13
Views
15
CrossRef citations to date
0
Altmetric
Original Article

Passive Electrical Properties Of Hair Cells And Supporting Cells In The Lateral Line Canal Organ

, &
Pages 190-198 | Received 09 Oct 1972, Published online: 08 Jul 2009

References

  • Rarrett J. N., Crill W. E. Specific membrane resistivity of dye-injected cat motoneurons. Brain Res 1971; 28: 556
  • Baylor D. A., Fuortes M. G. F. Electrical responses of single cones in the retina of the turtle. J Physiol 1970; 207: 77
  • Bekesy G. Experiments in hearin., E. G. Wever. McGraw-Hill, New York 1960; 652
  • Bennett M. V. L. Electroreception. Fish physiology, W. S. Hoar, D. J. Randall. Academic Press, New York and London 1971; vol. V: 493–514
  • Boethius J., Knutsson E. Resting membrane potential in chick muscle cells during ontogeny. J Exp Zool 1970; 174: 281
  • Butler R. A. Some experimental observations on the d.c. resting potentials in the guinea-pig cochlea. J Acoust Soc Amer 1965; 37: 429
  • Dallos P. On the negative potential within the organ of Corti. J Acoust Soc Amer 1968; 44: 818
  • Davis H. A model for transducer Action in the cochlea. Cold Spring Harbor Symp Quant Biolvol XXX. Cold Spring Harbor Laboratory of Quantitative Biology, New York 1965; 181–190
  • Engel E., Barcilon V., Eisenberg R. S. The interpretation of current-voltage relations recorded from a sperical cell with a single microelectrode. Biophys J 1972; 12: 384
  • Firth D. L., De Felice L. J. Electrical resistance and volume flow in glass microelectrodes. Canad J Biochem 1971; 49: 436
  • Flock Å. Electron microscopic and electrophysiological studies on the lateral line canal organ. Acta Otolaryng (Stockh.) 1965, Suppl. 199.
  • Flock Å. The lateral line organ mechanoreceptors. Fish physiology, W. S. Hoar, D. J. Randall. Academic Press, New York and London 1971; vol. V: 241–263
  • Flock Ä., Russell I. Efferent nerve fibres: postsynaptic action on hair cells. Nature N.B. 1973; 243: 89
  • Haapanen L., Kolmodin G., Skoglund C. R. Membrane and action potentials of spinal inter-neurons in the cat. Acta Physiol Scand 1958; 43: 315
  • Hama K. A study of the fine structure of the saccular macula of the gold fish. Z Zellforsch 1969; 94: 155
  • Harris G. G., Firshkopf L., Flock A. Receptor potentials from hair cells of the lateral line. Science, N. Y. 1970; 167: 76
  • Johnstone B. M., Johnstone J. R., Pugsley I. D. Membrane resistance in the endolymphatic walls of the first turn in the guinea pig cochlea. J Acoust Soc Amer 1966; 40: 1398
  • Kaneko A. Electrical connections between horizontal cells in the dogfish retina. J Physiol 1971; 213: 95
  • Kaneko A., Hashimoto H. Recording cite of the single cone response determined by an electrode marking technique. Vision Res 1967; 7: 847
  • Katz B. Nerve, muscle and synaps., G. Wald. McGraw-Hill, New York & London 1966
  • Konishi T., Kelsey E. Effect of sodium deficiency on cochlear potentials. J Acoust Soc Amer 1968; 43: 462
  • Lassen U. V., Sten-Knudsen O. Direct measurements of membrane potential and membrane resistance of human red cells. J Physiol 1968; 195: 681
  • Lawrence M. Electrical polarization of the tec-torial membrane. Ann Otol 1967; 76: 287
  • Lindemann C., Rikmenspoel R. Intracellular potentials in bull spermatozoa. J Physiol 1971; 219: 127
  • Lissmann H. W. On the function and evolution of electric organs in fish. J Exp Biol 1958; 35: 156
  • Loewenstein W. R., Kanno Y. The electrical conductance and potential across the membrane of some cell nuclei. J Cell Biol 1963; 16: 421
  • Schanne O. Measurement of cytoplasmic resistivity by means of the glass microelectrode. Glass niicroelectrodes, M. Ae. Lavallé, O. Schanne, hi. Hebert. Wiley, New York 1969; 299321
  • Sohmer H. S., Peake W. T., Weiss T. F. Intracochlear potential recorded with micropipets. I. Correlations with micropipet location. J Acoust Soc Amer 1971; 50: 572
  • Stefani E., Steinbach A. B. Reqting potential and electrical properties of frog muscle fibres. Effect of different external solutions. J Physiol 1969; 203: 383
  • Stretton A. O. W., Kravitz E. A. Neuronal geometry: Determination with a technique of intracellular dye injection. Science, N.Y. 1968; 162: 132
  • Suga F., Hattler K. W. Physiological and histopathological correlates of hereditary deafness in animals. Laryngoscope 1970; 80: 80
  • Tasaki I., Davis H., Eldridge D. H. Exploration of the cochlear potentials in the guinea pigs with a microelectrode. J Acoust Soc Amer 1954; 26: 165
  • Tasaki I., Spyropoulos C. S. Stria vascularis as source of endocochlear potential. J Neurophysiol 1959; 22: 149
  • Tasaki K., Tsukahara Y., Ito S., Wayner M. J., Yu W. Y. A simple direct and rapid method for filling microelectrodes. Physiol Behav 1968; 3: 1009
  • Tomita R., Kaneko A. An intracellular coaxial microelectrode-its construction and application. Med Electron Biol Engin 1965; 3: 367
  • Toyoda J., Nosaki H., Tomita T. Light-induced resistance changes in single photoreceptors of Necturus and Gekko. Vision Res 1969; 9: 453

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.