Publication | Open Access
Optimal Current Transfer in Dendrites
31
Citations
25
References
2016
Year
EngineeringDiameter ProfileSynaptic TransmissionNeurotransmissionCharge TransportOptimal TransportArbitrary TaperNeurodynamicsNumerical SimulationTransport PhenomenaOptimal Current TransferCharge Carrier TransportBiophysicsElectrical EngineeringExtensive Dendritic TreeBrain CircuitrySynaptic PlasticityDendritic SpinesNeurophysiologyComputational NeuroscienceNeuroanatomyNeuronal NetworkNeuroscienceMedicine
Integration of synaptic currents across an extensive dendritic tree is a prerequisite for computation in the brain. Dendritic tapering away from the soma has been suggested to both equalise contributions from synapses at different locations and maximise the current transfer to the soma. To find out how this is achieved precisely, an analytical solution for the current transfer in dendrites with arbitrary taper is required. We derive here an asymptotic approximation that accurately matches results from numerical simulations. From this we then determine the diameter profile that maximises the current transfer to the soma. We find a simple quadratic form that matches diameters obtained experimentally, indicating a fundamental architectural principle of the brain that links dendritic diameters to signal transmission.
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