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- W116292720 abstract "Synaptic input to neurons is subject to cell-intrinsic filtering. In the subthreshold membrane potential range this filtering can have either low-pass or resonant characteristics and thereby have a key role in the frequency-dependent information flow in neuronal networks. Experimental classification of neurons as resonant versus nonresonant is usually based on somatic measurements, which, as we demonstrate here, may not accurately reflect neuronal filter properties because of nonuniform distributions of active membrane processes. Using cable theory, we identify conditions under which dendritic currents, in particular I h, can generate somatic resonances. We find that even a strong dendritic resonance may not be detectable somatically in pyramidal cells with a high density of HCN channels in the distal parts of the dendrites. In addition, we show that noise-driven membrane potential oscillations caused by dendritic resonance can propagate to the soma where they can be recorded in the absence of somatic resonance." @default.
- W116292720 created "2016-06-24" @default.
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- W116292720 date "2013-10-19" @default.
- W116292720 modified "2023-09-27" @default.
- W116292720 title "Subthreshold Resonance and Membrane Potential Oscillations in a Neuron with Nonuniform Active Dendritic Properties" @default.
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- W116292720 doi "https://doi.org/10.1007/978-1-4614-8094-5_20" @default.
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