Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductances, which generate non-trivial integrative properties. Basal and proximal apical dendrites have been shown to function as independent computational subunits within a two-layer feedforward processing scheme. The outputs of the subunits are linearly summed and passed through a final non-linearity. It is an open question whether this mathematical abstraction can be applied to apical tuft dendrites as well. Using a detailed compartmental model of CA1 pyramidal neurons and a novel theoretical framework based on iso-response methods, we first show that somatic sub-threshold responses to brief synaptic inputs cannot be described by a two-layer feedfo...
Neocortical pyramidal neurons (PNs) receive thousands of excitatory synaptic contacts on their basal...
<div><p>Neocortical pyramidal neurons (PNs) receive thousands of excitatory synaptic contacts on the...
The input-output transformation of individual neurons is a key building block of neural circuit dyna...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
2011-10-31Until recently, the accepted view of synaptic integration in most CNS neurons, including p...
Recent studies on the initiation and propagation of dendritic spikes have modified the classical vie...
AbstractThe pyramidal neuron is the principal cell type in the mammalian forebrain, but its function...
SummaryNeurons possess elaborate dendritic arbors which receive and integrate excitatory synaptic si...
SummaryCortical pyramidal neurons receive thousands of synaptic inputs arriving at different dendrit...
AbstractA fundamental problem in neurobiology is understanding the arithmetic that dendrites use to ...
Neocortical pyramidal neurons (PNs) receive thousands of excitatory synaptic contacts on their basal...
<div><p>Neocortical pyramidal neurons (PNs) receive thousands of excitatory synaptic contacts on the...
The input-output transformation of individual neurons is a key building block of neural circuit dyna...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
Dendrites of pyramidal cells exhibit complex morphologies and contain a variety of ionic conductance...
2011-10-31Until recently, the accepted view of synaptic integration in most CNS neurons, including p...
Recent studies on the initiation and propagation of dendritic spikes have modified the classical vie...
AbstractThe pyramidal neuron is the principal cell type in the mammalian forebrain, but its function...
SummaryNeurons possess elaborate dendritic arbors which receive and integrate excitatory synaptic si...
SummaryCortical pyramidal neurons receive thousands of synaptic inputs arriving at different dendrit...
AbstractA fundamental problem in neurobiology is understanding the arithmetic that dendrites use to ...
Neocortical pyramidal neurons (PNs) receive thousands of excitatory synaptic contacts on their basal...
<div><p>Neocortical pyramidal neurons (PNs) receive thousands of excitatory synaptic contacts on the...
The input-output transformation of individual neurons is a key building block of neural circuit dyna...