Summary: Neurons store information and participate in memory engrams as a result of experience-dependent changes in synaptic weights and in membrane excitability. Here, we examine excitatory postsynaptic potential (EPSP) amplitude and neuronal excitability in relation to these two mechanisms of plasticity. We analyze somato-dendritic double-patch recordings from cerebellar Purkinje cells while inducing intrinsic, SK2 channel-dependent plasticity or blocking SK channels with bath application of apamin. Both manipulations increase the build-up of EPSP amplitudes during an EPSP train and enhance the number of EPSP-evoked spikes, yielding insights into the mechanistic contribution of EPSP amplitude to single spikes and spike bursts. EPSP amplit...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
International audienceIn the cerebellar cortex, molecular layer interneurons use chemical and electr...
In neurons with large dendritic arbors, the postsynaptic potentials interact in a complex manner wit...
Neurons store information and participate in memory engrams as a result of experience-dependent chan...
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 Ca2+-activated K+ channels (SK channels) modulate excitability and curtail excitat...
The question of how the brain processes and records experiences for future recall is crucial to unde...
The plasticity of intrinsic excitability has been described in several types of neurons, but the sig...
SummaryThe plasticity of intrinsic excitability has been described in several types of neurons, but ...
Small-conductance calcium-activated K(+) channels (SK channels) regulate the excitability of neurons...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
Dendrites receive most of the synaptic input to the neuron, but their contribution to synaptic integ...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
Dendrites receive most of the synaptic input to the neuron, but their contribution to synaptic integ...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
International audienceIn the cerebellar cortex, molecular layer interneurons use chemical and electr...
In neurons with large dendritic arbors, the postsynaptic potentials interact in a complex manner wit...
Neurons store information and participate in memory engrams as a result of experience-dependent chan...
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 Ca2+-activated K+ channels (SK channels) modulate excitability and curtail excitat...
The question of how the brain processes and records experiences for future recall is crucial to unde...
The plasticity of intrinsic excitability has been described in several types of neurons, but the sig...
SummaryThe plasticity of intrinsic excitability has been described in several types of neurons, but ...
Small-conductance calcium-activated K(+) channels (SK channels) regulate the excitability of neurons...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
Dendrites receive most of the synaptic input to the neuron, but their contribution to synaptic integ...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
Dendrites receive most of the synaptic input to the neuron, but their contribution to synaptic integ...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
International audienceIn the cerebellar cortex, molecular layer interneurons use chemical and electr...
In neurons with large dendritic arbors, the postsynaptic potentials interact in a complex manner wit...