Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine-tuning and high sensitivity of the mammalian cochlea to acoustic stimuli. Here, by genetically manipulating spontaneous Ca2+ signalling in mice in vivo, through a period of early postnatal development, we find that the refinement of OHC afferent innervation is regulated by complementary spontaneous Ca2+ signals originating in OHCs and non-sensory cells. OHCs fire spontaneous Ca2+ action potentials during a narrow period of neonatal development. Simultaneously, waves of Ca2+ activity in the non-sensory cells of the greater epithelial ridge cause, via ATP-induced activation of P2X3 receptors, the increase and synchronization of the Ca2+ activity in nearby OHCs....
The remarkable ability of the auditory system to accurately transduce acoustic signals from the envi...
Before the onset of hearing, which occurs around postnatal day 12 (P12) in mice, inner hair cells (I...
Spontaneous electrical activity generated by developing sensory cells and neurons is crucial for the...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine‐tuning and high sen...
Cochlear outer hair cells (OHCs) are responsible for the exquisite frequency selectivity and sensiti...
Cochlear outer hair cells (OHCs) are responsible for the exquisite frequency selectivity and sensiti...
Sound amplification within the mammalian cochlea depends upon specialized hair cells, the outer hair...
Sensory-independent Ca2+ spiking regulates the development of mammalian sensory systems. In the imma...
During development, the sensory cells of the cochlea, the inner hair cells (IHCs), fire spontaneous ...
AbstractIn the mature auditory system, inner hair cells (IHCs) convert sound-induced vibrations into...
Calcium ions (Ca2+) regulate numerous and diverse aspects of cochlear and vestibular physiology. Thi...
Copyright © 2015 Biophysical Society. Published by ElsevierIn the mature auditory system, inner hair...
Calcium ions (Ca2+) regulate numerous and diverse aspects of cochlear and vestibular physiology. Thi...
In the mature auditory system inner hair cells (IHCs) convert sound induced vibrations into electric...
Inner hair cells (IHCs), the primary sensory receptors of the mammalian cochlea, fire spontaneous Ca...
The remarkable ability of the auditory system to accurately transduce acoustic signals from the envi...
Before the onset of hearing, which occurs around postnatal day 12 (P12) in mice, inner hair cells (I...
Spontaneous electrical activity generated by developing sensory cells and neurons is crucial for the...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine‐tuning and high sen...
Cochlear outer hair cells (OHCs) are responsible for the exquisite frequency selectivity and sensiti...
Cochlear outer hair cells (OHCs) are responsible for the exquisite frequency selectivity and sensiti...
Sound amplification within the mammalian cochlea depends upon specialized hair cells, the outer hair...
Sensory-independent Ca2+ spiking regulates the development of mammalian sensory systems. In the imma...
During development, the sensory cells of the cochlea, the inner hair cells (IHCs), fire spontaneous ...
AbstractIn the mature auditory system, inner hair cells (IHCs) convert sound-induced vibrations into...
Calcium ions (Ca2+) regulate numerous and diverse aspects of cochlear and vestibular physiology. Thi...
Copyright © 2015 Biophysical Society. Published by ElsevierIn the mature auditory system, inner hair...
Calcium ions (Ca2+) regulate numerous and diverse aspects of cochlear and vestibular physiology. Thi...
In the mature auditory system inner hair cells (IHCs) convert sound induced vibrations into electric...
Inner hair cells (IHCs), the primary sensory receptors of the mammalian cochlea, fire spontaneous Ca...
The remarkable ability of the auditory system to accurately transduce acoustic signals from the envi...
Before the onset of hearing, which occurs around postnatal day 12 (P12) in mice, inner hair cells (I...
Spontaneous electrical activity generated by developing sensory cells and neurons is crucial for the...