Gain control of the auditory system operates at multiple levels. Cholinergic medial olivocochlear (MOC) fibers originate in the brainstem and make synaptic contacts at the base of the outer hair cells (OHCs), the final targets of several feedback loops from the periphery and higher-processing centers. Efferent activation inhibits OHC active amplification within the mammalian cochlea, through the activation of a calcium-permeable alpha9alpha10 ionotropic cholinergic nicotinic receptor (nAChR), functionally coupled to calcium activated SK2 potassium channels. Correct operation of this feedback requires careful matching of acoustic input with the strength of cochlear inhibition (Galambos, 1956; Wiederhold and Kiang, 1970; Gifford and Guinan, 1...
Cholinergic neurons of the brainstem olivary complex project to and inhibit outer hair cells (OHCs),...
Although homomeric channels assembled from the α9 nicotinic acetylcholine receptor (nAChR) subunit a...
In the mature cochlea, inner hair cells (IHCs) transduce acoustic signals into receptor potentials, ...
Gain control of the auditory system operates at multiple levels. Cholinergic medial olivocochlear (M...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
IHCs convey acoustic information to the central nervous system while OHCs are responsible for the me...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
The transduction of sound in the auditory periphery, the cochlea, is inhibited by efferent cholinerg...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
AbstractCochlear outer hair cells (OHCs) express α9 nACh receptors and are contacted by descending, ...
The organ of Corti, the mammalian sensory epithelium of the inner ear, has two types of mechanorece...
<div><p>Background and Objective</p><p>The auditory efferent system is a complex network of descendi...
AbstractCochlear outer hair cells (OHCs) express α9 nACh receptors and are contacted by descending, ...
Background and Objective The auditory efferent system is a complex network of descending pathway...
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),...
Although homomeric channels assembled from the α9 nicotinic acetylcholine receptor (nAChR) subunit a...
In the mature cochlea, inner hair cells (IHCs) transduce acoustic signals into receptor potentials, ...
Gain control of the auditory system operates at multiple levels. Cholinergic medial olivocochlear (M...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
IHCs convey acoustic information to the central nervous system while OHCs are responsible for the me...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
The transduction of sound in the auditory periphery, the cochlea, is inhibited by efferent cholinerg...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
AbstractCochlear outer hair cells (OHCs) express α9 nACh receptors and are contacted by descending, ...
The organ of Corti, the mammalian sensory epithelium of the inner ear, has two types of mechanorece...
<div><p>Background and Objective</p><p>The auditory efferent system is a complex network of descendi...
AbstractCochlear outer hair cells (OHCs) express α9 nACh receptors and are contacted by descending, ...
Background and Objective The auditory efferent system is a complex network of descending pathway...
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),...
Although homomeric channels assembled from the α9 nicotinic acetylcholine receptor (nAChR) subunit a...
In the mature cochlea, inner hair cells (IHCs) transduce acoustic signals into receptor potentials, ...