Fast synaptic inhibition promotes synchronized gamma oscillations in hippocampal interneuron networks
Top Cited Papers
- 16 September 2002
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 99 (20), 13222-13227
- https://doi.org/10.1073/pnas.192233099
Abstract
Networks of GABAergic interneurons are of critical importance for the generation of gamma frequency oscillations in the brain. To examine the underlying synaptic mechanisms, we made paired recordings from "basket cells" (BCs) in different subfields of hippocampal slices, using transgenic mice that express enhanced green fluorescent protein (EGFP) under the control of the parvalbumin promoter. Unitary inhibitory postsynaptic currents (IPSCs) showed large amplitude and fast time course with mean amplitude-weighted decay time constants of 2.5, 1.2, and 1.8 ms in the dentate gyrus, and the cornu ammonis area 3 (CA3) and 1 (CA1), respectively (33-34 degrees C). The decay of unitary IPSCs at BC-BC synapses was significantly faster than that at BC-principal cell synapses, indicating target cell-specific differences in IPSC kinetics. In addition, electrical coupling was found in a subset of BC-BC pairs. To examine whether an interneuron network with fast inhibitory synapses can act as a gamma frequency oscillator, we developed an interneuron network model based on experimentally determined properties. In comparison to previous interneuron network models, our model was able to generate oscillatory activity with higher coherence over a broad range of frequencies (20-110 Hz). In this model, high coherence and flexibility in frequency control emerge from the combination of synaptic properties, network structure, and electrical coupling.Keywords
This publication has 45 references indexed in Scilit:
- Presynaptic short‐term depression is maintained during regulation of transmitter release at a GABAergic synapse in rat hippocampusThe Journal of Physiology, 2002
- Gating, modulation and subunit composition of voltage‐gated K+ channels in dendritic inhibitory interneurones of rat hippocampusThe Journal of Physiology, 2002
- Synchronous Activity of Inhibitory Networks in Neocortex Requires Electrical Synapses Containing Connexin36Neuron, 2001
- Interneurons unboundNature Reviews Neuroscience, 2001
- Cholinergic induction of network oscillations at 40 Hz in the hippocampus in vitroNature, 1998
- Homologous recombination based modification in Esherichia coli and germline transmission in transgenic mice of a bacterial artificial chromsomeNature Biotechnology, 1997
- A mechanism for generation of long-range synchronous fast oscillations in the cortexNature, 1996
- Synchronized oscillations in interneuron networks driven by metabotropic glutamate receptor activationNature, 1995
- When inhibition not excitation synchronizes neural firingJournal of Computational Neuroscience, 1994
- Alternating and Synchronous Rhythms in Reciprocally Inhibitory Model NeuronsNeural Computation, 1992