High-Frequency Motility of Outer Hair Cells and the Cochlear Amplifier
- 31 March 1995
- journal article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 267 (5206), 2006-2009
- https://doi.org/10.1126/science.7701325
Abstract
Outer hair cells undergo somatic elongation-contraction cycles in vitro when electrically stimulated. This "electromotile" response is assumed to underlie the high sensitivity and frequency selectivity of amplification in the mammalian cochlea. This process, presumably operating on a cycle-by-cycle basis at the frequency of the stimulus, is believed to provide mechanical feedback in vivo. However, if driven by the receptor potential of the cell, the mechanical feedback is expected to be severely attenuated at high frequencies because of electrical low-pass filtering by the outer hair cell basolateral membrane. It is proposed that electromotility at high frequencies is driven instead by extracellular potential gradients across the hair cell, and it is shown that this driving voltage is not subject to low-pass filtering and is sufficiently large. It is further shown that if the filtering properties of the cell membrane are canceled, taking advantage of the electrical characteristics of isolated outer hair cells in a partitioning glass microchamber, then the lower bound of the motor's bandwidth is approximately 22 kilohertz, a number determined only by the limitations of our instrumentation.Keywords
This publication has 33 references indexed in Scilit:
- Reverse transduction measured in the isolated cochlea by laser Michelson interferometryNature, 1993
- Voltage responses to tones of outer hair cells in the basal turn of the guinea-pig cochlea: significance for electromotility and desensitizationProceedings Of The Royal Society B-Biological Sciences, 1992
- Ionic basis of membrane potential in outer hair cells of guinea pig cochleaNature, 1986
- Electrokinetic shape changes of cochlear outer hair cellsNature, 1986
- Evoked Mechanical Responses of Isolated Cochlear Outer Hair CellsScience, 1985
- Alternating Current Delivered into the Scala Media Alters Sound Pressure at the EardrumScience, 1983
- Measurement of basilar membrane motion in the guinea pig using the Mössbauer techniqueThe Journal of the Acoustical Society of America, 1982
- On the Diversity of Electric Signals in a Community of Mormyrid Electric Fish in West AfricaAmerican Zoologist, 1981
- Cochlear Microphonic Audiograms in the "Pure Tone" Bat Chilonycteris parnellii parnelliiScience, 1972
- Development of cochlear function in the ear of the infant rat.Journal of Comparative and Physiological Psychology, 1966