The dynamics of synaptic transmission between neurons plays a major role in neural information processing. In the cochlear nucleus, auditory nerve synapses have a relatively high release probability and show pronounced synaptic depression that, in conjunction with the variability of interspike intervals, shapes the information transmitted to the postsynaptic cells. Cellular mechanisms have been best analyzed at the endbulb synapses, revealing that the recent history of presynaptic activity plays a complex, non-linear, role in regulating release. Emerging evidence suggests that the dynamics of synaptic function differ according to the target neuron within the cochlear nucleus. One consequence of hearing loss is changes in evoked release at s...
The auditory system processes temporal information at multiple scales, and disruptions to this tempo...
The auditory system processes time and intensity through separate brainstem pathways to derive spati...
The inner ear uses specialized synapses to indefatigably transmit sound information from hair cells ...
The dynamics of synaptic transmission between neurons plays a major role in neural information proce...
Age-related hearing loss (AHL) typically starts from high frequency regions of the cochlea and over ...
Age-related hearing loss (AHL) typically starts from high frequency regions of the cochlea and over ...
Auditory nerve synapses in ventral cochlear nucleus end on two principal cell types, bushy and stell...
Auditory nerve synapses in ventral cochlear nucleus end on two principal cell types, bushy and stell...
Inner hair cells (IHCs) in the cochlea are the mammalian phono-receptors, transducing sound energy i...
The bushy cells of the anterior ventral cochlear nucleus (AVCN) preserve or improve the temporal cod...
The bushy cells of the anterior ventral cochlear nucleus (AVCN) preserve or improve the temporal cod...
The majority of auditory nerve fibers exhibit prominent spontaneous activity in the absence of sound...
Ribbon-class synapses in the ear achieve analog to digital transformation of a continuously graded m...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
Acoustic over exposure (AOE) triggers hearing loss alongside a decreased excitability in the dorsal ...
The auditory system processes temporal information at multiple scales, and disruptions to this tempo...
The auditory system processes time and intensity through separate brainstem pathways to derive spati...
The inner ear uses specialized synapses to indefatigably transmit sound information from hair cells ...
The dynamics of synaptic transmission between neurons plays a major role in neural information proce...
Age-related hearing loss (AHL) typically starts from high frequency regions of the cochlea and over ...
Age-related hearing loss (AHL) typically starts from high frequency regions of the cochlea and over ...
Auditory nerve synapses in ventral cochlear nucleus end on two principal cell types, bushy and stell...
Auditory nerve synapses in ventral cochlear nucleus end on two principal cell types, bushy and stell...
Inner hair cells (IHCs) in the cochlea are the mammalian phono-receptors, transducing sound energy i...
The bushy cells of the anterior ventral cochlear nucleus (AVCN) preserve or improve the temporal cod...
The bushy cells of the anterior ventral cochlear nucleus (AVCN) preserve or improve the temporal cod...
The majority of auditory nerve fibers exhibit prominent spontaneous activity in the absence of sound...
Ribbon-class synapses in the ear achieve analog to digital transformation of a continuously graded m...
In the mammalian inner ear, the gain control of auditory inputs is exerted by medial olivocochlear (...
Acoustic over exposure (AOE) triggers hearing loss alongside a decreased excitability in the dorsal ...
The auditory system processes temporal information at multiple scales, and disruptions to this tempo...
The auditory system processes time and intensity through separate brainstem pathways to derive spati...
The inner ear uses specialized synapses to indefatigably transmit sound information from hair cells ...