4.8 Article

Parvalbumin interneuron dendrites enhance gamma oscillations

Journal

CELL REPORTS
Volume 39, Issue 11, Pages -

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2022.110948

Keywords

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Funding

  1. ERC [639272]
  2. Norwegian Research Council [513401, 276047, 250866]
  3. EEA grant [RO-NO-2019-0504]
  4. EU Seventh Framework Scientia Fellows fellowship [609020]
  5. European Research Council (ERC) [639272] Funding Source: European Research Council (ERC)

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This study investigates the role of dendrites in network oscillations in gamma frequency band. The researchers find that the slope of the dendritic input-output relationship in parvalbumin-expressing basket cells is exceptionally low, thereby reducing the cell's sensitivity to changes in its input. Simulation experiments further demonstrate that the low gain is crucial for increasing spike synchrony in basket cell assemblies.
Dendrites are essential determinants of the input-output relationship of single neurons, but their role in network computations is not well understood. Here, we use a combination of dendritic patch-clamp recordings and in silico modeling to determine how dendrites of parvalbumin (PV)-expressing basket cells contribute to network oscillations in the gamma frequency band. Simultaneous soma-dendrite recordings from PV basket cells in the dentate gyrus reveal that the slope, or gain, of the dendritic input-output relationship is exceptionally low, thereby reducing the cell???s sensitivity to changes in its input. By simulating gamma oscillations in detailed network models, we demonstrate that the low gain is key to increase spike synchrony in PV basket cell assemblies when cells are driven by spatially and temporally heterogeneous synaptic inputs. These results highlight the role of inhibitory neuron dendrites in synchronized network oscillations.

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