Selective pressure may drive neural systems to process as much information as possible with the lowest energy cost. Recent experiment evidence revealed that the ratio between synaptic excitation and inhibition (E/I) in local cortex is generally maintained at a certain value which may influence the efficiency of energy consumption and information transmission of neural networks. To understand this issue deeply, we constructed a typical recurrent Hodgkin-Huxley network model and studied the general principles that governs the relationship among the E/I synaptic current ratio, the energy cost and total amount of information transmission. We observed in such a network that there exists an optimal E/I synaptic current ratio in the network by whi...
In this paper we investigate the rate coding capabilities of neurons whose input signal are alterati...
The brain’s energy use on signalling has been well-described, but only about half the brain’s energy...
We have previously shown that the physiological size of postsynaptic currents maximises energy effic...
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...
A balance between excitatory and inhibitory synaptic currents is thought to be important for several...
SummaryThe architecture of computational devices is shaped by their energy consumption. Energetic co...
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...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
<div><p>The brain is highly energy consuming, therefore is under strong selective pressure to achiev...
The brain is highly energy consuming, therefore is under strong selective pressure to achieve cost-e...
In this paper we investigate the rate coding capabilities of neurons whose input signal are alterati...
The brain’s energy use on signalling has been well-described, but only about half the brain’s energy...
We have previously shown that the physiological size of postsynaptic currents maximises energy effic...
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...
A balance between excitatory and inhibitory synaptic currents is thought to be important for several...
SummaryThe architecture of computational devices is shaped by their energy consumption. Energetic co...
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...
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
<div><p>The brain is highly energy consuming, therefore is under strong selective pressure to achiev...
The brain is highly energy consuming, therefore is under strong selective pressure to achieve cost-e...
In this paper we investigate the rate coding capabilities of neurons whose input signal are alterati...
The brain’s energy use on signalling has been well-described, but only about half the brain’s energy...
We have previously shown that the physiological size of postsynaptic currents maximises energy effic...