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The role of serotonin neurotransmission in rapid antidepressant actions
A. L. Pehrson
, D. Roberts
, A. Khawaja
, R. McNair
Psychology
Research output
:
Contribution to journal
›
Review article
›
peer-review
28
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Scopus citations
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Keyphrases
Antidepressants
100%
Serotonin
100%
Neurotransmission
100%
Rapid-acting Antidepressant
100%
Antidepressant Mechanism
45%
Serotonergic System
36%
5-HT1A
36%
Serotonin 2A Receptor (5-HT2AR)
36%
Ketamine
36%
BDNF Signaling
36%
Synaptic Plasticity
27%
5-HT4 Receptor
27%
Receptor System
18%
Tolerability
18%
Glycogen Synthase Kinase 3 (GSK3)
18%
5-HT1B Receptor
18%
Cortex
9%
Clinical Utility
9%
Hippocampus
9%
5-HT1B
9%
Serotonergic
9%
Hallucinogens
9%
5-HT4 Receptor Agonist
9%
GSK-3 Inhibition
9%
Neuroscience
Serotonin
100%
Antidepressant
100%
Synaptic Transmission
100%
Brain-Derived Neurotrophic Factor
36%
Serotonergic
36%
Ketamine
36%
5-HT4 Receptor
36%
Synaptic Plasticity
27%
GSK-3
27%
5-HT1B Receptor
18%
Receptor
18%
Agonist
9%
Hippocampus
9%
Receptor Agonists
9%
5-HT Receptor
9%
Hallucinogen
9%
Pharmacology, Toxicology and Pharmaceutical Science
Serotonin
100%
Antidepressant
100%
Receptor
63%
Ketamine
36%
Brain Derived Neurotrophic Factor
36%
Glycogen Synthase Kinase
27%
Tolerability
18%
Receptor Agonist
9%
Serotonin Receptor
9%
Hallucinogen
9%