As a sophisticated computing unit, the pyramidal neuron requires sufficient metabolic energy to fuel its powerful computational capabilities. However, the majority of previous works focus on nonlinear integration and energy consumption in individual pyramidal neurons but seldom on the effects of metabolic energy on synaptic transmission and dendritic integration. Here, we developed biologically plausible models to simulate the synaptic transmission and dendritic integration of pyramidal neurons, exploring the relations between synaptic transmission and metabolic energy and between dendritic integration and metabolic energy. We find that synaptic energy not only drives synaptic vesicle cycle, but also participates in the regulation of this c...
Neuronal computation is energetically expensive. Consequently, the brain's limited energy supply imp...
Neuronal computation is energetically expensive. Consequently, the brain's limited energy supply imp...
Neuronal computation is energetically expensive. Consequently, the brain's limited energy supply imp...
As a sophisticated computing unit, the pyramidal neuron requires sufficient metabolic energy to fuel...
Neuronal networks in the brain are the structural basis of human cognitive function, and the plastic...
Neuronal networks in the brain are the structural basis of human cognitive function, and the plastic...
Neuronal computation is energetically expensive. Consequently, the brain’s limited energy supply imp...
The electric activities of cortical pyramidal neurons are supported by structurally stable, morpholo...
The electric activities of cortical pyramidal neurons are supported by structurally stable, morpholo...
The electric activities of cortical pyramidal neurons are supported by structurally stable, morpholo...
The electric activities of cortical pyramidal neurons are supported by structurally stable, morpholo...
The electric activities of cortical pyramidal neurons are supported by structurally stable, morpholo...
SummaryThe architecture of computational devices is shaped by their energy consumption. Energetic co...
Glucose is the main energy substrate in the adult brain under normal conditions. Accumulat-ing evide...
In this paper, we pursue recent observations that, through selective dendritic filtering, single neu...
Neuronal computation is energetically expensive. Consequently, the brain's limited energy supply imp...
Neuronal computation is energetically expensive. Consequently, the brain's limited energy supply imp...
Neuronal computation is energetically expensive. Consequently, the brain's limited energy supply imp...
As a sophisticated computing unit, the pyramidal neuron requires sufficient metabolic energy to fuel...
Neuronal networks in the brain are the structural basis of human cognitive function, and the plastic...
Neuronal networks in the brain are the structural basis of human cognitive function, and the plastic...
Neuronal computation is energetically expensive. Consequently, the brain’s limited energy supply imp...
The electric activities of cortical pyramidal neurons are supported by structurally stable, morpholo...
The electric activities of cortical pyramidal neurons are supported by structurally stable, morpholo...
The electric activities of cortical pyramidal neurons are supported by structurally stable, morpholo...
The electric activities of cortical pyramidal neurons are supported by structurally stable, morpholo...
The electric activities of cortical pyramidal neurons are supported by structurally stable, morpholo...
SummaryThe architecture of computational devices is shaped by their energy consumption. Energetic co...
Glucose is the main energy substrate in the adult brain under normal conditions. Accumulat-ing evide...
In this paper, we pursue recent observations that, through selective dendritic filtering, single neu...
Neuronal computation is energetically expensive. Consequently, the brain's limited energy supply imp...
Neuronal computation is energetically expensive. Consequently, the brain's limited energy supply imp...
Neuronal computation is energetically expensive. Consequently, the brain's limited energy supply imp...