Oscillatory and synchronized neural activities are commonly found in the brain, and evidence suggests that many of them are caused by global feedback. Their mechanisms and roles in information processing have been discussed often using purely feedforward networks or recurrent networks with constant inputs. On the other hand, real recurrent neural networks are abundant and continually receive information-rich inputs from the outside environment or other parts of the brain. We examine how feedforward networks of spiking neurons with delayed global feedback process information about temporally changing inputs. We show that the network behavior is more synchronous as well as more correlated with and phase-locked to the stimulus when the stimulu...
Abstract The joint influence of recurrent feedback and noise on gain control in a network of globall...
<div><p>Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical act...
Feedback circuitry with conduction and synaptic delays is ubiquitous in the nervous system. Yet the ...
Oscillatory and synchronized neural activities are commonly found in the brain, and evidence suggest...
Oscillatory brain activity is believed to play a central role in neural coding. Accumulating evidenc...
We study the sensory processing features of a network built of ON and OFF cells with global delayed ...
Typically, neural oscillations appear in networks present-ing some degree of recurrent connections a...
International audienceWe consider how oscillatory activity in networks of excitable systems depends ...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
International audienceWe consider how oscillatory activity in networks of excitable systems depends ...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Abstract The joint influence of recurrent feedback and noise on gain control in a network of globall...
Abstract The joint influence of recurrent feedback and noise on gain control in a network of globall...
<div><p>Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical act...
Feedback circuitry with conduction and synaptic delays is ubiquitous in the nervous system. Yet the ...
Oscillatory and synchronized neural activities are commonly found in the brain, and evidence suggest...
Oscillatory brain activity is believed to play a central role in neural coding. Accumulating evidenc...
We study the sensory processing features of a network built of ON and OFF cells with global delayed ...
Typically, neural oscillations appear in networks present-ing some degree of recurrent connections a...
International audienceWe consider how oscillatory activity in networks of excitable systems depends ...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
International audienceWe consider how oscillatory activity in networks of excitable systems depends ...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Abstract The joint influence of recurrent feedback and noise on gain control in a network of globall...
Abstract The joint influence of recurrent feedback and noise on gain control in a network of globall...
<div><p>Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical act...
Feedback circuitry with conduction and synaptic delays is ubiquitous in the nervous system. Yet the ...