The organ of Corti, the mammalian sensory epithelium of the inner ear, has two types of mechanoreceptor cells, inner hair cells (IHCs) and outer hair cells (OHCs). In this sensory epithelium, vibrations produced by sound waves are transformed into electrical signals. When depolarized by incoming sounds, IHCs release glutamate and activate auditory nerve fibers innervating them and OHCs, by virtue of their electromotile property, increase the amplification and fine tuning of sound signals. The medial olivocochlear (MOC) system, an efferent feedback system, inhibits OHC activity and thereby reduces the sensitivity and sharp tuning of cochlear afferent fibers. During neonatal development, IHCs fire Ca2C action potentials which evoke gl...
During a critical developmental period, cochlear inner hair cells (IHCs) exhibit sensory-independent...
Spontaneous electrical activity generated by developing sensory cells and neurons is crucial for the...
Voltage-gated calcium (Cav1.3) channels in mammalian inner hair cells (IHCs) open in response to sou...
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 (...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
Gain control of the auditory system operates at multiple levels. Cholinergic medial olivocochlear (M...
AbstractThe sensory epithelium of the mammalian inner ear contains two types of mechanosensory cells...
During development, medial olivocochlear (MOC) neurons transiently innervate cochlear inner hair cel...
The organ of Corti, the auditory mammalian sensory epithelium, contains two types of mechanotransduc...
The inner ear uses specialized synapses to indefatigably transmit sound information from hair cells ...
The sensory epithelium of the mammalian inner ear contains two types of mechanosensory cells:inner (...
During development, inner hair cells (IHCs) in the mammalian cochlea are unresponsive to acoustic st...
IHCs convey acoustic information to the central nervous system while OHCs are responsible for the me...
During a critical developmental period, cochlear inner hair cells (IHCs) exhibit sensory-independent...
Spontaneous electrical activity generated by developing sensory cells and neurons is crucial for the...
Voltage-gated calcium (Cav1.3) channels in mammalian inner hair cells (IHCs) open in response to sou...
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 (...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
Gain control of the auditory system operates at multiple levels. Cholinergic medial olivocochlear (M...
AbstractThe sensory epithelium of the mammalian inner ear contains two types of mechanosensory cells...
During development, medial olivocochlear (MOC) neurons transiently innervate cochlear inner hair cel...
The organ of Corti, the auditory mammalian sensory epithelium, contains two types of mechanotransduc...
The inner ear uses specialized synapses to indefatigably transmit sound information from hair cells ...
The sensory epithelium of the mammalian inner ear contains two types of mechanosensory cells:inner (...
During development, inner hair cells (IHCs) in the mammalian cochlea are unresponsive to acoustic st...
IHCs convey acoustic information to the central nervous system while OHCs are responsible for the me...
During a critical developmental period, cochlear inner hair cells (IHCs) exhibit sensory-independent...
Spontaneous electrical activity generated by developing sensory cells and neurons is crucial for the...
Voltage-gated calcium (Cav1.3) channels in mammalian inner hair cells (IHCs) open in response to sou...