SummaryNeuronal computation involves the integration of synaptic inputs that are often distributed over expansive dendritic trees, suggesting the need for compensatory mechanisms that enable spatially disparate synapses to influence neuronal output. In hippocampal CA1 pyramidal neurons, such mechanisms have indeed been reported, which normalize either the ability of distributed synapses to drive action potential initiation in the axon or their ability to drive dendritic spiking locally. Here we report that these mechanisms can coexist, through an elegant combination of distance-dependent regulation of synapse number and synaptic expression of AMPA and NMDA receptors. Together, these complementary gradients allow individual dendrites in both...
Neurons receive a large number of active synaptic inputs from their many presynaptic partners across...
International audienceNeurons receive a large number of active synaptic inputs from their many presy...
SummaryNeurons possess elaborate dendritic arbors which receive and integrate excitatory synaptic si...
SummaryThe ability of synapses throughout the dendritic tree to influence neuronal output is crucial...
SummaryThe ability of synapses throughout the dendritic tree to influence neuronal output is crucial...
The extensive dendritic arbor of a pyramidal cell introduces considerable complexity to the integrat...
The extensive dendritic arbor of a pyramidal cell introduces considerable complexity to the integrat...
International audiencePyramidal neurons have a complex dendritic arbor containing tens of thousands ...
The manner by which axons distribute synaptic connections along dendrites remains a fundamental unre...
International audiencePyramidal neurons have a complex dendritic arbor containing tens of thousands ...
International audiencePyramidal neurons have a complex dendritic arbor containing tens of thousands ...
SummaryNeuronal processing is classically conceptualized as dendritic input, somatic integration, an...
How effective are synaptic inputs made at different dendritic sites in the control of action potenti...
Müllner et al. (2015) show that single inhibitory synapses placed in the right location on the dendr...
How effective are synaptic inputs made at different dendritic sites in the control of action potenti...
Neurons receive a large number of active synaptic inputs from their many presynaptic partners across...
International audienceNeurons receive a large number of active synaptic inputs from their many presy...
SummaryNeurons possess elaborate dendritic arbors which receive and integrate excitatory synaptic si...
SummaryThe ability of synapses throughout the dendritic tree to influence neuronal output is crucial...
SummaryThe ability of synapses throughout the dendritic tree to influence neuronal output is crucial...
The extensive dendritic arbor of a pyramidal cell introduces considerable complexity to the integrat...
The extensive dendritic arbor of a pyramidal cell introduces considerable complexity to the integrat...
International audiencePyramidal neurons have a complex dendritic arbor containing tens of thousands ...
The manner by which axons distribute synaptic connections along dendrites remains a fundamental unre...
International audiencePyramidal neurons have a complex dendritic arbor containing tens of thousands ...
International audiencePyramidal neurons have a complex dendritic arbor containing tens of thousands ...
SummaryNeuronal processing is classically conceptualized as dendritic input, somatic integration, an...
How effective are synaptic inputs made at different dendritic sites in the control of action potenti...
Müllner et al. (2015) show that single inhibitory synapses placed in the right location on the dendr...
How effective are synaptic inputs made at different dendritic sites in the control of action potenti...
Neurons receive a large number of active synaptic inputs from their many presynaptic partners across...
International audienceNeurons receive a large number of active synaptic inputs from their many presy...
SummaryNeurons possess elaborate dendritic arbors which receive and integrate excitatory synaptic si...