AbstractStriatal medium spiny neurons (MSNs) in vivo undergo large membrane depolarizations known as state transitions. Calcium (Ca) entry into MSNs triggers diverse downstream cellular processes. However, little is known about Ca signals in MSN dendrites and spines and how state transitions influence these signals. Here, we develop a novel approach, combining 2-photon Ca imaging and 2-photon glutamate uncaging, to examine how voltage-sensitive Ca channels (VSCCs) and ionotropic glutamate receptors contribute to Ca signals in MSNs. We find that upstate transitions switch the VSCCs available in dendrites and spines, decreasing T-type while enhancing L-type channels. Moreover, these transitions change the dominant synaptic Ca source from Ca-p...
In the mammalian brain, calcium signals in dendritic spines are involved in many neuronal functions,...
An accurate assessment of the time course, components, and magnitude of postsynaptic currents is imp...
Dendritic spines are the main receptacles of excitatory information in the brain. Their particular m...
AbstractStriatal medium spiny neurons (MSNs) in vivo undergo large membrane depolarizations known as...
SummaryThe roles of voltage-sensitive sodium (Na) and calcium (Ca) channels located on dendrites and...
Excitatory synapses on mammalian principal neurons are typically formed onto dendritic spines, which...
The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neuron...
Excitatory synapses on mammalian principal neurons are typically formed onto dendritic spines, which...
Key points: Dendritic and spine calcium imaging in combination with electrophysiology in acute slice...
<p>The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neu...
<p>The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neu...
<p>The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neu...
Dendritic spines receive most excitatory inputs in the vertebrate brain, but their function is still...
Granule cells form the largest neuronal population in the mammalian brain. They process information ...
Most synapses form on small, specialized postsynaptic structures known as dendritic spines(1). The i...
In the mammalian brain, calcium signals in dendritic spines are involved in many neuronal functions,...
An accurate assessment of the time course, components, and magnitude of postsynaptic currents is imp...
Dendritic spines are the main receptacles of excitatory information in the brain. Their particular m...
AbstractStriatal medium spiny neurons (MSNs) in vivo undergo large membrane depolarizations known as...
SummaryThe roles of voltage-sensitive sodium (Na) and calcium (Ca) channels located on dendrites and...
Excitatory synapses on mammalian principal neurons are typically formed onto dendritic spines, which...
The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neuron...
Excitatory synapses on mammalian principal neurons are typically formed onto dendritic spines, which...
Key points: Dendritic and spine calcium imaging in combination with electrophysiology in acute slice...
<p>The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neu...
<p>The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neu...
<p>The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neu...
Dendritic spines receive most excitatory inputs in the vertebrate brain, but their function is still...
Granule cells form the largest neuronal population in the mammalian brain. They process information ...
Most synapses form on small, specialized postsynaptic structures known as dendritic spines(1). The i...
In the mammalian brain, calcium signals in dendritic spines are involved in many neuronal functions,...
An accurate assessment of the time course, components, and magnitude of postsynaptic currents is imp...
Dendritic spines are the main receptacles of excitatory information in the brain. Their particular m...