In different animal models, auditory nerve fibers display variation in spontaneous activity and response threshold. Functional and structural differences among inner hair cell ribbon synapses are believed to contribute to this variation. The relative volumes of synaptic proteins at individual synapses might be one such difference. This idea is based on the observation of opposing volume gradients of the presynaptic ribbons and associated postsynaptic glutamate receptor patches in mice along the pillar modiolar axis of the inner hair cell, the same axis along which fibers were shown to vary in their physiological properties. However, it is unclear whether these opposing gradients are expressed consistently across animal models. In addition, ...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
Spherical and globular bushy cells of the AVCN receive huge auditory nerve endings specialized for h...
International audienceCochlear inner hair cells (IHCs), the mammalian auditory sensory cells, encode...
In different animal models, auditory nerve fibers display variation in spontaneous activity and resp...
The auditory system transduces sound-evoked vibrations over a range of input sound pressure levels s...
Neural sound encoding in the mammalian cochlea faces the challenge of representing audible sound pre...
The Mongolian gerbil is a classic animal model for age-related hearing loss. As a prerequisite for s...
Synaptic ribbons, found at the presynaptic membrane of sensory cells in both ear and eye, have been ...
Neural sound encoding in the mammalian cochlea faces the challenge of representing audible sound pre...
Auditory nerve fibers (ANFs) innervating the same inner hair cell (IHC) may have identical frequency...
Synaptic ribbons, found at the presynaptic membrane of sensory cells in both ear and eye, have been ...
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 ...
Spherical and globular bushy cells of the AVCN receive huge auditory nerve endings specialized for h...
Mammalian cochlear inner hair cells (IHCs) are specialized for the dynamic coding of continuous and ...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
Spherical and globular bushy cells of the AVCN receive huge auditory nerve endings specialized for h...
International audienceCochlear inner hair cells (IHCs), the mammalian auditory sensory cells, encode...
In different animal models, auditory nerve fibers display variation in spontaneous activity and resp...
The auditory system transduces sound-evoked vibrations over a range of input sound pressure levels s...
Neural sound encoding in the mammalian cochlea faces the challenge of representing audible sound pre...
The Mongolian gerbil is a classic animal model for age-related hearing loss. As a prerequisite for s...
Synaptic ribbons, found at the presynaptic membrane of sensory cells in both ear and eye, have been ...
Neural sound encoding in the mammalian cochlea faces the challenge of representing audible sound pre...
Auditory nerve fibers (ANFs) innervating the same inner hair cell (IHC) may have identical frequency...
Synaptic ribbons, found at the presynaptic membrane of sensory cells in both ear and eye, have been ...
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 ...
Spherical and globular bushy cells of the AVCN receive huge auditory nerve endings specialized for h...
Mammalian cochlear inner hair cells (IHCs) are specialized for the dynamic coding of continuous and ...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
Spherical and globular bushy cells of the AVCN receive huge auditory nerve endings specialized for h...
International audienceCochlear inner hair cells (IHCs), the mammalian auditory sensory cells, encode...