Sound amplification within the mammalian cochlea depends upon specialized hair cells, the outer hair cells (OHCs), which possess both sensory and motile capabilities. In various altricial rodents, OHCs become functionally competent from around postnatal day 7 (P7), before the primary sensory inner hair cells (IHCs), which become competent at about the onset of hearing (P12). The mechanisms responsible for the maturation of OHCs and their synaptic specialization remain poorly understood. We report that spontaneous Ca2+ activity in the immature cochlea, which is generated by CaV1.3 Ca2+ channels, differentially regulates the maturation of hair cells along the cochlea. Under near‐physiological recording conditions we found that, similar to IHC...
Abstract Background Cochlear hair cells are high-freq...
Hearing relies on faithful signal transmission by cochlear inner hair cells (IHCs) onto auditory fib...
SummarySpontaneous electrical activity of neurons in developing sensory systems promotes their matur...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine‐tuning and high sen...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine-tuning and high sen...
Sensory-independent Ca2+ spiking regulates the development of mammalian sensory systems. In the imma...
Cochlear outer hair cells (OHCs) are responsible for the exquisite frequency selectivity and sensiti...
The remarkable ability of the auditory system to accurately transduce acoustic signals from the envi...
Cochlear outer hair cells (OHCs) are responsible for the exquisite frequency selectivity and sensiti...
During development, the sensory cells of the cochlea, the inner hair cells (IHCs), fire spontaneous ...
Preceding the onset of hearing, inner hair cells (IHCs) in the developing cochlea exhibit spontaneou...
Key Points: The physiological maturation of auditory hair cells and their innervation requires preci...
Inner hair cells (IHCs), the primary sensory receptors of the mammalian cochlea, fire spontaneous Ca...
Outer hair cells (OHCs) are electromotile sensory receptors that provide sound amplification within ...
Spontaneous electrical activity generated by developing sensory cells and neurons is crucial for the...
Abstract Background Cochlear hair cells are high-freq...
Hearing relies on faithful signal transmission by cochlear inner hair cells (IHCs) onto auditory fib...
SummarySpontaneous electrical activity of neurons in developing sensory systems promotes their matur...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine‐tuning and high sen...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine-tuning and high sen...
Sensory-independent Ca2+ spiking regulates the development of mammalian sensory systems. In the imma...
Cochlear outer hair cells (OHCs) are responsible for the exquisite frequency selectivity and sensiti...
The remarkable ability of the auditory system to accurately transduce acoustic signals from the envi...
Cochlear outer hair cells (OHCs) are responsible for the exquisite frequency selectivity and sensiti...
During development, the sensory cells of the cochlea, the inner hair cells (IHCs), fire spontaneous ...
Preceding the onset of hearing, inner hair cells (IHCs) in the developing cochlea exhibit spontaneou...
Key Points: The physiological maturation of auditory hair cells and their innervation requires preci...
Inner hair cells (IHCs), the primary sensory receptors of the mammalian cochlea, fire spontaneous Ca...
Outer hair cells (OHCs) are electromotile sensory receptors that provide sound amplification within ...
Spontaneous electrical activity generated by developing sensory cells and neurons is crucial for the...
Abstract Background Cochlear hair cells are high-freq...
Hearing relies on faithful signal transmission by cochlear inner hair cells (IHCs) onto auditory fib...
SummarySpontaneous electrical activity of neurons in developing sensory systems promotes their matur...