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Over-expression of TRESK K
+
channels reduces the excitability of trigeminal ganglion nociceptors
Zhaohua Guo,
Yu Qing Cao
Washington University Pain Center
Center for the Investigation of Membrane Excitability Diseases
Division of Biology and Biomedical Sciences
Institute of Clinical and Translational Sciences
Division of Pain Research
Research output
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Contribution to journal
›
Article
›
peer-review
39
Scopus citations
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+
channels reduces the excitability of trigeminal ganglion nociceptors'. Together they form a unique fingerprint.
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Medicine & Life Sciences
Trigeminal Ganglion
100%
Nociceptors
96%
Spinal Cord
63%
Afferent Neurons
34%
Neurons
32%
Migraine Disorders
13%
Lipofectamine
8%
Lamotrigine
8%
Capsaicin
7%
Spinal Ganglia
7%
Lectins
6%
Chronic Pain
5%
Action Potentials
5%
Analgesics
5%
Transfection
5%
Agriculture & Biology
potassium channels
88%
spinal cord
85%
neurons
43%
sensory neurons
32%
migraine
19%
capsaicin
8%
analgesics
7%
transfection
7%
action potentials
7%
pain
6%
signs and symptoms (animals and humans)
5%
inflammation
5%
nerve tissue
5%
therapeutics
5%
Chemical Compounds
Cord
96%
Analgesic
7%
Heterogeneity
6%
Reduction
5%
Mutation
5%