Neural networks are required to meet significant metabolic demands associated with performing sophisticated computational tasks in the brain. The necessity for efficient transmission of information imposes stringent constraints on the metabolic pathways that can be used for energy generation at the synapse, and thus low availability of energetic substrates can reduce the efficacy of synaptic function. Here we study the effects of energetic substrate availability on global neural network behavior and find that glucose alone can sustain excitatory neurotransmission required to generate high-frequency synchronous bursting that emerges in culture. In contrast, obligatory oxidative energetic substrates such as lactate and pyruvate are unable to ...
International audienceGlucose is the mandatory fuel for the brain, yet the relative contribution of ...
Neurons use glucose to fuel glycolysis and provide substrates for mitochondrial respiration, but neu...
For years glucose was thought to constitute the sole energy substrate for neurons; it was believed t...
Neural networks are required to meet significant metabolic demands associated with performing sophis...
Network activation triggers a significant energy metabolism increase in both neurons and astrocytes....
This study examines the role of glucose and lactate as energy substrates to sustain synaptic vesicle...
This study examines the role of glucose and lactate as energy substrates to sustain synaptic vesicle...
The synapse has high energy demands, which increase during intense activity. Presynaptic ATP product...
The brain requires a constant and substantial energy supply to maintain its main functions. For deca...
© 2020 The Author(s) Lactate shuttled from blood, astrocytes, and/or oligodendrocytes may serve as t...
Classical neuroenergetics states that glucose is the exclusive energy substrate of brain cells and i...
Background: The energetics of cerebral activity critically relies on the functional and metabolic in...
Neurons require a nearly constant supply of ATP. Glucose is the predominant source of brain ATP, but...
Glucose is the mandatory fuel for the brain, yet the relative contribution of glucose and lactate fo...
International audienceNeural computational power is determined by neuroenergetics, but how and which...
International audienceGlucose is the mandatory fuel for the brain, yet the relative contribution of ...
Neurons use glucose to fuel glycolysis and provide substrates for mitochondrial respiration, but neu...
For years glucose was thought to constitute the sole energy substrate for neurons; it was believed t...
Neural networks are required to meet significant metabolic demands associated with performing sophis...
Network activation triggers a significant energy metabolism increase in both neurons and astrocytes....
This study examines the role of glucose and lactate as energy substrates to sustain synaptic vesicle...
This study examines the role of glucose and lactate as energy substrates to sustain synaptic vesicle...
The synapse has high energy demands, which increase during intense activity. Presynaptic ATP product...
The brain requires a constant and substantial energy supply to maintain its main functions. For deca...
© 2020 The Author(s) Lactate shuttled from blood, astrocytes, and/or oligodendrocytes may serve as t...
Classical neuroenergetics states that glucose is the exclusive energy substrate of brain cells and i...
Background: The energetics of cerebral activity critically relies on the functional and metabolic in...
Neurons require a nearly constant supply of ATP. Glucose is the predominant source of brain ATP, but...
Glucose is the mandatory fuel for the brain, yet the relative contribution of glucose and lactate fo...
International audienceNeural computational power is determined by neuroenergetics, but how and which...
International audienceGlucose is the mandatory fuel for the brain, yet the relative contribution of ...
Neurons use glucose to fuel glycolysis and provide substrates for mitochondrial respiration, but neu...
For years glucose was thought to constitute the sole energy substrate for neurons; it was believed t...