Models of membrane resonance in pigeon semicircular canal type II hair cells
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[1] M G Evans,et al. Electrical tuning in hair cells isolated from the chick cochlea , 1988, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[2] Gary D. Housley,et al. Electrophysiological properties and morphology of hair cells isolated from the semicircular canal of the frog , 1989, Hearing Research.
[3] H. M. Fishman,et al. K+ Conduction description from the low frequency impedance and admittance of squid axon , 1977, The Journal of Membrane Biology.
[4] A J Hudspeth,et al. A model for electrical resonance and frequency tuning in saccular hair cells of the bull‐frog, Rana catesbeiana. , 1988, The Journal of physiology.
[5] A J Hudspeth,et al. Extracellular current flow and the site of transduction by vertebrate hair cells , 1982, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[6] M J Correia,et al. Studies of solitary semicircular canal hair cells in the adult pigeon. II. Voltage-dependent ionic conductances. , 1989, Journal of neurophysiology.
[7] J. P. Wilson,et al. THE FREQUENCY SELECTIVITY OF THE COCHLEA , 1973 .
[8] John A. Nelder,et al. A Simplex Method for Function Minimization , 1965, Comput. J..
[9] A. Hodgkin,et al. A quantitative description of membrane current and its application to conduction and excitation in nerve , 1952, The Journal of physiology.
[10] Katsuhiko Ogata,et al. Modern Control Engineering , 1970 .
[11] J. Ashmore,et al. Frequency tuning in a frog vestibular organ , 1983, Nature.
[12] R. Fettiplace,et al. An electrical tuning mechanism in turtle cochlear hair cells , 1981, The Journal of physiology.
[13] H. Ohmori,et al. Mechano-electrical transduction of the hair cell. , 1989, The Japanese journal of physiology.
[14] F. Dodge,et al. Subthreshold Behavior and Phenomenological Impedance of the Squid Giant Axon , 1970, The Journal of general physiology.
[15] A. J. Hudspeth,et al. Voltage- and ion-dependent conductances in solitary vertebrate hair cells , 1983, Nature.
[16] J. Ashmore,et al. An electrical resonance in hair cells of the amphibian papilla of the frog Rana temporaria , 1987, Hearing Research.
[17] P. Pahapill,et al. Modulation of potassium channels in human T lymphocytes: effects of temperature. , 1990, The Journal of physiology.
[18] J. Johnson. Electric circuits , 1984 .
[19] I. Sugihara,et al. Morphological and functional aspects of two different types of hair cells in the goldfish sacculus. , 1989, Journal of neurophysiology.
[20] L. Bobrow. Elementary Linear Circuit Analysis , 1981 .
[21] Egon Brenner,et al. Analysis of Electric Circuits , 1967 .
[22] P. A. Fuchs,et al. Voltage oscillations and ionic conductances in hair cells isolated from the alligator cochlea , 2004, Journal of Comparative Physiology A.
[23] M J Correia,et al. Studies of solitary semicircular canal hair cells in the adult pigeon. I. Frequency- and time-domain analysis of active and passive membrane properties. , 1989, Journal of neurophysiology.
[24] A. Hodgkin,et al. A quantitative description of membrane current and its application to conduction and excitation in nerve , 1990 .
[25] A J Hudspeth,et al. The cellular basis of hearing: the biophysics of hair cells. , 1985, Science.
[26] D. Attwell,et al. Models for electrical tuning in hair cells , 1985, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[27] R. Fettiplace,et al. The frequency selectivity of auditory nerve fibres and hair cells in the cochlea of the turtle , 1980, The Journal of physiology.
[28] R. Fettiplace,et al. Variation of membrane properties in hair cells isolated from the turtle cochlea. , 1987, The Journal of physiology.