International audienceThe auditory system's ability to interpret sounds over a wide range of amplitudes rests on the nonlinear responsiveness of the ear. Whether measured by basilar-membrane vibration, nerve-fiber activity, or perceived loudness, the ear is most sensitive to small signals and grows progressively less responsive as stimulation becomes stronger. Seeking a correlate of this behavior at the level of mechanoelectrical transduction, we examined the responses of hair bundles to direct mechanical stimulation. As reported by the motion of an attached glass fiber, an active hair bundle from the bullfrog's sacculus oscillates spontaneously. Sinusoidal movement of the fiber's base by as little as ±1 nm, corresponding to the application...
International audienceHearing and balance rely on the ability of hair cells in the inner ear to sens...
The ear relies on nonlinear amplification to enhance its sensitivity and frequency selectivity. In t...
International audienceHearing and balance rely on the ability of hair cells in the inner ear to sens...
International audienceThe auditory system's ability to interpret sounds over a wide range of amplitu...
Mechanical detection of auditory and vestibular system displays exquisite sensitivity, with sub-nano...
International audienceTo enhance their mechanical sensitivity and frequency selectivity, hair cells ...
International audienceTo enhance their mechanical sensitivity and frequency selectivity, hair cells ...
The human sense of hearing is characterized by its exquisite sensitivity, sharp frequency selectivit...
The sensitivity of the auditory system depends in part on the active response of hair cells in the i...
Spontaneous oscillations exhibited by free-standing hair bundles from the Bullfrog sacculus suggest ...
AbstractSpontaneous oscillations exhibited by free-standing hair bundles from the Bullfrog sacculus ...
International audienceThe ear relies on nonlinear amplification to enhance its sensitivity and frequ...
International audienceThe vertebrate ear benefits from nonlinear mechanical amplification to operate...
International audienceThe vertebrate ear benefits from nonlinear mechanical amplification to operate...
International audienceThe ear relies on nonlinear amplification to enhance its sensitivity and frequ...
International audienceHearing and balance rely on the ability of hair cells in the inner ear to sens...
The ear relies on nonlinear amplification to enhance its sensitivity and frequency selectivity. In t...
International audienceHearing and balance rely on the ability of hair cells in the inner ear to sens...
International audienceThe auditory system's ability to interpret sounds over a wide range of amplitu...
Mechanical detection of auditory and vestibular system displays exquisite sensitivity, with sub-nano...
International audienceTo enhance their mechanical sensitivity and frequency selectivity, hair cells ...
International audienceTo enhance their mechanical sensitivity and frequency selectivity, hair cells ...
The human sense of hearing is characterized by its exquisite sensitivity, sharp frequency selectivit...
The sensitivity of the auditory system depends in part on the active response of hair cells in the i...
Spontaneous oscillations exhibited by free-standing hair bundles from the Bullfrog sacculus suggest ...
AbstractSpontaneous oscillations exhibited by free-standing hair bundles from the Bullfrog sacculus ...
International audienceThe ear relies on nonlinear amplification to enhance its sensitivity and frequ...
International audienceThe vertebrate ear benefits from nonlinear mechanical amplification to operate...
International audienceThe vertebrate ear benefits from nonlinear mechanical amplification to operate...
International audienceThe ear relies on nonlinear amplification to enhance its sensitivity and frequ...
International audienceHearing and balance rely on the ability of hair cells in the inner ear to sens...
The ear relies on nonlinear amplification to enhance its sensitivity and frequency selectivity. In t...
International audienceHearing and balance rely on the ability of hair cells in the inner ear to sens...