AbstractDendritic spines are morphologically and functionally heterogeneous. To understand this diversity, we use two-photon imaging of layer 5 neocortical pyramidal cells and measure action potential-evoked [Ca2+]i transients in spines. Spine calcium kinetics are controlled by (i) the diameter of the parent dendrite, (ii) the length of the spine neck, and (iii) the strength of spine calcium pumps. These factors produce different calcium dynamics in spines from basal, proximal apical, and distal apical dendrites, differences that are more pronounced without exogenous buffers. In proximal and distal apical dendrites, different calcium dynamics correlate with different susceptibility to synaptic depression, and modifying calcium kinetics in s...
Dendritic spines are highly dynamic neuronal compartments that control the synaptic transmission bet...
AbstractA dendritic spine is an intracellular compartment in synapses of central neurons. The role o...
Dendritic spines are tiny protrusions on dendritic shafts where most excitatory synapses are located...
AbstractDendritic spines are morphologically and functionally heterogeneous. To understand this dive...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
MOST excitatory synaptic connections occur on dendritic spines(1). Calcium imaging experiments have ...
specificity in synaptic plasticity (Andersen et al., 1980). Spine [Ca2] signals are shaped by the dy...
Dendritic spines are small subcompartments that protrude from the dendrites of neurons and are impor...
Dendritic spines are small subcompartments that protrude from the dendrites of neurons and are impor...
Spine Ca2+ is critical for the induction of synaptic plasticity, but the factors that control Ca2+ h...
AbstractSpine Ca2+ is critical for the induction of synaptic plasticity, but the factors that contro...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Dendritic spines are highly dynamic neuronal compartments that control the synaptic transmission bet...
AbstractA dendritic spine is an intracellular compartment in synapses of central neurons. The role o...
Dendritic spines are tiny protrusions on dendritic shafts where most excitatory synapses are located...
AbstractDendritic spines are morphologically and functionally heterogeneous. To understand this dive...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
MOST excitatory synaptic connections occur on dendritic spines(1). Calcium imaging experiments have ...
specificity in synaptic plasticity (Andersen et al., 1980). Spine [Ca2] signals are shaped by the dy...
Dendritic spines are small subcompartments that protrude from the dendrites of neurons and are impor...
Dendritic spines are small subcompartments that protrude from the dendrites of neurons and are impor...
Spine Ca2+ is critical for the induction of synaptic plasticity, but the factors that control Ca2+ h...
AbstractSpine Ca2+ is critical for the induction of synaptic plasticity, but the factors that contro...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Dendritic spines are highly dynamic neuronal compartments that control the synaptic transmission bet...
AbstractA dendritic spine is an intracellular compartment in synapses of central neurons. The role o...
Dendritic spines are tiny protrusions on dendritic shafts where most excitatory synapses are located...