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Intercellular communication mediated by VIP in the cerebral cortex
Pierre Magistretti
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Corresponding author for this work
Biological, Environmental Sciences and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
19
Scopus citations
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INIS
neurons
100%
cerebral cortex
100%
resolution
40%
peptides
40%
central nervous system
40%
energy
20%
levels
20%
investigations
20%
coupling
20%
populations
20%
blood flow
20%
breakdown
20%
metabolism
20%
stimulation
20%
glycogen
20%
norepinephrine
20%
Neuroscience
Cell Communication
100%
Vasoactive Intestinal Peptide
100%
Cerebral Cortex
100%
Neuron
45%
Central Nervous System
18%
Peptide
18%
Energy Metabolism
9%
Neuronal Activity
9%
Firing Rate
9%
Glycogen
9%
Glycogenolysis
9%
Neurotransmitter
9%
Norepinephrine
9%
Cortical Column
9%
Microvessel
9%
Selectivity
9%
Astrocyte
9%
Medicine and Dentistry
Cell Communication
100%
Vasoactive Intestinal Polypeptide
100%
Peptide
18%
Blood Flow
9%
Cell Type
9%
Noradrenalin
9%
Neurotransmitter
9%
Stimulation
9%
Glycogen
9%
Microvessel
9%
Glycogenolysis
9%
Firing Rate
9%
Cells
9%
Position
9%
Astrocyte
9%
Energy Metabolism
9%