SummaryTemporal precision in spike timing is important in cortical function, interactions, and plasticity. We found that, during periods of recurrent network activity (UP states), cortical pyramidal cells in vivo and in vitro receive strong barrages of both excitatory and inhibitory postsynaptic potentials, with the inhibitory potentials showing much higher power at all frequencies above approximately 10 Hz and more synchrony between nearby neurons. Fast-spiking inhibitory interneurons discharged strongly in relation to higher-frequency oscillations in the field potential in vivo and possess membrane, synaptic, and action potential properties that are advantageous for transmission of higher-frequency activity. Intracellular injection of syn...
SummaryIn vivo studies suggest that precise firing of neurons is important for correct sensory repre...
<div><p>Computational studies as well as <em>in vivo</em> and <em>in vitro</em> results have shown t...
Synaptic activity in the central nervous system undergoes rapid state-dependent changes, requiring c...
SummaryTemporal precision in spike timing is important in cortical function, interactions, and plast...
During the generation of higher-frequency (e.g., gamma) oscillations, cortical neurons can exhibit p...
AbstractThe temporal precision with which EPSPs initiate action potentials in postsynaptic cells det...
Inhibitory pathways are an essential component in the function of the neocortical microcircuitry. De...
xviii, 121 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P EIE 2011 LiCortical oscil...
High-frequency oscillations (above 30 Hz) have been observed in sensory and higher-order brain areas...
Information processing in neuronal networks is determined by the use-dependent dynamics of synaptic ...
Different hippocampal activity patterns are determined primarily by the interaction of excitatory ce...
In vivo studies have shown that neurons in the neocortex can generate action potentials at high temp...
International audienceHyperpolarization-activated cyclic nucleotide modulated current (I h) sets res...
The majority of operations carried out by the brain require learning complex signal patterns for fut...
Networks of specific inhibitory interneurons regulate principal cell firing in several forms of neoc...
SummaryIn vivo studies suggest that precise firing of neurons is important for correct sensory repre...
<div><p>Computational studies as well as <em>in vivo</em> and <em>in vitro</em> results have shown t...
Synaptic activity in the central nervous system undergoes rapid state-dependent changes, requiring c...
SummaryTemporal precision in spike timing is important in cortical function, interactions, and plast...
During the generation of higher-frequency (e.g., gamma) oscillations, cortical neurons can exhibit p...
AbstractThe temporal precision with which EPSPs initiate action potentials in postsynaptic cells det...
Inhibitory pathways are an essential component in the function of the neocortical microcircuitry. De...
xviii, 121 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P EIE 2011 LiCortical oscil...
High-frequency oscillations (above 30 Hz) have been observed in sensory and higher-order brain areas...
Information processing in neuronal networks is determined by the use-dependent dynamics of synaptic ...
Different hippocampal activity patterns are determined primarily by the interaction of excitatory ce...
In vivo studies have shown that neurons in the neocortex can generate action potentials at high temp...
International audienceHyperpolarization-activated cyclic nucleotide modulated current (I h) sets res...
The majority of operations carried out by the brain require learning complex signal patterns for fut...
Networks of specific inhibitory interneurons regulate principal cell firing in several forms of neoc...
SummaryIn vivo studies suggest that precise firing of neurons is important for correct sensory repre...
<div><p>Computational studies as well as <em>in vivo</em> and <em>in vitro</em> results have shown t...
Synaptic activity in the central nervous system undergoes rapid state-dependent changes, requiring c...