Title
Balanced excitation and inhibition: Model based analysis of local field potentials.
Abstract
We have developed a model of the local field potential (LFP) based on the conservation of charge, the independence principle of ionic flows and the classical Hodgkin–Huxley (HH) type intracellular model of synaptic activity. Insights were gained through the simulation of the HH intracellular model on the nonlinear relationship between the balance of synaptic conductances and that of post-synaptic currents. The latter is dependent not only on the former, but also on the temporal lag between the excitatory and inhibitory conductances, as well as the strength of the afferent signal. The proposed LFP model provides a method for decomposing the LFP recordings near the soma of layer IV pyramidal neurons in the barrel cortex of anaesthetised rats into two highly correlated components with opposite polarity. The temporal dynamics and the proportional balance of the two components are comparable to the excitatory and inhibitory post-synaptic currents computed from the HH model. This suggests that the two components of the LFP reflect the underlying excitatory and inhibitory post-synaptic currents of the local neural population. We further used the model to decompose a sequence of evoked LFP responses under repetitive electrical stimulation (5Hz) of the whisker pad. We found that as neural responses adapted, the excitatory and inhibitory components also adapted proportionately, while the temporal lag between the onsets of the two components increased during frequency adaptation. Our results demonstrated that the balance between neural excitation and inhibition can be investigated using extracellular recordings. Extension of the model to incorporate multiple compartments should allow more quantitative interpretations of surface Electroencephalography (EEG) recordings into components reflecting the excitatory, inhibitory and passive ionic current flows generated by local neural populations.
Year
DOI
Venue
2012
10.1016/j.neuroimage.2012.06.040
NeuroImage
Keywords
Field
DocType
Balanced excitation and inhibition,Local field potentials,Neural mass models,Field potential decomposition
Population,Neuroscience,Neurotransmission,Neural Inhibition,Psychology,Inhibitory postsynaptic potential,Barrel cortex,Excitatory postsynaptic potential,Local field potential,Electroencephalography
Journal
Volume
Issue
ISSN
63
1
1053-8119
Citations 
PageRank 
References 
2
0.44
13
Authors
7
Name
Order
Citations
PageRank
Ying Zheng1173.88
Jing Jing Luo221.46
Samuel Harris351.26
Aneurin J. Kennerley4634.92
Jason Berwick522079.86
Steve A Billings620.44
John E. W. Mayhew7233322.10