Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms Featuring High Energy Expenditure - ScienceDirect

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Last updated 22 fevereiro 2025
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Lactate shuttled from blood, astrocytes, and/or oligodendrocytes may serve as the major glucose alternative in brain energy metabolism. However, its e…
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms Featuring High Energy Expenditure - ScienceDirect
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
A subset of synaptic transmission events is coupled to acetyl coenzyme A production
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Frontiers Lactate Shuttles in Neuroenergetics—Homeostasis, Allostasis and Beyond
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Frontiers Lactate as Potential Mediators for Exercise-Induced Positive Effects on Neuroplasticity and Cerebrovascular Plasticity
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Exogenous lactate administration: A potential novel therapeutic approach for neonatal hypoxia-ischemia - ScienceDirect
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Role of Bmal1 and Gut Microbiota in Alzheimer's Disease and Parkinson's Disease Pathophysiology: The Probable Effect of Melatonin on Their Association
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
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Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
A functional account of stimulation-based aerobic glycolysis and its role in interpreting BOLD signal intensity increases in neuroimaging experiments - ScienceDirect
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Looking to the stars for answers: Strategies for determining how astrocytes influence neuronal activity - Computational and Structural Biotechnology Journal
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Preclinical Models for Alzheimer's Disease: Past, Present, and Future Approaches
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
RC22 submersion chamber. A, Recording chamber. B, Ground electrode. C
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Contributions of synaptic and astrocyte physiology to the anaesthetised encephalogram revealed using a computational model - British Journal of Anaesthesia
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
RC22 submersion chamber. A, Recording chamber. B, Ground electrode. C
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Type 2 Diabetes Mellitus Drugs for Alzheimer's Disease: Current Evidence and Therapeutic Opportunities: Trends in Molecular Medicine
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Physiological significance of elevated levels of lactate by exercise training in the brain and body - ScienceDirect

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