Mechanotransducer channels at the tips of sensory stereocilia of inner ear hair cells are gated by the tension of \u27tip links\u27 interconnecting stereocilia. To ensure maximal sensitivity, tip links are tensioned at rest, resulting in a continuous influx of Ca2+ into the cell. Here we show that this constitutive Ca2+ influx, usually considered as potentially deleterious for hair cells, is in fact essential for stereocilia stability. In the auditory hair cells of young postnatal mice and rats, a reduction in mechanotransducer current, via pharmacological channel blockers or disruption of tip links, leads to stereocilia shape changes and shortening. These effects occur only in stereocilia that harbor mechanotransducer channels, recover upo...
In the adult auditory organ, mechanoelectrical transducer (MET) channels are essential for transduci...
In the adult auditory organ, mechanoelectrical transducer (MET) channels are essential for transduci...
Hair cells of the inner ear operate as cellular microphones that convert sound-evoked vibrations int...
Mechanotransducer channels at the tips of sensory stereocilia of inner ear hair cells are gated by t...
Mechanotransducer channels at the tips of sensory stereocilia of inner ear hair cells are gated by t...
Mechanotransducer channels at the tips of sensory stereocilia of inner ear hair cells are gated by t...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
The sensory hair cells of the inner ear are exquisitely sensitive machines that translate the broad ...
Sensory-independent Ca2+ spiking regulates the development of mammalian sensory systems. In the imma...
Sound detection by inner ear hair cells requires tip links that interconnect mechanosensory stereoci...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Tip links between adjacent stereocilia are believed to gate mechano-electrical transducer (MET) chan...
In the adult auditory organ, mechanoelectrical transducer (MET) channels are essential for transduci...
In the adult auditory organ, mechanoelectrical transducer (MET) channels are essential for transduci...
Hair cells of the inner ear operate as cellular microphones that convert sound-evoked vibrations int...
Mechanotransducer channels at the tips of sensory stereocilia of inner ear hair cells are gated by t...
Mechanotransducer channels at the tips of sensory stereocilia of inner ear hair cells are gated by t...
Mechanotransducer channels at the tips of sensory stereocilia of inner ear hair cells are gated by t...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
The sensory hair cells of the inner ear are exquisitely sensitive machines that translate the broad ...
Sensory-independent Ca2+ spiking regulates the development of mammalian sensory systems. In the imma...
Sound detection by inner ear hair cells requires tip links that interconnect mechanosensory stereoci...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Mechanotransduction in the auditory and vestibular systems depends on mechanosensitive ion channels ...
Tip links between adjacent stereocilia are believed to gate mechano-electrical transducer (MET) chan...
In the adult auditory organ, mechanoelectrical transducer (MET) channels are essential for transduci...
In the adult auditory organ, mechanoelectrical transducer (MET) channels are essential for transduci...
Hair cells of the inner ear operate as cellular microphones that convert sound-evoked vibrations int...