Members of voltage-gated potassium channel subfamily 3 (Kv3) have been extensively demonstrated to play a significant role in facilitating function of "fast-firing" neurons in the central nervous system. Kv3.1 and Kv3.3 channels, members of Kv3 channel subfamily, have different distribution profiles on the regional level of brain and on the subcellular level of neurons in mammals and in weakly electric fish, according to mRNA hybridizations in situ and immunohistochemical analysis. In mammals, Kv3.1 channels are expressed in soma, axon and proximal dendrites as well as presynaptic membrane of "fast-firing" neurons. In weakly electric fish (Apteronotus), Kv3.1 channels are distributed in the soma, in the basilar dendrites and in the...
Summary: Fast-spiking (FS) neurons can fire action potentials (APs) up to 1,000 Hz and play key role...
The Kv4 family of voltage-gated K+ channels underlie the fast transient (A-type) outward K+ current...
AbstractThe discrete localization of ion channels is a critical determinant of neuronal excitability...
Pyramidal neurons of the electrosensory lateral line lobe (ELL) ofApteronotus leptorhynchus express ...
Gamma-frequency burst discharge in pyramidal cells of the apteronotid electrosensory lateral line lo...
UnrestrictedLocalization of voltage-gated potassium channels to specific subcellular compartments in...
Kv3.1 and Kv3.2 K(+) channel proteins form similar voltage-gated K(+) channels with unusual properti...
Kv3.1 and Kv3.2 K+ channel proteins form similar voltage-gated K+ channels with unusual properties, ...
Voltage-dependent ion channels have specific patterns of distribution along the neuronal plasma memb...
AbstractThe discrete localization of ion channels is a critical determinant of neuronal excitability...
Voltage-dependent ion channels have specific patterns of distribution along the neuronal plasma memb...
Voltage-dependent ion channels have specific patterns of distribution along the neuronal plasma memb...
Potassium channels (KChs) are the most diverse ion channels, in part due to extensive combinatorial ...
Potassium channels (KChs) are the most diverse ion channels, in part due to extensive combinatorial ...
SummaryActive dendritic synaptic integration enhances the computational power of neurons. Such nonli...
Summary: Fast-spiking (FS) neurons can fire action potentials (APs) up to 1,000 Hz and play key role...
The Kv4 family of voltage-gated K+ channels underlie the fast transient (A-type) outward K+ current...
AbstractThe discrete localization of ion channels is a critical determinant of neuronal excitability...
Pyramidal neurons of the electrosensory lateral line lobe (ELL) ofApteronotus leptorhynchus express ...
Gamma-frequency burst discharge in pyramidal cells of the apteronotid electrosensory lateral line lo...
UnrestrictedLocalization of voltage-gated potassium channels to specific subcellular compartments in...
Kv3.1 and Kv3.2 K(+) channel proteins form similar voltage-gated K(+) channels with unusual properti...
Kv3.1 and Kv3.2 K+ channel proteins form similar voltage-gated K+ channels with unusual properties, ...
Voltage-dependent ion channels have specific patterns of distribution along the neuronal plasma memb...
AbstractThe discrete localization of ion channels is a critical determinant of neuronal excitability...
Voltage-dependent ion channels have specific patterns of distribution along the neuronal plasma memb...
Voltage-dependent ion channels have specific patterns of distribution along the neuronal plasma memb...
Potassium channels (KChs) are the most diverse ion channels, in part due to extensive combinatorial ...
Potassium channels (KChs) are the most diverse ion channels, in part due to extensive combinatorial ...
SummaryActive dendritic synaptic integration enhances the computational power of neurons. Such nonli...
Summary: Fast-spiking (FS) neurons can fire action potentials (APs) up to 1,000 Hz and play key role...
The Kv4 family of voltage-gated K+ channels underlie the fast transient (A-type) outward K+ current...
AbstractThe discrete localization of ion channels is a critical determinant of neuronal excitability...