While oscillations of the local field potential (LFP) are commonly attributed to the synchronization of neuronal firing rate on the same time scale, their relationship to coincident spiking in the millisecond range is unknown. Here, we present experimental evidence to reconcile the notions of synchrony at the level of spiking and at the mesoscopic scale. We demonstrate that only in time intervals of significant spike synchrony that cannot be explained on the basis of firing rates, coincident spikes are better phase locked to the LFP than predicted by the locking of the individual spikes. This effect is enhanced in periods of large LFP amplitudes. A quantitative model explains the LFP dynamics by the orchestrated spiking activity in neuronal...
Synchronized network activity can be recorded as fluctuations in the local field potential (LFP). In...
Brain signals often show fluctuations in particular frequency bands, which are highly conserved acro...
Local circuits in the cortex and hippocampus are endowed with resonant, oscillatory firing propertie...
Synchronously firing groups of neurons, or cell assem-blies, exhibit excess pair-wise synchronous sp...
© The Author(s) 2011. This article is published with open access at Springerlink.com Abstract An imp...
Single neurons in the cerebral cortex are immersed in a fluctuating electric field, the local field ...
Cognition and behavior are the consequence of sophistlcated lnteractions among different neuronal gr...
Abstract\ud \ud Pairs of active neurons frequently fire action potentials or “spikes” nearly synchro...
Pairs of active neurons frequently fire action potentials or "spikes" nearly synchronously (i.e., wi...
Synchronized network activity can be recorded as fluctuations in the local field potential (LFP). In...
Whether the brain employs the temporal domain for the representation of information is still a matte...
Two important parts of electrophysiological recordings are the spike times and the local field poten...
Abstract It was often reported and suggested that the synchronization of spikes can occur without ch...
Recently, it has been shown that when the timing of spikes is measured relative to the phase of the ...
A classical view of neural coding relies on temporal firing synchrony among functional groups of neu...
Synchronized network activity can be recorded as fluctuations in the local field potential (LFP). In...
Brain signals often show fluctuations in particular frequency bands, which are highly conserved acro...
Local circuits in the cortex and hippocampus are endowed with resonant, oscillatory firing propertie...
Synchronously firing groups of neurons, or cell assem-blies, exhibit excess pair-wise synchronous sp...
© The Author(s) 2011. This article is published with open access at Springerlink.com Abstract An imp...
Single neurons in the cerebral cortex are immersed in a fluctuating electric field, the local field ...
Cognition and behavior are the consequence of sophistlcated lnteractions among different neuronal gr...
Abstract\ud \ud Pairs of active neurons frequently fire action potentials or “spikes” nearly synchro...
Pairs of active neurons frequently fire action potentials or "spikes" nearly synchronously (i.e., wi...
Synchronized network activity can be recorded as fluctuations in the local field potential (LFP). In...
Whether the brain employs the temporal domain for the representation of information is still a matte...
Two important parts of electrophysiological recordings are the spike times and the local field poten...
Abstract It was often reported and suggested that the synchronization of spikes can occur without ch...
Recently, it has been shown that when the timing of spikes is measured relative to the phase of the ...
A classical view of neural coding relies on temporal firing synchrony among functional groups of neu...
Synchronized network activity can be recorded as fluctuations in the local field potential (LFP). In...
Brain signals often show fluctuations in particular frequency bands, which are highly conserved acro...
Local circuits in the cortex and hippocampus are endowed with resonant, oscillatory firing propertie...