bioRxiv · 10.1101/2021.07.29.454372
Outer Hair Cell Power Output and the Cellular Origins of Distortion Products
Abstract
Outer hair cells are the cellular motors in the mammalian inner ear responsible for sensitive high-frequency hearing. Motor function requires expression of the protein prestin in the OHC lateral membrane and mechano-electrical transduction in the apical hair bundle. In the present report, electrical power consumption and mechanical power output are determined using previously published voltage clamp data from isolated OHCs and membrane patches. Results reveal that power output by the prestin-motor complex peaks at a best frequency much higher than implied by the low-pass character of nonlinear capacitance, and much higher than the whole-cell resistive-capacitive corner frequency. High frequency power output is enabled by a -90{degrees} shift in the phase of prestin-dependent electrical charge displacement, manifested electrically as emergence of imaginary-valued nonlinear capacitance.
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Rabbitt, R. D.. 2021-07-29. Outer Hair Cell Power Output and the Cellular Origins of Distortion Products. https://doi.org/10.1101/2021.07.29.454372
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