Small-conductance Ca2+-activated K+ channels (SK channels) modulate excitability and curtail excitatory postsynaptic potentials (EPSPs) in neuronal dendrites. Here, we demonstrate long-lasting plasticity of intrinsic excitability (IE) in dendrites that results from changes in the gain of this regulatory mechanism. Using dendritic patch-clamp recordings from rat cerebellar Purkinje cells, we find that somatic depolarization or parallel fiber (PF) burst stimulation induce long-term amplification of synaptic responses to climbing fiber (CF) or PF stimulation and enhance the amplitude of passively propagated sodium spikes. Dendritic plasticity is mimicked and occluded by the SK channel blocker apamin and is absent in Purkinje cells from SK2 nul...
The small-conductance, Ca2+-activated K+ (SK) channel subtype SK2 regulates the spike rate and firin...
SummaryIn cerebellar Purkinje cell dendrites, heterosynaptic calcium signaling induced by the proxim...
The question of how the brain processes and records experiences for future recall is crucial to unde...
SummarySmall-conductance Ca2+-activated K+ channels (SK channels) modulate excitability and curtail ...
Small-conductance Ca2+-activated K+ channels (SK channels) modulate excitability and curtail excit-a...
Small-conductance calcium-activated K(+) channels (SK channels) regulate the excitability of neurons...
Summary: Neurons store information and participate in memory engrams as a result of experience-depen...
International audienceIn cerebellar Purkinje cell dendrites, heterosynaptic calcium signaling induce...
Dendrites receive most of the synaptic input to the neuron, but their contribution to synaptic integ...
Dendrites receive most of the synaptic input to the neuron, but their contribution to synaptic integ...
Purkinje neuron dendritic degeneration precedes cell loss in cerebellar ataxia, but the basis for de...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
Somatic spiking is known to regulate dendritic signaling and associative synaptic plasticity in many...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
The plasticity of intrinsic excitability has been described in several types of neurons, but the sig...
The small-conductance, Ca2+-activated K+ (SK) channel subtype SK2 regulates the spike rate and firin...
SummaryIn cerebellar Purkinje cell dendrites, heterosynaptic calcium signaling induced by the proxim...
The question of how the brain processes and records experiences for future recall is crucial to unde...
SummarySmall-conductance Ca2+-activated K+ channels (SK channels) modulate excitability and curtail ...
Small-conductance Ca2+-activated K+ channels (SK channels) modulate excitability and curtail excit-a...
Small-conductance calcium-activated K(+) channels (SK channels) regulate the excitability of neurons...
Summary: Neurons store information and participate in memory engrams as a result of experience-depen...
International audienceIn cerebellar Purkinje cell dendrites, heterosynaptic calcium signaling induce...
Dendrites receive most of the synaptic input to the neuron, but their contribution to synaptic integ...
Dendrites receive most of the synaptic input to the neuron, but their contribution to synaptic integ...
Purkinje neuron dendritic degeneration precedes cell loss in cerebellar ataxia, but the basis for de...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
Somatic spiking is known to regulate dendritic signaling and associative synaptic plasticity in many...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
The plasticity of intrinsic excitability has been described in several types of neurons, but the sig...
The small-conductance, Ca2+-activated K+ (SK) channel subtype SK2 regulates the spike rate and firin...
SummaryIn cerebellar Purkinje cell dendrites, heterosynaptic calcium signaling induced by the proxim...
The question of how the brain processes and records experiences for future recall is crucial to unde...