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- W3080924617 abstract "Significance Mammalian hearing requires outer hair cells for amplification and tuning in the cochlea. The amplification process works at frequencies at least 10 times higher than might be expected based on electrical properties of the cells. The present report demonstrates how protein-dependent membrane piezoelectricity underlies high-frequency function, and why power output is maximum at frequencies much higher than would be predicted based on traditional experimental measurements. The interplay between electrical charge displacement and mechanical strain in the membrane motor is key. The same biophysical principles identify the origins of infrared laser-induced capacitive currents reported previously in hair cells, HEK cells, and neurons." @default.
- W3080924617 created "2020-09-01" @default.
- W3080924617 creator A5043264771 @default.
- W3080924617 date "2020-08-26" @default.
- W3080924617 modified "2023-09-27" @default.
- W3080924617 title "The cochlear outer hair cell speed paradox" @default.
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- W3080924617 doi "https://doi.org/10.1073/pnas.2003838117" @default.
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