The Mongolian gerbil is a classic animal model for age-related hearing loss. As a prerequisite for studying age-related changes, we characterized cochlear afferent synaptic morphology in young adult gerbils, using immunolabeling and quantitative analysis of confocal microscopic images. Cochlear wholemounts were triple-labeled with a hair-cell marker, a marker of presynaptic ribbons, and a marker of postsynaptic AMPA-type glutamate receptors. Seven cochlear positions covering an equivalent frequency range from 0.5 - 32 kHz were evaluated. The spatial positions of synapses were determined in a coordinate system with reference to their individual inner hair cell. Synapse numbers confirmed previous reports for gerbils (on average, 20-22 afferen...
In mammals, sensorineural deafness results from damage to the auditory receptors of the inner ear, t...
<p>A,B: Spatial distribution of inner hair cell afferent synapses along the modiolar-pillar axis for...
In this study, we analyze the processing of low-frequency sounds in the cochlear apex through respon...
The Mongolian gerbil is a classic animal model for age-related hearing loss. As a prerequisite for s...
The potential contribution of auditory synaptopathy to age dependent hearing loss was studied in gro...
The auditory system transduces sound-evoked vibrations over a range of input sound pressure levels s...
In different animal models, auditory nerve fibers display variation in spontaneous activity and resp...
AbstractThe high sensitivity and wide bandwidth of mammalian hearing are thought to derive from an a...
Auditory nerve fibers (ANFs) innervating the same inner hair cell (IHC) may have identical frequency...
The mammalian cochlea is an excellent sound analyzer. It functions through the intricate interplay o...
textabstractIn this study, we analyze the processing of low-frequency sounds in the cochlear apex th...
We are thankful to S. Masetto for the careful reading of an earlier draft of this reviewInternationa...
Previous work in animals with recovered hearing thresholds but permanent inner hair cell synapse los...
Spherical and globular bushy cells of the AVCN receive huge auditory nerve endings specialized for h...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
In mammals, sensorineural deafness results from damage to the auditory receptors of the inner ear, t...
<p>A,B: Spatial distribution of inner hair cell afferent synapses along the modiolar-pillar axis for...
In this study, we analyze the processing of low-frequency sounds in the cochlear apex through respon...
The Mongolian gerbil is a classic animal model for age-related hearing loss. As a prerequisite for s...
The potential contribution of auditory synaptopathy to age dependent hearing loss was studied in gro...
The auditory system transduces sound-evoked vibrations over a range of input sound pressure levels s...
In different animal models, auditory nerve fibers display variation in spontaneous activity and resp...
AbstractThe high sensitivity and wide bandwidth of mammalian hearing are thought to derive from an a...
Auditory nerve fibers (ANFs) innervating the same inner hair cell (IHC) may have identical frequency...
The mammalian cochlea is an excellent sound analyzer. It functions through the intricate interplay o...
textabstractIn this study, we analyze the processing of low-frequency sounds in the cochlear apex th...
We are thankful to S. Masetto for the careful reading of an earlier draft of this reviewInternationa...
Previous work in animals with recovered hearing thresholds but permanent inner hair cell synapse los...
Spherical and globular bushy cells of the AVCN receive huge auditory nerve endings specialized for h...
Cochlear inner hair cells (IHCs) develop from pre‐sensory pacemaker to sound transducer. Here, we re...
In mammals, sensorineural deafness results from damage to the auditory receptors of the inner ear, t...
<p>A,B: Spatial distribution of inner hair cell afferent synapses along the modiolar-pillar axis for...
In this study, we analyze the processing of low-frequency sounds in the cochlear apex through respon...