Neuronal computation is energetically expensive. Consequently, the brain's limited energy supply imposes constraints on its information processing capability. Most brain energy is used on synaptic transmission, making it important to understand how energy is provided to and used by synapses. We describe how information transmission through presynaptic terminals and postsynaptic spines is related to their energy consumption, assess which mechanisms normally ensure an adequate supply of ATP to these structures, consider the influence of synaptic plasticity and changing brain state on synaptic energy use, and explain how disruption of the energy supply to synapses leads to neuropathology.</p
The architecture of computational devices is shaped by their energy consumption. Energetic constrain...
The experiments performed in this dissertation examine the basic synaptic function of neurons in the...
The brain is one of the most energy-consuming organs in the mammalian body, and synaptic transmissio...
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...
Neuronal computation is energetically expensive. Consequently, the brain’s limited energy supply imp...
The brain’s energy use on signalling has been well-described, but only about half the brain’s energy...
The nervous system consumes a disproportionate fraction of the resting body’s energy production. In ...
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...
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 experiments performed in this dissertation examine the basic synaptic function of neurons in the...
The brain is one of the most energy-consuming organs in the mammalian body, and synaptic transmissio...
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...
Neuronal computation is energetically expensive. Consequently, the brain’s limited energy supply imp...
The brain’s energy use on signalling has been well-described, but only about half the brain’s energy...
The nervous system consumes a disproportionate fraction of the resting body’s energy production. In ...
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...
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 experiments performed in this dissertation examine the basic synaptic function of neurons in the...
The brain is one of the most energy-consuming organs in the mammalian body, and synaptic transmissio...