The inner ear uses specialized synapses to indefatigably transmit sound information from hair cells to spiral ganglion neurons at high rates with submillisecond precision. The emerging view is that hair cell synapses achieve their demanding function by employing an unconventional presynaptic molecular composition. Hair cell active zones hold the synaptic ribbon, an electron-dense projection made primarily of RIBEYE, which tethers a halo of synaptic vesicles and is thought to enable a large readily releasable pool of vesicles and to contribute to its rapid replenishment. Another important presynaptic player is otoferlin, coded by a deafness gene, which assumes a multi-faceted role in vesicular exocytosis and, when disrupted, causes auditory ...
As sensory cells, hair cells within the mammalian inner ear convert sounds into receptor potentials ...
International audienceThe hair cell ribbon synapses of the mammalian auditory and vestibular systems...
Auditory tasks like sound localization or speech recognition require reliable and temporally precise...
The inner ear uses specialized synapses to indefatigably transmit sound information from hair cells ...
Sound based signal transduction happens at ribbon synapses between inner hair cells and spiral gangl...
We are thankful to S. Masetto for the careful reading of an earlier draft of this reviewInternationa...
We are thankful to S. Masetto for the careful reading of an earlier draft of this reviewInternationa...
Ribbon-class synapses in the ear achieve analog to digital transformation of a continuously graded m...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
International audienceCochlear inner hair cells (IHCs), the mammalian auditory sensory cells, encode...
The inner hair cell (IHC) synapse, the first relay station of the auditory system, is able to encode...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
Hearing relies on faithful synaptic transmission at the ribbon synapse of cochlear inner hair cells ...
Hearing relies on faithful synaptic transmission at the ribbon synapse of cochlear inner hair cells ...
As sensory cells, hair cells within the mammalian inner ear convert sounds into receptor potentials ...
International audienceThe hair cell ribbon synapses of the mammalian auditory and vestibular systems...
Auditory tasks like sound localization or speech recognition require reliable and temporally precise...
The inner ear uses specialized synapses to indefatigably transmit sound information from hair cells ...
Sound based signal transduction happens at ribbon synapses between inner hair cells and spiral gangl...
We are thankful to S. Masetto for the careful reading of an earlier draft of this reviewInternationa...
We are thankful to S. Masetto for the careful reading of an earlier draft of this reviewInternationa...
Ribbon-class synapses in the ear achieve analog to digital transformation of a continuously graded m...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
International audienceCochlear inner hair cells (IHCs), the mammalian auditory sensory cells, encode...
The inner hair cell (IHC) synapse, the first relay station of the auditory system, is able to encode...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
Hearing relies on faithful synaptic transmission at the ribbon synapse of cochlear inner hair cells ...
Hearing relies on faithful synaptic transmission at the ribbon synapse of cochlear inner hair cells ...
As sensory cells, hair cells within the mammalian inner ear convert sounds into receptor potentials ...
International audienceThe hair cell ribbon synapses of the mammalian auditory and vestibular systems...
Auditory tasks like sound localization or speech recognition require reliable and temporally precise...