<div><p>The synaptic connectivity of cortical networks features an overrepresentation of certain wiring motifs compared to simple random-network models. This structure is shaped, in part, by synaptic plasticity that promotes or suppresses connections between neurons depending on their joint spiking activity. Frequently, theoretical studies focus on how feedforward inputs drive plasticity to create this network structure. We study the complementary scenario of self-organized structure in a recurrent network, with spike timing-dependent plasticity driven by spontaneous dynamics. We develop a self-consistent theory for the evolution of network structure by combining fast spiking covariance with a slow evolution of synaptic weights. Through a f...
<div><p>Understanding the structure and dynamics of cortical connectivity is vital to understanding ...
Large networks of spiking neurons show abrupt changes in their collective dy-namics resembling phase...
Large networks of spiking neurons show abrupt changes in their collective dy-namics resembling phase...
Abstract\ud \ud The synaptic connectivity of cortical networks features an overrepresentation of cer...
Abstract\ud \ud The synaptic connectivity of cortical networks features an overrepresentation of cer...
The synaptic connectivity of cortical networks features an overrepresentation of certain wiring moti...
The synaptic connectivity of cortical networks features an overrepresentation of certain wir-ing mot...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
The connectivity of mammalian brains exhibits structure at a wide variety of spatial scales, from th...
<div><p>The information processing abilities of neural circuits arise from their synaptic connection...
The connectivity of mammalian brains exhibits structure at a wide variety of spatial scales, from th...
Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organizati...
Recent experimental data from the rodent cerebral cortex and olfactory bulb indicate that specific c...
Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organizati...
Recent experimental data from the rodent cerebral cortex and olfactory bulb indicate that specific c...
<div><p>Understanding the structure and dynamics of cortical connectivity is vital to understanding ...
Large networks of spiking neurons show abrupt changes in their collective dy-namics resembling phase...
Large networks of spiking neurons show abrupt changes in their collective dy-namics resembling phase...
Abstract\ud \ud The synaptic connectivity of cortical networks features an overrepresentation of cer...
Abstract\ud \ud The synaptic connectivity of cortical networks features an overrepresentation of cer...
The synaptic connectivity of cortical networks features an overrepresentation of certain wiring moti...
The synaptic connectivity of cortical networks features an overrepresentation of certain wir-ing mot...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
The connectivity of mammalian brains exhibits structure at a wide variety of spatial scales, from th...
<div><p>The information processing abilities of neural circuits arise from their synaptic connection...
The connectivity of mammalian brains exhibits structure at a wide variety of spatial scales, from th...
Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organizati...
Recent experimental data from the rodent cerebral cortex and olfactory bulb indicate that specific c...
Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organizati...
Recent experimental data from the rodent cerebral cortex and olfactory bulb indicate that specific c...
<div><p>Understanding the structure and dynamics of cortical connectivity is vital to understanding ...
Large networks of spiking neurons show abrupt changes in their collective dy-namics resembling phase...
Large networks of spiking neurons show abrupt changes in their collective dy-namics resembling phase...