The human sense of hearing is characterized by its exquisite sensitivity, sharp frequency selectivity, and wide dynamic range. These features depend on an active process that in the inner ear boosts vibrations evoked by auditory stimuli. Spontaneous otoacoustic emissions constitute a demonstrative manifestation of this physiologically vulnerable mechanism. In the cochlea, sensory hair bundles transduce sound-induced vibrations into neural signals. Hair bundles can power mechanical movements of their tip, oscillate spontaneously, and operate as tuned nonlinear amplifiers of weak periodic stimuli. Active hair-bundle motility constitutes a promising candidate with respect to the biophysical implementation of the active process underlying human...
International audienceTo enhance their mechanical sensitivity and frequency selectivity, hair cells ...
The ear relies on nonlinear amplification to enhance its sensitivity and frequency selectivity. In t...
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...
International audienceThe vertebrate ear benefits from nonlinear mechanical amplification to operate...
International audienceThe vertebrate ear benefits from nonlinear mechanical amplification to operate...
We present numerical results concerning the stochastic dynamics of arrays of coupled hair bundles. O...
The sensitivity of the auditory system depends in part on the active response of hair cells in the i...
Mechanical detection of auditory and vestibular system displays exquisite sensitivity, with sub-nano...
International audienceThe auditory system's ability to interpret sounds over a wide range of amplitu...
International audienceThe auditory system's ability to interpret sounds over a wide range of amplitu...
International audienceThe ear relies on nonlinear amplification to enhance its sensitivity and frequ...
International audienceThe ear relies on nonlinear amplification to enhance its sensitivity and frequ...
AbstractSubstantial evidence exists for spontaneous oscillations of hair cell stereociliary bundles ...
We present a physical description of cochlear mechanics by examining the interaction between active ...
International audienceTo enhance their mechanical sensitivity and frequency selectivity, hair cells ...
The ear relies on nonlinear amplification to enhance its sensitivity and frequency selectivity. In t...
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...
International audienceThe vertebrate ear benefits from nonlinear mechanical amplification to operate...
International audienceThe vertebrate ear benefits from nonlinear mechanical amplification to operate...
We present numerical results concerning the stochastic dynamics of arrays of coupled hair bundles. O...
The sensitivity of the auditory system depends in part on the active response of hair cells in the i...
Mechanical detection of auditory and vestibular system displays exquisite sensitivity, with sub-nano...
International audienceThe auditory system's ability to interpret sounds over a wide range of amplitu...
International audienceThe auditory system's ability to interpret sounds over a wide range of amplitu...
International audienceThe ear relies on nonlinear amplification to enhance its sensitivity and frequ...
International audienceThe ear relies on nonlinear amplification to enhance its sensitivity and frequ...
AbstractSubstantial evidence exists for spontaneous oscillations of hair cell stereociliary bundles ...
We present a physical description of cochlear mechanics by examining the interaction between active ...
International audienceTo enhance their mechanical sensitivity and frequency selectivity, hair cells ...
The ear relies on nonlinear amplification to enhance its sensitivity and frequency selectivity. In t...
International audienceTo enhance their mechanical sensitivity and frequency selectivity, hair cells ...