Cholinergic neurons of the brainstem olivary complex project to and inhibit outer hair cells (OHCs), refining acoustic sensitivity of the mammalian cochlea. In all vertebrate hair cells studied to date, cholinergic inhibition results from the combined action of ionotropic acetylcholine receptors and associated calcium-activated potassium channels. Although inhibition was thought to involve exclusively small conductance (SK potassium channels), recent findings have shown that BK channels also contribute to inhibition in basal, high-frequency OHCs after the onset of hearing. Here we show that the waveform of randomly timed IPSCs (evoked by high extracellular potassium) in high-frequency OHCs is altered by blockade of either SK or BK channels,...
Gain control of the auditory system operates at multiple levels. Cholinergic medial olivocochlear (M...
Abstract Background Cochlear hair cells are high-freq...
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),...
Outer hair cells are the specialized sensory cells that empower the mammalian hearing organ, the coc...
channels involved in the cholinergic efferent modulation of the membrane potential. The objectives ...
In the mature cochlea, inner hair cells (IHCs) transduce acoustic signals into receptor potentials, ...
The perception of complex acoustic stimuli begins with the deconstruction of sound into its frequenc...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
The perception of complex acoustic stimuli begins with the deconstruction of sound into its frequenc...
The perception of complex acoustic stimuli begins with the deconstruction of sound into its frequenc...
Gain control of the auditory system operates at multiple levels. Cholinergic medial olivocochlear (M...
Excitable cells use ion channels to tailor their biophysical properties to the functional demands ma...
Gain control of the auditory system operates at multiple levels. Cholinergic medial olivocochlear (M...
Abstract Background Cochlear hair cells are high-freq...
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),...
Outer hair cells are the specialized sensory cells that empower the mammalian hearing organ, the coc...
channels involved in the cholinergic efferent modulation of the membrane potential. The objectives ...
In the mature cochlea, inner hair cells (IHCs) transduce acoustic signals into receptor potentials, ...
The perception of complex acoustic stimuli begins with the deconstruction of sound into its frequenc...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
The perception of complex acoustic stimuli begins with the deconstruction of sound into its frequenc...
The perception of complex acoustic stimuli begins with the deconstruction of sound into its frequenc...
Gain control of the auditory system operates at multiple levels. Cholinergic medial olivocochlear (M...
Excitable cells use ion channels to tailor their biophysical properties to the functional demands ma...
Gain control of the auditory system operates at multiple levels. Cholinergic medial olivocochlear (M...
Abstract Background Cochlear hair cells are high-freq...
The large conductance voltage- and Ca2+-activated potassium (BK) channel has been suggested to play ...