Most synapses form on small, specialized postsynaptic structures known as dendritic spines(1). The influx of Ca2+ ions into such spines-through synaptic receptors and voltage-sensitive Ca2+ channels (VSCCs)-triggers diverse processes that underlie synaptic plasticity(2). Using two-photon laser scanning microscopy(3), we imaged action-potential-induced transient changes in Ca2+ concentration in spines and dendrites of CA1 pyramidal neurons in rat hippocampal slices(4). Through analysis of the large trial-to-trial fluctuations in these transients, we have determined the number and properties of VSCCs in single spines. Here we report that each spine contains 1-20 VSCCs, and that this number increases with spine volume. We are able to detect th...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
specificity in synaptic plasticity (Andersen et al., 1980). Spine [Ca2] signals are shaped by the dy...
Dendritic spines are cellular microcompartments that are isolated from their parent dendrites and ne...
Dendritic spines receive most excitatory inputs in the vertebrate brain, but their function is still...
MOST excitatory synaptic connections occur on dendritic spines(1). Calcium imaging experiments have ...
SummaryThe roles of voltage-sensitive sodium (Na) and calcium (Ca) channels located on dendrites and...
Dendritic spines are the main receptacles of excitatory information in the brain. Their particular m...
Excitatory synapses on mammalian principal neurons are typically formed onto dendritic spines, which...
AbstractDendritic spines are morphologically and functionally heterogeneous. To understand this dive...
<p>The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neu...
The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neuron...
<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...
Excitatory synapses on mammalian principal neurons are typically formed onto dendritic spines, which...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
specificity in synaptic plasticity (Andersen et al., 1980). Spine [Ca2] signals are shaped by the dy...
Dendritic spines are cellular microcompartments that are isolated from their parent dendrites and ne...
Dendritic spines receive most excitatory inputs in the vertebrate brain, but their function is still...
MOST excitatory synaptic connections occur on dendritic spines(1). Calcium imaging experiments have ...
SummaryThe roles of voltage-sensitive sodium (Na) and calcium (Ca) channels located on dendrites and...
Dendritic spines are the main receptacles of excitatory information in the brain. Their particular m...
Excitatory synapses on mammalian principal neurons are typically formed onto dendritic spines, which...
AbstractDendritic spines are morphologically and functionally heterogeneous. To understand this dive...
<p>The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neu...
The majority of excitatory synapses are located on dendritic spines of cortical glutamatergic neuron...
<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...
Excitatory synapses on mammalian principal neurons are typically formed onto dendritic spines, which...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
specificity in synaptic plasticity (Andersen et al., 1980). Spine [Ca2] signals are shaped by the dy...
Dendritic spines are cellular microcompartments that are isolated from their parent dendrites and ne...