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Dextrorphan attenuates responses of spinothalamic tract cells in normal and nerve-injured monkeys
Susan M. Carlton
, Huw Rees
, Kelli Gondesen
, William D. Willis
Neurobiology
Research output
:
Contribution to journal
›
Article
›
peer-review
16
Scopus citations
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Dive into the research topics of 'Dextrorphan attenuates responses of spinothalamic tract cells in normal and nerve-injured monkeys'. Together they form a unique fingerprint.
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Keyphrases
Monkey
100%
Nerve
100%
Spinothalamic Tract
100%
Dextrorphan
100%
N-methyl-D-aspartate Receptor (NMDAR)
20%
Spinal Cord
20%
Neuropathic Pain
20%
Spinal Nerve
20%
Therapeutic Agents
20%
Chronic Pain
20%
Acute Pain
20%
Microdialysis
20%
Dorsal Horn
20%
Ligation
20%
Tight
20%
Von Frey Filaments
20%
N-methyl-D-aspartate Receptor Antagonist
20%
Lumbosacral Enlargement
20%
Heat Stimuli
20%
Antidromic Activation
20%
Dextromethorphan
20%
Lateral Thalamus
20%
Neuroscience
Spinothalamic Tract
100%
Dextrorphan
100%
Aspartic Acid
40%
Neuropathic Pain
20%
Dextromethorphan
20%
Receptor
20%
Microdialysis
20%
Spinal Nerve
20%
Nucleus
20%