A balance between excitatory and inhibitory synaptic currents is thought to be important for several aspects of information processing in cortical neurons in vivo, including gain control, bandwidth and receptive field structure. These factors will affect the firing rate of cortical neurons and their reliability, with consequences for their information coding and energy consumption. Yet how balanced synaptic currents contribute to the coding efficiency and energy efficiency of cortical neurons remains unclear. We used single compartment computational models with stochastic voltage-gated ion channels to determine whether synaptic regimes that produce balanced excitatory and inhibitory currents have specific advantages over other input regimes...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
Identifying the determinants of neuronal energy consumption and their relationship to information co...
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...
Selective pressure may drive neural systems to process as much information as possible with the lowe...
In this paper we investigate the rate coding capabilities of neurons whose input signal are alterati...
In this paper we investigate the rate coding capabilities of neurons whose input signal are alterati...
Identifying the determinants of neuronal energy consumption and their relationship to information co...
Cortical networks are thought to operate in a state of tightly balanced excitation and inhibition....
The brain is highly energy consuming, therefore is under strong selective pressure to achieve cost-e...
<div><p>The brain is highly energy consuming, therefore is under strong selective pressure to achiev...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
Identifying the determinants of neuronal energy consumption and their relationship to information co...
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...
Selective pressure may drive neural systems to process as much information as possible with the lowe...
In this paper we investigate the rate coding capabilities of neurons whose input signal are alterati...
In this paper we investigate the rate coding capabilities of neurons whose input signal are alterati...
Identifying the determinants of neuronal energy consumption and their relationship to information co...
Cortical networks are thought to operate in a state of tightly balanced excitation and inhibition....
The brain is highly energy consuming, therefore is under strong selective pressure to achieve cost-e...
<div><p>The brain is highly energy consuming, therefore is under strong selective pressure to achiev...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
Identifying the determinants of neuronal energy consumption and their relationship to information co...