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- W2025971607 abstract "It has been proposed that the sharp frequency selectivity exhibited by cochlear hair cells and neurons of alligator lizards results from a mechanical resonance of the stereociliary-tectorial structures of hair cells. In contrast, in the red-eared turtle this selectivity has been attributed to an electrical resonance mechanism located in the hair-cell membrane. In this report a new mechanism is proposed, one which is consistent with observations in the lizard and turtle preparations and in which hair-cell resonances result from coupling of mechanical properties of hair-cell stereociliary-tectorial structures with electrical properties of the hair-cell membrane through a receptor membrane process that has bidirectional, mechanoelectric and electromechanical, transduction properties. This same mechanism could also be the physical basis for diverse phenomena observed in mammals, including changes in mechanical properties of the ear in response to electrical stimulation in the cochlea and central nervous system, and the presence of sustained, narrow-band, acoustic emissions in the ear canals of humans." @default.
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- W2025971607 date "1982-08-01" @default.
- W2025971607 modified "2023-09-23" @default.
- W2025971607 title "Bidirectional transduction in vertebrate hair cells: A mechanism for coupling mechanical and electrical processes" @default.
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- W2025971607 doi "https://doi.org/10.1016/0378-5955(82)90045-4" @default.
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