The brain is highly energy consuming, therefore is under strong selective pressure to achieve cost-efficiency in both cortical connectivities and activities. However, cost-efficiency as a design principle for cortical activities has been rarely studied. Especially it is not clear how cost-efficiency is related to ubiquitously observed multi-scale properties: irregular firing, oscillations and neuronal avalanches. Here we demonstrate that these prominent properties can be simultaneously observed in a generic, biologically plausible neural circuit model that captures excitation-inhibition balance and realistic dynamics of synaptic conductance. Their co-emergence achieves minimal energy cost as well as maximal energy efficiency on information ...
There is mounting evidence that neural networks of the cerebral cortex exhibit scale invariant dynam...
The brain is considered to use a relatively small amount of energy for its efficient information pro...
Neural activity in vitro can show bursts of activity. These bursts are termed neural avalanches and ...
<div><p>The brain is highly energy consuming, therefore is under strong selective pressure to achiev...
Selective pressure may drive neural systems to process as much information as possible with the lowe...
A balance between excitatory and inhibitory synaptic currents is thought to be important for several...
A balance between excitatory and inhibitory synaptic currents is thought to be important for several...
The mammalian cortex consists of a vast network of weakly interacting excitable cells called neurons...
AbstractElectrophysiological recordings show that individual neurons in cortex are strongly activate...
Information processing in the brain depends upon the interactions of diverse signaling units, neuron...
Networks of living neurons exhibit diverse patterns of activity, including oscillations, synchrony, ...
Brain dynamics display collective phenomena as diverse as neuronal oscillations and avalanches. Osci...
Spontaneous brain activity has been recently characterized by avalanche dynamics with critical feat...
A balance between excitatory and inhibitory synaptic currents is thought to be important for several...
Spontaneous brain activity has been recently characterized by avalanche dynamics with critical feat...
There is mounting evidence that neural networks of the cerebral cortex exhibit scale invariant dynam...
The brain is considered to use a relatively small amount of energy for its efficient information pro...
Neural activity in vitro can show bursts of activity. These bursts are termed neural avalanches and ...
<div><p>The brain is highly energy consuming, therefore is under strong selective pressure to achiev...
Selective pressure may drive neural systems to process as much information as possible with the lowe...
A balance between excitatory and inhibitory synaptic currents is thought to be important for several...
A balance between excitatory and inhibitory synaptic currents is thought to be important for several...
The mammalian cortex consists of a vast network of weakly interacting excitable cells called neurons...
AbstractElectrophysiological recordings show that individual neurons in cortex are strongly activate...
Information processing in the brain depends upon the interactions of diverse signaling units, neuron...
Networks of living neurons exhibit diverse patterns of activity, including oscillations, synchrony, ...
Brain dynamics display collective phenomena as diverse as neuronal oscillations and avalanches. Osci...
Spontaneous brain activity has been recently characterized by avalanche dynamics with critical feat...
A balance between excitatory and inhibitory synaptic currents is thought to be important for several...
Spontaneous brain activity has been recently characterized by avalanche dynamics with critical feat...
There is mounting evidence that neural networks of the cerebral cortex exhibit scale invariant dynam...
The brain is considered to use a relatively small amount of energy for its efficient information pro...
Neural activity in vitro can show bursts of activity. These bursts are termed neural avalanches and ...