In the mature auditory system inner hair cells (IHCs) convert sound induced vibrations into electrical signals that are relayed to the CNS via auditory afferents. Before the cochlea can respond to normal sound levels, developing IHCs fire calcium based action potentials that disappear close to the onset of hearing. Action potential firing triggers transmitter release from the immature IHC that in turn generates experience-independent firing in auditory neurons. These early signaling events are thought to be essential for the organization and development of the auditory system and hair cells. A critical component of the action potential is the rise in intracellular calcium that activates both small conductance potassium channels essential d...
Before the onset of hearing, which occurs around postnatal day 12 (P12) in mice, inner hair cells (I...
During development, the sensory cells of the cochlea, the inner hair cells (IHCs), fire spontaneous ...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine‐tuning and high sen...
In the mature auditory system inner hair cells (IHCs) convert sound induced vibrations into electric...
In the mature auditory system inner hair cells (IHCs) convert sound induced vibrations into electric...
Copyright © 2015 Biophysical Society. Published by ElsevierIn the mature auditory system, inner hair...
AbstractIn the mature auditory system, inner hair cells (IHCs) convert sound-induced vibrations into...
AbstractIn the mature auditory system, inner hair cells (IHCs) convert sound-induced vibrations into...
Inner hair cells (IHCs) of the adult mammalian cochlea respond to sound stimuli with small and grade...
Inner hair cells (IHCs) of the adult mammalian cochlea respond to sound stimuli with small and grade...
The cochlear hair cell reliably and precisely translates acoustic energy into quantal chemical signa...
The cochlear hair cell reliably and precisely translates acoustic energy into quantal chemical signa...
The Ca2+ current (ICa) in prehearing and adult inner hair cells (IHCs), the primary sensory receptor...
Sensory-independent Ca2+ spiking regulates the development of mammalian sensory systems. In the imma...
Voltage-gated Ca2+ channels expressed in inner hair cells (IHCs) of the mammalian cochlea play a num...
Before the onset of hearing, which occurs around postnatal day 12 (P12) in mice, inner hair cells (I...
During development, the sensory cells of the cochlea, the inner hair cells (IHCs), fire spontaneous ...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine‐tuning and high sen...
In the mature auditory system inner hair cells (IHCs) convert sound induced vibrations into electric...
In the mature auditory system inner hair cells (IHCs) convert sound induced vibrations into electric...
Copyright © 2015 Biophysical Society. Published by ElsevierIn the mature auditory system, inner hair...
AbstractIn the mature auditory system, inner hair cells (IHCs) convert sound-induced vibrations into...
AbstractIn the mature auditory system, inner hair cells (IHCs) convert sound-induced vibrations into...
Inner hair cells (IHCs) of the adult mammalian cochlea respond to sound stimuli with small and grade...
Inner hair cells (IHCs) of the adult mammalian cochlea respond to sound stimuli with small and grade...
The cochlear hair cell reliably and precisely translates acoustic energy into quantal chemical signa...
The cochlear hair cell reliably and precisely translates acoustic energy into quantal chemical signa...
The Ca2+ current (ICa) in prehearing and adult inner hair cells (IHCs), the primary sensory receptor...
Sensory-independent Ca2+ spiking regulates the development of mammalian sensory systems. In the imma...
Voltage-gated Ca2+ channels expressed in inner hair cells (IHCs) of the mammalian cochlea play a num...
Before the onset of hearing, which occurs around postnatal day 12 (P12) in mice, inner hair cells (I...
During development, the sensory cells of the cochlea, the inner hair cells (IHCs), fire spontaneous ...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine‐tuning and high sen...