Potassium channels (KChs) are the most diverse ion channels, in part due to extensive combinatorial assembly of a large number of principal and auxiliary subunits into an assortment of KCh complexes. Their structural and functional diversity allows KChs to play diverse roles in neuronal function. Localization of KChs within specialized neuronal compartments defines their physiological role and also fundamentally impacts their activity, due to localized exposure to diverse cellular determinants of channel function. Recent studies in mammalian brain reveal an exquisite refinement of KCh subcellular localization. This includes axonal KChs at the initial segment, and near/within nodes of Ranvier and presynaptic terminals, dendritic KChs found a...
The intrinsic electrical properties of neurons are shaped in large part by the action of voltage-gat...
The axon initial segment (AIS) plays a key role in initiation of action potentials and neuronal outp...
SummaryActive dendritic synaptic integration enhances the computational power of neurons. Such nonli...
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 ...
Potassium channels comprise the most diverse family of ion channels and play critical roles in a lar...
Potassium channels comprise the most diverse family of ion channels and play critical roles in a lar...
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...
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...
UnrestrictedLocalization of voltage-gated potassium channels to specific subcellular compartments in...
Members of voltage-gated potassium channel subfamily 3 (Kv3) have been extensively demonstrated to ...
AbstractThe discrete localization of ion channels is a critical determinant of neuronal excitability...
Active dendritic synaptic integration enhances the computational power of neurons. Such nonlinear pr...
The intrinsic electrical properties of neurons are shaped in large part by the action of voltage-gat...
The axon initial segment (AIS) plays a key role in initiation of action potentials and neuronal outp...
SummaryActive dendritic synaptic integration enhances the computational power of neurons. Such nonli...
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 ...
Potassium channels comprise the most diverse family of ion channels and play critical roles in a lar...
Potassium channels comprise the most diverse family of ion channels and play critical roles in a lar...
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...
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...
UnrestrictedLocalization of voltage-gated potassium channels to specific subcellular compartments in...
Members of voltage-gated potassium channel subfamily 3 (Kv3) have been extensively demonstrated to ...
AbstractThe discrete localization of ion channels is a critical determinant of neuronal excitability...
Active dendritic synaptic integration enhances the computational power of neurons. Such nonlinear pr...
The intrinsic electrical properties of neurons are shaped in large part by the action of voltage-gat...
The axon initial segment (AIS) plays a key role in initiation of action potentials and neuronal outp...
SummaryActive dendritic synaptic integration enhances the computational power of neurons. Such nonli...