Many neurons transduce synaptic inputs into action potentials (APs) according to rules that reflect their intrinsic membrane properties. Voltage-gated potassium channels, being numerous and diverse constituents of neuronal membrane, are important participants in neuronal excitability and thus in synaptic integration. Here we address the role of dendrotoxin-sensitive "D-type" potassium channels in the excitability of large pyramidal neurons in layer 5 of the rat neocortex. Low concentrations of 4-aminopyridine or α-dendrotoxin (α-DTX) dramatically increased excitability: the firing threshold for action potentials was hyperpolarized by 4-8 mV, and the firing frequency during a 1-sec-long 500 pA somatic current step was doubled. In nucleated o...
oltage−gated potassium channels effectively regulate dendritic excitability in neurones. It has been...
oltage−gated potassium channels effectively regulate dendritic excitability in neurones. It has been...
Inhibitory interneurons target specific subcellular compartments of cortical pyramidal neurons, wher...
Layer 5 pyramidal neurons are considered that main output units of the cortex. They receive input fr...
Active dendritic synaptic integration enhances the computational power of neurons. Such nonlinear pr...
SummaryActive dendritic synaptic integration enhances the computational power of neurons. Such nonli...
Potassium channels located in the dendrites of hippocampal CA1 pyramidal neurons control the shape a...
Large-conductance calcium-dependent potassium channels (BK channels) are homogeneously distributed a...
Large-conductance calcium-dependent potassium channels (BK channels) are homogeneously distributed a...
Large-conductance calcium-dependent potassium channels (BK channels) are homogeneously distributed a...
SummarySubthreshold-activating A-type K+ currents are essential for the proper functioning of the br...
Voltage-gated potassium channels effectively regulate dendritic excitability in neurones. It has bee...
Axonal ion channels control spike initiation and propagation along the axon and determine action pot...
A-type K+ current (IA) plays a critical role in controlling the excitability of pyramidal cell (PC) ...
Voltage−gated potassium channels effectively regulate dendritic excitability in neurones. It has bee...
oltage−gated potassium channels effectively regulate dendritic excitability in neurones. It has been...
oltage−gated potassium channels effectively regulate dendritic excitability in neurones. It has been...
Inhibitory interneurons target specific subcellular compartments of cortical pyramidal neurons, wher...
Layer 5 pyramidal neurons are considered that main output units of the cortex. They receive input fr...
Active dendritic synaptic integration enhances the computational power of neurons. Such nonlinear pr...
SummaryActive dendritic synaptic integration enhances the computational power of neurons. Such nonli...
Potassium channels located in the dendrites of hippocampal CA1 pyramidal neurons control the shape a...
Large-conductance calcium-dependent potassium channels (BK channels) are homogeneously distributed a...
Large-conductance calcium-dependent potassium channels (BK channels) are homogeneously distributed a...
Large-conductance calcium-dependent potassium channels (BK channels) are homogeneously distributed a...
SummarySubthreshold-activating A-type K+ currents are essential for the proper functioning of the br...
Voltage-gated potassium channels effectively regulate dendritic excitability in neurones. It has bee...
Axonal ion channels control spike initiation and propagation along the axon and determine action pot...
A-type K+ current (IA) plays a critical role in controlling the excitability of pyramidal cell (PC) ...
Voltage−gated potassium channels effectively regulate dendritic excitability in neurones. It has bee...
oltage−gated potassium channels effectively regulate dendritic excitability in neurones. It has been...
oltage−gated potassium channels effectively regulate dendritic excitability in neurones. It has been...
Inhibitory interneurons target specific subcellular compartments of cortical pyramidal neurons, wher...