Before the onset of hearing at postnatal day 12, mouse inner hair cells (IHCs) produce spontaneous and evoked action potentials. These spikes are likely to induce neurotransmitter release onto auditory nerve fibres. Since immature IHCs express both a1D (Cav1.3) Ca2+ and Na+ currents that activate near the resting potential, we examined whether these two conductances are involved in shaping the action potentials. Both had extremely rapid activation kinetics, followed by fast and complete voltage-dependent inactivation for the Na+ current, and slower, partially Ca2+-dependent inactivation for the Ca2+ current. Only the Ca2+ current is necessary for spontaneous and induced action potentials, and 29 % of cells lacked a Na+ current. The Na+ curr...
Voltage-gated Ca2+ channels expressed in inner hair cells (IHCs) of the mammalian cochlea play a num...
Inner hair cells (IHCs) of the adult mammalian cochlea respond to sound stimuli with small and grade...
Developmental changes in electrophysiological membrane properties of mouse cochlear inner hair cells...
Before the onset of hearing at postnatal day 12, mouse inner hair cells (IHCs) produce spontaneous a...
Inner hair cells (IHCs) are the true sensory cells for sound. They receive acoustic stimuli and tran...
Inner hair cells (IHCs), the primary sensory receptors of the mammalian cochlea, fire spontaneous Ca...
Inner hair cells (IHCs), the primary sensory receptors of the mammalian cochlea, fire spontaneous Ca...
From just after birth, mouse inner hair cells (IHCs) expressed a Ca2+-activated K+ current that was ...
AbstractIn the mature auditory system, inner hair cells (IHCs) convert sound-induced vibrations into...
From just after birth, mouse inner hair cells (IHCs) expressed a Ca2+-activated K+ current that was ...
Inner hair cells (IHCs), the primary sensory receptors of the mammalian cochlea, fire spontaneous Ca...
Mammalian cochlear inner hair cells (IHCs) are specialized to process developmental signals during i...
Mammalian cochlear inner hair cells (IHCs) are specialized to process developmental signals during i...
Mammalian cochlear inner hair cells (IHCs) are specialized to process developmental signals during i...
In the mature auditory system inner hair cells (IHCs) convert sound induced vibrations into electric...
Voltage-gated Ca2+ channels expressed in inner hair cells (IHCs) of the mammalian cochlea play a num...
Inner hair cells (IHCs) of the adult mammalian cochlea respond to sound stimuli with small and grade...
Developmental changes in electrophysiological membrane properties of mouse cochlear inner hair cells...
Before the onset of hearing at postnatal day 12, mouse inner hair cells (IHCs) produce spontaneous a...
Inner hair cells (IHCs) are the true sensory cells for sound. They receive acoustic stimuli and tran...
Inner hair cells (IHCs), the primary sensory receptors of the mammalian cochlea, fire spontaneous Ca...
Inner hair cells (IHCs), the primary sensory receptors of the mammalian cochlea, fire spontaneous Ca...
From just after birth, mouse inner hair cells (IHCs) expressed a Ca2+-activated K+ current that was ...
AbstractIn the mature auditory system, inner hair cells (IHCs) convert sound-induced vibrations into...
From just after birth, mouse inner hair cells (IHCs) expressed a Ca2+-activated K+ current that was ...
Inner hair cells (IHCs), the primary sensory receptors of the mammalian cochlea, fire spontaneous Ca...
Mammalian cochlear inner hair cells (IHCs) are specialized to process developmental signals during i...
Mammalian cochlear inner hair cells (IHCs) are specialized to process developmental signals during i...
Mammalian cochlear inner hair cells (IHCs) are specialized to process developmental signals during i...
In the mature auditory system inner hair cells (IHCs) convert sound induced vibrations into electric...
Voltage-gated Ca2+ channels expressed in inner hair cells (IHCs) of the mammalian cochlea play a num...
Inner hair cells (IHCs) of the adult mammalian cochlea respond to sound stimuli with small and grade...
Developmental changes in electrophysiological membrane properties of mouse cochlear inner hair cells...