Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organization of local cortical networks. In the absence of sensory stimuli, cerebral cortex exhibits spontaneous membrane potential transitions between an UP and a DOWN state. To reveal how cortical networks develop spontaneous activity, or conversely, how spontaneous activity structures cortical networks, we analyze the self-organization of a recurrent network model of excitatory and inhibitory neurons, which is realistic enough to replicate UP–DOWN states, with spike-timing-dependent plasticity (STDP). The individual neurons in the self-organized network exhibit a variety of temporal patterns in the two-state transitions. In addition, the model devel...
The connectivity of cortical neuronal networks is complex, exhibiting clustered network motifs and e...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
Complex collective activity emerges spontaneously in cortical circuits in vivo and in vitro, such as...
Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organizati...
Spontaneous cortical activity can show very complex collective emerging features, with, in some case...
<div><p>The synaptic connectivity of cortical networks features an overrepresentation of certain wir...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
The cerebral cortex is continuously active in the absence of external stimuli. An example of this sp...
Scarpetta et al. BMC Neuroscience 2015, 16(Suppl 1):P6 http://www.biomedcentral.com/1471-2202/16/S1...
<div><p>Understanding the structure and dynamics of cortical connectivity is vital to understanding ...
The connectivity of mammalian brains exhibits structure at a wide variety of spatial scales, from th...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
<div><p>During rest, the mammalian cortex displays spontaneous neural activity. Spiking of single ne...
The synaptic connectivity of cortical networks features an overrepresentation of certain wir-ing mot...
Self-organized criticality refers to the spontaneous emergence of self-similar dynamics in complex s...
The connectivity of cortical neuronal networks is complex, exhibiting clustered network motifs and e...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
Complex collective activity emerges spontaneously in cortical circuits in vivo and in vitro, such as...
Synaptic plasticity is considered to play a crucial role in the experience-dependent self-organizati...
Spontaneous cortical activity can show very complex collective emerging features, with, in some case...
<div><p>The synaptic connectivity of cortical networks features an overrepresentation of certain wir...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
The cerebral cortex is continuously active in the absence of external stimuli. An example of this sp...
Scarpetta et al. BMC Neuroscience 2015, 16(Suppl 1):P6 http://www.biomedcentral.com/1471-2202/16/S1...
<div><p>Understanding the structure and dynamics of cortical connectivity is vital to understanding ...
The connectivity of mammalian brains exhibits structure at a wide variety of spatial scales, from th...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
<div><p>During rest, the mammalian cortex displays spontaneous neural activity. Spiking of single ne...
The synaptic connectivity of cortical networks features an overrepresentation of certain wir-ing mot...
Self-organized criticality refers to the spontaneous emergence of self-similar dynamics in complex s...
The connectivity of cortical neuronal networks is complex, exhibiting clustered network motifs and e...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
Complex collective activity emerges spontaneously in cortical circuits in vivo and in vitro, such as...