Title
Role of active dendritic conductances in subthreshold input integration
Abstract
Dendrites of many types of neurons contain voltage-dependent conductances that are active at subthreshold membrane potentials. To understand the computations neurons perform it is key to understand the role of active dendrites in the subthreshold processing of synaptic inputs. We examine systematically how active dendritic conductances affect the time course of postsynaptic potentials propagating along dendrites, and how they affect the interaction between such signals. Voltage-dependent currents can be classified into two types that have qualitatively different effects on subthreshold input responses: regenerative dendritic currents boost and broaden EPSPs, while restorative currents attenuate and narrow EPSPs. Importantly, the effects of active dendritic currents on EPSP shape increase as the EPSP travels along the dendrite. The effectiveness of active currents in modulating the EPSP shape is determined by their activation time constant: the faster it is, the stronger the effect on EPSP amplitude, while the largest effects on EPSP width occur when it is comparable to the membrane time constant. We finally demonstrate that the two current types can differentially improve precision and robustness of neural computations: restorative currents enhance coincidence detection of dendritic inputs, whereas direction selectivity to sequences of dendritic inputs is enhanced by regenerative dendritic currents.
Year
DOI
Venue
2011
10.1007/s10827-010-0295-7
Journal of Computational Neuroscience
Keywords
Field
DocType
Synaptic integration,Voltage-dependent currents,Dendrites,Quasi-active cable
Neuroscience,Membrane potential,Neural Conduction,Postsynaptic potential,Excitatory postsynaptic potential,Subthreshold conduction,Coincidence detection in neurobiology,Time constant,Mathematics,Dendrite
Journal
Volume
Issue
ISSN
31
1
1471-2202
Citations 
PageRank 
References 
6
0.68
4
Authors
2
Name
Order
Citations
PageRank
Michiel W. H. Remme1173.87
John Rinzel2459219.68