<div><p>Technological advances have unraveled the existence of small clusters of co-active neurons in the neocortex. The functional implications of these microcircuits are in large part unexplored. Using a heavily constrained biophysical model of a L5 PFC microcircuit, we recently showed that these structures act as tunable modules of persistent activity, the cellular correlate of working memory. Here, we investigate the mechanisms that underlie persistent activity emergence (ON) and termination (OFF) and search for the minimum network size required for expressing these states within physiological regimes. We show that (a) NMDA-mediated dendritic spikes gate the induction of persistent firing in the microcircuit. (b) The minimum network siz...
Distinct synapses influence one another when they undergo changes, with unclear consequences for neu...
Synaptic dynamics are critical to the function of neuronal circuits on multiple timescales. In the f...
Local cortical circuits appear highly non-random, but the underlying connectivity rule remains elusi...
Technological advances have unraveled the existence of small clusters of co-active neurons in the ne...
Working memory refers to the temporary storage of information and is strongly associated with the pr...
Neurons are the computational building blocks of our brains. They form complicated net- works that p...
<p><b>A.</b> The microcircuit model includes seven pyramidal cells and two inhibitory interneurons r...
Summary: The NMDA spike is a long-lasting nonlinear phenomenon initiated locally in the dendritic br...
International audienceIn vivo, cortical pyramidal cells are bombarded by asynchronous synaptic input...
<div><p><i>In vivo</i>, cortical pyramidal cells are bombarded by asynchronous synaptic input arisin...
Layer 5 thick tufted pyramidal cells (TTCs) in the neocortex are par-ticularly electrically complex,...
Layer 5 thick tufted pyramidal cells (TTCs) in the neocortex are par-ticularly electrically complex,...
Layer 5 thick tufted pyramidal cells (TTCs) in the neocortex are par-ticularly electrically complex,...
Layer 5 thick tufted pyramidal cells (TTCs) in the neocortex are par-ticularly electrically complex,...
<p><b>A.</b> Persistent activity after stimulation at the proximal dendrites of the microcircuit (iN...
Distinct synapses influence one another when they undergo changes, with unclear consequences for neu...
Synaptic dynamics are critical to the function of neuronal circuits on multiple timescales. In the f...
Local cortical circuits appear highly non-random, but the underlying connectivity rule remains elusi...
Technological advances have unraveled the existence of small clusters of co-active neurons in the ne...
Working memory refers to the temporary storage of information and is strongly associated with the pr...
Neurons are the computational building blocks of our brains. They form complicated net- works that p...
<p><b>A.</b> The microcircuit model includes seven pyramidal cells and two inhibitory interneurons r...
Summary: The NMDA spike is a long-lasting nonlinear phenomenon initiated locally in the dendritic br...
International audienceIn vivo, cortical pyramidal cells are bombarded by asynchronous synaptic input...
<div><p><i>In vivo</i>, cortical pyramidal cells are bombarded by asynchronous synaptic input arisin...
Layer 5 thick tufted pyramidal cells (TTCs) in the neocortex are par-ticularly electrically complex,...
Layer 5 thick tufted pyramidal cells (TTCs) in the neocortex are par-ticularly electrically complex,...
Layer 5 thick tufted pyramidal cells (TTCs) in the neocortex are par-ticularly electrically complex,...
Layer 5 thick tufted pyramidal cells (TTCs) in the neocortex are par-ticularly electrically complex,...
<p><b>A.</b> Persistent activity after stimulation at the proximal dendrites of the microcircuit (iN...
Distinct synapses influence one another when they undergo changes, with unclear consequences for neu...
Synaptic dynamics are critical to the function of neuronal circuits on multiple timescales. In the f...
Local cortical circuits appear highly non-random, but the underlying connectivity rule remains elusi...