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

Por um escritor misterioso
Last updated 03 junho 2024
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
PDF) Exerkines and long-term synaptic potentiation: Mechanisms of exercise-induced neuroplasticity
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Lactate is an energy substrate for rodent cortical neurons and enhances their firing activity
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Frontiers How Energy Supports Our Brain to Yield Consciousness: Insights From Neuroimaging Based on the Neuroenergetics Hypothesis
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
History and Function of the Lactate Receptor GPR81/HCAR1 in the Brain: A Putative Therapeutic Target for the Treatment of Cerebral Ischemia - ScienceDirect
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
IJMS August-2 2023 - Browse Articles
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Hippocampal slice illustration and extracellular waveforms. A, Cartoon
Lactate Attenuates Synaptic Transmission and Affects Brain Rhythms  Featuring High Energy Expenditure - ScienceDirect
Metabolites, Free Full-Text
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
Glia, Neurobiology Journal

© 2014-2024 praharacademy.in. All rights reserved.