerve of the guinea-pig and its relation to the receptor potential of inner hair-cells , 1986, Hearing Research.
[33] Presynaptic bodies in outer hair cells of the chinchilla organ of Corti , 1981, Brain Research.
[34] W. Betz,et al. Optical monitoring of transmitter release and synaptic vesicle recycling at the frog neuromuscular junction. , 1993, The Journal of physiology.
[35] B. Kachar,et al. Compartmentalized vesicular traffic around the hair cell cuticular plate , 1997, Hearing Research.
[36] E. A. Schwartz,et al. Continuous and Transient Vesicle Cycling at a Ribbon Synapse , 1998, The Journal of Neuroscience.
[37] John A. Assad,et al. Tip-link integrity and mechanical transduction in vertebrate hair cells , 1991, Neuron.
[38] L. Goldstein,et al. Microtubule-based transport systems in neurons: the roles of kinesins and dyneins. , 2000, Annual review of neuroscience.
[39] C. le Grimellec,et al. Temperature dependence of endocytosis in renal epithelial cells in culture. , 1996, Biochimica et biophysica acta.
[40] W. Almers,et al. Fast steps in exocytosis and endocytosis studied by capacitance measurements in endocrine cells , 1996, Current Opinion in Neurobiology.
[41] H. Kennedy,et al. FM1-43 Dye Behaves as a Permeant Blocker of the Hair-Cell Mechanotransducer Channel , 2001, The Journal of Neuroscience.
[42] W. S. Rhode,et al. Characteristics of tone-pip response patterns in relationship to spontaneous rate in cat auditory nerve fibers , 1985, Hearing Research.
[43] H. Riezman,et al. Identification and characterization of Saccharomyces cerevisiae mutants defective in fluid‐phase endocytosis , 2001, Yeast.
[44] M. Liberman,et al. Afferent and efferent innervation of the cat cochlea: Quantitative analysis with light and electron microscopy , 1990, The Journal of comparative neurology.