Abstract Background Cochlear hair cells are high-frequency sensory receptors. At the onset of hearing, hair cells acquire fast, calcium-activated potassium (BK) currents, turning immature spiking cells into functional receptors. In non-mammalian vertebrates, the number and kinetics of BK channels are varied systematically along the frequency-axis of the cochlea giving rise to an intrinsic electrical tuning mechanism. The processes that control the appearance and heterogeneity of hair cell BK currents remain unclear. Results Quantitative PCR results showed a non-monotonic increase in BK α subunit expression throughout embryonic develo...
Chick hair cells display calcium (Ca2+)-sensitive spontaneous action potentials during development a...
Copyright © 2015 Biophysical Society. Published by ElsevierIn the mature auditory system, inner hair...
AbstractSummary We have cloned from the receptor epithelium of the chick cochlea a family of alterna...
The appearance of large-conductance, calcium-activated potassium (BK) current is a hallmark of funct...
Sound amplification within the mammalian cochlea depends upon specialized hair cells, the outer hair...
The large conductance voltage- and Ca2+-activated potassium (BK) channel has been suggested to play ...
The large conductance voltage- and Ca2+-activated potassium (BK) channel has been suggested to play ...
Cholinergic neurons of the brainstem olivary complex project to and inhibit outer hair cells (OHCs),...
Cholinergic neurons of the brainstem olivary complex project to and inhibit outer hair cells (OHCs),...
Cholinergic neurons of the brainstem olivary complex project to and inhibit outer hair cells (OHCs),...
Cholinergic neurons of the brainstem olivary complex project to and inhibit outer hair cells (OHCs),...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine‐tuning and high sen...
AbstractIn the mature auditory system, inner hair cells (IHCs) convert sound-induced vibrations into...
In the mature cochlea, inner hair cells (IHCs) transduce acoustic signals into receptor potentials, ...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine-tuning and high sen...
Chick hair cells display calcium (Ca2+)-sensitive spontaneous action potentials during development a...
Copyright © 2015 Biophysical Society. Published by ElsevierIn the mature auditory system, inner hair...
AbstractSummary We have cloned from the receptor epithelium of the chick cochlea a family of alterna...
The appearance of large-conductance, calcium-activated potassium (BK) current is a hallmark of funct...
Sound amplification within the mammalian cochlea depends upon specialized hair cells, the outer hair...
The large conductance voltage- and Ca2+-activated potassium (BK) channel has been suggested to play ...
The large conductance voltage- and Ca2+-activated potassium (BK) channel has been suggested to play ...
Cholinergic neurons of the brainstem olivary complex project to and inhibit outer hair cells (OHCs),...
Cholinergic neurons of the brainstem olivary complex project to and inhibit outer hair cells (OHCs),...
Cholinergic neurons of the brainstem olivary complex project to and inhibit outer hair cells (OHCs),...
Cholinergic neurons of the brainstem olivary complex project to and inhibit outer hair cells (OHCs),...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine‐tuning and high sen...
AbstractIn the mature auditory system, inner hair cells (IHCs) convert sound-induced vibrations into...
In the mature cochlea, inner hair cells (IHCs) transduce acoustic signals into receptor potentials, ...
Outer hair cells (OHCs) are highly specialized sensory cells conferring the fine-tuning and high sen...
Chick hair cells display calcium (Ca2+)-sensitive spontaneous action potentials during development a...
Copyright © 2015 Biophysical Society. Published by ElsevierIn the mature auditory system, inner hair...
AbstractSummary We have cloned from the receptor epithelium of the chick cochlea a family of alterna...